Qiu Ying-xiong, Fu Cheng-xin, Wu Fei-jie
College of Life Sciences, Zhejiang University, Hangzhou 310029, Zhejiang, China.
Zhongguo Zhong Yao Za Zhi. 2003 Jul;28(7):598-603.
To assess the population genetic diversity and genetic structure and screen species-specific bands for identification of Changium smyrnioides and Chuanminshen violaceum.
Seven wild populations of Changium smyrnioides and one cultivated population of Chuanminshen violaceum were studied by ISSR analysis. The population genetic diversity and population genetic structure were assessed by using POPGENE software.
A total of 152 ISSR markers were scored, among which 136 (90.8%) were polymorphic. The values of Gst tended to be high (mean Gst = 0.575). The level of genetic divesity of Changium smyrnioides (A = 1.272; P = 27.26%; I = 0.132; H = 0.087) was higher than that of Chuanminshen violaceum (A = 1.217; P = 21.7; I = 0.103; H = 0.067).
The genetic variation of Changium smyrnioides is high and the majority of genetic variation occur among populations. Substantial genetic divergence is shown by cluster analysis (UPGMA) to befound between Changium smyrnioides and Chuanminshen violaceum at DNA level. In addition, one species-specific marker has been obtained in Chuanminshen violaceum. The phylogenetic relationship of two species has also been discussed.
评估明党参和川明参的群体遗传多样性与遗传结构,并筛选物种特异性条带用于明党参和川明参的鉴定。
采用ISSR分析对7个明党参野生居群和1个川明参栽培居群进行研究。利用POPGENE软件评估群体遗传多样性和群体遗传结构。
共记录了152个ISSR标记,其中136个(90.8%)具有多态性。Gst值趋于较高(平均Gst = 0.575)。明党参的遗传多样性水平(A = 1.272;P = 27.26%;I = 0.132;H = 0.087)高于川明参(A = 1.217;P = 21.7;I = 0.103;H = 0.067)。
明党参的遗传变异较高,且大部分遗传变异发生在居群间。聚类分析(UPGMA)表明,明党参和川明参在DNA水平上存在显著的遗传分化。此外,在川明参中获得了一个物种特异性标记。还讨论了两个物种的系统发育关系。