Aneuploidy during development in facultative parthenogenetic Drosophila

IF 3.1 2区 生物学 Q2 ECOLOGY Heredity Pub Date : 2023-11-28 DOI:10.1038/s41437-023-00664-z
A. L. Sperling, D. M. Glover
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Abstract

From concatenated chromosomes to polyploidization, large-scale genome changes are known to occur in parthenogenetic animals. Here, we report mosaic aneuploidy in larval brains of facultatively parthenogenetic Drosophila. We identified a background of aneuploidy in D. mercatorum strains and found increased levels of aneuploidy in the larval brain tissue of animals arising parthenogenetically versus those arising from sexual reproduction. There is also intra-individual variation in germline-derived aneuploidy within the same strain. To determine if this is a general feature of facultative parthenogenesis in drosophilids, we compared sexually reproduced and parthenogenetic offspring from an engineered facultative parthenogenetic strain of D. melanogaster. In addition to germline-derived aneuploidy, this revealed somatic aneuploidy that increased by up to fourfold in parthenogens compared to sexually reproduced offspring. Therefore, the genetic combination identified in D. mercatorum that causes facultative parthenogenesis in D. melanogaster results in aneuploidy, which indicates that the loss of mitotic control resulting in parthenogenesis causes subsequent genome variation within the parthenogenetic offspring. Our findings challenge the assumption that parthenogenetic offspring are near genetic replicas of their mothers.

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兼性孤雌生殖果蝇发育过程中的非整倍性。
从染色体连接到多倍体化,已知在孤雌生殖动物中会发生大规模的基因组变化。在这里,我们报告了花叶非整倍体在兼性孤雌生殖果蝇的幼虫大脑。我们确定了mercatorum菌株的非整倍性背景,并发现孤雌繁殖的动物幼虫脑组织中的非整倍性水平高于有性繁殖的动物。在同一菌株中,种系衍生的非整倍性也存在个体内变异。为了确定这是否是果蝇兼性孤雌生殖的普遍特征,我们比较了一种经过改造的兼性孤雌生殖菌株的有性生殖后代和单性生殖后代。除了种系衍生的非整倍性外,这表明孤雌生殖的体细胞非整倍性与有性繁殖的后代相比增加了多达四倍。因此,在mercatorum中发现的导致黑尾龙身性兼性孤雌生殖的遗传组合导致非整倍性,这表明导致孤雌生殖的有丝分裂控制丧失导致随后在孤雌生殖后代中导致基因组变异。我们的研究结果挑战了孤雌生殖的后代几乎是母亲基因复制品的假设。
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来源期刊
Heredity
Heredity 生物-进化生物学
CiteScore
7.50
自引率
2.60%
发文量
84
审稿时长
4-8 weeks
期刊介绍: Heredity is the official journal of the Genetics Society. It covers a broad range of topics within the field of genetics and therefore papers must address conceptual or applied issues of interest to the journal''s wide readership
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