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胀果甘草(豆科)的种群遗传结构受生境破碎化、水资源和生物学特性影响。

Population Genetic Structure of Glycyrrhiza inflata B. (Fabaceae) Is Shaped by Habitat Fragmentation, Water Resources and Biological Characteristics.

作者信息

Yang Lulu, Chen Jianjun, Hu Weiming, Yang Tianshun, Zhang Yanjun, Yukiyoshi Tamura, Zhou Yanyang, Wang Ying

机构信息

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

University of the Chinese Academy of Sciences, Beijing, P.R. China.

出版信息

PLoS One. 2016 Oct 6;11(10):e0164129. doi: 10.1371/journal.pone.0164129. eCollection 2016.

Abstract

BACKGROUND

Habitat fragmentation, water resources and biological characteristics are important factors that shape the genetic structure and geographical distribution of desert plants. Analysis of the relationships between these factors and population genetic variation should help to determine the evolutionary potential and conservation strategies for genetic resources for desert plant populations. As a traditional Chinese herb, Glycyrrhiza inflata B. (Fabaceae) is restricted to the fragmented desert habitat in China and has undergone a dramatic decline due to long-term over-excavation. Determining the genetic structure of the G. inflata population and identifying a core collection could help with the development of strategies to conserve this species.

RESULTS

We investigated the genetic variation of 25 G. inflata populations based on microsatellite markers. A high level of population genetic divergence (FST = 0.257), population bottlenecks, reduced gene flow and moderate genetic variation (HE = 0.383) were detected. The genetic distances between the populations significantly correlated with the geographical distances, and this suggests that habitat fragmentation has driven a special genetic structure of G. inflata in China through isolation by distance. STRUCTURE analysis showed that G. inflata populations were structured into three clusters and that the populations belonged to multiple water systems, which suggests that water resources were related to the genetic structure of G. inflata. In addition, the biological characteristics of the perennial species G. inflata, such as its long-lived seeds, asexual reproduction, and oasis ecology, may be related to its resistance to habitat fragmentation. A core collection of G. inflata, that included 57 accessions was further identified, which captured the main allelic diversity of G. inflata.

CONCLUSIONS

Recent habitat fragmentation has accelerated genetic divergence. The population genetic structure of G. inflata has been shaped by habitat fragmentation, water resources and biological characteristics. This genetic information and core collection will facilitate the conservation of wild germplasm and breeding of this Chinese medicinal plant.

摘要

背景

生境破碎化、水资源和生物学特性是塑造荒漠植物遗传结构和地理分布的重要因素。分析这些因素与种群遗传变异之间的关系,有助于确定荒漠植物种群遗传资源的进化潜力和保护策略。胀果甘草(豆科)作为一种传统中药材,在中国仅限于破碎化的荒漠生境,由于长期过度挖掘,其数量已急剧减少。确定胀果甘草种群的遗传结构并鉴定核心种质库,有助于制定该物种的保护策略。

结果

我们基于微卫星标记研究了25个胀果甘草种群的遗传变异。检测到高水平的种群遗传分化(FST = 0.257)、种群瓶颈、基因流减少和中等程度的遗传变异(HE = 0.383)。种群之间的遗传距离与地理距离显著相关,这表明生境破碎化通过距离隔离驱动了中国胀果甘草特殊的遗传结构。STRUCTURE分析表明,胀果甘草种群分为三个聚类,且这些种群属于多个水系,这表明水资源与胀果甘草的遗传结构有关。此外,多年生胀果甘草的生物学特性,如长寿种子、无性繁殖和绿洲生态,可能与其对生境破碎化的抗性有关。进一步鉴定出包含57份种质的胀果甘草核心种质库,该核心种质库捕获了胀果甘草的主要等位基因多样性。

结论

近期的生境破碎化加速了遗传分化。胀果甘草的种群遗传结构已受到生境破碎化、水资源和生物学特性的影响。这些遗传信息和核心种质库将有助于该野生种质资源的保护和这种中药材的育种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c153/5053598/d15b0e2465ab/pone.0164129.g001.jpg

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