首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Molecular analysis and its expression of a pou homeobox protein gene during development and in response to salinity stress from brine shrimp, Artemia sinica.
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Molecular analysis and its expression of a pou homeobox protein gene during development and in response to salinity stress from brine shrimp, Artemia sinica.

机译:鲍虾同源异形盒蛋白基因在发育过程中以及对盐虾盐卤胁迫的响应的分子分析及其表达。

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Brine shrimps of the genus Artemia are aquatic species of economic importance because of their important significance to aquaculture and are used as a model species in physiology and developmental biology. Research on Artemia POU homeobox gene function will enhance our understanding of the physiological and developmental processes of POU homeobox gene in animals. Herein, a full-length cDNA encoding an Artemia POU homeobox protein gene 1 (APH-1) from Artemia sinica (designated as As-APH-1) was cloned and characterized by a reverse-transcription polymerase chain reaction (RT-PCR) and rapid amplification of cDNA end (RACE) method. The As-APH-1 gene encoded a protein of 388 amino acid polypeptide with a calculated molecular mass of 42.85kDa and an isoelectric point of 6.90 and the protein belongs to the POU III family. Multiple sequence alignments revealed that A. sinica As-APH-1 protein sequence shared a conserved POU homeobox domain with other species. The early and persistent expression of As-APH-1 in the naupliar stages by semi-quantitative RT-PCR and whole-mount embryonic immunohistochemistry suggest that As-APH-1 functions very early in the salt gland and may be required continuously in this organ. Later in development, expression of As-APH-1 begins to dramatically decrease and disappear in salt gland of the sub-adult Artemia. In addition, we also discovered that As-APH-1 increased obviously as the salinity increased, indicating that As-APH-1 might be used as a good indicator of salinity stress. In summary, we are the first to identify the As-APH-1 gene and to determine its gene expression patterns in early embryogenesis stages and in different salinity stress in brine shrimp, A. sinica. The result of expression of As-APH-1 affected by salinity changes will provide us further understanding of the underlying mechanisms of osmoregulation in Artemia early embryonic development.
机译:卤虫属卤虾对水产养殖具有重要意义,因此具有重要的经济价值,在生理学和发育生物学中被用作典范。卤虫POU同源盒基因功能的研究将增进我们对动物POU同源盒基因的生理和发育过程的了解。在这里,克隆了全长cDNA,编码来自卤虫(Artemia sinica)的卤虫POU同源盒蛋白基因1(APH-1)(命名为As-APH-1),并通过逆转录聚合酶链反应(RT-PCR)和快速扩增cDNA末端的方法(RACE)。 As-APH-1基因编码一个388个氨基酸的多肽蛋白质,计算的分子量为42.85kDa,等电点为6.90,该蛋白质属于POU III家族。多个序列比对揭示,中华曲霉As-APH-1蛋白序列与其他物种共享一个保守的POU同源框结构域。通过半定量RT-PCR和全量胚胎免疫组织化学,在幼虫阶段As-APH-1的早期和持续表达表明As-APH-1在盐腺中很早地起作用,并且可能在该器官中持续需要。在发育的后期,As-APH-1的表达开始在亚成年卤虫的盐腺中急剧下降并消失。此外,我们还发现,随着盐度的增加,As-APH-1明显增加,这表明As-APH-1可以用作盐度胁迫的良好指标。总而言之,我们是第一个鉴定As-APH-1基因并确定其在胚胎发育早期阶段和盐渍虾不同盐分胁迫下的基因表达模式的植物。受盐度变化影响的As-APH-1的表达结果将使我们进一步了解卤虫早期胚胎发育中渗透调节的潜在机制。

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