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Transcriptome analysis and characterisation of gill-expressed carbonic anhydrase and other key osmoregulatory genes in freshwater crayfish Cherax quadricarinatus

机译:淡水小龙虾Cherax quadricarinatus中g表达的碳酸酐酶和其他主要渗透调节基因的转录组分析和表征

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摘要

The pH and salinity balance mechanisms of crayfish are controlled by a set of transport-related genes. We identified a set of the genes from the gill transcriptome from a freshwater crayfish Cherax quadricarinatus using the Illumina NGS-sequencing technology. We identified and characterized carbonic anhydrase (CA) genes and some other key genes involved in systematic acid-base balance and osmotic/ionic regulation. We also examined expression patterns of some of these genes across different sublethal pH levels . A total of 72,382,710 paired-end Illumina reads were assembled into 36,128 contigs with an average length of 800 bp. About 37% of the contigs received significant BLAST hits and 22% were assigned gene ontology terms. These data will assist in further physiological-genomic studies in crayfish.
机译:小龙虾的pH和盐度平衡机制受一组运输相关基因的控制。我们使用Illumina NGS测序技术从淡水小龙虾Cherax quadricarinatus的g转录组中鉴定出一组基因。我们鉴定和表征了碳酸酐酶(CA)基因和一些其他的关键基因,这些酸基因涉及系统的酸碱平衡和渗透/离子调节。我们还研究了这些基因在不同致死pH值下的表达模式。总共72,382,710个配对末端的Illumina读数被组装成36,128个重叠群,平均长度为800 bp。大约37%的重叠群获得了重要的BLAST命中,而22%的群被指定为基因本体术语。这些数据将有助于小龙虾的进一步生理基因组研究。

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