利用SSR标记分析普通野生稻遗传多样性

    Genetic Diversity Analysis of Common Wild Rice By Using SSR Markers

    • 摘要:
      目的  揭示中国云南景洪、云南元江、江西东乡、缅甸普通野生稻(Oryza rufipogen Griff.)遗传多样性,以及云南景洪和元江普通野生稻原、异位保存下变异情况。
      方法  利用36对SSR标记对来自云南景洪异位保护与原位保护区、云南元江异位保护与原位保护区、江西东乡及缅甸共102份普通野生稻进行检测,开展不同地理来源及不同保存方式下普通野生稻居群遗传多样性比较与聚类分析。
      结果  供试普通野生稻检测出等位变异(Na) 110个,平均3.056个,变幅为1~5个;Nei's基因多样性指数(Ⅰ)平均为0.448。不同地理来源Nei’s基因多样性指数大小为:缅甸(0.561)>云南景洪(0.437)>云南元江(0.236)>江西东乡(0.230),云南景洪和元江的普通野生稻Nei’s基因多样性指数均表现为异位保护区大于原位保护区(云南景洪:0.498>0.131,云南元江:0.264>0.035)。聚类与遗传分化分析显示,供试材料平均遗传相似系数为0.772,变幅0.260~1.000;在遗传相似系数0.635处可将供试材料划分为云南景洪、云南元江、江西东乡及缅甸居群。云南景洪原位保护区与缅甸的普通野生稻遗传距离较近(0.560),云南元江原位保护区与江西东乡的普通野生稻遗传距离较近(0.552);而云南元江原位保护区与景洪原位保护区的普通野生稻遗传距离为0.748,表明云南元江和景洪普通野生稻有明显的遗传分化。
      结论  不同地区的普通野生稻遗传分化有明显的地域性,云南景洪和元江普通野生稻遗传多样性因原生境居群减少而下降。

       

      Abstract:
      Objective  The study was conducted to reveal the genetic diversity of common wild rice (Oryza rufipogen Griff.) in Jinghong, Yuanjiang of Yunnan, Dongxiang of Jiangxi, and Myanmar, and the genetic variations of wild rice in Jinghong and Yuanjiang under in-situ and ex-situ conservation.
      Methods  We detected the genetic diversities of 102 O. rufipogen samples from Yunnan Jinghong ex-situ and in-situ conservation zone, Yunnan Yuanjiang ex-situ and in-situ conservation zone, Jiangxi Dongxiang and Myanmar with 36 pairs of SSR markers. A comparison and cluster analysis of genetic diversities of O. rufipogen from different geographical sources and under different conservation methods was conducted.
      Results  A total of 110 allele variations were detected, with an average of 3.056, and a range from 1 to 5. The average of Nei's gene diversity indexes (Ⅰ) was 0.448. The I of different geographical sources ranked as follows: Myanmar (0.561) > Yunnan Jinghong (0.437) > Yunnan Yuanjiang (0.236) > Jiangxi Dongxiang (0.230). The I of O. rufipogen under ex-situ conservation was higher than that under in-situ conservation in Jinghong (0.498 > 0.131) and Yuanjiang (0.264 > 0.035). Clustering and genetic differentiation analysis showed that the average genetic similarity coefficient (GS) of the tested materials was 0.772, with a range of 0.260-1.000. They were were divided into Yunnan Jinghong, Yunnan Yuanjiang, Jiangxi Dongxiang, and Myanmar populations at GS=0.635. The genetic distance of O. rufipogene between Yunnan Jinghong in-situ conservation and Myanmar was close (0.560), and that between Yunnan Yuanjiang in-situ conservation and Jiangxi Dongxiang was close (0.552). And the genetic difference of O. rufipogene between in-situ conservation of Yuanjiang and Jinghong was 0.748, indicating that there was obvious genetic differentiation between Yuanjiang and Jinghong.
      Conclusion  The genetic differentiation of O. rufipogene has obvious regionalism. The genetic diversity of O. rufipogene decreased due to the decrease of in-situ conservation populations in Jinghong and Yuanjiang of Yunnan.

       

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