Suppr超能文献

鉴定响应 MeJA 的转录因子基因,并表征一个 LaMYC2 转录因子正向调控石蒜中石蒜碱生物合成。

Identification of transcription factor genes responsive to MeJA and characterization of a LaMYC2 transcription factor positively regulates lycorine biosynthesis in Lycoris aurea.

机构信息

Institute of Botany, Jiangsu Province and Chinese Academy of Sciences, Nanjing, 210014, China; Wuxi Taihu University, Wuxi, 214063, China.

China Tobacco Gene Research Center, Zhengzhou Tobacco Research Institute of China National Tobacco Corporation, Zhengzhou, 450001, China.

出版信息

J Plant Physiol. 2024 May;296:154218. doi: 10.1016/j.jplph.2024.154218. Epub 2024 Mar 9.

Abstract

Jasmonates (JAs) are among the main phytohormones, regulating plant growth and development, stress responses, and secondary metabolism. As the major regulator of the JA signaling pathway, MYC2 also plays an important role in plant secondary metabolite synthesis and accumulation. In this study, we performed a comparative transcriptome analysis of Lycoris aurea seedlings subjected to methyl jasmonate (MeJA) at different treatment times. A total of 31,193 differentially expressed genes (DEGs) were identified by RNA sequencing. Among them, 732 differentially expressed transcription factors (TFs) comprising 51 TF families were characterized. The most abundant TF family was WRKY proteins (80), followed by AP2/ERF-EFR (67), MYB (59), bHLH (52), and NAC protein (49) families. Subsequently, by calculating the Pearson's correlation coefficient (PCC) between the expression level of TF DEGs and the lycorine contents, 41 potential TF genes (|PCC| >0.8) involved in lycorine accumulation were identified, including 36 positive regulators and 5 negative regulators. Moreover, a MeJA-inducible MYC2 gene (namely LaMYC2) was cloned on the basis of transcriptome sequencing. Bioinformatic analyses revealed that LaMYC2 proteins contain the bHLH-MYC_N domain and bHLH-AtAIB_like motif. LaMYC2 protein is localized in the cell nucleus, and can partly rescue the MYC2 mutant in Arabidopsis thaliana. LaMYC2 protein could interact with most LaJAZs (especially LaJAZ3 and LaJAZ4) identified previously. Transient overexpression of LaMYC2 increased lycorine contents in L. aurea petals, which might be associated with the activation of the transcript levels of tyrosine decarboxylase (TYDC) and phenylalanine ammonia lyase (PAL) genes. By isolating the 887-bp-length promoter fragment upstream of the start codon (ATG) of LaTYDC, we found several different types of E-box motifs (CANNTG) in the promoter of LaTYDC. Further study demonstrated that LaMYC2 was indeed able to bind the E-box (CACATG) present in the LaTYDC promoter, verifying that the pathway genes involved in lycorine biosynthesis could be regulated by LaMYC2, and that LaMYC2 has positive roles in the regulation of lycorine biosynthesis. These findings demonstrate that LaMYC2 is a positive regulator of lycorine biosynthesis and may facilitate further functional research of the LaMYC2 gene, especially its potential regulatory roles in Amaryllidaceae alkaloid accumulation in L. aurea.

摘要

茉莉酸(JAs)是主要的植物激素之一,调节植物的生长和发育、应激反应和次生代谢。作为 JA 信号通路的主要调节剂,MYC2 也在植物次生代谢物的合成和积累中发挥重要作用。在这项研究中,我们对不同处理时间下受茉莉甲酯(MeJA)处理的忽地笑幼苗进行了比较转录组分析。通过 RNA 测序共鉴定出 31193 个差异表达基因(DEGs)。其中,有 51 个 TF 家族的 732 个差异表达转录因子(TFs)得到了表征。最丰富的 TF 家族是 WRKY 蛋白(80 个),其次是 AP2/ERF-EFR(67 个)、MYB(59 个)、bHLH(52 个)和 NAC 蛋白(49 个)家族。随后,通过计算 TF DEGs 的表达水平与石蒜碱含量之间的 Pearson 相关系数(PCC),鉴定出 41 个可能参与石蒜碱积累的潜在 TF 基因(|PCC|>0.8),包括 36 个正调控因子和 5 个负调控因子。此外,还基于转录组测序克隆了一个茉莉甲酯诱导的 MYC2 基因(即 LaMYC2)。生物信息学分析表明,LaMYC2 蛋白含有 bHLH-MYC_N 结构域和 bHLH-ATAIB_like 基序。LaMYC2 蛋白定位于细胞核内,可部分挽救拟南芥中的 MYC2 突变体。LaMYC2 蛋白可以与之前鉴定的大多数 LaJAZs(特别是 LaJAZ3 和 LaJAZ4)相互作用。LaMYC2 蛋白的瞬时过表达增加了忽地笑花瓣中的石蒜碱含量,这可能与酪氨酸脱羧酶(TYDC)和苯丙氨酸解氨酶(PAL)基因转录水平的激活有关。通过分离 LaTYDC 起始密码子(ATG)上游 887bp 长度的启动子片段,我们在 LaTYDC 的启动子中发现了几种不同类型的 E-box 基序(CANNTG)。进一步的研究表明,LaMYC2 确实能够结合 LaTYDC 启动子中存在的 E-box(CACATG),验证了参与石蒜碱生物合成的途径基因可以被 LaMYC2 调控,并且 LaMYC2 在石蒜碱生物合成的调控中具有积极作用。这些发现表明,LaMYC2 是石蒜碱生物合成的正调控因子,可能有助于进一步研究 LaMYC2 基因的功能,特别是其在忽地笑中 Amaryllidaceae 生物碱积累中的潜在调节作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验