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首页> 外文期刊>Acta Scientiarum. Agronomy >Genetic effects for controlling stripe rust ( Puccinia striiformis f. sp.tritici ) resistance in wheat through joint segregation analysis
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Genetic effects for controlling stripe rust ( Puccinia striiformis f. sp.tritici ) resistance in wheat through joint segregation analysis

机译:通过联合分离分析控制小麦抗条锈病(Puccinia striiformis f.sptictici)的遗传效应。

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Mixed inheritance analysis using joint segregation analysis (JSA) for stripe rust ( Puccinia striiformis f. sp. tritici ) resistance was carried out in six basic populations (P 1 , F 1 , P 2 , BC 1 , BC 2 and F 2 ) of four wheat crosses (Hashim-08 ?? LU-26, Farid-06 ?? Shafaq, Parula ?? Blue Silver, TD-1 ?? D-97603) during crop season 2009 to 2012. Genes controlling stripe rust resistance were assessed by using area under disease progress curve (AUDPC). The AUDPC was controlled by mixed two additive-dominant-epistatic major genes plus additive-dominant-epistasis of polygenes in cross Hashim-08 ?? LU-26 (model E), while in Farid-06 ?? Shafaq, it was controlled by mixed two major additive-dominant genes plus additive-dominant polygenes (model E-2). In cross Parula ?? Blue Silver, the AUDPC was managed by additive, dominance and epistasis of two major genes (model B-1), however, it was controlled by mixed one major gene and additive dominant polygenes in cross TD-1 ?? D-97603 (model D-1). Genetic variation and heritability was higher in major genes than polygene for all the crosses showing that AUDPC was mainly controlled by major genes. The genetic behavior of the AUDPC revealed that stripe rust resistance was controlled by mixed interaction of one to two major genes plus polygenes.
机译:利用联合偏析(JSA)对小麦的6个基本种群(P 1,F 1,P 2,BC 1,BC 2和F 2)的条锈病(Puccinia striiformis f。sp。tritici)抗性进行了混合遗传分析。在2009年至2012年的整个作物季节中,进行了四个小麦杂交(Hashim-08 ?? LU-26,Farid-06 ?? Shafaq,Parula ??蓝银,TD-1 ?? D-97603)。控制条纹抗锈性的基因通过使用疾病进展曲线下的面积(AUDPC)。在杂交Hashim-08中,AUDPC由两个加性显性上位性主基因与多基因的加性显性表位混合而控制。 LU-26(E型),而在Farid-06中? Shafaq,由两个主要的加性显性基因加加性显性多基因(E-2型)混合控制。在交叉帕拉??蓝银,AUDPC由两个主要基因(B-1型)的加性,显性和上位性控制,但是,它由交叉TD-1 ??中的一个主要基因和加性显性多基因混合控制。 D-97603(D-1型)。在所有杂交中,主要基因的遗传变异和遗传力均高于多基因,表明AUDPC主要由主要基因控制。 AUDPC的遗传行为表明,条锈病抗性受一到两个主要基因加多基因的混合相互作用控制。

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