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Genome‐wide association mapping of Fusarium langsethiae infection and mycotoxin accumulation in oat (Avena sativa L.)

机译:燕麦松感染和燕麦菌(Avena Sativa L.)的基因组 - 宽瘤感染和霉菌毒素积累

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Fusarium langsethiae is a symptomless pathogen of oat panicles that produces T‐2 and HT‐2 mycotoxins, two of the most potent trichothecenes produced by Fusarium fungi in cereals. In the last few years, the levels of these mycotoxin in oat grain has increased and the European commission have already recommended a maximum level for of 1000 μg kg?1 for unprocessed oat for human consumption. The optimal and most sustainable way of combating infection and mycotoxin contamination is by releasing resistant oat varieties. Here the objective was to determine if we could identify any genomic loci associated with either the accumulation of F. langsethiae DNA or mycotoxins in the grain. In each of two years, field trials were conducted wherein 190 spring oat varieties were inoculated with a mixture of three isolate of the pathogen. Mycotoxins were quantified using liquid chromatography–tandem mass spectrometry. Varieties were genotyped using 16,863 genotyping by sequencing markers. Genome‐wide association studies associated 5 SNPs in the linkage group Mr06 with T‐2 + HT‐2 mycotoxin accumulation. Markers were highly correlated, and a single QTL was identified. The marker avgbs_6K_95238.1 mapped within genes showing similarity to lipase, lipase‐like or lipase precursor mRNA sequences and zinc‐finger proteins. These regions have previously been shown to confer a significant increase in resistance to Fusarium species.
机译:荧光素琅氏菌是一种燕麦圆锥形的症状病原体,其产生T-2和HT-2霉菌毒素,两种最有效的三胞菌在谷物中产生的镰刀菌真菌产生的两种。在过去几年中,这些乳突毒素的水平粮食的水平增加,欧盟委员会已经建议为人类消费的未加工燕麦的最高水平。打击感染和霉菌毒素污染的最佳和最可持续的方法是通过释放抗性燕麦品种。这里的目的是确定我们是否可以识别与谷物中的朗西替氏菌DNA或霉菌毒素的积累相关的任何基因组基因座。在两年中的每一个中,进行现场试验,其中将190个弹簧燕麦品种接种,用三种分离物的分离物的混合物接种。使用液相色谱 - 串联质谱法定量霉菌毒素。通过测序标记物使用16,863个基因分型来基因分型进行基因分型。基因组 - 宽协会在连锁组MR06中的相关5SNP具有T-2 + HT-2霉菌毒素积累。标记高度相关,鉴定了单个QTL。标记AVGBS_6K_95238.1映射在显示与脂肪酶,脂肪酶或脂肪酶前体mRNA序列和锌 - 手指蛋白质相似之处的基因内。以前已经显示出这些区域赋予抗镰刀菌物种的显着增加。

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