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转录组分析揭示了由NAC转录因子调控的小麦对赤霉病的防御机制。

Transcriptional Profiling Reveals the Wheat Defences against Fusarium Head Blight Disease Regulated by a NAC Transcription Factor.

作者信息

Vranić Monika, Perochon Alexandre, Doohan Fiona M

机构信息

UCD School of Biology and Environmental Science and Earth Institute, College of Science, University College Dublin, D04 V1W8 Dublin, Ireland.

出版信息

Plants (Basel). 2023 Jul 20;12(14):2708. doi: 10.3390/plants12142708.

Abstract

The wheat NAC transcription factor TaNACL-D1 enhances resistance to the economically devastating Fusarium head blight (FHB) disease. The objective of this study was to decipher the alterations in gene expression, pathways and biological processes that led to enhanced resistance as a result of the constitutive expression of TaNACL-D1 in wheat. Transcriptomic analysis was used to determine the genes and processes enhanced in wheat due to TaNACL-D1 overexpression, both in the presence and absence of the causal agent of FHB, (0- and 1-day post-treatment). The overexpression of TaNACL-D1 resulted in more pronounced transcriptional reprogramming as a response to fungal infection, leading to the enhanced expression of genes involved in detoxification, immune responses, secondary metabolism, hormone biosynthesis, and signalling. The regulation and response to JA and ABA were differentially regulated between the OE and the WT. Furthermore, the results suggest that the OE may more efficiently: (i) regulate the oxidative burst; (ii) modulate cell death; and (iii) induce both the phenylpropanoid pathway and lignin synthesis. Thus, this study provides insights into the mode of action and downstream target pathways for this novel NAC transcription factor, further validating its potential as a gene to enhance FHB resistance in wheat.

摘要

小麦NAC转录因子TaNACL-D1增强了对造成巨大经济损失的小麦赤霉病(FHB)的抗性。本研究的目的是解析由于TaNACL-D1在小麦中的组成型表达而导致抗性增强所引起的基因表达、途径和生物学过程的变化。转录组分析用于确定在存在和不存在FHB病原体的情况下(处理后0天和1天),由于TaNACL-D1过表达而在小麦中增强的基因和过程。TaNACL-D1的过表达导致作为对真菌感染的反应更明显的转录重编程,从而导致参与解毒、免疫反应、次生代谢、激素生物合成和信号传导的基因表达增强。OE和WT之间对茉莉酸(JA)和脱落酸(ABA)的调控和反应存在差异。此外,结果表明OE可能更有效地:(i)调节氧化爆发;(ii)调节细胞死亡;(iii)诱导苯丙烷途径和木质素合成。因此,本研究为这种新型NAC转录因子的作用模式和下游靶途径提供了见解,进一步验证了其作为增强小麦FHB抗性基因的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b7c/10383764/9b88a007f929/plants-12-02708-g001.jpg

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