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Variety identification and genetic relationships of mungbean and blackgram in Thailand based on morphological characters and ISSR analysis

机译:基于形态特征和ISSR分析的泰国绿豆和黑麦草品种鉴定及遗传关系

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Genetic diversity and relatedness were measured in 17 mungbean (Vigna?radiata[L.] Wilczek) and 5 blackgram (Vigna mungo?(L.) Hepper) genotypes by means of inter-simple sequence repeat (ISSR) analysis and morphological characters. Unweighted pair-group method arithmetic average (UPGMA) analysis of 19 morpho-agronomic characters showed clear separation of the genotypes into 3 major groups; cluster I containing 15 Thai cultivated mungbean varieties and breeding lines, cluster III containing 4 Thai cultivated blackgram varieties, and cluster II containing a mungbean wild relative (subspecies?sublobata), a blackgram wild relative (subspecies?silvestris) together with an Indian mungbean landrace. Pair wise coefficients of genetic similarity between all genotypes ranged from 0.17 to 0.84 with an average of 0.52. In total, 341 ISSR fragments were amplified for the two?Vigna?species by ISSR analysis using 18 ISSR primers. The polymorphism revealed with the ISSR primers was 90.6%. The number of amplified fragments varied from 9 to 32, with a size range of 200 - 1500 bp. The average numbers of fragments per primer and polymorphic fragments per primer were 18.94 and 17.17, respectively. Polymorphism information content (PIC) values ranged from 0.23 to 0.37 with an average of 0.31 across all the genotypes. Pair wise coefficients of ISSR-based genetic similarity between all genotypes ranged from 0.70 to 0.99 with an average of 0.86, suggesting quite narrow genetic base of mungbean and blackgram in Thailand that might limit continued breeding success. UPGMA analysis based on ISSR exhibited 2 major clusters; cluster I containing all mungbean genotypes and cluster II containing all blackgram genotypes. It appeared that ISSR was more effective for classification at the species level although no clear separation at the subspecies level was found. All 22 mungbean and blackgram genotypes can be effectively distinguished by only 6 ISSR primers with the highest PIC values, suggesting the applicability of ISSR analysis for variety identification.
机译:通过简单序列重复(ISSR)分析和形态学特征,对17个绿豆(Vigna?radiata [L.] Wilczek)和5个黑​​豆gram(Vigna mungo?(L.)Hepper)基因型进行了遗传多样性和相关性测定。对19个形态农艺性状的非加权成对分组法算术平均值(UPGMA)分析表明,基因型清楚地分为3个主要组。第一类包含15种泰国栽培的绿豆品种和育种系,第三类包含4种泰国栽培的黑豆品种,第二类包含一种绿豆野生亲缘种(亚种?亚叶叶),黑一种野生亲缘种(亚种?silvestris)以及印度绿豆种。所有基因型之间的遗传相似性成对系数范围为0.17至0.84,平均为0.52。通过使用18种ISSR引物进行ISSR分析,总共扩增了341个ISSR片段,用于两个Vigna物种。 ISSR引物揭示的多态性为90.6%。扩增片段的数量从9到32不等,大小范围为200-1500 bp。每个引物的平均片段数和每个引物的多态性片段数分别为18.94和17.17。所有基因型的多态信息含量(PIC)值范围从0.23到0.37,平均为0.31。所有基因型之间基于ISSR的遗传相似性的成对系数介于0.70至0.99之间,平均为0.86,表明泰国的绿豆和黑麦草的遗传基础非常狭窄,这可能会限制持续的育种成功。基于ISSR的UPGMA分析显示出2个主要聚类。聚类I包含所有绿豆基因型,聚类II包含所有黑糖基因型。尽管未发现亚种水平的明确分离,但ISSR似乎在物种级别的分类上更为有效。仅使用6个具有最高PIC值的ISSR引物就可以有效地区分所有22个绿豆和黑豆豆基因型,这表明ISSR分析可用于品种鉴定。

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