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A new record of blue-spotted seabream Pagrus caeruleostictus from Chinese coastal waters documented from morphology and DNA barcoding 被引量:1
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作者 陈咏霞 刘静 吴仁协 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2015年第2期500-505,共6页
A new record of Pagrus caeruleostictus(Valenciennes,1830),collected from the Beibu Gulf,South China Sea in April 2013,was documented based on morphology and cytochrome oxidase I subunit(COI) gene barcoding analyses. I... A new record of Pagrus caeruleostictus(Valenciennes,1830),collected from the Beibu Gulf,South China Sea in April 2013,was documented based on morphology and cytochrome oxidase I subunit(COI) gene barcoding analyses. It can be distinguished by a combination of the following characteristics: head scaled to above eyes; cheeks with 5 or 6 rows of scales; lateral line scales 51–52; 5 rows of scales above the lateral line; 4 and 6 cuspidate teeth in front of upper and lower jaws,respectively,followed by 2 rows of blunter teeth posteriorly; gill rakers on first arch 12 to 15; D XI–XII +9–11; A III +8–9; the first two dorsal spines very short,the third to fifth extended,filamentous in the young; the first pelvic ray filamentous; silvery pink with dark blue spots on back and sides; caudal fin pinkish; other fins bluish or pinkish; the blue spots generally disappear in large specimens. The present report of P. caeruleostictus suggests that its distribution in Chinese coastal waters may be attributed to human effort,since this species is unlikely to have expanded naturally from the eastern Atlantic to the South China Sea,with no other records from the Indian or Pacific Oceans. We recommend that a precautionary approach should be adopted for the management of P. caeruleostictus. 展开更多
关键词 SPARIDAE Pagrus caeruleostietus cytochrome oxidase I subunit (COI) Chinese Seas
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两座污水处理系统中细胞态和游离态抗生素抗性基因的丰度特征 被引量:17
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作者 张衍 陈吕军 +2 位作者 谢辉 李奥林 代天娇 《环境科学》 EI CAS CSCD 北大核心 2017年第9期3823-3830,共8页
为探究污水处理系统中抗生素抗性基因(ARGs)、特别是胞外游离态ARGs的赋存特征,本研究选取生活污水处理系统和工业废水处理系统各一座,采用荧光定量PCR对细胞态及游离态ARGs丰度变化开展研究.在生活污水处理系统M中,进水sulⅡ、tet C、b... 为探究污水处理系统中抗生素抗性基因(ARGs)、特别是胞外游离态ARGs的赋存特征,本研究选取生活污水处理系统和工业废水处理系统各一座,采用荧光定量PCR对细胞态及游离态ARGs丰度变化开展研究.在生活污水处理系统M中,进水sulⅡ、tet C、bla PSE-1和erm B这4种ARGs细胞态的绝对丰度均大幅高于游离态的绝对丰度,生物处理未对抗生素抗性菌(ARBs)产生富集效应;MBR的超滤膜有效削减了水中细胞态和游离态DNA,最终ARGs的总去除率为2.54~4.95 logs.在焦化废水处理系统C中,生物处理对携带sulⅡ的ARBs产生了富集效应,但游离态sulⅡ的相对丰度和绝对丰度均有所降低;其后混凝-砂滤工艺使水中细胞态和游离态sulⅡ的绝对丰度分别出现了下降和上升,游离态sulⅡ在总sulⅡ中的比例从生物处理出水中的0.05%,上升到混凝-砂滤出水中的1.33%,并在25℃恒温避光静置5d后进一步上升至9.31%.ARBs深度去除及残留细胞裂解,使污水处理系统出水中游离ARGs在总ARGs中的比例有所上升.游离态ARGs介导ARGs在污水处理系统出水受纳环境中的传播扩散风险有待后续研究进行深入评估. 展开更多
关键词 污水处理 细胞态dna 游离dna 抗生素抗性基因 荧光定量PCR
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Genotypic Assessment by RAPD Markers and Ultrastructural Characteristics of a NaCI-Tolerant Potato Cell Line
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作者 Filipa Queiros Jose M. Almeida +1 位作者 Domingos P.F. Almeida Femanda Fidalgo 《Journal of Life Sciences》 2012年第1期1-8,共8页
Salinity is a serious threat to agricultural production. Potato (Solanum tuberosum) is an important food crop characterised for having low to moderate salinity tolerance. Tissue cultures may be relevant to improve s... Salinity is a serious threat to agricultural production. Potato (Solanum tuberosum) is an important food crop characterised for having low to moderate salinity tolerance. Tissue cultures may be relevant to improve salt tolerance in potato through selection of salt-tolerant cell lines and subsequent regeneration of plants. In this work, the authors used the random amplified polymorphic DNA (RAPD) markers to investigate the occurrence of genetic polymorphism in a potato calli line tolerant to 150 mM NaCI. Out of 40 primers screened, eight generated polymorphic patterns that distinguished salt-tolerant line from the control. Although the macroscopic appearance was similar in both lines, ultrastructural study revealed alterations in salt-grown cells. These showed that plastids less differentiated with a lower number of grana had more and larger starch grains than control cells. In conclusion, RAPD analysis revealed that NaCl-adapted line is a somaclonal variant and the ultrastructural study showed changes essentially at the plastids. 展开更多
关键词 Salt tolerance POTATO callus tissue polymorphism molecular marker RAPD markers ultrastructure.
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