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Comparative transcriptome analysis of atmospheric pressure cold plasma enhanced early seedling growth in Arabidopsis thaliana 被引量:1
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作者 崔东洁 阴悦 +4 位作者 李洹东 胡小霞 庄杰 马若男 焦浈 《Plasma Science and Technology》 SCIE EI CAS CSCD 2021年第8期95-117,共23页
The stimulatory effects of atmospheric pressure cold plasma(APCP)on plant growth have attracted much attention due to its great potential as a new approach to increase crop growth and production.However,the transcript... The stimulatory effects of atmospheric pressure cold plasma(APCP)on plant growth have attracted much attention due to its great potential as a new approach to increase crop growth and production.However,the transcriptome changes of plants induced by APCP treatment are unknown.Herein,the comparative transcriptome analysis was performed to identify the transcriptional response of Arabidopsis thaliana seedlings to APCP.Results showed that APCP exhibited a dual effect(stimulation or inhibition)on Arabidopsis seedling growth dependent on the treatment time and the maximum stimulatory effects were achieved by 1 min APCP treatment.The metabolic analysis of amino acid,glutathione(GSH)and phytohormone demonstrated that 1 min APCP treatment decreased most amino acids concentrations in Arabidopsis seedling,while the accumulations of GSH,gibberellins and cytokinin were significantly increased.The RNA-Seq analysis showed that a total of218 differentially expressed genes(DEGs)were identified in 1 min APCP-treated seedlings versus the control,including 20 up-regulated and 198 down-regulated genes.The DEGs were enriched in pathways related to GSH metabolism,mitogen-activated protein kinase(MAPK)signaling transduction and plant resistance against pathogens.Moreover,most of the DEGs were defense,stimuli or stressresponsive genes and encoded proteins with oxidoreductase activity.Expression determination of six randomly selected DEGs by quantitative real-time PCR demonstrated similar pattern with the RNASeq data.These results indicated that the moderate APCP treatment may regulate the expression of stimuli/stress-responsive genes involved in GSH,phytohormone/amino metabolism and plant defense against pathogens via MAPK signal transduction pathway,accordingly enhance Arabidopsis seedling growth.This study provides a theoretical basis for the application of APCP in agriculture. 展开更多
关键词 atmospheric pressure cold plasma Arabidopsis thaliana growth parameters METABOLISM RNA-SEQ transcriptional response
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Quality enhancement and microbial reduction of mung bean(Vigna radiata)sprouts by non-thermal plasma pretreatment of seeds
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作者 崔东洁 胡小霞 +5 位作者 阴悦 朱育攀 庄杰 王小洁 马若男 焦浈 《Plasma Science and Technology》 SCIE EI CAS CSCD 2022年第4期164-176,共13页
Mung bean(Vigna radiata)sprouts are widely consumed worldwide due to their high nutritional value.However,the low yield and microbial contamination of mung bean sprouts seriously reduces their economic value.This stud... Mung bean(Vigna radiata)sprouts are widely consumed worldwide due to their high nutritional value.However,the low yield and microbial contamination of mung bean sprouts seriously reduces their economic value.This study investigates the effects of non-thermal plasma on the quality and microbial reduction of mung bean sprouts by pretreatment of seeds in water for different times(0,1,3 and 6 min).The quality results showed that short-time plasma treatment(1 and 3 min)promoted seed germination and seedling growth,whereas long-time plasma treatment(6 min)had inhibitory effects.Plasma also had a similar dose effects on the total flavonoid and phenolic contents of mung bean sprouts.The microbiological results showed that plasma treatment achieved a reduction of native microorganisms ranging from 0.54 to 7.09 log for fungi and 0.29 to 6.80 log for bacteria at 96 h incubation.Meanwhile,plasma treatment could also efficiently inactivate artificially inoculated Salmonella typhimurium(1.83–6.22 log)and yeast(0.53–3.19 log)on mung bean seeds.The results of seed coat permeability tests and scanning electron microscopy showed that plasma could damage the seed coat structure,consequently increasing the electrical conductivity of mung bean seeds.The physicochemical analysis of plasma-treated water showed that plasma generated various long-and short-lived active species[nitric oxide radicals(NO·),hydroxyl radicals(·OH),singlet oxygen(1O2),hydrogen peroxide(H_(2)O_(2)),nitrate(NO_(3)^(-)),and nitrite(NO_(2)^(-))]in water,thus the oxidizability,acidity and conductivity of plasma-treated water were all increased in a treatment timedependent manner.The result for mimicked chemical mixtures confirmed the synergistic effect of activity of H_(2)O_(2),NO_(3)^(-)and NO_(2)^(-)on bacterial inactivation and plant growth promotion.Taken together,these results imply that plasma pretreatment of mung bean seeds in water with moderate oxidizability and acidity is an effective method to improve the yield of mung bean sprouts and reduce microbial contamination. 展开更多
关键词 non-thermal plasma mung bean sprout QUALITY microbial reduction reactive oxygen and nitrogen species
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Synergistic effect of T80/B30 vesicles and T80/PN320 mixed micelles with Se/C on nasal mucosal immunity
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作者 Hongen Cao ruonan ma +3 位作者 Sainan Chu Juqun Xi Lei Yu Rong Guo 《Chinese Chemical Letters》 SCIE CAS CSCD 2021年第9期2761-2764,共4页
Selenium doped carbon(Se/C),an easily fabricated material,was found to be bio-active and it can serve as an adjuvant to enhance the immune effect of Tween 80/Brij 30(T80/B30)vesicles and Tween 80/polymer cationic surf... Selenium doped carbon(Se/C),an easily fabricated material,was found to be bio-active and it can serve as an adjuvant to enhance the immune effect of Tween 80/Brij 30(T80/B30)vesicles and Tween 80/polymer cationic surfactant PN320(T80/PN320)mixed micelles.The synergistic effect of the combination of T80/B30 vesicles and T80/PN320 mixed micelles with Se/C on nasal mucosal immunity was studied in this work,which might provide theoretical basis for developing the related new adjuvant for nasal immunization of recombinant protein,peptide and split protein vaccine.Since both selenium and carbon were bio-compatible elements,Se/C might be safe for practical applications,and this was also reflected by the low hemolytic activity of the materials.This work not only reports an efficient protocol for adjuvant development,but also significantly expands the application scope of selenium chemistry. 展开更多
关键词 Carbon materials BIOMATERIALS SELENIUM Bioactivity IMMUNITY Nasal vaccination
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