首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Colloquium Paper: From symmetry to asymmetry: Phylogenetic patterns of asymmetry variation in animals and their evolutionary significance
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Colloquium Paper: From symmetry to asymmetry: Phylogenetic patterns of asymmetry variation in animals and their evolutionary significance

机译:专题讨论会:从对称到不对称:系统发育模式 动物不对称变异的研究及其进化意义

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摘要

Phylogenetic analyses of asymmetry variation offer a powerful tool for exploring the interplay between ontogeny and evolution because (i) conspicuous asymmetries exist in many higher metazoans with widely varying modes of development, (ii) patterns of bilateral variation within species may identify genetically and environmentally triggered asymmetries, and (iii) asymmetries arising at different times during development may be more sensitive to internal cytoplasmic inhomogeneities compared to external environmental stimuli. Using four broadly comparable asymmetry states (symmetry, antisymmetry, dextral, and sinistral), and two stages at which asymmetry appears developmentally (larval and postlarval), I evaluated relations between ontogenetic and phylogenetic patterns of asymmetry variation. Among 140 inferred phylogenetic transitions between asymmetry states, recorded from 11 classes in five phyla, directional asymmetry (dextral or sinistral) evolved directly from symmetrical ancestors proportionally more frequently among larval asymmetries. In contrast, antisymmetry, either as an end state or as a transitional stage preceding directional asymmetry, was confined primarily to postlarval asymmetries. The ontogenetic origin of asymmetry thus significantly influences its subsequent evolution. Furthermore, because antisymmetry typically signals an environmentally triggered asymmetry, the phylogenetic transition from antisymmetry to directional asymmetry suggests that many cases of laterally fixed asymmetries evolved via genetic assimilation.
机译:不对称变异的系统进化分析为探讨个体发育和进化之间的相互作用提供了一个有力的工具,因为(i)许多高级后生动物中存在明显的不对称,且具有广泛的发育模式;(ii)物种内双边变异的模式可能是遗传和环境触发的与外部环境刺激相比,在发育过程中不同时间出现的不对称性和(iii)对内部细胞质的不均匀性更敏感。我使用了四个大致可比的不对称状态(对称,反对称,右旋和左弦),以及两个阶段出现不对称(幼虫和后幼虫),我评估了不对称变异的本体和系统发育模式之间的关系。从五个门的11个类别中记录的140个不对称状态之间的系统发育过渡中,定向不对称(右旋或左旋)直接从对称祖先按比例更频繁地从幼虫不对称中进化而来。相反,反对称性既可以作为最终状态,也可以作为 方向不对称之前的过渡阶段受到限制 主要针对幼虫后不对称。的本体起源 因此,非对称性极大地影响了其随后的演变。 此外,由于反对称通常表示环境 触发不对称,系统发育从反对称过渡到 方向不对称表明,许多情况下横向固定 不对称性是通过遗传同化演变而来的。

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