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Foliar fungal disease-resistant introgression lines of groundnut (Arachis hypogaea L.) record higher pod and haulm yield in multilocation testing

机译:花生(Arachis hypogaea L.)的叶面真菌抗病性渗入系在多部位试验中记录到较高的荚果和茎秆产量

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Introgression lines (ILs) of groundnut with enhanced resistance to rust and late leaf spot (LLS) recorded increased pod and haulm yield in multilocation testing. Marker-assisted backcrossing (MABC) approach was used to introgress a genomic region containing a major QTL that explains >80% of phenotypic variance (PV) for rust resistance and 67.98% PV for LLS resistance. ILs in the genetic background of TAG 24, ICGV 91114 and JL 24 were evaluated for two seasons to select 20 best ILs based on resistance, productivity parameters and maturity duration. Multilocation evaluation of the selected ILs was conducted in three locations including disease hot spots. Background genotype, environment and genotype x environment interactions are important for expression of resistance governed by the QTL region. Six best ILs namely ICGV 13192, ICGV 13193, ICGV 13200, ICGV 13206, ICGV 13228 and ICGV 13229 were selected with 39-79% higher mean pod yield and 25-89% higher mean haulm yield over their respective recurrent parents. Pod yield increase was contributed by increase in seed mass and number of pods per plant.
机译:花生的渗入系(ILs)具有增强的防锈性和后期叶斑病(LLS),在多位置测试中记录了豆荚和长茎产量的增加。标记辅助回交(MABC)方法用于使包含主要QTL的基因组区域渗入,该QTL解释了> 80%的表型变异(PV)防锈性和67.98%PV的LLS抗性。对TAG 24,ICGV 91114和JL 24遗传背景中的IL进行了两个季节的评估,以根据抗性,生产力参数和成熟期选择20种最佳IL。在包括疾病热点在内的三个位置对所选IL进行多位置评估。背景基因型,环境和基因型x环境之间的相互作用对于表达受QTL区控制的抗性很重要。选择了六个最佳IL,分别是ICGV 13192,ICGV 13193,ICGV 13200,ICGV 13206,ICGV 13228和ICGV 13229,其平均豆荚产量比其各自的亲代母本高39-79%,平均单果产量高25-89%。荚果产量的增加是由于种子质量和单株荚果数量的增加所致。

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