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鉴定加州新小绥螨在猎物胁迫下的潜在性别决定基因及功能分析

Identification of potential sex determination genes and functional analyses in Neoseiulus californicus under prey stress.

机构信息

Institute of Entomology, Guizhou University, Guizhou Provincial Key Laboratory for Agricultural Pest Management of the Mountainous Region, the Scientific Observing and Experimental Station of Crop Pest in Guiyang, Ministry of Agriculture and Rural Affirs, the People's Republic of China, Guiyang, China.

出版信息

Pest Manag Sci. 2022 Nov;78(11):5024-5040. doi: 10.1002/ps.7128. Epub 2022 Sep 3.

Abstract

BACKGROUND

Phytoseiid mites are important natural enemies of spider mites. Sex-determination mechanism are important basic scientific issues in the reproduction and evolution of predatory mites. Clarifying sex-determination mechanism may provide reference for exploring genetic approach to have the phytoseiid mites produce more female offspring, which could improve their effectiveness as a biological control agent.

RESULTS

We used transcriptome sequencing to identify and characterize 20 putative sex-determination genes in the phytoseiid mite Neoseiulus californicus, a species with uncommon pseudo-arrhenotoky, including doublesex-like (dsx1-like), transformer-2 (tra-2), intersex (ix), and fruitless-like (BTB2). A significant negative correlation was found between prey stress and offspring sex ratio. But the most genes identified showed no difference in expression between the groups with lowest and highest female offspring ratios. The hatching rate and sex ratio of female offspring were reduced when the ix gene was silenced, and the oviposition days and fecundity were reduced when the BTB2 gene was silenced. The fecundity was reduced when the tra2 gene was silenced and the snf gene is essential for oviposition in female. There was no effect on reproduction and female sex determination when silencing the dsx1-like and dsx2-like gene.

CONCLUSION

The genes BTB2, tra2 and snf are involved in oviposition, and ix may be involved in female sex determination and egg formation in Neoseiulus californicus. The results are conductive to further understanding molecular regulatory mechanism of sex determination in predatory mites and may provide a reference for better use of this predatory by producing more females. © 2022 Society of Chemical Industry.

摘要

背景

植绥螨是重要的捕食性天敌,其性别决定机制是捕食螨生殖和进化的重要基础生物学问题。阐明其性别决定机制,可为探索通过遗传手段使植绥螨产生更多雌后代,提高其作为生物防治因子的效能提供参考。

结果

利用转录组测序技术,在具有罕见的假孤雌生殖型的加州新小绥螨中鉴定和表征了 20 个潜在的性别决定基因,包括 doublesex-like(dsx1-like)、transformer-2(tra-2)、intersex(ix)和 fruitless-like(BTB2)。发现猎物胁迫与后代性别比例呈显著负相关。但是,大多数鉴定的基因在最低和最高雌后代比例组之间的表达没有差异。当 ix 基因沉默时,孵化率和雌后代的性别比例降低,当 BTB2 基因沉默时,产卵天数和繁殖力降低,当 tra2 基因沉默时,繁殖力降低,snf 基因对雌虫产卵是必需的。沉默 dsx1-like 和 dsx2-like 基因对繁殖和雌性性别决定没有影响。

结论

BTB2、tra2 和 snf 基因参与产卵,ix 可能参与加州新小绥螨的雌性性别决定和卵的形成。研究结果有助于进一步了解捕食性螨性别决定的分子调控机制,可为更好地利用这种捕食螨产生更多雌后代提供参考。 © 2022 英国化学学会。

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