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鉴定与亚洲荷花(Nelumbo nucifera)根茎增粗相关的 QTL 及其候选基因。

Identification of QTLs and a putative candidate gene involved in rhizome enlargement of Asian lotus (Nelumbo nucifera).

机构信息

Key Laboratory of Plant Germplasm Enhancement and Specialty Agriculture, Wuhan Botanical Garden, Chinese Academy of Sciences, Wuhan, 430074, China.

Aquatic Plant Research Center, Wuhan Botanical Garden, Chinese Academy of Sciences, Wuhan, 430074, China.

出版信息

Plant Mol Biol. 2022 Sep;110(1-2):23-36. doi: 10.1007/s11103-022-01281-w. Epub 2022 Jun 1.

Abstract

QTL mapping studies identified three reliable QTLs of rhizome enlargement in lotus. NnBEL6 located within the confidence interval of the major QTL cqREI-LG2 is a key candidate gene enhancing rhizome enlargement. Lotus (Nelumbo) is perennial aquatic plant with nutritional, pharmacological, and ornamental significance. Rhizome is an underground lotus stem that acts as a storage organ and as a reproductive tissue for asexual production. The enlargement of lotus rhizome is an important adaptive strategy for surviving the cold winter. The aims of this study were to identify quantitative trait loci (QTLs) for rhizome enlargement traits including rhizome enlargement index (REI) and number of enlarged rhizome (NER), and to uncover their associated candidate genes. A high-density genetic linkage map was constructed, consisting of 2935 markers binned from 236,840 SNPs. A total of 14 significant QTLs were detected for REI and NER, which explained 6.7-22.3% of trait variance. Three QTL regions were repeatedly identified in at least 2 years, and a major QTL, designated cqREI-LG2, with a rhizome-enlargement effect and about 20% of the phenotypic contribution was identified across the 3 climatic years. A candidate NnBEL6 gene located within the confidence interval of cqREI-LG2 was considered to be putatively involved in lotus rhizome enlargement. The expression of NnBEL6 was exclusively induced by rhizome swelling. Sequence comparison of NnBEL6 among lotus cultivars revealed a functional Indel site in its promoter that likely initiates the rhizome enlargement process. Transgenic potato assay was used to confirm the role of NnBEL6 in inducing tuberization. The successful identification QTLs and functional validation of NnBEL6 gene reported in this study will enrich our knowledge on the genetic basis of rhizome enlargement in lotus.

摘要

QTL 作图研究鉴定了莲根茎膨大的三个可靠 QTL。位于主 QTL cqREI-LG2 置信区间内的 NnBEL6 是一个关键的候选基因,可增强根茎膨大。莲(Nelumbo)是一种多年生水生植物,具有营养、药理和观赏价值。根茎是一种地下莲茎,作为储存器官和无性繁殖的组织。莲根茎的膨大是其在寒冷冬季生存的重要适应策略。本研究旨在鉴定根茎膨大性状的数量性状位点(QTLs),包括根茎膨大指数(REI)和膨大根茎数量(NER),并揭示其相关的候选基因。构建了一个高密度遗传连锁图谱,由 236840 个 SNPs 中筛选出的 2935 个标记组成。共检测到 14 个显著的 REI 和 NER QTL,解释了 6.7-22.3%的性状变异。有 3 个 QTL 区域至少在 2 年内被重复鉴定,一个主效 QTL,命名为 cqREI-LG2,在 3 个气候年中具有根茎膨大效应,约占表型贡献的 20%。位于 cqREI-LG2 置信区间内的候选 NnBEL6 基因被认为可能参与了莲根茎的膨大。NbNEL6 的表达仅受根茎膨胀的诱导。在不同莲品种中对 NnBEL6 进行序列比较,发现其启动子中有一个功能缺失位点,可能启动了根茎膨大过程。利用转基因马铃薯试验证实了 NnBEL6 诱导块茎形成的作用。本研究成功鉴定了 QTLs,并对 NnBEL6 基因的功能进行了验证,这将丰富我们对莲根茎膨大遗传基础的认识。

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