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利用多重微卫星标记鉴别普通菜豆品种

Discrimination of common bean cultivars using multiplexed microsatellite markers.

作者信息

Cardoso P C B, Brondani C, Menezes I P P, Valdisser P A M R, Borba T C O, Del Peloso M J, Vianello R P

机构信息

Laboratório de Biotecnologia, Embrapa Arroz e Feijão, Santo Antônio de Goiás, GO, Brasil.

Laboratório de Biotecnologia, Embrapa Arroz e Feijão, Santo Antônio de Goiás, GO, Brasil

出版信息

Genet Mol Res. 2014 Mar 24;13(1):1964-78. doi: 10.4238/2014.March.24.1.

Abstract

Analysis of DNA polymorphisms allows for the genetic identification and precise discrimination of species with a narrow genetic base such as common bean. The primary objectives of the present study were to molecularly characterize commercial common bean varieties developed at various research institutions using microsatellite markers and to determine the degree of genetic diversity among the bean varieties analyzed. Fifty cultivars representing 12 grain classes and 64 genitors, i.e., accessions used to develop these cultivars, were characterized. Based on an analysis of 24 simple sequence repeats, the estimates for the average number of alleles and genetic diversity were 8.29 and 0.646, respectively. The combined probability of identity was estimated at 7.05 x 10(-17), indicating a high individual discriminatory power. Thirty-two percent of the cultivars exhibited heterogeneity for multiple loci that reflected either homozygosity for different alleles of a given locus in different individuals or heterozygosity for the locus. The average genetic diversity for the groups of cultivars and genitors was 0.605 and 0.660, respectively, with no genetic differentiation (FST) between these groups. Although similar estimates of expected heterozygosity were observed when the cultivars were grouped by release date, a greater number of private alleles was observed in the most recent cultivars. The genetic differentiation among cultivars originating from different institutions was not different from zero (FST = 0.01). The molecular profile database derived from these analyses may increase the statistical power of genetic estimates and may be incorporated into breeding programs for common bean. Furthermore, the profiles obtained for the different cultivars may be used as molecular descriptors to complement traditional descriptors used in distinctiveness, uniformity and stability tests, thereby improving the traceability of samples and their derivatives and helping to protect the intellectual property rights of breeders.

摘要

DNA多态性分析有助于对遗传基础狭窄的物种(如普通菜豆)进行遗传鉴定和精确区分。本研究的主要目的是利用微卫星标记对不同研究机构培育的商业普通菜豆品种进行分子特征分析,并确定所分析的菜豆品种之间的遗传多样性程度。对代表12个籽粒类型的50个品种和64个亲本(即用于培育这些品种的种质)进行了特征分析。基于对24个简单序列重复的分析,等位基因平均数和遗传多样性的估计值分别为8.29和0.646。个体识别联合概率估计为7.05×10^(-17),表明具有较高的个体鉴别力。32%的品种在多个位点表现出异质性,这反映了不同个体中给定位点不同等位基因的纯合性或该位点的杂合性。品种组和亲本组的平均遗传多样性分别为0.605和0.660,两组之间没有遗传分化(FST)。尽管按发布日期对品种进行分组时观察到预期杂合度的估计值相似,但在最新品种中观察到更多的私有等位基因。来自不同机构的品种之间的遗传分化与零没有差异(FST = 0.01)。从这些分析中获得的分子图谱数据库可能会提高遗传估计的统计效力,并可纳入普通菜豆的育种计划。此外,为不同品种获得的图谱可作为分子描述符,以补充在特异性、一致性和稳定性测试中使用的传统描述符,从而提高样品及其衍生物的可追溯性,并有助于保护育种者的知识产权。

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