Screening of dry and snap bean (Phaseolus vulgaris L.) genotypes for resistance to Bean common mosaic virus and Bean common mosaic necrosis virus

İ. Deli̇göz, M. Sokmen, N. KUTLUK YILMAZ, H. Özçelik, M. Tekeoglu
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Abstract

The most effective control of Bean common mosaic virus (BCMV) and Bean common mosaic necrosis virus (BCMNV) is achieved by using the seeds of resistant cultivars. During conventional breeding, resistance against BCMV and BCMNV in common bean can be developed by pyramiding the strain-nonspecific dominant I gene with strain-specific recessive (bc-) resistance genes for long-term virus control. In this study, a total of 58 bean genotypes involving registered green and dry bean cultivars, local genotypes, and breeding lines were tested for the presence of known resistance genes. First of all, each genotype was inoculated with the NL-3 strain of BCMNV and the NL-4 strain of BCMV separately, and the plants were evaluated for the symptom appearance and tested by DAS-ELISA to confirm the presence or absence of the virus after three weeks of sap-inoculation. In the last part of the study, the resistance genes in bean genotypes were investigated by SCAR markers of SW-13 linked with the I gene and SBD-5 linked to bc-12. According to the phenotypic and molecular tests, out of 58 common bean genotypes tested, 37 involved the I gene, and seven and three genotypes contained bc-22 and bc-12 genes, respectively.
干豆和菜豆抗大豆花叶病毒和大豆花叶坏死病毒基因型的筛选
利用抗病品种的种子对大豆普通花叶病毒(BCMV)和大豆普通花叶坏死病毒(BCMNV)进行有效防治。在常规育种中,通过将株非特异性显性I基因与株特异性隐性(bc-)抗性基因聚合,可获得对BCMV和BCMNV的长期抗性。在本研究中,共检测了58个大豆基因型,包括注册的绿豆和干豆品种、地方基因型和育种系,以确定是否存在已知的抗性基因。首先将每个基因型分别接种BCMNV NL-3株和NL-4株,接种3周后对植株进行症状表现评价和DAS-ELISA检测,确认是否存在病毒。在研究的最后部分,利用与I基因连锁的SW-13和与bc-12连锁的SBD-5的SCAR标记对大豆基因型的抗性基因进行了研究。根据表型和分子测试,在测试的58种常见豆类基因型中,37种涉及I基因,7种和3种基因型分别包含bc-22和bc-12基因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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