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海鞘胚胎中肌肉特异性基因表达开始的时间早于谱系细胞中发育命运限制的时间。

Timing of initiation of muscle-specific gene expression in the ascidian embryo precedes that of developmental fate restriction in lineage cells.

作者信息

Satou Yutaka, Kusakabe Takehiro, Araki Lsato, Satoh Noriyuki

机构信息

Department of Zoology, Faculty of Science, Kyoto University, Kyoto 606-01, Japan.

出版信息

Dev Growth Differ. 1995 Jun;37(3):319-327. doi: 10.1046/j.1440-169X.1995.t01-2-00010.x.

DOI:10.1046/j.1440-169X.1995.t01-2-00010.x
PMID:37281797
Abstract

The lineage of muscle cells in the ascidian embryo is well documented. Of the B-line blastomeres, B7.4 cells become restricted to give rise to muscle at the 44-cell stage, whereas B7.8 and B7.5 cells become restricted to muscle at the 64-cell stage. In this study we addressed three issues concerning the timing of initiation of muscle-specific structural gene transcription: (i) whether the initiation of the transcription of muscle-specific genes is correlated to that of developmental fate restriction; (ii) if there is a relationship in the timing, whether it is applicable to B7.4-, B7.5- and B7.8-sublineages; and (iii) whether two muscle-specific genes, one for actin and the other for the myosin heavy chain, show the same pattern of temporal expression. Whole-mount in situ hybridization revealed that hybridization signal of actin mRNA was first evident in B6.2 (the progenitor of B7.4) at the 32-cell stage, in B7.8 at the 64-cell stage, and in B7.5 around the 76-cell stage, respectively, suggesting that the transcription of the gene is initiated prior to the developmental fate restriction in the B7.4-sublineage. Presence of actin transcripts in the 32-cell embryos was confirmed by means of reverse transcription-polymerase chain reaction (RT-PCR). The myosin heavy chain gene was expressed in the same manner as the actin gene. Therefore, we concluded that the timing of initiation of transcription of the muscle-specific genes is not always associated with that of the fate restriction and that the temporal profile of the gene expression differs among the sublineages, even though two different genes have the same expression profile.

摘要

海鞘胚胎中肌肉细胞的谱系已得到充分记录。在B系卵裂球中,B7.4细胞在44细胞阶段开始局限于产生肌肉,而B7.8和B7.5细胞在64细胞阶段开始局限于产生肌肉。在本研究中,我们探讨了有关肌肉特异性结构基因转录起始时间的三个问题:(i)肌肉特异性基因转录的起始是否与发育命运限制的起始相关;(ii)如果在时间上存在关系,这种关系是否适用于B7.4、B7.5和B7.8亚谱系;(iii)两个肌肉特异性基因,一个是肌动蛋白基因,另一个是肌球蛋白重链基因,是否表现出相同的时间表达模式。整体原位杂交显示,肌动蛋白mRNA的杂交信号分别在32细胞阶段的B6.2(B7.4的祖细胞)、64细胞阶段的B7.8和76细胞阶段左右的B7.

