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Afforestation increases microbial diversity in low-carbon soils
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作者 Xuesen Pang Chuankuan Wang +1 位作者 Chengjie Ren Zhenghu Zhou 《Journal of Forestry Research》 SCIE EI CAS CSCD 2024年第2期14-22,共9页
Afforestation has an important role in biodiversity conservation and ecosystem function improvement.A meta-analysis was carried out in China,which has the largest plantation area globally,to quantify the effects of pl... Afforestation has an important role in biodiversity conservation and ecosystem function improvement.A meta-analysis was carried out in China,which has the largest plantation area globally,to quantify the effects of plantings on soil microbial diversity.The results showed that the overall effect of afforestation on soil microbial diversity was positive across the country.Random forest algorithm suggested that soil carbon was the most important factor regulating microbial diversity and the positive response was only found with new plantings on low-carbon bare lands but not on high-carbon farmlands and grasslands.In addition,afforestation with broadleaved species increased microbial diversity,whereas planting with conifers had no effect on microbial diversity.This study clarified the effects of plantings on soil microbial diversity,which has an important implication for establishing appropriate policies and practices to improve the multiple functionalities(e.g.,biodiversity conservation and climate change mitigation)during plantation establishment. 展开更多
关键词 AFFORESTATION microbial diversity Soil microbial communities Species-energy theory Plantations
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Effects of land-use patterns on soil microbial diversity and composition in the Loess Plateau,China
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作者 ZHANG Jian GUO Xiaoqun +2 位作者 SHAN Yujie LU Xin CAO Jianjun 《Journal of Arid Land》 SCIE CSCD 2024年第3期415-430,共16页
In the Loess Plateau of China,land-use pattern is a major factor in controlling underlying biological processes.Additionally,the process of land-use pattern was accompanied by abandoned lands,potentially impacting soi... In the Loess Plateau of China,land-use pattern is a major factor in controlling underlying biological processes.Additionally,the process of land-use pattern was accompanied by abandoned lands,potentially impacting soil microbe.However,limited researches were conducted to study the impacts of land-use patterns on the diversity and community of soil microorganisms in this area.The study aimed to investigate soil microbial community diversity and composition using high-throughput deoxyribonucleic acid(DNA)sequencing under different land-use patterns(apricot tree land,apple tree land,peach tree land,corn land,and abandoned land).The results showed a substantial difference(P<0.050)in bacterial alpha-diversity and beta-diversity between abandoned land and other land-use patterns,with the exception of Shannon index.While fungal beta-diversity was not considerably impacted by land-use patterns,fungal alpha-diversity indices varied significantly.The relative abundance of Actinobacteriota(34.90%),Proteobacteria(20.65%),and Ascomycota(77.42%)varied in soils with different land-use patterns.Soil pH exerted a dominant impact on the soil bacterial communities'composition,whereas soil available phosphorus was the main factor shaping the soil fungal communities'composition.These findings suggest that variations in land-use pattern had resulted in changes to soil properties,subsequently impacting diversity and structure of microbial community in the Loess Plateau.Given the strong interdependence between soil and its microbiota,it is imperative to reclaim abandoned lands to maintain soil fertility and sustain its function,which will have significant ecological service implications,particularly with regards to soil conservation in ecologically vulnerable areas. 展开更多
关键词 abandoned lands land-use pattern soil property diversity of soil microbe soil microbial community
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Fecal microbial diversity and putative function in captive western lowland gorillas(Gorilla gorilla gorilla),common chimpanzees(Pan troglodytes),Hamadryas baboons(Papio hamadryas)and binturongs(Arctictis binturong) 被引量:1
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作者 Erin A.McKENNEY Melissa ASHWELL +1 位作者 Joanna E.LAMBERT Vivek FELLNER 《Integrative Zoology》 SCIE CSCD 2014年第5期557-569,共13页
Microbial populations in the gastrointestinal tract contribute to host health and nutrition.Although gut microbial ecology is well studied in livestock and domestic animals,little is known of the endogenous population... Microbial populations in the gastrointestinal tract contribute to host health and nutrition.Although gut microbial ecology is well studied in livestock and domestic animals,little is known of the endogenous populations inhab­iting primates or carnivora.We characterized microbial populations in fecal cultures from gorillas(Gorilla go­rilla gorilla),common chimpanzees(Pan troglodytes),Hamadryas baboons(Papio hamadryas)and binturongs(Arctictis binturong)to compare the microbiomes associated with different gastrointestinal morphologies and different omnivorous feeding strategies.Each species was fed a distinct standardized diet for 2 weeks prior to fecal collection.All diets were formulated to reflect the species’feeding strategies in situ.Fresh fecal samples were pooled within species and used to inoculate in vitro batch cultures.Acetate,propionate,butyrate and val­erate were measured after 24 h of incubation.Eubacterial DNA was extracted from individual fecal samples,pooled,and the cpn60 gene region was amplified and then sequenced to identify the major eubacterial constit­uents associated with each host species.Short chain fatty acids(P<0.001)and methane(P<0.001)were sig­nificantly different across species.Eubacterial profiles were consistent with fermentation data and suggest an in­crease in diversity with dietary fiber. 展开更多
关键词 ecology FERMENTATION gastrointestinal microbiota microbial diversity
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How Does Heat-Stress Intensity Affect the Stability of Microbial Activity and Diversity of Soil Microbial Communities in Outfields and Homefields’ Cultivation Practices in the Senegalese Groundnut Basin?
