鳞翅目昆虫的双精子:害虫管理的生物目标

R. Seth, P. Yadav, S. Reynolds
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引用次数: 0

摘要

鳞翅目具有两种不同的精子,规则核精子(正核)和无核精子(非核)。这两种类型的精子都被转移到女性体内,是男性生育所必需的。无核精子扮演着“助手”的角色,帮助真核精子接近未受精卵,并影响交配的雌性飞蛾的生殖行为。精子的发育和行为是鳞翅目害虫环境安全、目标特异性生物控制策略的有希望的目标。精子二态性为操纵精子的功能和动力学提供了一个广阔的窗口,从而损害了害虫物种的生殖适应性。干扰精子的机会不仅存在于精子还在雄性体内的时候(交配前),也存在于雌性体内(交配后,精子还在雄性提供的精子包囊中,或储存在雌性精子包囊中)。生物分子技术,如RNAi、miRNAs和CRISPR-Cas9,是通过直接或间接参与精子产生、功能或持久性的基因来实现鳞翅目害虫控制的有前途的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dichotomous sperm in Lepidopteran insects: a biorational target for pest management
Lepidoptera are unusual in possessing two distinct kinds of sperm, regular nucleated (eupyrene) sperm and anucleate (apyrene) sperm (‘parasperm’). Sperm of both types are transferred to the female and are required for male fertility. Apyrene sperm play ‘helper’ roles, assisting eupyrene sperm to gain access to unfertilized eggs and influencing the reproductive behavior of mated female moths. Sperm development and behavior are promising targets for environmentally safer, target-specific biorational control strategies in lepidopteran pest insects. Sperm dimorphism provides a wide window in which to manipulate sperm functionality and dynamics, thereby impairing the reproductive fitness of pest species. Opportunities to interfere with spermatozoa are available not only while sperm are still in the male (before copulation), but also in the female (after copulation, when sperm are still in the male-provided spermatophore, or during storage in the female’s spermatheca). Biomolecular technologies like RNAi, miRNAs and CRISPR-Cas9 are promising strategies to achieve lepidopteran pest control by targeting genes directly or indirectly involved in dichotomous sperm production, function, or persistence.
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