Amphioxus Gli knockout disrupts the development of left-right asymmetry but has limited impact on neural patterning.

IF 5.8 2区 生物学 Q1 MARINE & FRESHWATER BIOLOGY Marine Life Science & Technology Pub Date : 2023-11-15 eCollection Date: 2023-11-01 DOI:10.1007/s42995-023-00195-w
Xin Huang, Qiongqiong Ren, Yiquan Wang, Sebastian M Shimeld, Guang Li
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Abstract

The Gli transcription factors are the primary mediators of Hedgehog (Hh) signaling. Vertebrate genomes contain multiple Gli paralogues with different functions downstream of Hh signal receipt, in part explaining the complexity of cellular responses to Hh that allow concentration-dependent target gene activation. Amphioxus is a chordate that split from the vertebrate lineage early in the evolution of chordates, before the genome duplications that occurred in early vertebrate evolution. It has a single Gli gene whose transcripts can be alternately spliced to yield two protein isoforms called GliS and GliL. We generated two knockout mutations in amphioxus Gli, one that affects the whole gene and a second that only affects GliL. Both knockouts showed major morphological and molecular defects in the development of left-right asymmetry, a phenotype that is similar but not identical to that previously found in Hh mutants. Hh signaling also patterns the amphioxus neural tube. Here, however, knockout of GliL showed no identifiable phenotype, while knockout of the full gene showed only small changes to the expression of one gene family, Olig. Other genes that were prominently affected by Hh knockout were not altered in expression in either knockout. Reasons for the differences between Hh and Gli knockouts in the pharynx and neural tube are discussed in the context of the likely different functions of amphioxus Gli isoforms.

Supplementary information: The online version contains supplementary material available at 10.1007/s42995-023-00195-w.

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敲除文文鱼Gli破坏了左右不对称的发育,但对神经模式的影响有限。
Gli转录因子是Hedgehog (Hh)信号传导的主要介质。脊椎动物基因组包含多个Gli同源物,它们在Hh信号接收的下游具有不同的功能,这在一定程度上解释了细胞对Hh反应的复杂性,这些反应允许浓度依赖性靶基因激活。文昌鱼是一种脊索动物,在脊索动物进化的早期从脊椎动物谱系中分离出来,在早期脊椎动物进化中发生基因组复制之前。它有一个单一的Gli基因,其转录物可以交替剪接,产生两种蛋白质异构体,称为GliS和GliL。我们在文昌鱼Gli中产生了两个敲除突变,一个影响整个基因,另一个只影响GliL。两种基因敲除都显示了左右不对称发育中的主要形态和分子缺陷,这种表型与先前在Hh突变体中发现的相似但不完全相同。Hh信号也影响文昌鱼的神经管。然而,在这里,敲除GliL没有显示可识别的表型,而敲除全基因仅显示一个基因家族oleg的表达发生微小变化。其他受Hh敲除显著影响的基因在两种敲除中表达均未改变。在文昌鱼Gli亚型可能不同的功能背景下,讨论了咽和神经管中Hh和Gli敲除差异的原因。补充信息:在线版本包含补充资料,下载地址:10.1007/s42995-023-00195-w。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Marine Life Science & Technology
Marine Life Science & Technology MARINE & FRESHWATER BIOLOGY-
CiteScore
9.60
自引率
10.50%
发文量
58
期刊介绍: Marine Life Science & Technology (MLST), established in 2019, is dedicated to publishing original research papers that unveil new discoveries and theories spanning a wide spectrum of life sciences and technologies. This includes fundamental biology, fisheries science and technology, medicinal bioresources, food science, biotechnology, ecology, and environmental biology, with a particular focus on marine habitats. The journal is committed to nurturing synergistic interactions among these diverse disciplines, striving to advance multidisciplinary approaches within the scientific field. It caters to a readership comprising biological scientists, aquaculture researchers, marine technologists, biological oceanographers, and ecologists.
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