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作者 Paul Ndiaga Ciss Laure Tall +6 位作者 Saidou Nourou Sall Mariama Dalanda Diallo Paula Fernandes Tidiane Dieye Medoune Mbengue Espoir Gaglo Komi Assigbetse 《Open Journal of Soil Science》 2023年第2期97-123,共27页
Agroecosystems in the Senegalese groundnut basin experience long periods of high temperatures and drought, which disrupt the stability of soil microbial communities. This study evaluated how that stability is affected... Agroecosystems in the Senegalese groundnut basin experience long periods of high temperatures and drought, which disrupt the stability of soil microbial communities. This study evaluated how that stability is affected by homefields and outfields’ agricultural practices and the duration of heat stress. Specifically, we collected soils from organically farmed fields that receive continual high inputs of manure (homefields), and from fields that are rarely manured (outfields). Soil samples were submitted to artificial heat stress at 60°C for 3, 14, and 28 days, followed by 28 days of recovery at 28°C. We examined the functional stability of microbial communities by quantifying C mineralization, and characterized the stability of the communities’ taxonomic compositions via high-throughput DNA sequencing. We found that the microbial communities have a low resistance to heat stress in soils from both types of fields. However, the manuring practice does affect how the functional stability of microbial communities responds to different durations of heat stress. Although functional stability was not recovered fully in either soil, microbial community resilience seemed to be greater in homefield soils. Differences in manuring practices also affected the structural taxonomic stability of microbial communities: relative abundances of Bacilli, Chloroflexia, Actinobacteria and Sordariomycetes increased in the homefield stressed-soils, but decreased significantly in outfield soils. In contrast, relative abundances of α-Proteobacteria, γ-Proteobacteria and Eurotiomycetes increased significantly in outfield stressed-soils, while decreasing significantly in the homefield soils. Relative abundances of Bacilli changed little in outfield soils, indicating that this taxon is resistant to heat stress. In summary, the microbial communities’ capacities to resist heat stress and recover from it depend upon the organic richness of the soil (i.e., manuring practice) and the adaptation of soil microbes to environmental conditions. 展开更多
关键词 Groundnut Basin Senegal Agricultural Practice Heat Stress microbial Stability microbial diversity
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Partners of patients with ulcerative colitis exhibit a biologically relevant dysbiosis in fecal microbial metacommunities 被引量:7
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作者 Guang-Lan Chen Ye Zhang +6 位作者 Wang-Yue Wang Xue-Liang Ji Fei Meng Pei-Song Xu Ning-Min Yang Fu-Qiang Ye Xiao-Chen Bo 《World Journal of Gastroenterology》 SCIE CAS 2017年第25期4624-4631,共8页
AIM To investigate alterations in the fecal microbiome using 16 S r RNA amplicon sequencing in couples in the same cohabitation environment.METHODS Fecal samples were collected from eight ulcerative colitis(UC) patien... AIM To investigate alterations in the fecal microbiome using 16 S r RNA amplicon sequencing in couples in the same cohabitation environment.METHODS Fecal samples were collected from eight ulcerative colitis(UC) patients and their healthy partners at Lishui People's Hospital, Zhejiang Province, China. DNA was extracted and the variable regions V3 and V4 of the 16 S r RNA genes were PCR amplified using a two-step protocol. Clear reads were clustered into operational taxonomic units(OTUs) at the 97% sequence similarity level using UCLUST v1.2.22. The Wilcoxon rank-sumtest(R v3.1.2) was used to compare inter-individual differences. Differences with a P value < 0.05 were considered statistically significant.RESULTS Fecal microbial communities were more similar among UC patients than their healthy partners(P = 0.024). UC individuals had a lower relative abundance of bacteria belonging to the Firmicutes, especially Blautia, Clostridium, Coprococcus and Roseburia(P < 0.05). Microbiota dysbiosis was detected in UC patients and their healthy partners. Relevant genera included Akkermansiam, Bacteroides, Escherichia, Lactobacillales, Klebsiella and Parabacteroides. The enriched pathways in fecal samples of UC patients were related to lipid and nucleotide metabolism. Additionally, the pathways involved in membrane transport and metabolism of cofactors and vitamins were more abundant in the healthy partners.CONCLUSION Our results suggested that the microbial composition might be affected in healthy partners cohabiting with UC patients, especially in terms of microbiota dysbiosis. 展开更多
关键词 Ulcerative colitis PATIENTS Healthy partner fecal microbial communities Microbiota dysbiosis
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Microbial community diversity in the profile of an agricultural soil in northern China 被引量:6
