Indications for Three Independent Domestication Events for the Tea Plant (Camellia sinensis (L.) O. Kuntze) and New Insights into the Origin of Tea Germplasm in China and India Revealed by Nuclear Microsatellites

山茶 驯化 种质资源 遗传多样性 中国 生物 微卫星 UPGMA公司 植物 传统医学 遗传变异 地理 遗传学 基因 等位基因 人口 人口学 医学 社会学 考古
作者
M. K. Meegahakumbura,Moses C. Wambulwa,Kanchan Thapa,M. M. Li,Michael Möller,Jianchu Xu,Jun Yang,B. Y. Liu,Sailesh Ranjitkar,J. Liu,D. Z. Li,Lian‐Ming Gao
出处
期刊:PLOS ONE [Public Library of Science]
卷期号:11 (5): e0155369-e0155369 被引量:45
标识
DOI:10.1371/journal.pone.0155369
摘要

Background Tea is the world’s most popular non-alcoholic beverage. China and India are known to be the largest tea producing countries and recognized as the centers for the domestication of the tea plant (Camellia sinensis (L.) O. Kuntze). However, molecular studies on the origin, domestication and relationships of the main teas, China type, Assam type and Cambod type are lacking. Methodology/Principal Findings Twenty-three nuclear microsatellite markers were used to investigate the genetic diversity, relatedness, and domestication history of cultivated tea in both China and India. Based on a total of 392 samples, high levels of genetic diversity were observed for all tea types in both countries. The cultivars clustered into three distinct genetic groups (i.e. China tea, Chinese Assam tea and Indian Assam tea) based on STRUCTURE, PCoA and UPGMA analyses with significant pairwise genetic differentiation, corresponding well with their geographical distribution. A high proportion (30%) of the studied tea samples were shown to possess genetic admixtures of different tea types suggesting a hybrid origin for these samples, including the Cambod type. Conclusions We demonstrate that Chinese Assam tea is a distinct genetic lineage from Indian Assam tea, and that China tea sampled from India was likely introduced from China directly. Our results further indicate that China type tea, Chinese Assam type tea and Indian Assam type tea are likely the result of three independent domestication events from three separate regions across China and India. Our findings have important implications for the conservation of genetic stocks, as well as future breeding programs.
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