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Components of resistance to late leaf spot and rust among interspecific derivatives and their significance in a foliar disease resistance breeding in groundnut (Arachis hypogaea L.)

机译:种间衍生物对晚叶斑病和锈病的抗性成分及其在花生叶片抗病育种中的意义(arachis hypogaea L.)

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摘要

Late leaf spot (LLS) and rust cause substantial yield losses and reduce the fodder and seed quality in groundnut (Arachis hypogaea L.). Adoption of resistant cultivars by the semi-arid tropic farmers is the best option to overcome yield losses. Knowledge on components of resistance to these diseases should facilitate the development of groundnut cultivars with enhanced resistance to LLS and rust. The objectives of the experiments were to study the genetic variability and relationships among components of resistance to LLS and rust, and assess their significance in disease resistance breeding. Fifteen interspecific derivatives for LLS and 14 for rust and a susceptible control, TMV 2, were evaluated in a randomised complete block design with two or three replications under greenhouse conditions. The experiments were repeated twice. Genotypic differences were highly significant for all the traits studied. Resistance to LLS is due to longer incubation and latent periods, lesser lesions per leaf, smaller lesion diameter, lower sporulation index, and lesser leaf area damage and disease score. Selection based on components of resistance to LLS may not lead to plants with higher retained green leaf area. The remaining green leaf area on the plant should, therefore, be the major selection criteria for resistance to LLS in breeding programs. Resistance to rust is due to longer incubation and latent periods, fewer pustules per leaf, smaller pustule diameter, lower sporulation index, and lesser leaf area damage and disease score. Rust resistant components appear to work additively, therefore, selection based on resistance components together with green leaf area retained on the plant should be the basis of selecting for resistance to rust in breeding programs. ICGV# 99005, 99003, 99012, and 99015 for rust and ICGV# 99006, 99013, 99004, 99003, and 99001 for LLS are the better parents for use in resistance breeding programs.
机译:晚叶点(LLS)和锈病导致大量产量损失,降低造林(Arachis Hypogaea L)的饲料和种子质量。通过半干旱的热带农民采用耐药品种是克服产量损失的最佳选择。关于这些疾病抗性组分的知识应促进造林品种的发展,具有增强的LLS和锈蚀。实验的目标是研究抗LLS和锈病组分的遗传变异性和关系,并评估其在抗病育种中的重要性。对于LLS和14的十五种间隙衍生物和易感控制,TMV 2,在随机的完整块设计中评估,其温室条件下的两次或三种复制。实验重复两次。基因型差异对于所研究的所有特征来说非常重要。对LL的抗性是由于孵育和潜伏期较长,每叶病变小,病变直径较小,孢子率较低,叶片面积损伤和疾病得分。基于对LL的抗性组分的选择可能不会导致具有更高保留的绿叶区域的植物。因此,植物上的剩余绿叶面积应成为育种计划中LLS的主要选择标准。耐锈病是由于孵化和潜伏期较长,每叶脓疱,较小的脓疱,较低的孢子化指数和较小的叶面积损伤和疾病得分。因此,防锈部件似乎加剧,因此,基于抗性组分与保留在植物上的绿叶区域的选择应该是选择育种计划中生锈的抗性的基础。 ICGV#99005,99003,99012和99015用于LLS的RUST和ICGV#99006,99013,99004,99003和99001是抵抗养殖计划中使用的更好父母。

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