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作者 Zhou Juan Guo Weihua +2 位作者 Wang Renqing Han Xuemei Wang Qiang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2008年第8期981-988,共8页
The soil microorganisms at different depths play an important role in soil formation,ecosystem biogeochemistry,recycling of nutrients,and degradation of waste products.The aims of this study were to observe the microb... The soil microorganisms at different depths play an important role in soil formation,ecosystem biogeochemistry,recycling of nutrients,and degradation of waste products.The aims of this study were to observe the microbial diversity in the profile of an agricultural soil in northern China,and to research the correlation between soil microbes and geochemistry.First,the soil geochemistry of the profile was investigated through 25 chemical elements.Secondly,the various physiological groups of microorganisms w... 展开更多
关键词 BIOLOG geochemical elements microbial diversity soil profile
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Microbial diversity in Huguangyan Maar Lake of China revealed by high-throughput sequencing 被引量:4
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作者 HOU Qinghua FANG Zhou +1 位作者 ZHU Qingmei DONG Hongpo 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2019年第4期1245-1257,共13页
Huguangyan Maar Lake is a typical maar lake in the southeast of China. It is well preserved and not disturbed by anthropogenic activities. In this study, microbial community structures in sediment and water samples fr... Huguangyan Maar Lake is a typical maar lake in the southeast of China. It is well preserved and not disturbed by anthropogenic activities. In this study, microbial community structures in sediment and water samples from Huguangyan Maar Lake were investigated using a high-throughput sequencing method. We found significant differences between the microbial community compositions of the water and the sediment. The sediment samples contained more diverse Bacteria and Archaea than did the water samples. Actinobacteria, Betaproteobacteria, Cyanobacteria, and Deltaproteobacteria predominated in the water samples while Deltaproteobacteria, Anaerolineae, Nitrospira, and Dehalococcoidia were the major bacterial groups in the sediment. As for Archaea, Woesearchaeota (DHVEG-6), unclassified Archaea, and Deep Sea Euryarchaeotic Group were detected at higher abundances in the water, whereas the Miscellaneous Crenarchaeotic Group, Thermoplasmata, and Methanomicrobia were significantly more abundant in the sediment. Interactions between Bacteria and Archaea were common in both the water column and the sediment. The concentrations of major nutrients (NO^3-, PO4^3-, SiO3^2- and NH4^+) shaped the microbial population structures in the water. At the higher phylogenetic levels including phylum and class, many of the dominant groups were those that were also abundant in other lakes;however, novel microbial populations (unclassified) were often seen at the lower phylogenetic levels. Our study lays a foundation for examining microbial biogeochemical cycling in sequestered lakes or reservoirs. 展开更多
关键词 Huguangyan MAAR LAKE HIGH-THROUGHPUT SEQUENCING microbial diversity
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Straw and biochar strongly affect functional diversity of microbial metabolism in paddy soils 被引量:4
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作者 YUAN Hong-zhao ZHU Zhen-ke +8 位作者 WEI Xiao-meng LIU Shou-long PENG Pei-qin Anna Gunina SHEN Jian-lin Yakov Kuzyakov GE Ti-da WU Jin-shui WANG Jiu-rong 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2019年第7期1474-1485,共12页
The application of straw and biochar is widely practiced for the improvement of soil fertility.However,its impact on microbial functional profiles,particularly with regard to paddy soils,is not well understood.The aim... The application of straw and biochar is widely practiced for the improvement of soil fertility.However,its impact on microbial functional profiles,particularly with regard to paddy soils,is not well understood.The aim of this study was to investigate the diversity of microbial carbon use patterns in paddy soils amended with straw or straw-derived biochar in a 3-year field experiment in fallow soil and at various development stages of a rice crop(i.e.,tillering and blooming).We applied the community level physiological profiling approach,with 15 substrates(sugars,carboxylic and amino acids,and phenolic acid).In general,straw application resulted in the greatest microbial functional diversity owing to the greater number of available C sources than in control or biochar plots.Biochar amendment promoted the use of α-ketoglutaric acid,the mineralization of which was higher than that of any other substrate.Principal component analyses indicated that microbial functional diversity in the biochar-amended soil was separated from those of the straw-amended and control soils.Redundancy analyses revealed that soil organic carbon content was the most important factor regulating the pattern of microbial carbon utilization.Rhizodeposition and nutrient uptake by rice plants modulated microbial functions in paddy soils and stimulated the microbial use of N-rich substances,such as amino acids.Thus,our results demonstrated that the functional diversity of microorganisms in organic amended paddy soils is affected by both physicochemical properties of amendment and plant growth stage. 展开更多
