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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Heterotaxy in Caenorhabditis: widespread natural variation in left-right arrangement of the major organs
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Heterotaxy in Caenorhabditis: widespread natural variation in left-right arrangement of the major organs

机译:秀丽隐杆线虫病:主要器官左右排列的广泛自然变异

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摘要

Although the arrangement of internal organs in mostmetazoans is profoundly left-right (L/R) asymmetric with a predominant handedness, rare individuals show full (mirror-symmetric) or partial (heterotaxy) reversals. While the nematode Caenorhabditis elegans is known for its highly determinate development, including stereotyped L/R organ handedness, we found that L/R asymmetry of the major organs, the gut and gonad, varies among natural isolates of the species in both males and hermaphrodites. In hermaphrodites, heterotaxy can involve one or both bilaterally asymmetric gonad arms. Male heterotaxy is probably not attributable to relaxed selection in this hermaphroditic species, as it is also seen in gonochoristic Caenorhabditis species. Heterotaxy increases in many isolates at elevated temperature, with one showing a pregastrulation temperature-sensitive period, suggesting a very early embryonic or germline effect on this much later developmental outcome. A genome-wide association study of 100 isolates showed that male heterotaxy is associated with three genomic regions. Analysis of recombinant inbred lines suggests that a small number of loci are responsible for the observed variation. These findings reveal that heterotaxy is a widely varying quantitative trait in an animal with an otherwise highly stereotyped anatomy, demonstrating unexpected plasticity in an L/R arrangement of the major organs even in a simple animal.
机译:尽管大多数metazoans中的内脏器官排列极为左右不对称(L / R),且具有明显的惯用性,但罕见的个体显示出完全(镜像对称)或部分(异位)反转。虽然线虫秀丽隐杆线虫以高度确定的发育而著称,包括定型的L / R器官的惯用性,但我们发现主要器官(肠道和性腺)的L / R不对称性在雄性和雌雄同体物种的自然分离物中有所不同。 。在雌雄同体的植物中,异型性可涉及一个或两个双侧不对称性腺臂。男性异型性可能不归因于该雌雄同体物种中的随意选择,正如在性腺变种的秀丽隐杆线虫物种中也看到的那样。在升高的温度下,许多分离株的异源菌增多,其中一个分离株显示出妊娠前对温度敏感的时期,这表明很早的胚胎或种系对这一远较晚的发育结果产生影响。对100个分离株的全基因组关联研究表明,雄性异型与三个基因组区域相关。重组自交系的分析表明,少数基因座负责观察到的变异。这些发现表明,在具有高度定型的解剖结构的动物中,异型异位是广泛变化的数量特征,即使在简单的动物中,也显示出主要器官的L / R排列具有意想不到的可塑性。

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