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Haplodiploidy as an outcome of coevolution between male-killing cytoplasmic elements and their hosts

机译:单倍体是雄性杀伤细胞质元件与其宿主之间共同进化的结果

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Haplodiploidy (encompassing both arrhenotoky and paternal genome elimination) could have originated from coevolution between male-killing endosymbiotic bacteria and their hosts. In insects, haplodiploidy tends to arise in lineages that rely on maternally transmitted bacteria for nutrition and that have gregarious broods in which competition between siblings may occur. When siblings compete, there is strong selection on maternally transmitted elements to kill males. I consider a hypothetical bacterial phenotype that renders male zygotes effectively haploid by preventing chromosome decondensation in male-determining sperm nuclei. By causing high male mortality, such a phenotype can be advantageous to the bacterial lineage. By eliminating paternal genes, it can also be advantageous to the host female. A simple model shows that the host female will benefit under a wide range of values for the efficiency of resource re-allocation, the efficiency of transmission, and the viability of haploid males. This hypothesis helps to explain the ecological correlates of the origins of haplodiploidy, as well as such otherwise puzzling phenomena as obligate cannibalism by male Micromalthus beetles, reversion to diploidy by aposymbiotic male stictococcid scale insects, and the bizarre genomic constitution of scale insect bacteriomes.
机译:单倍体性(包括根除和父本基因组消除)可能源于雄性杀死内共生细菌与其宿主之间的共同进化。在昆虫中,单倍体性倾向于出现在依靠母本传播的细菌来获取营养的血统中,并且具有群居群,其中兄弟姐妹之间可能发生竞争。当同胞竞争时,有很多选择通过母体传播来杀死雄性。我认为一种假设的细菌表型可以通过防止雄性决定精子核中的染色体解聚来使雄性合子有效地形成单倍体。通过引起较高的男性死亡率,这种表型对细菌谱系可能是有利的。通过消除父本基因,对寄主雌性也可能是有利的。一个简单的模型表明,宿主雌性将在资源重新分配的效率,传播的效率和单倍体雄性的生存力的广泛价值范围内受益。该假设有助于解释单倍体起源的生态相关性,以及其他令人费解的现象,例如雄性Micromalthus甲虫专心食人,由无共生的棘球虫规模的昆虫转化为二倍体,以及规模昆虫细菌的奇特的基因组构成。

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