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短芒大麦草的完整叶绿体基因组:基因组结构、同义密码子使用、系统发育关系及比较结构分析。

Complete chloroplast genome of Hordeum brevisubulatum: Genome organization, synonymous codon usage, phylogenetic relationships, and comparative structure analysis.

机构信息

Lanzhou Institute of Husbandry and Pharmaceutical Science, Chinese Academy of Agricultural Sciences, Lanzhou, Gansu, China.

Academy of Animal and Veterinary Sciences, Qinghai University, Xining, Qinghai, China.

出版信息

PLoS One. 2021 Dec 13;16(12):e0261196. doi: 10.1371/journal.pone.0261196. eCollection 2021.

Abstract

BACKGROUND

Hordeum brevisubulatum, known as fine perennial forage, is used for soil salinity improvement in northern China. Chloroplast (cp) genome is an ideal model for assessing its genome evolution and the phylogenetic relationships. We de novo sequenced and analyzed the cp genome of H. brevisubulatum, providing a fundamental reference for further studies in genetics and molecular breeding.

RESULTS

The cp genome of H. brevisubulatum was 137,155 bp in length with a typical quadripartite structure. A total of 130 functional genes were annotated and the gene of accD was lost in the process of evolution. Among all the annotated genes, 16 different genes harbored introns and the genes of ycf3 and rps12 contained two introns. Parity rule 2 (PR2) plot analysis showed that majority of genes had a bias toward T over A in the coding strand in all five Hordeum species, and a slight G over C in the other four Hordeum species except for H. bogdanil. Additionally, 52 dispersed repeat sequences and 182 simple sequence repeats were identified. Moreover, some unique SSRs of each species could be used as molecular markers for further study. Compared to the other four Hordeum species, H. brevisubulatum was most closely related to H. bogdanii and its cp genome was relatively conserved. Moreover, inverted repeat regions (IRa and IRb) were less divergent than other parts and coding regions were relatively conserved compared to non-coding regions. Main divergence was presented at the SSC/IR border.

CONCLUSIONS

This research comprehensively describes the architecture of the H. brevisubulatum cp genome and improves our understanding of its cp biology and genetic diversity, which will facilitate biological discoveries and cp genome engineering.

摘要

背景

短根茎大麦,又称优良多年生牧草,在中国北方用于改良土壤盐度。叶绿体(cp)基因组是评估其基因组进化和系统发育关系的理想模型。我们从头测序并分析了短根茎大麦的 cp 基因组,为进一步的遗传学和分子育种研究提供了基础参考。

结果

短根茎大麦的 cp 基因组长度为 137155bp,具有典型的四分体结构。共注释了 130 个功能基因,在进化过程中 accD 基因丢失。在所注释的基因中,16 个不同的基因具有内含子,ycf3 和 rps12 基因含有两个内含子。平行规则 2(PR2)图谱分析表明,在所有 5 个大麦属物种中,大多数基因在编码链上偏向 T 而不是 A,而在除 H. bogdanil 之外的其他 4 个大麦属物种中,偏向 G 而不是 C。此外,还鉴定出 52 个分散重复序列和 182 个简单序列重复。此外,每个物种的一些独特 SSR 可以用作进一步研究的分子标记。与其他 4 个大麦属物种相比,短根茎大麦与 H. bogdanii 最为密切相关,其 cp 基因组相对保守。此外,与非编码区相比,反向重复区(IRa 和 IRb)的变异较小,而编码区相对保守。主要的分歧出现在 SSC/IR 边界。

结论

本研究全面描述了短根茎大麦 cp 基因组的结构,增进了我们对其 cp 生物学和遗传多样性的认识,这将有助于生物学发现和 cp 基因组工程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e677/8668134/541a03057727/pone.0261196.g001.jpg

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