关键词 carbon metabolism microbial functional diversity BIOCHAR amendment PADDY soil MicroRespTM
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Effects of viral infection and microbial diversity on patients with sepsis:A retrospective study based on metagenomic next-generation sequencing 被引量:14
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作者 Li-wei Duan Jin-long Qu +13 位作者 Jian Wan Yong-hua Xu Yi Shan Li-xue Wu Jin-hao Zheng Wei-wei Jiang Qi-tong Chen Yan Zhu Jian Zhou Wen-bo Yu Lei Pei Xi Song Wen-fang Li Zhao-fen Lin 《World Journal of Emergency Medicine》 SCIE CAS CSCD 2021年第1期29-35,共7页
BACKGROUND: The study aims to investigate the performance of a metagenomic next-generationsequencing (NGS)-based diagnostic technique for the identifi cation of potential bacterial and viral infectionsand eff ects of ... BACKGROUND: The study aims to investigate the performance of a metagenomic next-generationsequencing (NGS)-based diagnostic technique for the identifi cation of potential bacterial and viral infectionsand eff ects of concomitant viral infection on the survival rate of intensive care unit (ICU) sepsis patients.METHODS: A total of 74 ICU patients with sepsis who were admitted to our institution from February1, 2018 to June 30, 2019 were enrolled. Separate blood samples were collected from patients for bloodcultures and metagenomic NGS when the patients’ body temperature was higher than 38 °C. Patients’demographic data, including gender, age, ICU duration, ICU scores, and laboratory results, were recorded.The correlations between pathogen types and sepsis severity and survival rate were evaluated.RESULTS: NGS produced higher positive results (105 of 118;88.98%) than blood cultures(18 of 118;15.25%) over the whole study period. Concomitant viral infection correlated closelywith sepsis severity and had the negative effect on the survival of patients with sepsis. However,correlation analysis indicated that the bacterial variety did not correlate with the severity of sepsis.CONCLUSIONS: Concurrent viral load correlates closely with the severity of sepsis and thesurvival rate of the ICU sepsis patients. This suggests that prophylactic administration of antiviraldrugs combined with antibiotics may be benefi cial to ICU sepsis patients. 展开更多
关键词 SEPSIS Metagenomic next-generation sequencing Viral infections Bacterial infections microbial diversity
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Microbial diversity in the sediments of the southern Mariana Trench 被引量:3
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作者 LI Yingjie CAO Wenrui +1 位作者 WANG Yan MA Qingjun 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2019年第3期1024-1029,共6页
Microbial diversity in the abyssal sediments beneath the seafloor of 30,94,and 151cm near the southern end of the Mariana Trench was analyzed in the Illumina HiSeq 2500 platform.Results show that the microbial populat... Microbial diversity in the abyssal sediments beneath the seafloor of 30,94,and 151cm near the southern end of the Mariana Trench was analyzed in the Illumina HiSeq 2500 platform.Results show that the microbial populations were dominated by bacteria but merely no archaea were identifi ed at the three depths.In the bacterial community,Proteobacteria and Firmicutes dominated the total taxon tags,followed by Bacteroidetes,Actinobacteria,Planctomycetes,Cyanobacteria,and Chloroflexi,which together account for over 99%of the total population.Similar to that in the seawater in the trench,the operational taxonomic units(OTUs)belonging to Gammaproteobacteria from the sediment samples showed high abundance.However,common bacterial OTUs in the water of the trench including Nitrospirae and Marinimicrobia were hardly found in the sediments from the southern Mariana Trench or the hadal region.Therefore,this study documented for the first time the compositions of microbial diversity in the trench sediments,revealed the difference in microbial diversity in water and sediment of the trench and will enrich the knowledge on the microbial diversity in the abyssal areas. 展开更多
关键词 MARIANA TRENCH microbial diversity HIGH-THROUGHPUT SEQUENCING technology
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Soil Fertility,Microbial Biomass,and Microbial Functional Diversity Responses to Four Years Fertilization in an Apple Orchard in North China 被引量:13
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作者 Zhanling Zhu Yan Bai +5 位作者 Minglu Lv Ge Tian Xin Zhang Li Li Yuanmao Jiang Shunfeng Ge 《Horticultural Plant Journal》 SCIE 2020年第4期223-230,共8页
