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Genetic analysis to identify good combiners for ToLCV resistance and yield components in tomato using interspecific hybridization

机译:利用种间杂交进行遗传分析以鉴定番茄中ToLCV抗性和产量成分的良好组合物

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The interspecific hybridization for tomato leaf curl virus (ToLCV) resistance was carried out among 10 genetically diverse tomato genotypes (diversified by 50 SSR markers). Among the 10 parents, four susceptible cultivars of Solanum lycopersicum were crossed with six resistant wilds, such as S. pimpinellifolium, S. habrochaites, S. chemielewskii, S. ceraseforme, S. peruvianum and S. chilense in a line ?— tester mating design. All the 24 hybrids and their parents were grown in the field and glasshouse conditions to determine the general-combining abilities (GCA) and specific-combining abilities (SCA). The variances due to SCA and GCA showed both additive and nonadditive gene effects. Based on GCA estimates, EC-520061 and WIR-5032 were good general combiners while based on SCA estimates, PBC ?— EC-520061 and PBC ?— EC-521080 were best specific combiners for coefficient of infection and fruit yield per plant in both the environments. These lines could be selected and utilized in ToLCV resistance and high yield breeding programme for improving the traits.
机译:在10种遗传上不同的番茄基因型(由50个SSR标记组成的多样性)中进行了番茄叶片卷曲病毒(ToLCV)抗性的种间杂交。在这10个亲本中,番茄的4个易感品种与6个抗性野生品种杂交,例如p。Pininellifolium,S。habrochaites,S。chemielewskii,S。ceraseforme,S。peruvianum和chilense。设计。所有24个杂种及其亲本均在田间和温室条件下生长,以确定一般组合能力(GCA)和特定组合能力(SCA)。 SCA和GCA引起的差异显示了加性和非加性基因效应。根据GCA估计,EC-520061和WIR-5032是良好的通用组合器,而根据SCA估计,PBC?— EC-520061和PBC?— EC-521080是这两种植物中感染系数和单果产量的最佳特定组合器。环境。可以选择这些品系并用于ToLCV抗性和高产育种计划中以改善性状。

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