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Convergent evolution of saccate body shapes in nematodes through distinct developmental mechanisms

机译:通过不同的发育机制线虫的体形趋同进化

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摘要

BackgroundThe vast majority of nematode species have vermiform (worm-shaped) body plans throughout post-embryonic development. However, atypical body shapes have evolved multiple times. The plant-parasitic Tylenchomorpha nematode Heterodera glycines hatches as a vermiform infective juvenile. Following infection and the establishment of a feeding site, H. glycines grows disproportionately greater in width than length, developing into a saccate adult. Body size in Caenorhabditis elegans was previously shown to correlate with post-embryonic divisions of laterally positioned stem cell-like ‘seam’ cells and endoreduplication of seam cell epidermal daughters. To test if a similar mechanism produces the unusual body shape of saccate parasitic nematodes, we compared seam cell development and epidermal ploidy levels of H. glycines to C. elegans. To study the evolution of body shape development, we examined seam cell development of four additional Tylenchomorpha species with vermiform or saccate body shapes.
机译:背景技术在整个胚胎后发育过程中,绝大多数线虫物种具有蠕虫状(蠕虫状)的身体计划。然而,非典型的身体形状已经进化了多次。植物寄生的线虫线虫异形藻甘氨酸孵化为蠕形感染的幼体。感染并建立饲养场所后,甘氨酸杆菌的宽度比长度成比例地增长,长成成虫。先前显示,秀丽隐杆线虫的体型与侧向定位的干细胞样“接缝”细胞的胚后分裂和接缝细胞表皮女儿的背核复制有关。为了测试类似的机制是否产生不规则的寄生线虫体形,我们比较了线虫细胞的发育和甘氨酸线虫与线虫的表皮倍性水平。为了研究体形发育的演变,我们检查了另外四种具有蠕虫形或双体形的Tylenchomorpha物种的接缝细胞发育。

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