Soil microbial communities play an essential role in maintaining soil fertility and are considered as ecological indicators to evaluate soil health.In the present study,we examined the influence of almost 4 years of f... Soil microbial communities play an essential role in maintaining soil fertility and are considered as ecological indicators to evaluate soil health.In the present study,we examined the influence of almost 4 years of fertilization[no fertilizer(CK),nitrogen alone(N),nitrogen,phosphorus and potassium chemical fertilizer(NPK),organicmanure(M),nitrogen plus organic manure(NM),and NPK plus organic manure(NPKM)]on soil fertility and the functional diversity of soil microbial communities in an apple orchard.Compared to CK,fertilization increased soil organic carbon,total nitrogen,and available nutrients,but reduced soil pH in N and NPK treatments.The highest microbial biomass carbon and nitrogen,most probable number of actinomycetes,bacteria,and fungi occurred in the NPKM treatment.The average well color development(AWCD)values followed the order of NPKM>M>NPK and NM>CK and N.The Shannon index in organic manure treatments were significantly higher than in control and in treatments without organic manure.The principal component analysis showed that manure treatment was significantly separated from other treatments.These results indicated that organic manure applied alone or in combination with chemical fertilizers would increase soil fertility and functional diversity of soil microbial communities.Moreover,applying balanced N,P,K fertilizer in combination with organic manure was found to be superior to the use of a single fertilizer in improving soil microbial community quality. 展开更多
关键词 apple orchard FERTILIZATION soil fertility soil microbial community functional diversity
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Dynamics of microbial diversity during the composting of agricultural straw 被引量:7
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作者 CHANG Hui-qing ZHU Xiao-hui +3 位作者 WU Jie GUO Da-yong ZHANG Lian-he FENG Yao 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2021年第5期1121-1136,共16页
The dynamic changes in microbial diversity during the aerobic composting of agricultural crop straw with additives were evaluated using high-throughput sequencing at four phases of composting(mesophilic,thermophilic,c... The dynamic changes in microbial diversity during the aerobic composting of agricultural crop straw with additives were evaluated using high-throughput sequencing at four phases of composting(mesophilic,thermophilic,cooling and maturation phases).In addition,the physicochemical parameters of the composting system were determined in this study.The fermentation time of the thermophilic period was prolonged with the addition of urea or urea combined with a microbial agent.The ratio of C/N and germination index variation indicated that the additives were favorable for composting,because the additives directly changed the physicochemical properties of the compost and had effects on the diversity and abundance of bacteria and fungi.The abundance of operational taxonomic units(OTUs),diversity index(Shannon)and richness index(Chao1)of fungi and bacteria were found to significantly increase when urea+microbial agents were added to straw in the thermophilic phase.The relative abundance of the predominant bacteria and fungi at the phylum and genus levels differed during different composting phases.The abundance of the phyla Firmicutes and Proteobacteria declined in the order of treatments SNW>SN>S(S is straw only compost;SN is straw+5 kg t^(–1) urea compost;and SNW is straw+5 kg t^(–1) urea+1 kg t^(–1) microbial agent compost)in the thermophilic phase.The abundance of the genera Staphylococcus,Bacillus and Thermobifida followed the same order in the mesophilic phase.Ascomycota accounted for more than 92%of the total fungal sequences.With the progression of the composting process,the abundance of Ascomycota decreased gradually.The abundance of Ascomycota followed the order of S>SN>SNW during the thermophilic phase.The abundance of Aspergillus accounted for 4–59%of the total abundance of fungi and increased during the first two sampling periods.Aspergillus abundance followed the order of SNW>SN>S.Additionally,principal component analysis(PCA)revealed that the community compositions in the straw and straw+urea treatments were similar,and that the bacterial communities in treatments S,SN and SNW in the mesophilic phase(at day 1)were different from those observed in three other phases(at days 5,11,and19,respectively),while the fungal communities showed only slight variations in their structure in response to changes in the composting process.Canonical correlation analysis(CCA)and redundancy analysis(RDA)showed that total carbon(TC),NO_(3)^(–)-N(NN),electrical conductivity(EC)and p H were highly correlated with community composition.Therefore,this study highlights that the additives are beneficial to straw composting and result in good quality compost. 展开更多
关键词 crop straws microbial diversity community composition dynamic characteristics high-throughput sequencing
