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Can CRISPR gene drive work in pest and beneficial haplodiploid species?

机译:CRISPR基因驱动器在害虫和有益的包发倍体种类上工作吗?

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摘要

Gene drives based on CRISPR/Cas9 have the potential to reduce the enormous harm inflicted by crop pests and insect vectors of human disease, as well as to bolster valued species. In contrast with extensive empirical and theoretical studies in diploid organisms, little is known about CRISPR gene drive in haplodiploids, despite their immense global impacts as pollinators, pests, natural enemies of pests, and invasive species in native habitats. Here, we analyze mathematical models demonstrating that, in principle, CRISPR homing gene drive can work in haplodiploids, as well as at sex‐linked loci in diploids. However, relative to diploids, conditions favoring the spread of alleles deleterious to haplodiploid pests by CRISPR gene drive are narrower, the spread is slower, and resistance to the drive evolves faster. By contrast, the spread of alleles that impose little fitness cost or boost fitness was not greatly hindered in haplodiploids relative to diploids. Therefore, altering traits to minimize damage caused by harmful haplodiploids, such as interfering with transmission of plant pathogens, may be more likely to succeed than control efforts based on introducing traits that reduce pest fitness. Enhancing fitness of beneficial haplodiploids with CRISPR gene drive is also promising.
机译:基于CRISPR / CAS9的基因驱动有可能降低人类疾病和昆虫载体的巨大伤害,以及枕垫物种。相反,与二倍体生物中的广泛实证和理论研究相比,尽管它们的巨大的全球影响为单板,害虫,害虫的自然敌人以及本地栖息地的侵袭性,但仍然熟知的Haplodiploids中的Crispr Gene驱动。在这里,我们分析了表明,原则上,Crispr归巢基因驱动可以在单层和性交联系地点中工作。然而,相对于二倍体,有利于克切者基因驱动的等位基因对Haplodiploid害虫的疾病的疾病较窄,扩散较慢,并且对驱动器的抵抗力更快地演变。相反,施加很少健康成本或增强适合度的等位基因的扩散在相对于二倍体中的Haplodiploids中没有大量阻碍。因此,改变性状以最小化由有害的Haplodiploids造成的损害,例如干扰植物病原体的透射,这可能比基于引入减少害虫健康的性状的控制力更容易成功。用CRISPR基因驱动增强有益的单级倍体的适应性也是有望的。

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