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以腹足纲软体动物茗荷为模型研究担轮幼虫的体模式形成。

The gastropod Lottia peitaihoensis as a model to study the body patterning of trochophore larvae.

机构信息

CAS and Shandong Province Key Laboratory of Experimental Marine Biology, Institute of Oceanology, Chinese Academy of Sciences, Qingdao, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

Evol Dev. 2024 Jul;26(4):e12456. doi: 10.1111/ede.12456. Epub 2023 Sep 4.

Abstract

The body patterning of trochophore larvae is important for understanding spiralian evolution and the origin of the bilateral body plan. However, considerable variations are observed among spiralian lineages, which have adopted varied strategies to develop trochophore larvae or even omit a trochophore stage. Some spiralians, such as patellogastropod mollusks, are suggested to exhibit ancestral traits by producing equal-cleaving fertilized eggs and possessing "typical" trochophore larvae. In recent years, we developed a potential model system using the patellogastropod Lottia peitaihoensis (= Lottia goshimai). Here, we introduce how the species were selected and establish sources and techniques, including gene knockdown, ectopic gene expression, and genome editing. Investigations on this species reveal essential aspects of trochophore body patterning, including organizer signaling, molecular and cellular processes connecting the various developmental functions of the organizer, the specification and behaviors of the endomesoderm and ectomesoderm, and the characteristic dorsoventral decoupling of Hox expression. These findings enrich the knowledge of trochophore body patterning and have important implications regarding the evolution of spiralians as well as bilateral body plans.

摘要

担轮幼虫的体模式对理解螺旋动物的进化和两侧体模式的起源很重要。然而,在螺旋动物的谱系中观察到相当大的变异,它们采用了不同的策略来发育担轮幼虫,甚至省略了担轮幼虫阶段。一些螺旋动物,如腕足动物软体动物,被认为通过产生均等分裂的受精卵并具有“典型”的担轮幼虫来表现出祖征。近年来,我们使用了一种潜在的模式系统,即腕足动物石鳖 (=石鳖属)。在这里,我们介绍了如何选择该物种并建立了来源和技术,包括基因敲低、异位基因表达和基因组编辑。对该物种的研究揭示了担轮幼虫体模式形成的重要方面,包括组织者信号、连接组织者各种发育功能的分子和细胞过程、内胚层和外胚层的特化和行为,以及 Hox 表达的特征性背腹分离。这些发现丰富了担轮幼虫体模式形成的知识,对螺旋动物以及两侧体模式的进化具有重要意义。

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