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甘薯(Ipomoea batatas)种质资源的遗传指纹构建和遗传多样性分析。

Genetic fingerprint construction and genetic diversity analysis of sweet potato (Ipomoea batatas) germplasm resources.

机构信息

Guangdong Provincial Key Laboratory of Crops Genetics and Improvement/Crops Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou, Guangdong, 510640, China.

出版信息

BMC Plant Biol. 2023 Jul 11;23(1):355. doi: 10.1186/s12870-023-04329-1.

Abstract

BACKGROUND

China is the largest producer of sweet potato in the world, accounting for 57.0% of the global output. Germplasm resources are the basis for promoting innovations in the seed industry and ensuring food security. Individual and accurate identification of sweet potato germplasm is an important part of conservation and efficient utilization.

RESULTS

In this study, nine pairs of simple sequence repeat molecular markers and 16 morphological markers were used to construct genetic fingerprints for sweet potato individual identification. Combined with basic information, typical phenotypic photographs, genotype peak graphs, and a two-dimensional code for detection and identification were generated. Finally, a genetic fingerprint database containing 1021 sweet potato germplasm resources in the "National Germplasm Guangzhou Sweet Potato Nursery Genebank in China" was constructed. Genetic diversity analysis of the 1021 sweet potato genotypes using the nine pairs of simple sequence repeat markers revealed a narrow genetic variation range of Chinese native sweet potato germplasm resources, and Chinese germplasm was close to that from Japan and the United States, far from that from the Philippines and Thailand, and the furthest from that from Peru. Sweet potato germplasm resources from Peru had the richest genetic diversity, supporting the view that Peru is the center of origin and domestication of sweet potato varieties.

CONCLUSIONS

Overall, this study provides scientific guidance for the conservation, identification, and utilization of sweet potato germplasm resources and offers a reference to facilitate the discovery of important genes to boost sweet potato breeding.

摘要

背景

中国是世界上最大的甘薯生产国,占全球产量的 57.0%。种质资源是推动种业创新和保障粮食安全的基础。对甘薯种质资源进行个体和准确的鉴定是保护和高效利用的重要组成部分。

结果

本研究采用 9 对简单重复序列分子标记和 16 个形态标记,构建了甘薯个体鉴定的遗传指纹图谱。结合基本信息、典型表型照片、基因型峰图和检测识别二维码,最终构建了包含中国“国家甘薯广州种质圃资源库”1021 份甘薯种质资源的遗传指纹图谱数据库。利用 9 对简单重复序列标记对 1021 份甘薯基因型进行遗传多样性分析,结果表明中国地方甘薯种质资源遗传变异范围较窄,中国种质资源与日本和美国的亲缘关系较近,与菲律宾和泰国的亲缘关系较远,与秘鲁的亲缘关系最远。秘鲁甘薯种质资源遗传多样性最丰富,支持秘鲁是甘薯品种起源和驯化中心的观点。

结论

总体而言,本研究为甘薯种质资源的保护、鉴定和利用提供了科学指导,为发现重要基因促进甘薯育种提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8dd/10334575/5a0c88a151d9/12870_2023_4329_Fig1_HTML.jpg

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