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将合成的性别比例偏斜转基因导入不同遗传背景的按蚊属。

Introgression of a synthetic sex ratio distortion transgene into different genetic backgrounds of Anopheles coluzzii.

机构信息

Research Institute on Terrestrial Ecosystems, National Research Council, Terni, Italy.

Genetics and Ecology Research Centre, Polo d'Innovazione di Genomica, Genetica e Biologia, Terni, Italy.

出版信息

Insect Mol Biol. 2023 Feb;32(1):56-68. doi: 10.1111/imb.12813. Epub 2022 Oct 31.

Abstract

The development of genetically modified mosquitoes (GMM) and their subsequent field release offers innovative approaches for vector control of malaria. A non-gene drive self-limiting male-bias Ag(PMB)1 strain has been developed in a 47-year-old laboratory G3 strain of Anopheles gambiae s.l. When Ag(PMB)1 males are crossed to wild-type females, expression of the endonuclease I-PpoI during spermatogenesis causes the meiotic cleavage of the X chromosome in sperm cells, leading to fertile offspring with a 95% male bias. However, World Health Organization states that the functionality of the transgene could differ when inserted in different genetic backgrounds of Anopheles coluzzii which is currently a predominant species in several West-African countries and thus a likely recipient for a potential release of self-limiting GMMs. In this study, we introgressed the transgene from the donor Ag(PMB)1 by six serial backcrosses into two recipient colonies of An. coluzzii that had been isolated in Mali and Burkina Faso. Scans of informative Single Nucleotide Polymorphism (SNP) markers and whole-genome sequencing analysis revealed a nearly complete introgression of chromosomes 3 and X, but a remarkable genomic divergence in a large region of chromosome 2 between the later backcrossed (BC6) transgenic offspring and the recipient paternal strains. These findings suggested to extend the backcrossing breeding strategy beyond BC6 generation and increasing the introgression efficiency of critical regions that have ecological and epidemiological implications through the targeted selection of specific markers. Disregarding differential introgression efficiency, we concluded that the phenotype of the sex ratio distorter is stable in the BC6 introgressed An. coluzzii strains.

摘要

经改良的基因蚊子(GMM)的发展及其随后的田间释放为疟疾的病媒控制提供了创新方法。在 47 岁的实验室 G3 品系冈比亚按蚊(Anopheles gambiae s.l.)中,开发了一种非基因驱动自限性雄性偏倚 Ag(PMB)1 菌株。当 Ag(PMB)1 雄性与野生型雌性交配时,在精子发生过程中表达内切酶 I-PpoI 会导致 X 染色体在精子细胞中的减数分裂切割,从而产生 95%雄性偏倚的可育后代。然而,世界卫生组织表示,当插入冈比亚按蚊不同的遗传背景时,转基因的功能可能会有所不同,而冈比亚按蚊目前是几个西非国家的主要物种,因此很可能成为自限性 GMM 潜在释放的接受者。在这项研究中,我们通过六次回交将转基因从供体 Ag(PMB)1 导入马里和布基纳法索分离的两个冈比亚按蚊受体品系中。信息性单核苷酸多态性(SNP)标记的扫描和全基因组测序分析显示,染色体 3 和 X 几乎完全被导入,但在后期回交(BC6)转基因后代与受体父本品系之间的染色体 2 上的一个大区域存在显著的基因组差异。这些发现表明,需要通过有针对性地选择特定标记来扩展回交育种策略,以提高具有生态和流行病学意义的关键区域的导入效率。忽略不同的导入效率,我们得出结论,BC6 导入的冈比亚按蚊品系中性别比例干扰因子的表型是稳定的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ae2/10092091/55320a73bf5f/IMB-32-56-g001.jpg

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