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Large-scale diversification without genetic isolation in nematode symbionts of figs

机译:无花果线虫共生体中没有遗传隔离的大规模多样化

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Diversification is commonly understood to be the divergence of phenotypes accompanying that of lineages. In contrast, alternative phenotypes arising from a single genotype are almost exclusively limited to dimorphism in nature. We report a remarkable case of macroevolutionary-scale diversification without genetic divergence. Upon colonizing the island-like microecosystem of individual figs, symbiotic nematodes of the genus Pristionchus accumulated a polyphenism with up to five discrete adult morphotypes per species. By integrating laboratory and field experiments with extensive genotyping of individuals, including the analysis of 49 genomes from a single species, we show that rapid filling of potential ecological niches is possible without diversifying selection on genotypes. This uncoupling of morphological diversification and speciation in fig-associated nematodes has resulted from a remarkable expansion of discontinuous developmental plasticity.
机译:多样化通常被理解为伴随着血统的表型的差异。相反,由单一基因型产生的替代表型几乎只限于自然中的二态性。我们报道了无遗传差异的宏观进化规模多样化的显着情况。在定居无花果的岛状微生态系统后,Pristionchus属的共生线虫积累了一种多态性,每个物种最多有五种离散的成人形态型。通过将实验室和野外实验与广泛的个体基因分型相结合,包括对单个物种49个基因组的分析,我们表明,在不对基因型进行多样化选择的情况下,可能快速填充潜在的生态位。与无花果相关的线虫的形态多样性和形态的这种解耦是由于不连续的发育可塑性的显着扩展所致。

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