首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Screening and functional characterization of candidate resistance genes to powdery mildew fromDasypyrum villosum#4in a wheat line Pm97033
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Screening and functional characterization of candidate resistance genes to powdery mildew fromDasypyrum villosum#4in a wheat line Pm97033

机译:粉末霉菌筛选抗性基因的筛选和功能表征从杜松杆菌米兰百叶菌#4,小麦线PM97033

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Key message Three genes designatedDvLox,Pm21#4, andPm21#4-Hidentified in a wheat-Dasypyrum villosum#4T6V#4S center dot 6DL translocation line Pm97033 conferred wheat for powdery mildew resistance. Powdery mildew (PM) caused byBlumeria graminisf. sp.tritici(Bgt) is one of the most devastating diseases in wheat. To date, only a few genes conferring resistance to wheat PM are cloned.Dasypyrum villosumis a wild relative of wheat, which providesPm21conferring wheat immunity to PM. In this study, we obtained many differentially expressed genes (DEGs) from a wheat-D.villosum#4T6V#4S center dot 6DL translocation line Pm97033 using RNA-sequencing. Among them, 7 DEGs associated with pathogen resistance were up-regulated in front ofBgtinfection. Virus-induced gene silencing and transformation assays demonstrated that two of them,DvLoxandPm21#4encoding a lipoxygenase and a encoding coiled-coil/nucleotide-binding site/leucine-rich repeat resistance protein, conferred wheat PM resistance. The transgenic wheat plants expressingDvLoxenhanced PM resistance, and the transgenic wheat plants expressingPm21#4showed PM immunity. ThePm21#4-silenced Pm97033 plants by the cluster regularly interspaced short palindromic repeats-associated endonuclease (CRISPR/Cas9) system were susceptible to PM. Thus,Pm21#4is a key gene contributing PM immune resistance in Pm97033. Constitutively expression ofPm21#4-H, which is silenced in Pm97033 andD. villosum#4, endowed a PM-susceptible wheat variety Fielder with PM immune resistance.
机译:关键消息三个基因指定DVLOX,PM21#4,ANDPM21#4-HITIED在小麦 - 达哒型villosum#4T6V#4S中心点6dl易位线PM97033赋予了粉状霉菌的粉状抗性。粉末状霉菌(PM)引起Blumeria Graminisf。 sp.tritici(bgt)是小麦最毁灭性的疾病之一。迄今为止,只有若干基因赋予小麦PM的耐受抵抗力。碳葡萄球菌百唾液欲达小麦的野外相对,该野生群体是小麦的野外相对于PM赋予小麦免疫力。在这项研究中,我们使用RNA测序获得了来自小麦-D.villosum#4T6V#4S中心点6dl易位线PM97033的许多差异表达的基因(DEGS)。其中,在BGTINFection的前面上调了与病原体抗性相关的7次。病毒诱导的基因沉默和转化测定证明,其中两种,DvloxandPM21#4 encoding脂氧合酶和编码卷曲线圈/核苷酸结合位点/富含含量的富含脂肪抗性蛋白质,赋予小麦PM电阻。转基因小麦植物表达vloxenhancepanced pm抗性,以及表现出pm21#4的转基因小麦植物。通过群体定期间隙的短文重复 - 相关的内切核酸酶(CRISPR / CAS9)系统的PM97033工厂易受PM易受PM的PM97033植物。因此,PM21#4IS在PM97033中有助于PM免疫抗性的关键基因。组成型在PM97033 ANDD中沉默的PM21#4-H. Villosum#4,赋予PM易受PM免疫抗性的小麦品种百分之饰。

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