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Effect of carbon and nitrogen ratio control on Artemia growth, water quality, biofloc microbial diversity under high salinity and zero-water exchange culture condition 被引量:2
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作者 WANG Shanyue CUI Xueping +2 位作者 XU Ruyi GAO Meirong SUI Liying 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2019年第5期1768-1776,共9页
Biofloc technology has been applied successfully in the intensive aquaculture of several fish and shrimp species. The growth of heterotrophic microorganisms can be stimulated through adding extra carbon, which reduces... Biofloc technology has been applied successfully in the intensive aquaculture of several fish and shrimp species. The growth of heterotrophic microorganisms can be stimulated through adding extra carbon, which reduces the nitrogen level in the water and provides microbial protein to the animals. However, most of the studies and practical applications have been conducted in freshwater and marine environment. This paper focused on brine shrimp Artemia that lives in high salinity environment together with other halophilic or halotolerant microorganisms. The effect of carbon supplementation on Artemia growth, water quality, and microbial diversity of biofl ocs was studied in the closed culture condition without any water exchange. The salinity of the culture medium was 100. A 24-d culture trial was conducted through supplementing sucrose at carbon/nitrogen (C/N) ratio of 5, 15, and 30 (Su5, Su15, and Su30), respectively. The culture without adding sucrose was used as a control. Artemia was fed formulated feed at a feeding ration of 60% recommended feeding level. The results showed that sucrose supplementation at higher C/N ratio (15 and 30) signifi cantly improved the Artemia survival, growth and water quality ( P <0.05). Addition of sucrose at C/N ratio of 15 and 30 significantly increased biofloc volume (BFV)( P <0.05). The Illumina MiSeq sequencing analysis showed that supplementing carbon at C/N ratio of 15 had a better total bacterial diversity and richness, and shaped the microbial composition at genera level. This study should provide information for studying the mechanism of biofloc technology and its application in high salinity culture conditions. 展开更多
关键词 biofl OCS C/N ratio ARTEMIA GROWTH water quality microbial diversity high THROUGHPUT SEQUENCING
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Functional diversity of soil microbial communities in response to supplementing 50% of the mineral N fertilizer with organic fertilizer in an oat field 被引量:4
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作者 ZHANG Mei-jun JIA Ju-qing +2 位作者 LU Hua FENG Mei-chen YANG Wu-de 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2021年第8期2255-2264,共10页
The effects of supplementing 50%of the mineral N fertilizer with organic fertilizer on the metabolism and diversity of soil microbial communities in an oat field were investigated using Biolog-Eco plates.The experimen... The effects of supplementing 50%of the mineral N fertilizer with organic fertilizer on the metabolism and diversity of soil microbial communities in an oat field were investigated using Biolog-Eco plates.The experiment consisted of five treatments:no fertilizer(CK),mineral N fertilizer applied at 90 and 45 kg ha^(-1) N in the form of urea(U1 and U2,respectively),and U2 supplemented with organic fertilizer in the form of sheep manure at 90 and 45 kg ha^(-1) N(U2OM1 and U2OM2,respectively).Each treatment had three replications.The experiment was conducted in 2018 and 2019 in Pinglu District,Shanxi Province,China.The carbon source utilization by soil microbial communities,such as amino acids,amines,carbohydrates,carboxylic acids,and polymers,increased when 50%of the mineral N fertilizer was replaced with organic fertilizer in both years.This result was accompanied by increased richness,dominance,and evenness of the microbial communities.The utilization of amino acid,amine,and carboxylic acid carbon sources and community evenness were further improved when the organic fertilizer amount was doubled in both years.Biplot analysis indicated that amines and amino acids were the most representative of the total carbon source utilization by the soil microbial communities in both years.The highest oat yield was achieved at a total N application rate of 135 kg ha^(-1) in the treatment involving 45 kg ha^(-1) N in the form of urea and 90 kg ha^(-1) N in the form of sheep manure in both years.It was concluded that the application of 50%of the conventional rate of mineral N fertilizer supplemented with an appropriate rate of organic fertilizer enhanced both the functional diversity of soil microbial communities and oat yield.Amine and amino acid carbon sources may be used as a substitute for total carbon sources for assessing total carbon source utilization by soil microbial communities in oat fields in future studies. 展开更多
关键词 organic fertilizer Biolog-Eco soil microbial community carbon source utilization diversity OATS
