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迁地保护中的全基因组多样性评估与核心种质提取:以黄金为例

Genome-wide diversity evaluation and core germplasm extraction in ex situ conservation: A case of golden .

作者信息

Zhu Xianliang, Zou Rong, Qin Huizhen, Chai Shengfeng, Tang Jianmin, Li Yingying, Wei Xiao

机构信息

Guangxi Key Laboratory of Plant Functional Phytochemicals and Sustainable Utilization Guangxi Institute of Botany, Guangxi Zhuang Autonomous Region and Chinese Academy of Sciences Guilin China.

Institute of Forestry Economic Science, Guangdong Academy of Forestry Guangzhou China.

出版信息

Evol Appl. 2023 Aug 19;16(9):1519-1530. doi: 10.1111/eva.13584. eCollection 2023 Sep.

Abstract

Whether ex situ populations constructed in the limited nursery resources of botanical gardens can preserve enough genetic diversity of endangered plants in the wild remains uncertain. Here, a case study was conducted with , which is one of the species with the lowest natural distribution area in the sect. (golden camellia) of the family Theaceae. We investigated the genetic diversity and population structure of 229 samples from wild and ex situ populations using genotyping by sequencing (GBS). Core germplasm was constructed from these samples. The results showed that wild exhibited high genetic diversity, with observed heterozygosity of 0.257-0.293 and expected heterozygosity of 0.247-0.262. Compared with wild populations, the genetic diversity of ex situ populations established by transplanting wild seedlings was close to or even higher. However, the genetic diversity of those established by seed or cuttings of a few superior trees was lower. The Admixture analysis revealed that the structure of the ex situ populations derived from seeds and cuttings was relatively simple compared with the ex situ populations derived from transplanted wild seedlings and wild populations. These results suggested that direct transplanting of wild seedlings was more conducive to preserving the genetic diversity of endangered plants in the wild. In addition, wild populations demonstrated a small differentiation (mean  = 0.044) among themselves, possibly due to long-term and frequent gene flow between the wild populations. In contrast, moderate differentiation (mean  > 0.05) was detected among ex situ populations and between ex situ and wild populations. This may be the combined result of the absence of gene flow pathways and strong selection pressure in various ex situ environments. Finally, 77 core germplasms were extracted from 229, likely representing the genetic diversity of . This study provides future strategies for the ex situ conservation and management of the golden camellia species and other rare and endangered plants.

摘要

在植物园有限的育苗资源中构建的迁地种群能否保存野生濒危植物足够的遗传多样性仍不确定。在此,以 为例进行了一项案例研究, 是山茶科 (金花茶) 中自然分布面积最小的物种之一。我们使用简化基因组测序(GBS)对来自野生和迁地种群的229个样本的遗传多样性和种群结构进行了研究。从这些样本中构建了核心种质。结果表明,野生 表现出较高的遗传多样性,观察杂合度为0.257 - 0.293,期望杂合度为0.247 - 0.262。与野生种群相比,通过移栽野生幼苗建立的迁地种群的遗传多样性与之相近甚至更高。然而,通过少数优良树木的种子或插条建立的迁地种群的遗传多样性较低。混合分析表明,与来自移栽野生幼苗的迁地种群和野生种群相比,由种子和插条衍生而来

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e17d/10519411/ef775935b57a/EVA-16-1519-g003.jpg

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