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首页> 外文期刊>Journal of Plant Nutrition >Inheritance of iron deficiency chlorosis resistance in groundnut (Arachis hypogaea L.)
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Inheritance of iron deficiency chlorosis resistance in groundnut (Arachis hypogaea L.)

机译:地生缺铁萎黄抗性的遗传(Arachis Hypogaea L.)

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摘要

Iron-deficiency chlorosis (IDC) is an important abiotic constraint affecting the growth and yield of groundnut in calcareous and alkaline soils worldwide. The present study investigated the inheritance of IDC resistance among four straight crosses of groundnut involving four IDC susceptible cultivars as females and a common IDC resistant male parent. The F-1's of all the four crosses were resistant to IDC indicating the dominant nature of IDC resistance. The F-2's of all the four crosses showed a good fit to the ratio of 15 (IDC resistant): 1 (IDC susceptible) and their behavior among the F-3's was as per the expected ratio of 7:4:4:1. The IDC resistance in groundnut is under the control of duplicate dominant genes wherein, the presence of a dominant allele at either of the loci results in IDC resistance, while duplicate recessive results in IDC susceptibility. This information would facilitate development of IDC resistant cultivars of groundnut.
机译:缺铁萎黄(IDC)是一种重要的非生物约束,影响全世界钙质和碱性土壤中幼苗生长和产量的重要性约束。 本研究调查了涉及四个IDC易感品种作为女性和普通IDC抗性男性父母的IDC抗性的IDC抗性的遗传。 所有四个十字架的F-1都对IDC抵抗,表明IDC电阻的主要性。 所有四个十字架的F-2的均匀符合15(IDC抗性):1(IDC易感性)的比例良好,并且它们在F-3之间的行为如预期比为7:4:4:1 。 地生中的IDC抗性在重复的显性基因的控制下,其中,在任何一个基因座中存在显性等位基因导致IDC电阻,而IDC易感性的重复接收力导致。 这些信息将促进IDC抗造林的IDC抗性。

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