苦瓜(Momordica dioica Roxb.)雌雄基因型分子多样性评价及表型关系建立

4区 农林科学 Q3 Agricultural and Biological Sciences
S. Dodake, V. Chimote, P. Kulwal
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引用次数: 0

摘要

冬瓜(Momordica dioica Roxb.)是一种营养丰富的蔬菜作物,具有雌雄异株生殖特性。利用ISSR标记对48个棘葫芦基因型(32个雌性基因型和16个雄性基因型)进行分子分化分析,建立表型关系。在所研究的25条ISSR引物中,22条引物共获得88条条带,其中80条条带是多态性的,其中3条条带是独特的。因此,每个引物平均每个标记产生4.0个条带,每个标记平均产生3.64个多态性条带。15条引物多态性为100%。在树状图中,基因型之间存在差异,相似度范围为0.465 ~ 0.959。ISSR标记检测到的分子多样性范围更广,反映了形成不同5大类簇的高水平遗传变异的存在。在本次调查中,基于分子变异的聚类模式显示出五个聚类;其中聚类3共有28个基因型(全部为16个雄性基因型和12个雌性基因型);聚类4和聚类5为单基因型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of molecular diversity and establishing phenotypic relationships in female and male genotypes of spine gourd (Momordica dioica Roxb.)
Spine gourd (Momordica dioica Roxb.) is a highly nutritious vegetable crop with dioecious reproductive nature. Forty-eight spine gourd genotypes including 32 female and 16 male genotypes were assessed for molecular divergence to establish phenotypic relationships using ISSR markers. Twenty-two out of a total of 25 ISSR primers studied yielded a total of 88 bands of which 80 bands were polymorphic, with three of them being unique in their profile. Each primer thus produced a mean of 4.0 bands per marker, with 3.64 mean polymorphic bands per marker. Fifteen primers showed 100 percent polymorphism. In the dendrogram, genotypes were distinguished from each other with a similarity range of 0.465 to 0.959. A wider range of molecular diversity detected by ISSR markers reflected the presence of a high level of genetic variation forming different 5 broad groups of clusters. The clustering pattern based on molecular variation during this investigation revealed five clusters; of which cluster three had twenty-eight (all 16 malealong with 12 female genotypes) genotypes; while cluster 4 and 5 were mono-genotypic.
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来源期刊
Genetika-Belgrade
Genetika-Belgrade AGRONOMY-GENETICS & HEREDITY
CiteScore
1.80
自引率
0.00%
发文量
1
审稿时长
6-12 weeks
期刊介绍: The GENETIKA is dedicated to genetic studies of all organisms including genetics of microorganisms, plant genetics, animal genetics, human genetics, molecular genetics, genomics, functional genomics, plant and animal breeding, population and evolutionary genetics, mutagenesis and genotoxicology and biotechnology.
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