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豇豆轻斑驳病毒CPMMV感染菜豆对B型烟粉虱寄主选择和生物学特性的影响 被引量:1
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作者 杨春晓 YUAN Ling +1 位作者 zhou xu-guo 刘勇 《环境昆虫学报》 CSCD 北大核心 2022年第4期1019-1026,共8页
豇豆轻斑驳病毒(Cowpea mild mottle virus,CPMMV)的流行与其媒介昆虫烟粉虱Bemisia tabaci密切相关,但CPMMV感染寄主植物对B型烟粉虱寄主选择行为和生物学特性的影响尚不清楚。本研究探究了1)CPMMV感染菜豆Phaseolus vulgaris不同时间... 豇豆轻斑驳病毒(Cowpea mild mottle virus,CPMMV)的流行与其媒介昆虫烟粉虱Bemisia tabaci密切相关,但CPMMV感染寄主植物对B型烟粉虱寄主选择行为和生物学特性的影响尚不清楚。本研究探究了1)CPMMV感染菜豆Phaseolus vulgaris不同时间对B型烟粉虱寄主选择和产卵偏好性的影响;2)CPMMV感染菜豆对B型烟粉虱生物学特性的影响。结果发现:1)相较于健康菜豆,摩擦接种CPMMV后1周,B型烟粉虱却偏好在CPMMV感染的植株上停留和产卵;而摩擦接种后4周,B型烟粉虱却偏好在健康的植株上停留和产卵;2)无论是在摩擦接种后1周和4周的CPMMV感染植株上,B型烟粉虱在健康和CPMMV感染植株上的产卵量和存活率差异不明显。可见,CPMMV感染菜豆对于B型烟粉虱的寄主选择偏好性具有时间效应,而CPMMV感染菜豆对于B型烟粉虱的生物学特性没有显著影响。 展开更多
关键词 豇豆轻斑驳病毒 B型烟粉虱 取食行为 适合度
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CRISPR/Cas9-based functional characterization of Px ABCB1 reveals its roles in the resistance of Plutella xylostella(L.)to Cry1Ac,abamectin and emamectin benzoate
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作者 OUYANG Chun-zheng YE Fan +5 位作者 WU Qing-jun WANG Shao-li Neil CRICKMORE zhou xu-guo GUO Zhao-jiang ZHANG You-jun 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2023年第10期3090-3102,共13页
The identification of functional midgut receptors for pesticidal proteins produced by Bacillus thuringiensis(Bt)is critical for deciphering the molecular mechanism of Bt resistance in insects.Reduced expression of the... The identification of functional midgut receptors for pesticidal proteins produced by Bacillus thuringiensis(Bt)is critical for deciphering the molecular mechanism of Bt resistance in insects.Reduced expression of the PxABCB1 gene was previously found to be associated with Cry1Ac resistance in the diamondback moth,Plutella xylostella(L.).To directly validate the potential receptor role of PxABCB1 and its contribution to Bt Cry1Ac toxicity in P.xylostella,we used CRISPR/Cas9 to generate a homozygous knockout ABCB1KO strain with a 5-bp deletion in exon 3 of its gene.The ABCB1KO strain exhibited a 63-fold resistance to Cry1Ac toxin compared to the parental DBM1Ac-S strain.Intriguingly,the ABCB1KO strain also exhibited significant increases in susceptibility to abamectin and emamectin benzoate.No changes in susceptibility to various other Bt Cry proteins or synthetic insecticides were observed.The knockout strain exhibited no significant fitness costs.Overall,our study indicates that PxABCB1 can protect the insect against avermectin insecticides on one hand,while on the other hand it facilitates the toxic effect of the Bt Cry1Ac toxin.The results of this study will help to inform integrated pest management approaches against this destructive pest. 展开更多
关键词 Bacillus thuringiensis Plutella xylostella CRISPR/Cas9 ABCB1 bioinsecticide resistance
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