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Microbial Diversity in Rhizosphere Soil of Cotinus coggygria Based on High Throughput Sequencing 被引量:3
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作者 Zhou Jianghong Xia Fei +2 位作者 Che Shaochen Ge Yuxuan Zhou Xiaohong 《Plant Diseases and Pests》 CAS 2019年第5期11-15,23,共6页
In order to reveal the influence of different plant configurations on the microbial community structure and diversity in rhizosphere soil of Cotinus coggygria in Fragrant Hills park,the ITS+5.8S rDNA gene and 16S rDNA... In order to reveal the influence of different plant configurations on the microbial community structure and diversity in rhizosphere soil of Cotinus coggygria in Fragrant Hills park,the ITS+5.8S rDNA gene and 16S rDNA gene V3-V4 region sequencing analysis for fungi and bacteria,respectively,were conducted by high throughput sequencing(Illumina MiSeq).The results showed that the fungal diversity in the rhizosphere soil samples of C.coggygria in Fragrant Hills park in 2018 was significantly higher than that in 2016,and it was higher in the rhizosphere soil of healthy C.coggygria in Xunlupo than that in diseased ones in 2018.Verticillium dahliae,which is the causal agent of C.coggygria wilt,was detected in five soil samples.In 2018,the bacterial diversity in the rhizosphere soil of diseased C.coggygria in Xunlupo was the lowest,while it was the highest in the rhizosphere soil of healthy C.coggygria under Platycladus orientalis in Langfengting. 展开更多
关键词 Cotinus coggygria VERTICILLIUM WILT RHIZOSPHERE soil microbial diversity High THROUGHPUT SEQUENCING
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Effect of Long-Term Application of Chemical Fertilizers on Microbial Biomass and Functional Diversity of a Black Soil 被引量:22
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作者 KONG Wei-Dong ZHU Yong-Guan +3 位作者 FU Bo-Jie HAN Xiao-Zeng ZHANG Lei HE Ji-Zheng 《Pedosphere》 SCIE CAS CSCD 2008年第6期801-808,共8页
An experiment with seven N, P, K-fertilizer treatments, i.e., control (no fertilizer), NP, NK, PK, NPK, NP2K, and NPK2 where P2 and K2 indicate double amounts of P and K fertilizers respectively, was conducted to exam... An experiment with seven N, P, K-fertilizer treatments, i.e., control (no fertilizer), NP, NK, PK, NPK, NP2K, and NPK2 where P2 and K2 indicate double amounts of P and K fertilizers respectively, was conducted to examine the effect of long-term continuous application of chemical fertilizers on microbial biomass and functional diversity of a black soil (Udoll in the USDA Soil Taxonomy) in Northeast China. The soil microbial biomass C ranged between 94 and 145 mg kg-1, with the NK treatment showing a lower biomass; the functional diversity of soil microbial community ranged from 4.13 to 4.25, with an increasing tendency from control to double-fertilizer treatments, and to triple-fertilizer treatments. The soil microbial biomass, and the microbial functional diversity and evenness did not show any significant differences among the different fertilizer treatments including control, suggesting that the long-term application of chemical fertilization would not result in significant changes in the microbial characteristics of the black soil. 展开更多
关键词 生物测井 土壤 化学肥料 微生物 生物量
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Microbial community diversity analysis of <i>Panax ginseng</i>rhizosphere and non-rhizosphere soil using randomly amplified polymorphic DNA method 被引量:3
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作者 Yong Li Yixin Ying +1 位作者 Dongyue Zhao Wanlong Ding 《Open Journal of Genetics》 2012年第2期95-102,共8页
DNA sequence diversities of soil microbial communities in rhizosphere and non-rhizosphere of 1 - 6 years Panax ginseng were evaluated by random amplified polymorphic DNA (RAPD). Total genomic DNA of soil samples were ... DNA sequence diversities of soil microbial communities in rhizosphere and non-rhizosphere of 1 - 6 years Panax ginseng were evaluated by random amplified polymorphic DNA (RAPD). Total genomic DNA of soil samples were amplified by twenty-four out of two hundred random primers. The products were separated in agarose gel, and 359 and 181 reliable fragments were generated, of which, 324 and 123 were polymorphic. The gene diversity index, Shannon’s information index, and similarity coefficient were calculated, and results showed that, diversity of soil microbial community at DNA level was present. Furthermore, with the increasing of P. ginseng growing at one site, deference on soil microbial community DNA sequence between rhizosphere and non-rhizosphere tend to be more and more significant. In addition, RAPD technique was proved to be an effective tool to assess the diversity of soil microbial communities. From results we deduced that, the ecological function that performed by soil microbes may changed following the change of microbial community in rhizospheric and non-rhizospheric soils, and finally broke the balance of soil nutrition and energy cycle, soil spatial structure, microbial ecology etc. 展开更多
