首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Genetic analyses of native Fusarium head blight resistance in two spring wheat populations identifies QTL near theB1,Ppd-D1,Rht-1,Vrn-1,Fhb1,Fhb2, andFhb5loci
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Genetic analyses of native Fusarium head blight resistance in two spring wheat populations identifies QTL near theB1,Ppd-D1,Rht-1,Vrn-1,Fhb1,Fhb2, andFhb5loci

机译:两种春小麦群体天然镰刀镰刀菌钝性抗性的遗传分析鉴定了BB1,PPD-D1,RHT-1,VRN-1,FHB1,FHB2,ANDFHB5LOCI附近的QTL

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摘要

Key message QTL analyses of two bi-parental mapping populations with AC Barrie as a parent revealed numerous FHB-resistance QTL unique to each population and uncovered novel variation nearFhb1. Fusarium head blight (FHB) is a destructive disease of wheat worldwide, leading to severe yield and quality losses. The genetic basis of native FHB resistance was examined in two populations: a recombinant inbred line population from the cross Cutler/AC Barrie and a doubled haploid (DH) population from the cross AC Barrie/Reeder. Numerous QTL were detected among the two mapping populations with many being cross-specific. Photoperiod insensitivity atPpd-D1and dwarfing atRht-B1andRht-D1was associated with increased FHB susceptibility. Anthesis date QTL at or near theVrn-A1andVrn-B1loci co-located with major FHB-resistance QTL in the AC Barrie/Reeder population. The loci were epistatic for both traits, such that DH lines with both late alleles were considerably later to anthesis and had reduced FHB symptoms (i.e., responsible for the epistatic interaction). Interestingly, AC Barrie contributed FHB resistance near theFhb1locus in the Cutler population and susceptibility in the Reeder population. Analyses of theFhb1candidate genesPFTandTaHRCconfirmed that AC Barrie, Cutler, and Reeder do not carry the Sumai-3Fhb1gene. Resistance QTL were also detected at the expected locations ofFhb2andFhb5. The native FHB-resistance QTL detected nearFhb1,Fhb2, andFhb5do not appear to be as effective asFhb1,Fhb2, andFhb5from Sumai-3. The presence of awns segregated at theB1awn inhibitor locus in both populations, but was only associated with FHB resistance in the Cutler/AC Barrie population suggesting linkage caused the association rather than pleiotropy.
机译:关键消息QTL与AC Barrie作为父母的两个双重父母映射群体分析,因为父母揭示了每种人群的许多FHB抵抗QTL,并揭示了Qubb1附近的新型变异。 Fusarium Head Blight(FHB)是全世界小麦的破坏性疾病,导致严重的产量和质量损失。在两种群体中检查了天然FHB抗性的遗传基础:来自交叉切屑器/ AC碱的重组近交系数和来自交叉AC喇叭/雷德的双倍单倍体(DH)群。在两个映射群体中检测到许多QTL,许多群体是交叉特定的。 PhotoCeriod Insensity ATPPD-D1和矮化ATRHT-B1ANDRHT-D1与FHB易感性增加相关。在vrn-a1andvrn-b1loci附近或附近的开花日期qtl与AC喇叭/雷德尔群中的主要FHB电阻QTL共同定位。基因座对于两个特征来说是本质,使得具有晚期等位基因的DH线以后对开孔减少,并且具有减少的FHB症状(即,负责认证互动)。有趣的是,AC Barrie在Cutler人口中的FHB1Locus附近促进了FHB抗性,并在瑞德人群中的易感性。 FHB1CandidatideNestBettandtAntAnthrconfirmed的分析,AC Barrie,Cutler和Reeder不携带Sumai-3FHB1gene。在预期的位置offHB2ANDFHB5,也检测到电阻QTL。检测到的Native FHB抵抗QTL近FHB1,FHB2,ANDFHB5似乎不是SUMAI-3的有效ASFHB1,FHB2,ANDFHB5。在两种群体中在B1awn抑制剂基因座中偏析的AWNS的存在,但仅与Cutler / Ac Barrie群体中的FHB抗性相关,表明联动导致关联而不是肺炎。

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