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文昌鱼左右不对称性的确定:综述与展望

Left-right asymmetry specification in amphioxus: review and prospects.

作者信息

Soukup Vladimir

机构信息

Institute of Molecular Genetics of the Czech Academy of Sciences, Prague, Czech Republic.

出版信息

Int J Dev Biol. 2017;61(10-11-12):611-620. doi: 10.1387/ijdb.170251vs.

DOI:10.1387/ijdb.170251vs
PMID:29319110
Abstract

Extant bilaterally symmetrical animals usually show asymmetry in the arrangement of their inner organs. However, the exaggerated left-right (LR) asymmetry in amphioxus represents a true peculiarity among them. The amphioxus larva shows completely disparate fates of left and right body sides, so that organs associated with pharynx are either positioned exclusively on the left or on the right side. Moreover, segmented paraxial structures such as muscle blocks and their neuronal innervation show offset arrangement between the sides making it difficult to propose any explanation or adaptivity to larval and adult life. First LR asymmetries can be traced back to an early embryonic period when morphological asymmetries are preceded by molecular asymmetries driven by the action of the Nodal signaling pathway. This review sums up recent advances in understanding LR asymmetry specification in amphioxus and proposes upstream events that may regulate asymmetric Nodal signaling. These events include the presence of the vertebrate-like LR organizer and a cilia-driven fluid flow that may be involved in the breaking of bilateral symmetry. The upstream pathways comprising the ion flux, Delta/Notch, Wnt/β-catenin and Wnt/PCP are hypothesized to regulate both formation of the LR organizer and expression of the downstream Nodal signaling pathway genes. These suggestions are in line with what we know from vertebrate and ambulacrarian LR axis specification and are directly testable by experimental manipulations. Thanks to the phylogenetic position of amphioxus, the proposed mechanisms may be helpful in understanding the evolution of LR axis specification across deuterostomes.

摘要

现存的两侧对称动物通常在内脏器官的排列上表现出不对称性。然而,文昌鱼中夸张的左右(LR)不对称性在它们当中是一种真正的独特现象。文昌鱼幼虫左右体侧呈现出完全不同的命运,以至于与咽部相关的器官要么完全位于左侧,要么位于右侧。此外,像肌节及其神经支配这样的分节轴旁结构在两侧呈现出偏移排列,这使得难以对幼虫和成虫生活提出任何解释或适应性说明。最初的LR不对称性可以追溯到胚胎早期,此时形态学上的不对称性之前存在由Nodal信号通路作用驱动的分子不对称性。这篇综述总结了在理解文昌鱼LR不对称性特化方面的最新进展,并提出了可能调节不对称Nodal信号的上游事件。这些事件包括类似脊椎动物的LR组织者的存在以及可能参与打破双侧对称性的由纤毛驱动的流体流动。假设包括离子通量、Delta/Notch、Wnt/β-连环蛋白和Wnt/PCP的上游通路既调节LR组织者的形成,又调节下游Nodal信号通路基因的表达。这些建议与我们从脊椎动物和棘皮动物LR轴特化中所了解的情况一致,并且可以通过实验操作直接进行验证。由于文昌鱼的系统发育位置,所提出的机制可能有助于理解整个后口动物LR轴特化的进化。

相似文献

1
Left-right asymmetry specification in amphioxus: review and prospects.文昌鱼左右不对称性的确定:综述与展望
Int J Dev Biol. 2017;61(10-11-12):611-620. doi: 10.1387/ijdb.170251vs.
2
Pitx controls amphioxus asymmetric morphogenesis by promoting left-side development and repressing right-side formation.Pitx 通过促进左侧发育和抑制右侧形成来控制文昌鱼的不对称形态发生。
BMC Biol. 2021 Aug 20;19(1):166. doi: 10.1186/s12915-021-01095-0.
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The Bmp signaling pathway regulates development of left-right asymmetry in amphioxus.骨形态发生蛋白(Bmp)信号通路调控文昌鱼左右不对称性的发育。
Dev Biol. 2018 Feb 1;434(1):164-174. doi: 10.1016/j.ydbio.2017.12.004. Epub 2017 Dec 7.
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participates in the establishment of left-right asymmetry during amphioxus development by controlling expression.通过控制表达参与文昌鱼发育过程中左右不对称性的建立。
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Progress on the left-right asymmetry patterning in amphioxus.文昌鱼左右不对称模式形成的研究进展。
Yi Chuan. 2021 Feb 16;43(2):134-141. doi: 10.16288/j.yczz.20-246.
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Cerberus-Nodal-Lefty-Pitx signaling cascade controls leftright asymmetry in amphioxus.Cerberus-Nodal-Lefty-Pitx 信号级联控制文昌鱼的左右不对称性。
Proc Natl Acad Sci U S A. 2017 Apr 4;114(14):3684-3689. doi: 10.1073/pnas.1620519114. Epub 2017 Mar 20.
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Early development of amphioxus links evolutionary events with vertebrates.文昌鱼的早期发育将进化事件与脊椎动物联系起来。
Int J Dev Biol. 2017;61(10-11-12):591-600. doi: 10.1387/ijdb.170118ky.
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The Nodal signaling pathway controls left-right asymmetric development in amphioxus.Nodal信号通路控制文昌鱼的左右不对称发育。
Evodevo. 2015 Feb 17;6:5. doi: 10.1186/2041-9139-6-5. eCollection 2015.
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Dorsal-ventral patterning in amphioxus: current understanding, unresolved issues, and future directions.文昌鱼的背腹模式形成:当前的认识、未解决的问题及未来方向。
Int J Dev Biol. 2017;61(10-11-12):601-610. doi: 10.1387/ijdb.170236ik.
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Interplay between Lefty and Nodal signaling is essential for the organizer and axial formation in amphioxus embryos.Lefty 和 Nodal 信号之间的相互作用对于文昌鱼胚胎的组织者和轴向形成是必不可少的。
Dev Biol. 2019 Dec 1;456(1):63-73. doi: 10.1016/j.ydbio.2019.08.006. Epub 2019 Aug 13.

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