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香港牡蛎牛磺酸和甜菜碱代谢关键基因单核苷酸多态性的开发及其与含量相关性状的关联

Development of single nucleotide polymorphisms in key genes of taurine and betaine metabolism in Crassostrea hongkongensis and their association with content-related traits.

作者信息

Kong Lingxin, Chen Ziao, Jia Zhen, Deng Qiong, Zhu Peng, Xu Youhou, She Zhicai

机构信息

Beibu Gulf University.

出版信息

Res Sq. 2024 Dec 18:rs.3.rs-5097219. doi: 10.21203/rs.3.rs-5097219/v1.

Abstract

BACKGROUND

Taurine and betaine are important nutrients in and have many important biological properties. To investigate the characteristics of taurine and betaine contents and identify SNPs associated with traits in the , we cloned the full-length cDNA of key genes in taurine and betaine (unpublished data) metabolism, determined taurine and betaine content and gene expression in different tissues and months of specimen collection, and developed SNPs in the gene coding region.

RESULTS

We cloned the full-length cDNA of cysteine dioxygenase () and cysteine sulfite decarboxylase (), which are key genes involved in taurine metabolism in , and found that betaine and taurine contents and the expression of key genes were regulated by seawater salinity. A total of 47 SNP markers were developed in the coding regions of , , , , and using gene fragment resequencing and FLDAS-PCR. Through association analysis in a population of in the Maowei Sea, Guangxi, nine SNPs were found to be associated with taurine content, and one SNP was associated with betaine content. Haploid and linkage disequilibrium analyses showed that SNPs in formed one linkage group with three haplotypes: ACACA, GTTTG, and GTACA. The average taurine content of the corresponding individuals was 873.88, 838.99, and 930.72 ng/g, respectively, indicating the GTACA haplotype has a significant advantage in terms of taurine content.

CONCLUSIONS

We identified SNPs associated with taurine and betaine contents in for the first time, and found the GTACA haplotype in the coding region has a significant advantage in taurine content. These loci and haplotypes can serve as potential molecular markers for the molecular breeding of .

摘要

背景

牛磺酸和甜菜碱是[物种名称未给出]中的重要营养物质,具有许多重要的生物学特性。为了研究牛磺酸和甜菜碱含量的特征并鉴定与[物种名称未给出]性状相关的单核苷酸多态性(SNP),我们克隆了牛磺酸和甜菜碱代谢关键基因的全长cDNA(未发表数据),测定了不同组织以及样本采集月份中的牛磺酸和甜菜碱含量及基因表达,并在基因编码区开发了SNP。

结果

我们克隆了半胱氨酸双加氧酶([英文名称未给出])和半胱氨酸亚磺酸脱羧酶([英文名称未给出])的全长cDNA,它们是[物种名称未给出]中参与牛磺酸代谢的关键基因,并且发现甜菜碱和牛磺酸含量以及关键基因的表达受海水盐度调节。通过基因片段重测序和FLDAS-PCR技术,在[基因名称未给出]、[基因名称未给出]、[基因名称未给出]、[基因名称未给出]和[基因名称未给出]的编码区共开发了47个SNP标记。通过对广西茅尾海[群体名称未给出]群体进行关联分析,发现9个SNP与牛磺酸含量相关,1个SNP与甜菜碱含量相关。单倍型和连锁不平衡分析表明,[基因名称未给出]中的SNP形成了一个连锁群,有三种单倍型:ACACA、GTTTG和GTACA。相应个体的牛磺酸平均含量分别为873.88、838.99和930.72 ng/g,表明GTACA单倍型在牛磺酸含量方面具有显著优势。

结论

我们首次鉴定出与[物种名称未给出]中牛磺酸和甜菜碱含量相关的SNP,并发现[基因名称未给出]编码区的GTACA单倍型在牛磺酸含量方面具有显著优势。这些位点和单倍型可作为[物种名称未给出]分子育种的潜在分子标记。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/777d/11702833/9892020ccc75/nihpp-rs5097219v1-f0001.jpg

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