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TaNAC032 转录因子调控木质素生物合成基因以防治小麦赤霉病。

TaNAC032 transcription factor regulates lignin-biosynthetic genes to combat Fusarium head blight in wheat.

机构信息

Plant Science Department, McGill University, Quebec, Canada.

Department of Biological Sciences, Université de Montréal, Quebec, Canada.

出版信息

Plant Sci. 2021 Mar;304:110820. doi: 10.1016/j.plantsci.2021.110820. Epub 2021 Jan 8.

Abstract

Fusarium head blight (FHB) is a destructive disease affecting cereal crops globally due to mycotoxin contamination of grains that reduce yield and quality. Among hundreds of QTLs identified for resistance, the QTL-Fhb1 is of significant interest even today, for its major contribution to FHB resistance. Previously, QTL-Fhb1 dissection based on a combined metabolo-genomics approach, identified a few potential resistance genes, including a NAC like transcription factor for FHB resistance. Sequencing and phylogenetic analysis confirmed NAC to be the wheat TaNAC032. Also, the quantitative RT-PCR studies revealed a greater induced expression of TaNAC032 in resistant NIL in comparison to susceptible NIL upon Fusarium graminearum (Fg) infection. The virus-induced gene silencing (VIGS) based functional validation of TaNAC032 in resistant NIL confirmed increased disease severity and fungal biomass. Metabolic profiling revealed low abundances of resistance-related (RR) metabolites in TaNAC032 silenced NIL-R compared to non-silenced. Silenced plants showed decreased transcript abundances of RR metabolite biosynthetic genes associated with a reduction in total lignin content in rachis, confirming the regulatory role of TaNAC032 in wheat in response to Fg infection. If TaNA032 is mutated in an FHB susceptible cultivar, it can be edited to enhance FHB resistance.

摘要

镰刀菌穗腐病(FHB)是一种全球性的破坏性疾病,由于谷物中真菌毒素的污染,降低了产量和质量。在数百个鉴定出的抗性 QTL 中,即使在今天,QTL-Fhb1 因其对 FHB 抗性的主要贡献而仍然具有重要意义。以前,基于代谢组学和基因组学相结合的方法对 QTL-Fhb1 进行剖析,确定了一些潜在的抗性基因,包括一个对 FHB 抗性的 NAC 类转录因子。测序和系统发育分析证实 NAC 是小麦 TaNAC032。此外,定量 RT-PCR 研究表明,与易感 NIL 相比,在受到禾谷镰刀菌(Fg)感染后,抗性 NIL 中 TaNAC032 的诱导表达更高。在抗性 NIL 中基于病毒诱导基因沉默(VIGS)的 TaNAC032 功能验证证实,与非沉默相比,疾病严重程度和真菌生物量增加。代谢组学分析显示,与非沉默相比,TaNAC032 沉默 NIL-R 中与抗性相关(RR)代谢物的丰度较低。沉默植株中与总木质素含量降低相关的 RR 代谢物生物合成基因的转录本丰度降低,证实了 TaNAC032 在小麦响应 Fg 感染中的调控作用。如果 FHB 易感品种中的 TaNA032 发生突变,可以对其进行编辑以增强 FHB 抗性。

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