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首页> 外文期刊>The Journal of Experimental Biology >Temperature and the expression of myogenic regulatory factors (MRFs) and myosin heavy chain isoforms during embryogenesis in the common carp Cyprinus carpio L.
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Temperature and the expression of myogenic regulatory factors (MRFs) and myosin heavy chain isoforms during embryogenesis in the common carp Cyprinus carpio L.

机译:鲤鱼胚胎发生过程中的温度以及成肌调节因子(MRFs)和肌球蛋白重链亚型的表达。

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摘要

Embryos of the common carp, Cyprinus carpio L., were reared from fertilization of the eggs to inflation of the swim bladder in the larval stage at 18 and 25 degrees C. cRNA probes were used to detect transcripts of the myogenic regulatory factors MyoD, Myf-5 and myogenin, and five myosin heavy chain (MyHC) isoforms during development. The genes encoding Myf-5 and MyoD were switched on first in the unsegmented mesoderm, followed by myogenin as the somites developed. Myf-5 and MyoD transcripts were initially limited to the adaxial cells, but Myf-5 expression spread laterally into the presomitic mesoderm before somite formation. Two distinct bands of staining could be seen corresponding to the cellular fields of the forming somites, but as each furrow delineated, Myf-5 mRNA levels declined. Upon somite formation, MyoD expression spread laterally to encompass the full somite width. Expression of the myogenin gene was also switched on during somite formation, and expression of both transcripts persisted until the somites became chevron-shaped. Expression of MyoD was then downregulated shortly before myogenin. The expression patterns of the carp myogenic regulatory factor (MRF) genes most-closely resembled that seen in the zebrafish rather than the rainbow trout (where expression of MyoD remains restricted to the adaxial domain of the somite for a prolonged period) or the herring (where expression of MyoD persists longer than that of myogenin). Expression of two embryonic forms of MyHC began simultaneously at the 25-30 somite stage and continued until approximately two weeks post-hatch. However, the three adult isoforms of fast muscle MyHC were not detected in any stage examined, emphasizing a developmental gap that must be filled by other, as yet uncharacterised, MyHC isoform(s). No differences in the timing of expression of any mRNA transcripts were seen between temperature groups. A phylogenetic analysis of the MRFs was conducted using all available full-length amino acid sequences. A neighbour-joining tree indicated that all four members evolved from a common ancestral gene, which first duplicated into two lineages, each of which underwent a further duplication to produce Myf-5 and MyoD, and myogenin and MRF4. Parologous copies of MyoD from trout and Xenopus clustered closely together within clades, indicating recent duplications. By contrast, MyoD paralogues from gilthead seabream were more divergent, indicating a more-ancient duplication.
机译:在18和25摄氏度下,将幼体鲤鱼的胚胎从卵的受精饲养到幼体阶段的游泳膀胱充气。cRNA探针用于检测肌源性调节因子MyoD,Myf的转录本-5和肌生成素,以及发育过程中的五个肌球蛋白重链(MyHC)亚型。首先在未分割的中胚层中开启编码Myf-5和MyoD的基因,然后随着卵节的发育而开启肌生成素。 Myf-5和MyoD转录本最初仅限于近端细胞,但Myf-5表达在侧突形成之前横向扩散到早熟中胚层中。可以看到对应于形成的节段的细胞场的两个不同的染色带,但是随着每个犁沟的描绘,Myf-5 mRNA水平下降。形成体节后,MyoD的表达横向扩散以涵盖整个体节宽度。肌节蛋白基因的表达在体节形成过程中也被打开,并且两个转录物的表达一直持续到卵节变成人字形。然后在肌生成素之前不久,MyoD的表达下调。鲤鱼肌成因调节因子(MRF)基因的表达模式与斑马鱼中的最相似,而不是虹鳟鱼(其中MyoD的表达在很长一段时间内一直限制在somite的近轴域)或鲱鱼( MyoD的表达比肌生成素的表达持续更长的时间)。两种胚胎形式的MyHC的表达在25-30个体节阶段同时开始,一直持续到孵化后约两周。但是,在所检查的任何阶段都未检测到快速肌肉MyHC的三种成人同工型,强调了必须由其他尚未表征的MyHC同工型填补的发育空缺。在温度组之间未观察到任何mRNA转录物的表达时间差异。使用所有可用的全长氨基酸序列进行了MRF的系统发育分析。相邻的一棵树表明,所有四个成员都从一个共同的祖先基因进化而来,该基因先复制为两个谱系,每个谱系都进行了进一步的复制以产生Myf-5和MyoD,以及肌生成素和MRF4。鳟鱼和非洲爪蟾的MyoD的同源副本在进化枝中紧密聚集在一起,表明最近有重复。相比之下,来自金头鲷的MyoD旁系同源性更高,表明其复制更为古老。

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