College of Life Sciences, Shanghai Normal University, Shanghai 200234, China.
Comput Math Methods Med. 2022 Jun 17;2022:1002624. doi: 10.1155/2022/1002624. eCollection 2022.
Malus Mill genotype is highly heterozygous, and many theoretical problems such as genetic relationship and evolution process among germplasm are difficult to be solved by traditional analysis methods. The development of SCoT(start codon targeted polymorphism) molecular markers suitable for apples is of great significance for studying the origin, evolution, genetic relationship and genetic diversity of Malus Mill germplasm resources. In this paper, the genetic relationship and evolution of 15 materials were analyzed by SCoT molecular marker. The results showed that the gene differentiation coefficient values of four Malus Mill plants at the species level were 0.423, 0.439, 0.428 and 0.460, respectively, which indicated that there was obvious genetic differentiation among the populations of these four Malus Mill plants, but there were some differences among the populations of different Malus Mill plants. The gene differentiation coefficient of coextensive populations with different geographical distribution varied from 0.177 to 0.086 (average 0.138), which indicated that the genetic similarity of species in coextensive composite populations was high and there was a close genetic relationship among species. This indicates that SCoT molecular markers can be effectively used in the analysis of intraspecific genetic relationship and identification of intraspecific strains of Malus Mill plants.
苹果品种基因型高度杂合,许多理论问题,如种质间的遗传关系和进化过程,难以用传统分析方法解决。开发适合苹果的 SCoT(起始密码子靶向多态性)分子标记对于研究苹果属种质资源的起源、进化、遗传关系和遗传多样性具有重要意义。本文采用 SCoT 分子标记分析了 15 份材料的遗传关系和进化。结果表明,4 个苹果品种在种水平上的基因分化系数值分别为 0.423、0.439、0.428 和 0.460,表明这 4 个苹果品种的群体间存在明显的遗传分化,但不同苹果品种的群体间存在一定差异。不同地理分布的共有种群的基因分化系数在 0.177 到 0.086(平均 0.138)之间变化,表明共有复合种群中物种的遗传相似性较高,物种间存在密切的遗传关系。这表明 SCoT 分子标记可有效用于苹果属植物种内遗传关系分析和种内品系鉴定。