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转录组分析与木耳 Auricularia heimuer 中 EST-SSR 标记的开发。

Transcriptome analysis and development of EST-SSR markers in the mushroom Auricularia heimuer.

机构信息

Institute of Microbiology, Heilongjiang Academy of Sciences, Harbin, 150010, China.

出版信息

Sci Rep. 2024 May 29;14(1):12340. doi: 10.1038/s41598-024-63080-1.

Abstract

Auricularia heimuer, the third most frequently cultivated edible mushroom species worldwide, has high medicinal value. However, a shortage of molecular marker hinders the efficiency and accuracy of genetic breeding efforts for A. heimuer. High-throughput transcriptome sequencing data are essential for gene discovery and molecular markers development. This study aimed to clarify the distribution of SSR loci across the A. heimuer transcriptome and to develop highly informative EST-SSR markers. These tools can be used for phylogenetic analysis, functional gene mining, and molecular marker-assisted breeding of A. heimuer. This study used Illumina high-throughput sequencing technology to obtain A. heimuer transcriptome data. The results revealed 37,538 unigenes in the A. heimuer transcriptome. Of these unigenes, 24,777 (66.01%) were annotated via comparison with the COG, Pfam, and NR databases. Overall, 2510 SSRs were identified from the unigenes, including 6 types of SSRs. The most abundant type of repeats were trinucleotides (1425, 56.77%), followed by mononucleotides (391, 15.58%) and dinucleotides (456, 18.17%). Primer pairs for 102 SSR loci were randomly designed for validity confirmation and polymorphism identification; this process yielded 53 polymorphic EST-SSR markers. Finally, 13 pairs of highly polymorphic EST-SSR primers were used to analyze the genetic diversity and population structure of 52 wild A. heimuer germplasms, revealing that the 52 germplasms could be divided into three categories. These results indicated that SSR loci were abundant in types, numbers, and frequencies, providing a potential basis for germplasm resource identification, genetic diversity analysis, and molecular marker-assisted breeding of A. heimuer.

摘要

银耳,全球第三大栽培食药用菌,具有较高的药用价值。然而,缺乏分子标记阻碍了银耳遗传育种工作的效率和准确性。高通量转录组测序数据对于基因发现和分子标记开发至关重要。本研究旨在阐明银耳转录组中 SSR 位点的分布,并开发高度信息丰富的 EST-SSR 标记。这些工具可用于银耳的系统发育分析、功能基因挖掘和分子标记辅助育种。本研究使用 Illumina 高通量测序技术获得银耳转录组数据。结果表明,银耳转录组中共获得 37538 条 unigenes。其中,24777 条 unigenes(66.01%)通过与 COG、Pfam 和 NR 数据库的比对进行注释。总体而言,从 unigenes 中鉴定出 2510 个 SSR,包括 6 种 SSR 类型。重复类型最丰富的是三核苷酸(1425 个,56.77%),其次是单核苷酸(391 个,15.58%)和二核苷酸(456 个,18.17%)。随机设计了 102 个 SSR 位点的引物对进行有效性验证和多态性鉴定;这一过程产生了 53 个多态性 EST-SSR 标记。最后,使用 13 对高度多态性 EST-SSR 引物分析了 52 个野生银耳种质资源的遗传多样性和群体结构,结果表明 52 个种质资源可分为三类。这些结果表明,SSR 位点在类型、数量和频率上都很丰富,为银耳种质资源鉴定、遗传多样性分析和分子标记辅助育种提供了潜在的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90be/11136984/8542a5e84a21/41598_2024_63080_Fig1_HTML.jpg

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