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首页> 外文期刊>EvoDevo >Evolution of eumalacostracan development—new insights into loss and reacquisition of larval stages revealed by heterochrony analysis
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Evolution of eumalacostracan development—new insights into loss and reacquisition of larval stages revealed by heterochrony analysis

机译:真胚藻发育的演变-通过异时分析显示对幼虫阶段损失和重新获得的新见解

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Background Within Malacostraca (Crustacea), direct development and development through diverse forms of larvae are found. Recent investigations suggest that larva-related developmental features have undergone heterochronic evolution in Malacostraca. In the light of current phylogenetic hypotheses, the free-swimming nauplius larva was lost in the lineage leading to Malacostraca and evolved convergently in the malacostracan groups Dendrobranchiata and Euphausiacea. Here we reconstruct the evolutionary history of eumalacostracan (Malacostraca without Phyllocarida) development with regard to early appendage morphogenesis, muscle and central nervous system development, and determine the heterochronic transformations involved in changes of ontogenetic mode. Results Timing of 33 developmental events from the different tissues was analyzed for six eumalacostracan species (material for Euphausiacea was not available) and one outgroup, using a modified version of Parsimov-based genetic inference (PGi). Our results confirm previous suggestions that the event sequence of nauplius larva development is partly retained in embryogenesis of those species which do not develop such a larva. The ontogenetic mode involving a nauplius larva was likely replaced by direct development in the malacostracan stem lineage. Secondary evolution of the nauplius larva of Dendrobranchiata from this ancestral condition, involved only a very small number of heterochronies, despite the drastic change of life history. In the lineage leading to Peracarida, timing patterns of nauplius-related development were lost. Throughout eumalacostracan evolution, events related to epidermal and neural tissue development were clearly less affected by heterochrony than events related to muscle development. Conclusions Weak integration between mesodermal and ectodermal development may have allowed timing in muscle formation to be altered independently of ectodermal development. We conclude that heterochrony in muscle development played a crucial role in evolutionary loss and secondary evolution of a nauplius larva in Malacostraca.
机译:背景技术在马拉科斯特拉(甲壳纲)中,发现了直接发育和通过各种形式的幼虫进行发育。最近的研究表明,幼虫相关的发育特征已在马拉科斯特拉发生了异时进化。根据当前的系统发育假说,自由游动的无节幼体在通向疟原虫的血统中丢失,并在疟原虫组Dendrobranchiata和Euphausiacea中趋于一致地进化。在这里,我们就早期附属物的形态发生,肌肉和中枢神经系统的发育重建了eumalacostracan(没有毛囊纲的Malacostraca)发育的进化历史,并确定了涉及个体发育模式变化的异时性转化。结果使用基于Parsimov的遗传推论(PGi)的改进版本,分析了6种eumalacostracan物种(无法获得Euphausiacea的材料)和1种外群的来自不同组织的33个发育事件的时间。我们的结果证实了先前的建议,即不发育幼虫的那些物种的胚胎发生中部分保留了无节幼虫发育的事件序列。涉及无节幼体的个体发育模式可能被疟原虫茎谱系中的直接发育所取代。尽管生活史发生了巨大变化,但Dendrobranchiata无节幼体从这种祖先状态的继发性进化仅涉及极少数的异质性。在通向Peracarida的世系中,与幼体相关的发育的时序模式丢失了。在整个eumalacostracan进化过程中,与肌肉发育相关的事件相比,与表皮和神经组织发育相关的事件显然受异时性影响较小。结论中胚层和外胚层发育之间的弱整合可能使肌肉形成的时机独立于外胚层发育而改变。我们得出结论,异时性在肌肉发育中在马拉科斯特拉的无节幼体的进化损失和继发性进化中起着至关重要的作用。

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