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本文引用的文献

1
Function of vertebrate T gene.脊椎动物T基因的功能。
Nature. 1993 Aug 12;364(6438):582-3. doi: 10.1038/364582b0.
2
Neural induction suppresses early expression of the inward-rectifier K+ channel in the ascidian blastomere.神经诱导抑制海鞘卵裂球中内向整流钾通道的早期表达。
J Physiol. 1993 Apr;463:245-68. doi: 10.1113/jphysiol.1993.sp019593.
3
Negative control of Xenopus GATA-2 by activin and noggin with eventual expression in precursors of the ventral blood islands.激活素和头蛋白对非洲爪蟾GATA - 2的负调控以及最终在腹侧血岛前体细胞中的表达。
利用连接逻辑理论控制脊索动物胚胎基因调控网络的动力学。
Sci Rep. 2021 Feb 17;11(1):4001. doi: 10.1038/s41598-021-83045-y.
4
Regulation and evolution of muscle development in tunicates.被囊动物肌肉发育的调控与进化
Evodevo. 2019 Jun 24;10:13. doi: 10.1186/s13227-019-0125-6. eCollection 2019.
5
Depletion of Maternal Cyclin B3 Contributes to Zygotic Genome Activation in the Ciona Embryo.母源细胞周期蛋白 B3 的耗竭有助于海鞘胚胎的合子基因组激活。
Curr Biol. 2018 Apr 2;28(7):1150-1156.e4. doi: 10.1016/j.cub.2018.02.046. Epub 2018 Mar 22.
6
doublesex/mab3 related-1 (dmrt1) is essential for development of anterior neural plate derivatives in Ciona.双性/mab3 相关基因-1(dmrt1)在海鞘中前神经板衍生物的发育中是必不可少的。
Development. 2010 Jul;137(13):2197-203. doi: 10.1242/dev.045302.
7
Brachyury null mutant-induced defects in juvenile ascidian endodermal organs.短尾(Brachyury)基因敲除突变体诱导的幼体海鞘内胚层器官缺陷。
Development. 2009 Jan;136(1):35-9. doi: 10.1242/dev.030981. Epub 2008 Nov 19.
8
Muscle development in Ciona intestinalis requires the b-HLH myogenic regulatory factor gene Ci-MRF.玻璃海鞘的肌肉发育需要b-HLH肌源性调节因子基因Ci-MRF。
Dev Biol. 2007 Feb 1;302(1):333-44. doi: 10.1016/j.ydbio.2006.09.043. Epub 2006 Sep 29.
9
Ascidian gene-expression profiles.海鞘基因表达谱。
Genome Biol. 2002 Sep 25;3(10):REVIEWS1030. doi: 10.1186/gb-2002-3-10-reviews1030.
Development. 1994 Sep;120(9):2519-29. doi: 10.1242/dev.120.9.2519.
4
Acetylcholinesterase development in extra cells caused by changing the distribution of myoplasm in ascidian embryos.通过改变海鞘胚胎中肌质的分布在额外细胞中诱导乙酰胆碱酯酶的发育。
J Embryol Exp Morphol. 1980 Feb;55:343-54.
5
Autonomous muscle cell differentiation in partial ascidian embryos according to the newly verified cell lineages.根据新验证的细胞谱系,部分海鞘胚胎中的自主肌肉细胞分化。
Dev Biol. 1984 Aug;104(2):322-8. doi: 10.1016/0012-1606(84)90087-3.
6
Cell lineage analysis in ascidian embryos by intracellular injection of a tracer enzyme. II. The 16- and 32-cell stages.通过向海鞘胚胎细胞内注射示踪酶进行细胞谱系分析。II. 16细胞期和32细胞期。
Dev Biol. 1985 Aug;110(2):440-54. doi: 10.1016/0012-1606(85)90102-2.
7
Determinative properties of muscle lineages in ascidian embryos.海鞘胚胎中肌肉谱系的决定性特性。
Development. 1987 Jun;100(2):245-60. doi: 10.1242/dev.100.2.245.
8
Cell lineage analysis in ascidian embryos by intracellular injection of a tracer enzyme. III. Up to the tissue restricted stage.通过向海鞘胚胎细胞内注射示踪酶进行细胞谱系分析。III. 直至组织限制阶段。
Dev Biol. 1987 Jun;121(2):526-41. doi: 10.1016/0012-1606(87)90188-6.
9
Development of the central nervous system of the larva of the ascidian, Ciona intestinalis L. II. Neural plate morphogenesis and cell lineages during neurulation.海鞘幼虫(玻璃海鞘)中枢神经系统的发育。II. 神经胚形成过程中的神经板形态发生和细胞谱系。
Dev Biol. 1988 Dec;130(2):737-66. doi: 10.1016/0012-1606(88)90364-8.
10
Transcripts of alpha-cardiac and alpha-skeletal actins are early markers for myogenesis in the mouse embryo.α-心肌肌动蛋白和α-骨骼肌肌动蛋白的转录本是小鼠胚胎肌生成的早期标志物。
Development. 1988 Sep;104(1):155-64. doi: 10.1242/dev.104.1.155.