苹果属栽培种楸子的遗传多样性与遗传结构分析
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中国农业科学院创新工程项目(CAAS-ASTIP-2016-RIP-02);农业部现代农业产业技术体系建设专项资金(CARS-27);农作物种质资源保护(NB2015-2130135-39);国家公益性行业(农业)科研专项(201303093)


The Genetic Diversity and Population Structure Analysis of Cultivated Species Malus prunifolia(Willd.)Borkh. of Malus Mill.
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    摘要:

    利用荧光SSR分子标记,对新收集的苹果属栽培种楸子种质资源进行了遗传多样性和群体结构分析,明确群体内和群体间的遗传多样性和结构,为苹果属植物种质资源的收集保存和砧木育种亲本选择提供参考。利用荧光SSR构建研究材料的指纹数据,主要利用GenAlEx 6.501软件分析遗传多样性,利用POPULATION 1.2软件基于Nei遗传距离构建Neighbour-Joining(NJ)树,并利用STRUCTURE 2.3.4软件进行群体结构分析。结果表明:19对SSR引物共检测出390个多态性等位基因,平均等位基因数20.526,平均有效等位基因数9.399,观察杂合度和期望杂合度的平均值分别为0.706和0.868,香浓多样性指数为2.446,高于以往研究的苹果属植物的遗传多样性。基于Nei遗传距离的聚类分析在遗传距离0.9167处155份材料可以分成3个类群,三个类群间的遗传距离较近,并没有完全按来源地划分为相应的类群。群体结构分析将155份材料划分成了2个稳定的群体,群体结构分组与NJ聚类有相似的结果,其中150份材料的Q值均大于0.6,血缘相对单一。

    Abstract:

    Genetic diversity and population structure analysis were carried out on the newly collected germplasm resources of cultivated species Malus prunifolia of Malus Mill. by use of the fluorescent SSR molecular markers. The identification of the genetic diversity and structure in and among populations can provided references for the collection and preservation of germplasm resources of Malus, and for the selection of rootstock breeding. Fingerprint data were constructed using fluorescent SSR molecular markers, genetic diversity was analyzed using GenAlEx 6.501, Neighbour-Joining tree was constructed using POPULATION 1.2, and population structure was analyzed using STRUCTURE 2.3.4. The results showed that 390 polymorphic alleles were detected by 19 pairs of SSR primers, the average allele number was 20.526, and the average effective allele number was 9.399. The average values of heterozygosity and expected heterozygosity were 0.706 and 0.868, respectively. The Shannon index was 2.446. The genetic diversity of Malus prunifolia in this study was higher than the other species of Malus Mill. before. The cluster analysis based on Nei genetic distance can be divided into three groups for 155 accessions at 0.9167. Three groups are close with each other, and most groups are not related to geographical location. The population structure analysis of all accessions was divided into two groups. Clustering results coincide with the population structure. Q value of 150 accessions was higher than 0.6, and these accessions had a relatively single blood relationship.

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高源,王昆,王大江,等.苹果属栽培种楸子的遗传多样性与遗传结构分析[J].植物遗传资源学报,2019,20(1):79-89.

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历史
  • 收稿日期:2018-05-22
  • 最后修改日期:2018-09-08
  • 录用日期:2018-06-22
  • 在线发布日期: 2019-01-14
  • 出版日期: 2019-01-16
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