复合物1 PSST靶基因的突变赋予柑橘全爪螨的杀螨抗性和适应性代价。

IF 4.4 1区 生物学 Q1 BIOLOGY
Deng Pan, Menghao Xia, Chuanzhen Li, Xunyan Liu, Lewis Archdeacon, Andrias O O'Reilly, Guorui Yuan, Jinjun Wang, Wei Dou
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引用次数: 0

摘要

背景:农药抗性是威胁种植业的一个严重问题。嘧螨虫是一种线粒体电子传递复合体I (mei - is)的杀螨抑制剂,在世界范围内广泛使用后,已报道在叶螨中对嘧螨虫产生了主要抗性。了解害虫对嘧螨虫的抗性机制对害虫抗药性的可持续管理具有重要意义。结果:柑桔抗嘧螨病遗传为不完全隐性遗传,由多基因控制,通过正交和回交实验确定。采用散装分离分析方法鉴定了与嘧螨耐药相关的基因位点。随后,通过单螨基因分型,发现两个pst亚基突变H107R和先前未发现的V103I突变与不同种群或菌株的嘧螨抗性呈正相关。生物试验进一步表明,H107R对柑橘纯合子菌株具有中等抗性,而V103I与H107R的组合对柑橘纯合子菌株具有非常高的抗性。通过引入野生型、单突变或双突变的柑橘PSST亚基,在转基因果蝇中也证实了这些对嘧螨抗性的贡献。此外,通过生命表分析和行为测量来评估与抗性发展相关的健身成本。伴随着ATP水平和复合体I活性的降低,观察到适应性成本是由于PSST突变导致的繁殖力降低和流动性降低。结论:我们的研究结果提供了直接证据,证明PSST突变赋予了嘧螨抗性的进化,但同时由于复合体i的功能缺陷导致了适应度成本。这些数据为农业生产中的可持续抗性管理提供了理论见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mutations of the complex I PSST target gene confers acaricide resistance and a fitness cost in Panonychus citri.

Background: Pesticide resistance is a serious problem that threatens crop industries. Major resistance towards pyridaben, an acaricidal inhibitor of mitochondrial electron transport complex I (METI-Is), has been reported in tetranychids following its extensive use worldwide. Understanding mechanisms of pyridaben resistance is crucial for sustainable resistance management.

Results: The inheritance of pyridaben resistance was incompletely recessive and controlled by multiple genes in P. citri, which was determined by reciprocal crosses and backcross experiments. Bulked segregant analysis was performed to identify gene loci underlying pyridaben resistance. Subsequently, the two PSST-subunit mutations H107R and the previously undiscovered V103I mutation were positively correlated with pyridaben resistance in different populations or strains by single mite genotyping. The bioassay further showed that H107R contributed to moderate resistance, while V103I in combination with H107R was responsible for a very high level of resistance in homozygous P. citri strains. These contributions to pyridaben resistance were also verified in transgenic Drosophila through the introduction of the wildtype, single- or double-mutated P. citri PSST subunit. In addition, life-table analysis and behavioral measures were conducted to assess the fitness cost associated with resistance development. Accompanied by reduced ATP levels and complex I activity, a fitness cost was observed as reduced fecundity and lower mobility due to PSST mutations.

Conclusions: Our findings provide direct evidence that PSST mutations conferred the evolution of pyridaben resistance but simultaneously led to a fitness cost due to functional defects in complex I. These data provide theoretical insights into sustainable resistance management in agricultural production.

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来源期刊
BMC Biology
BMC Biology 生物-生物学
CiteScore
7.80
自引率
1.90%
发文量
260
审稿时长
3 months
期刊介绍: BMC Biology is a broad scope journal covering all areas of biology. Our content includes research articles, new methods and tools. BMC Biology also publishes reviews, Q&A, and commentaries.
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