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小麦和玉米细胞色素 P450 基因超家族的比较功能基因组学分析。

Comparative functional genomics analysis of cytochrome P450 gene superfamily in wheat and maize.

机构信息

School of Biological Sciences and Biotechnology, Minnan Normal University, 36 Xian-Qian-Zhi Street, Zhangzhou, 363000, Fujian, China.

出版信息

BMC Plant Biol. 2020 Mar 2;20(1):93. doi: 10.1186/s12870-020-2288-7.

Abstract

BACKGROUND

The cytochrome P450s (CYP450s) as the largest enzyme family of plant metabolism participate in various physiological processes, whereas no study has demonstrated interest in comprehensive comparison of the genes in wheat and maize. Genome-wide survey, characterization and comparison of wheat and maize CYP450 gene superfamily are useful for genetic manipulation of the Gramineae crops.

RESULTS

In total, 1285 and 263 full-length CYP450s were identified in wheat and maize, respectively. According to standard nomenclature, wheat CYP450s (TaCYP450s) were categorized into 45 families, while maize CYP450s (ZmCYP450s) into 43 families. A comprehensive analysis of wheat and maize CYP450s, involved in functional domains, conserved motifs, phylogeny, gene structures, chromosome locations and duplicated events was performed. The result showed that each family/subfamily in both species exhibited characteristic features, suggesting their phylogenetic relationship and the potential divergence in their functions. Functional divergence analysis at the amino acid level of representative clans CYP51, CYP74 and CYP97 in wheat, maize and rice identified some critical amino acid sites that are responsible for functional divergence of a gene family. Expression profiles of Ta-, ZmCYP450s were investigated using RNA-seq data, which contribute to infer the potential functions of the genes during development and stress responses. We found in both species CYP450s had preferential expression in specific tissues, and many tissue-specific genes were identified. Under water-deficit condition, 82 and 39 significantly differentially expressed CYP450s were respectively detected in wheat and maize. These genes may have some roles in protecting plants against drought damage. Thereinto, fourteen CYP450s were selected to validate their expression level through qRT-PCR. To further elucidating molecular mechanisms of CYP450 action, gene co-expression network was constructed. In total, 477 TaCYP450s were distributed in 22 co-expression modules, and some co-expressed genes that likely take part in the same biochemical pathway were identified. For instance, the expression of TaCYP74A98_4D was highly correlated with TaLOX9, TaLOX36, TaLOX39, TaLOX44 and TaOPR8, and all of them may be involved in jasmonate (JA) biosynthesis. TaCYP73A201_3A showed coexpression with TaPAL1.25, TaCCoAOMT1.2, TaCOMT.1, TaCCR1.6 and TaLAC5, which probably act in the wheat stem and/or root lignin synthesis pathway.

CONCLUSION

Our study first established systematic information about evolutionary relationship, expression pattern and function characterization of CYP450s in wheat and maize.

摘要

背景

细胞色素 P450s(CYP450s)作为植物代谢中最大的酶家族,参与各种生理过程,但尚无研究对小麦和玉米中 CYP450 基因的综合比较感兴趣。对小麦和玉米 CYP450 基因超家族进行全基因组调查、特征描述和比较,有助于对禾本科作物进行遗传操作。

结果

在小麦和玉米中分别鉴定出 1285 个和 263 个全长 CYP450s。根据标准命名法,小麦 CYP450s(TaCYP450s)分为 45 个家族,而玉米 CYP450s(ZmCYP450s)分为 43 个家族。对小麦和玉米 CYP450s 的功能域、保守基序、系统发育、基因结构、染色体定位和重复事件进行了综合分析。结果表明,两个物种中的每个家族/亚家族都表现出特征性特征,表明它们的系统发育关系和功能潜在差异。在小麦、玉米和水稻中代表族 CYP51、CYP74 和 CYP97 的代表性氨基酸水平的功能分化分析确定了一些负责基因家族功能分化的关键氨基酸位点。使用 RNA-seq 数据研究了 Ta-、ZmCYP450s 的表达谱,有助于推断基因在发育和应激反应过程中的潜在功能。我们发现,在这两个物种中,CYP450s 在特定组织中具有优先表达,并且鉴定出许多组织特异性基因。在水分亏缺条件下,在小麦和玉米中分别检测到 82 个和 39 个显著差异表达的 CYP450s。这些基因可能在保护植物免受干旱损伤方面发挥作用。其中,选择了 14 个 CYP450s 通过 qRT-PCR 验证其表达水平。为了进一步阐明 CYP450 作用的分子机制,构建了基因共表达网络。在总共 477 个 TaCYP450s 分布在 22 个共表达模块中,鉴定出一些可能参与同一生化途径的共表达基因。例如,TaCYP74A98_4D 的表达与 TaLOX9、TaLOX36、TaLOX39、TaLOX44 和 TaOPR8 高度相关,它们都可能参与茉莉酸(JA)的生物合成。TaCYP73A201_3A 与 TaPAL1.25、TaCCoAOMT1.2、TaCOMT.1、TaCCR1.6 和 TaLAC5 表现出共表达,它们可能作用于小麦茎和/或根的木质素合成途径。

结论

本研究首次建立了小麦和玉米中 CYP450s 进化关系、表达模式和功能特征的系统信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a505/7052972/fa9ec94ac4d1/12870_2020_2288_Fig1_HTML.jpg

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