首页> 外文期刊>Journal of Applied Phycology >Genetic structure analysis of natural Sargassum muticum (Fucales, Phaeophyta) populations using RAPD and ISSR markers
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Genetic structure analysis of natural Sargassum muticum (Fucales, Phaeophyta) populations using RAPD and ISSR markers

机译:利用RAPD和ISSR标记对天然羊栖藻(Fucales,Phaeophyta)种群进行遗传结构分析。

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Sargassum muticum is important in maintaining the structure and function of littoral ecosystems, and is used in aquaculture and alginate production, however, little is known about its population genetic attributes. In this study, random amplified polymorphic DNA (RAPD) and inter-simple sequence repeat (ISSR) markers were used to investigate the genetic structure of four populations of S. muticum and one outgroup of S. fusiforme (Harv.) Setchell from Shandong peninsula of China. The selected 24 RAPD primers and 19 ISSR primers amplified 164 loci and 122 loci, respectively. Estimates of genetic diversity with different indicators (P%, percentage of polymorphic loci; H, the expected heterozygosity; I, Shannon's information index) revealed low or moderate level of genetic variations within each S. muticum population, and a high level of genetic differentiations were determined with pairwise unbiased genetic distance (D) and fixation index (F ST ) among the populations. The Mantel test showed that two types of matrices of D and F ST were highly correlated whether from RAPD (r = 0.9706, P = 0.009) or ISSR data (r = 0.9161, P = 0.009). Analysis of molecular variance (AMOVA) was conducted to apportion the variations among and within the S. muticum populations. It indicated that variations among populations were higher than those within populations, being 55.82% verse 44.18% by RAPD and 55.21% verse 44.79% by ISSR, respectively. Furthermore, the Mantel test suggested that genetic differentiations among populations were related to the geographical distances (r > 0.6), namely, conformed to the IBD (isolation by distance) model, as expected from UPGMA (unweighted pair group method with arithmetic averages) cluster analysis. On the whole, the high genetic structuring among the four S. muticum populations along the distant locations was clearly indicated in RAPD and ISSR analyses (r > 0.9, P < 0.05) in our study.
机译:鼠尾藻在维持沿海生态系统的结构和功能方面很重要,可用于水产养殖和藻酸盐生产,但是对其种群遗传特性知之甚少。在这项研究中,随机扩增多态性DNA(RAPD)和简单序列间重复(ISSR)标记用于调查山东半岛的四个S. muticum和S. fusiforme(Harv。Setchell)种群的遗传结构。中国。选择的24个RAPD引物和19个ISSR引物分别扩增了164个和122个基因座。用不同指标(P%,多态性位点的百分比; H,预期的杂合性; I,Shannon的信息指数)进行的遗传多样性估计显示,每个粘液沙门氏菌种群内的遗传变异水平较低或中等,遗传分化水平较高在人群中以成对的无偏遗传距离(D)和固着指数(F ST)确定。 Mantel测试表明,无论是来自RAPD(r = 0.9706,P = 0.009)还是来自ISSR数据(r = 0.9161,P = 0.009),D和F ST两种矩阵都高度相关。进行了分子变异分析(AMOVA)以分摊沙门氏菌种群之间和之内的变异。结果表明,种群间的差异高于种群内的差异,RAPD分别为55.82%和44.18%,ISSR为55.21%和44.79%。此外,Mantel检验表明,种群之间的遗传分化与地理距离(r> 0.6)有关,即符合IPG(按距离隔离)模型,这与UPGMA(带算术平均值的非加权对群方法)聚类所期望的分析。总体而言,在我们的研究中,RAPD和ISSR分析清楚地表明了沿遥远位置的四个沙门氏菌种群之间的高度遗传结构(r> 0.9,P <0.05)。

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