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Identification of QTL for Target Leaf Spot resistance in Sorghum bicolor and investigation of relationships between disease resistance and variation in the MAMP response

机译:高粱双色靶叶斑抗性QTL鉴定及抗病性抗病性与变化关系的研究

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Target leaf spot (TLS) of sorghum, a foliar disease caused by the necrotrophic fungus Bipolaris cookei (also known as Bipolaris sorghicola), can affect grain yield in sorghum by causing premature drying of leaves and defoliation. Two sorghum recombinant inbred line (RIL) populations, BTx623/BTx642 and BTx623/SC155-14E, were assessed for TLS resistance in replicated trials. Using least square mean trait data, four TLS resistance QTL were identified, two in each population. Of these, three were previously unidentified while a major QTL on chromosome 5 in the BTx623/BTx642 RIL population corresponded to the previously identified TLS resistance gene ds1. A set of sorghum lines were assessed for production of reactive oxygen species induced by treatment with the microbe-associated molecular pattern (MAMP) flg22 (a derivative of flagellin). Flg22-induced ROS production varied between lines in a consistent fashion. One QTL associated with variation in the flg22 response was detected in the RIL populations. No evidence was found to link variation in the MAMP response to variation in TLS resistance.
机译:高粱的靶叶斑(TLS),一种由虚养殖真菌Bipolaris Cookei(也称为Bipolaris Sorghicola)引起的叶面疾病,可以通过导致叶片和脱落的过早干燥来影响高粱的谷物产量。两种高粱重组近交系(RIL)群体,BTX623 / BTX642和BTX623 / SC155-14E被评估为TLS抗性试验。使用最小二乘平均特征数据,鉴定了四种TLS电阻QTL,每种群体中有两个。其中,在BTX623 / BTX642 RIL群体中的染色体5上的主要QT1上的主要QTL对应于先前鉴定的TLS抗性基因DS1。通过用微生物相关分子图案(MAMP)FLG22(鞭毛素的衍生物)来评估一组高粱线来生产通过处理诱导的反应性氧物质。 FLG22诱导的ROS生产在线之间变化,以一致的方式变化。在RIL群体中检测到与FLG22响应变化相关的一个QTL。没有发现证据在对抗TLS电阻的变化中链接变化。

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