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小麦中与赤霉病反应相关的咖啡酰辅酶 A O-甲基转移酶基因的全基因组鉴定和特征分析。

Genome-wide identification and characterization of caffeoyl-coenzyme A O-methyltransferase genes related to the Fusarium head blight response in wheat.

机构信息

State Key Laboratory of Crop Stress Biology in Arid Areas, College of Agronomy and Yangling Branch of China Wheat Improvement Center, Northwest A&F University, 712100, Yangling, Shaanxi, China.

ICARDA-NWSUAF Joint Research Centre, Northwest A&F University, 712100, Yangling, Shaanxi, China.

出版信息

BMC Genomics. 2021 Jul 4;22(1):504. doi: 10.1186/s12864-021-07849-y.

Abstract

BACKGROUND

Lignin is one of the main components of the cell wall and is directly associated with plant development and defence mechanisms in plants, especially in response to Fusarium graminearum (Fg) infection. Caffeoyl-coenzyme A O-methyltransferase (CCoAOMT) is the main regulator determining the efficiency of lignin synthesis and composition. Although it has been characterized in many plants, to date, the importance of the CCoAOMT family in wheat is not well understood.

RESULTS

Here, a total of 21 wheat CCoAOMT genes (TaCCoAOMT) were identified through an in silico genome search method and they were classified into four groups based on phylogenetic analysis, with the members of the same group sharing similar gene structures and conserved motif compositions. Furthermore, the expression patterns and co-expression network in which TaCCoAOMT is involved were comprehensively investigated using 48 RNA-seq samples from Fg infected and mock samples of 4 wheat genotypes. Combined with qRT-PCR validation of 11 Fg-responsive TaCCoAOMT genes, potential candidates involved in the FHB response and their regulation modules were preliminarily suggested. Additionally, we investigated the genetic diversity and main haplotypes of these CCoAOMT genes in bread wheat and its relative populations based on resequencing data.

CONCLUSIONS

This study identified and characterized the CCoAOMT family in wheat, which not only provided potential targets for further functional analysis, but also contributed to uncovering the mechanism of lignin biosynthesis and its role in FHB tolerance in wheat and beyond.

摘要

背景

木质素是细胞壁的主要成分之一,与植物的发育和防御机制直接相关,尤其是在响应禾谷镰刀菌(Fg)感染时。咖啡酰辅酶 A O-甲基转移酶(CCoAOMT)是决定木质素合成效率和组成的主要调节因子。尽管它在许多植物中已被表征,但迄今为止,CCoAOMT 家族在小麦中的重要性还不太清楚。

结果

通过计算机基因组搜索方法,共鉴定出 21 个小麦 CCoAOMT 基因(TaCCoAOMT),并根据系统发育分析将其分为四个组,同一组的成员具有相似的基因结构和保守的基序组成。此外,利用来自 4 个小麦基因型的 48 个 Fg 感染和模拟样本的 48 个 RNA-seq 样本,全面研究了 TaCCoAOMT 参与的表达模式和共表达网络。结合对 11 个 Fg 响应性 TaCCoAOMT 基因的 qRT-PCR 验证,初步提出了参与 FHB 反应的潜在候选基因及其调控模块。此外,我们还基于重测序数据研究了这些 CCoAOMT 基因在面包小麦及其相关群体中的遗传多样性和主要单倍型。

结论

本研究鉴定和表征了小麦中的 CCoAOMT 家族,这不仅为进一步的功能分析提供了潜在的靶标,而且有助于揭示木质素生物合成及其在小麦和其他作物中对 FHB 耐受性的作用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36ef/8254967/7efe55655887/12864_2021_7849_Fig1_HTML.jpg

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