β-ubulin 在姬蛙精子发生过程中的功能

IF 2.3 2区 农林科学 Q1 ENTOMOLOGY
Chan C. Heu, Kevin P. Le, Roni J. Gross, Inana X. Schutze, Dannialle M. LeRoy, Daniel Langhorst, Colin S. Brent, Jeffrey A. Fabrick, J. Joe Hull
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引用次数: 0

摘要

Lygus hesperus Knight 是北美西部农作物的重要害虫,田间管理严重依赖于化学杀虫剂的使用。由于对这些杀虫剂产生抗药性,因此需要有效且对环境无害的害虫管理策略。传统的昆虫不育技术(SIT)已被成功用于管理或根除某些害虫,但这涉及到将随机突变的辐照昆虫引入田间种群。新的基因驱动昆虫不育技术是一种更安全的替代方法,它能引起固定突变,从而操纵目标害虫的单个基因,产生不育个体进行释放。在这里,我们鉴定了七种赫氏蝇的β-微管蛋白编码基因,结果表明Lhβtub2对雄性精子的产生和生育能力至关重要。Lhβtub2主要在雄性睾丸中表达,通过RNA干扰或基因编辑靶向该基因会导致雄性不育。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

β-tubulin functions in spermatogenesis in Lygus hesperus Knight

β-tubulin functions in spermatogenesis in Lygus hesperus Knight

Lygus hesperus Knight is an important insect pest of crops across western North America, with field management heavily reliant on the use of chemical insecticides. Because of the evolution of resistance to these insecticides, effective and environmentally benign pest management strategies are needed. Traditional sterile insect technique (SIT) has been successfully employed to manage or eradicate some insect pests but involves introducing irradiated insects with random mutations into field populations. New genetically-driven SIT techniques are a safer alternative, causing fixed mutations that manipulate individual genes in target pests to produce sterile individuals for release. Here, we identified seven β-tubulin coding genes from L. hesperus and show that Lhβtub2 is critical in male sperm production and fertility. Lhβtub2 is expressed primarily in the male testes and targeting of this gene by RNA interference or gene editing leads to male sterility.

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来源期刊
Journal of insect physiology
Journal of insect physiology 生物-昆虫学
CiteScore
4.50
自引率
4.50%
发文量
77
审稿时长
57 days
期刊介绍: All aspects of insect physiology are published in this journal which will also accept papers on the physiology of other arthropods, if the referees consider the work to be of general interest. The coverage includes endocrinology (in relation to moulting, reproduction and metabolism), pheromones, neurobiology (cellular, integrative and developmental), physiological pharmacology, nutrition (food selection, digestion and absorption), homeostasis, excretion, reproduction and behaviour. Papers covering functional genomics and molecular approaches to physiological problems will also be included. Communications on structure and applied entomology can be published if the subject matter has an explicit bearing on the physiology of arthropods. Review articles and novel method papers are also welcomed.
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