关键词 P. GINSENG microbial Community Genetic diversity RHIZOSPHERE Soil
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Degradation of chlorpyrifos in laboratory soil and its impact on soil microbial functional diversity 被引量:25
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作者 FANG Hua YU Yunlong +3 位作者 CHU Xiaoqiang WANG Xiuguo YANG Xiaoe YU Jingquan 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2009年第3期380-386,共7页
Degradation of chlorpyrifos at different concentrations in soil and its impact on soil microbial functional diversity were investigated under laboratory condition.The degradation half-live of chlorpyrifos at levels of... Degradation of chlorpyrifos at different concentrations in soil and its impact on soil microbial functional diversity were investigated under laboratory condition.The degradation half-live of chlorpyrifos at levels of 4,8,and 12 mg/kg in soil were calculated to be 14.3,16.7,and 18.0 d,respectively.The Biolog study showed that the average well color development(AWCD) in soils was significantly(P < 0.05) inhibited by chlorpyrifos within the first two weeks and thereafter recovered to a similar level as the control.A similar variation in the diversity indices(Simpson index 1/D and McIntosh index U) was observed,but no significant difference among the values of the Shannon-Wiener index H was found in chlorpyrifos-treated soils.With an increasing chlorpyrifos concentration,the half-life of chlorpyrifos was significantly(P 0.05) extended and its inhibitory effect on soil microorganisms was aggravated.It is concluded that chlorpyrifos residues in soil had a temporary or short-term inhibitory effect on soil microbial functional diversity. 展开更多
关键词 土壤微生物 功能多样性 实验室条件 毒死蜱 降解 Simpson指数 WIENER指数 BIOLOG
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Effect of heavy metals on soil microbial activity and diversity in a reclaimed mining wasteland of red soil area 被引量:23
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作者 LIAO Min CHEN Cheng-li HUANG Chang-yong 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2005年第5期832-837,共6页
The microbial biomass, basal respiration and substrate utilization pattern in copper mining wasteland of red soil area, southern China, were investigated. The results indicated that soil microflora were obviously diff... The microbial biomass, basal respiration and substrate utilization pattern in copper mining wasteland of red soil area, southern China, were investigated. The results indicated that soil microflora were obviously different compared with that of the non-mine soil. Microbial biomass and basal respiration were negatively affected by the elevated heavy metal levels. Two important microbial ecophysiological parameters, namely, the ratio of microbial biomass C(C mic)/organic C(C org) and metabolic quotient(qCO2) were closely correlated to heavy metal stress. There was a significant decrease in the C mic/C org ratio and an increase in the metabolic quotient with increasing metal concentration. Multivariate analysis of Biolog data for sole carbon source utilization pattern demonstrated that heavy metal pollution had a significant impact on microbial community structure and functional diversity. All the results showed that soil microbiological parameters had great potential to become the early sensitive, effective and liable indicators of the stresses or perturbations in soils of mining ecosystems. 展开更多
关键词 土壤污染 重金属 矿区复垦 环境微生物
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PCR-DGGE analysis of intestinal bacteria and effect of Bacillus spp.on intestinal microbial diversity in kuruma shrimp(Marsupenaeus japonicus) 被引量:8
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作者 刘淮德 刘梅 +4 位作者 王宝杰 蒋克勇 姜珊 孙姝娟 王雷 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2010年第4期808-814,共7页
In this study,the intestinal microbiota of kuruma shrimp(Marsupenaeus japonicus) was examined by molecular analysis of the 16S rDNA to identify the dominant intestinal bacteria and to investigate the effects of Bacill... In this study,the intestinal microbiota of kuruma shrimp(Marsupenaeus japonicus) was examined by molecular analysis of the 16S rDNA to identify the dominant intestinal bacteria and to investigate the effects of Bacillus spp.on intestinal microbial diversity.Samples of the intestines of kuruma shrimp fed normal feed and Bacillus spp.amended feed.PCR and denaturing gradient gel electrophoresis(DGGE) analyses were then performed on DNA extracted directly from the guts.Population fingerprints of the predominant organisms were generated by DGGE analysis of the universal V3 16S rDNA amplicons,and distinct bands in the gels were sequenced.The results suggested that the gut of kuruma shrimp was dominated by Vibrio sp.and uncultured gamma proteobacterium.Overall,the results of this study suggest that PCR-DGGE is a possible method of studying the intestinal microbial diversity of shrimp. 展开更多
关键词 DGGE技术 微生物多样性 枯草芽孢杆菌 日本囊对虾 肠道细菌 技术分析 斑节虾 PCR
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