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Distribution patterns of microsatellites and development of its marker in different genomic regions of forest musk deer genome based on high throughput sequencing

机译:基于高通量测序的森林麝鹿基因组不同基因组区域微卫星分布模式及其标志物的发展

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摘要

Forest musk deer ( , FMD) is an endangered artiodactyl species, male FMD produce musk. We have sequenced the whole genome of FMD, completed the genomic assembly and annotation, and performed bioinformatic analyses. Our results showed that microsatellites (SSRs) displayed nonrandomly distribution in genomic regions, and SSR abundances were much higher in the intronic and intergenic regions compared to other genomic regions. Tri- and hexanucleotide perfect (P) SSRs predominated in coding regions (CDSs), whereas, tetra- and pentanucleotide P-SSRs were less abundant. Trifold P-SSRs had more GC-contents in the 5′-untranslated regions (5'UTRs) and CDSs than other genomic regions, whereas mononucleotide P-SSRs had the least GC-contents. The repeat copy numbers (RCN) of the same mono- to hexanucleotide P-SSRs had different distributions in different genomic regions. The RCN of trinucleotide P-SSRs had increased significantly in the CDSs compared to the transposable elements (TEs), intronic and intergenic regions. The analysis of coefficient of variability (CV) of P-SSRs showed that the RCN of mononucleotide P-SSRs had relative higher variation in different genomic regions, followed by the CV pattern of RCN: dinucleotide P-SSRs > trinucleotide P-SSRs > tetranucleotide P-SSRs > pentanucleotide P-SSRs > hexanucleotide P-SSRs. The CV variations of RCN of the same mono- to hexanucleotide P-SSRs were relative higher in the intron and intergenic regions, followed by that in the TEs, and the relative lower was in the 5'UTR, CDSs and 3'UTRs. 58 novel polymorphic SSR loci were detected based on genotyping DNA from 36 captive FMD and 22 SSR markers finally showed polymorphism, stability, and repetition.
机译:森林麝鹿(FMD)是一种濒临灭绝的动植物物种,雄性FMD产麝香。我们已经对FMD的整个基因组进行了测序,完成了基因组组装和注释,并进行了生物信息学分析。我们的结果表明,微卫星(SSR)在基因组区域显示出非随机分布,并且与其他基因组区域相比,内含子和基因间区域的SSR丰度更高。三核苷酸和六核苷酸完美(P)SSR在编码区(CDS)中占主导地位,而四核苷酸和五核苷酸P-SSR的含量则较低。三联体P-SSRs在5'-非翻译区(5'UTRs)和CDS中的GC含量高于其他基因组区域,而单核苷酸P-SSRs的GC含量最少。同一单核苷酸至六核苷酸的P-SSR的重复拷贝数(RCN)在不同的基因组区域具有不同的分布。与转座因子(TEs),内含子和基因间区域相比,CDS中三核苷酸P-SSR的RCN显着增加。对P-SSR的变异系数(CV)的分析表明,单核苷酸P-SSR的RCN在不同基因组区域具有相对较高的变异,其次为RCN的CV模式:二核苷酸P-SSR>三核苷酸P-SSR>四核苷酸P-SSR>五核苷酸P-SSR>六核苷酸P-SSR。相同的单核苷酸至六核苷酸P-SSR的RCN的CV变异在内含子和基因间区域相对较高,其次是在TE中,相对较低的是5'UTR,CDS和3'UTR。根据36个FMD的基因分型,检测到58个新的多态性SSR基因座,其中22个SSR标记最终表现出多态性,稳定性和重复性。

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