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昆虫抗药性机理:行为和生理改变及解毒代谢增强(英文) 被引量:27
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作者 刘喃喃 朱芳 +2 位作者 徐强 julia w.pridgeon 高希武 《昆虫学报》 CAS CSCD 北大核心 2006年第4期671-679,共9页
杀虫剂抗性是指“生物的一个品系发展了对该生物正常种群中大多数个体具有致死作用剂量的杀虫药剂的能力”。行为改变、生理学上的变化或代谢解毒等抗性机制能够降低毒物到达靶标的有效剂量。行为抗性是指减少昆虫与毒物接触或使昆虫能... 杀虫剂抗性是指“生物的一个品系发展了对该生物正常种群中大多数个体具有致死作用剂量的杀虫药剂的能力”。行为改变、生理学上的变化或代谢解毒等抗性机制能够降低毒物到达靶标的有效剂量。行为抗性是指减少昆虫与毒物接触或使昆虫能够存活于对大多数对正常个体致死(或有害)的环境中的任何行为。生理学改变的机制包括杀虫剂对表皮的穿透性降低、增加对药剂阻隔(sequestration)或储存和加速杀虫剂的排泄。细胞色素P450、水解酶和谷胱甘肽S转移酶是杀虫药剂代谢解毒的主要3大酶系。细胞色素P450是一个超基因家族,是生物体内对外源性和内源性化合物解毒代谢或活化最重要的酶系。在许多害虫中发现P450介导的解毒代谢增加导致了对杀虫药剂抗性的增加。谷胱甘肽S转移酶是可溶性的二聚体蛋白,与代谢解毒、大量内源性和外源性化合物的排泄有关,许多昆虫中证明其抗药性与该酶活性增加有关。水解酶实际上是一组异源的酶类,其对抗药性的作用包括通过基因扩增增加酶量,作为结合蛋白隔离杀虫药剂或通过增加酶的活性加强对药剂的水解作用。 展开更多
关键词 杀虫剂抗药性 行为改变 生理变化 解毒代谢 谷胱甘肽S-转移酶 细胞色素P450
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Edwardsiella tarda and Aeromonas hydrophila isolated from diseased Southern flounder(Paralichthys lethostigma)are virulent to channel catfish and Nile tilapia
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作者 julia w.pridgeon Phillip H.Klesius +2 位作者 Gregory A.Lewbart Harry V.Daniels Megan Jacob 《Journal of Coastal Life Medicine》 2014年第5期337-343,共7页
Objective:To identify bacteria isolated from diseased Southern flounder and determine whether they are virulent to channel catfish and Nile tilapia.Methods:Gram-negative bacteria isolates were recovered from five tiss... Objective:To identify bacteria isolated from diseased Southern flounder and determine whether they are virulent to channel catfish and Nile tilapia.Methods:Gram-negative bacteria isolates were recovered from five tissues of diseased Southern flounder(Paralichthys lethostigma).The isolates were subjected to biochemical and molecular identification followed by virulence study in fish.Results:Based on biochemical analysis,the 25 isolates were found to share homologies with either Edwardsiella tarda(E.tarda)or Aeromonas hydrophila(A.hydrophila).Based on sequencing results of partial 16S rRNA gene,15 isolates shared 100%identities with the 16S rRNA sequence of previously identified E.tarda strain TX1,whereas the other 10 isolates shared 100%identities with the 16S rRNA sequence of previously identified A.hydrophila strain An4.When healthy fish were exposed to flounder isolate by intracoelomic injection,the LD50 values of flounder isolate E.tarda to channel catfish or Nile tilapia[(10±2)g]were 6.1×10^(4)and 1.1×10^(7)CFU/fish,respectively,whereas that of flounder isolate A.hydrophila to channel catfish and Nile tilapia were 1.4×10^(7)and 5.6×10^(7)CFU/fish,respectively.Conclusions:This is the first report that E.tarda and A.hydrophila isolated from diseased Southern flounder are virulent to catfish and tilapia. 展开更多
关键词 Edwardsiella tarda Aeromonas hydrophila Southern flounder PATHOGEN VIRULENCE
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