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杀手的沉默:在一种饲养的小褐飞虱中发现雄性致死抑制。

Silence of the killers: discovery of male-killing suppression in a rearing strain of the small brown planthopper, .

机构信息

The United Graduate School of Agricultural Sciences, Kagoshima University, Kagoshima 890-0065, Japan.

Faculty of Agriculture, Saga University, Saga 840-8502, Japan.

出版信息

Proc Biol Sci. 2021 Jan 27;288(1943):20202125. doi: 10.1098/rspb.2020.2125. Epub 2021 Jan 20.

Abstract

According to evolutionary theory, sex ratio distortions caused by reproductive parasites such as and are predicted to be rapidly normalized by the emergence of host nuclear suppressors. However, such processes in the evolutionary arms race are difficult to observe because sex ratio biases will be promptly hidden and become superficially unrecognizable. The evolution of genetic suppressors has been reported in just two insect species so far. In the small brown planthopper, , female-biases caused by , which is a 'late' male-killer, have been found in some populations. During the continuous rearing of , we noted that a rearing strain had a 1 : 1 sex ratio even though it harboured . Through introgression crossing experiments with a strain lacking suppressors, we revealed that the strain had the zygotic male-killing suppressor acting as a dominant trait. The male-killing phenotype was hidden by the suppressor even though retained its male-killing ability. This is the first study to demonstrate the existence of a late male-killing suppressor and its mode of inheritance. Our results, together with those of previous studies, suggest that the inheritance modes of male-killing suppressors are similar regardless of insect order or early or late male killing.

摘要

根据进化理论,生殖寄生虫(如 和 )引起的性别比例扭曲预计会被宿主核抑制因子的出现迅速纠正。然而,这种进化军备竞赛中的过程很难观察到,因为性别比例的偏差会被立即隐藏起来,变得表面上难以识别。到目前为止,这种遗传抑制因子的进化仅在两种昆虫物种中被报道过。在小褐飞虱中,发现了一种“晚期”雄性杀伤因子 引起的雌性偏多现象,这种雄性杀伤因子存在于一些种群中。在连续饲养 的过程中,我们注意到一个饲养种群的性别比例为 1:1,尽管它携带 。通过与缺乏抑制因子的种群进行杂交实验,我们揭示了该种群具有作为显性特征的合子雄性杀伤抑制因子。尽管 保留了雄性杀伤能力,但抑制因子使其雄性杀伤表型被隐藏起来。这是首次证明存在晚期雄性杀伤抑制因子及其遗传模式的研究。我们的研究结果与以前的研究结果一起表明,雄性杀伤抑制因子的遗传模式无论在昆虫纲还是早期或晚期雄性杀伤中都是相似的。

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