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The Kinome of Pacific Oyster Crassostrea gigas Its Expression during Development and in Response to Environmental Factors

机译:太平洋牡蛎Crassostrea gigas的Kinome其在发育过程中的表达以及对环境因素的响应

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摘要

Oysters play an important role in estuarine and coastal marine habitats, where the majority of humans live. In these ecosystems, environmental degradation is substantial, and oysters must cope with highly dynamic and stressful environmental constraints during their lives in the intertidal zone. The availability of the genome sequence of the Pacific oyster Crassostrea gigas represents a unique opportunity for a comprehensive assessment of the signal transduction pathways that the species has developed to deal with this unique habitat. We performed an in silico analysis to identify, annotate and classify protein kinases in C. gigas, according to their kinase domain taxonomy classification, and compared with kinome already described in other animal species. The C. gigas kinome consists of 371 protein kinases, making it closely related to the sea urchin kinome, which has 353 protein kinases. The absence of gene redundancy in some groups of the C. gigas kinome may simplify functional studies of protein kinases. Through data mining of transcriptomes in C. gigas, we identified part of the kinome which may be central during development and may play a role in response to various environmental factors. Overall, this work contributes to a better understanding of key sensing pathways that may be central for adaptation to a highly dynamic marine environment.
机译:牡蛎在大多数人居住的河口和沿海海洋生境中起着重要作用。在这些生态系统中,环境退化非常严重,牡蛎在潮间带生活期间必须应对高度动态和压力大的环境限制。太平洋牡蛎Crassostrea gigas基因组序列的可用性为全面评估该物种为应对这一独特栖息地而开发的信号转导途径提供了独特的机会。我们根据其激酶结构域分类法进行了计算机分析,以鉴定,注释和分类长尾。蛾中的蛋白激酶,并与其他动物物种中已经描述的激酶组进行了比较。 C. gigas kinome由371个蛋白激酶组成,使其与具有353个蛋白激酶的海胆kinome紧密相关。某些C. gigas kinome基因组中不存在基因冗余可以简化蛋白激酶的功能研究。通过对C. gigas中转录组的数据挖掘,我们确定了kinome的一部分,这些部分可能在发育过程中处于中心地位,并可能在响应各种环境因素中发挥作用。总体而言,这项工作有助于更好地理解关键的传感途径,这些途径对于适应高度动态的海洋环境可能是至关重要的。

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