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三角褐指藻 MYB 基因家族揭示了它们在适应氮缺乏和昼夜节律中的潜在功能。

MYB gene family in the diatom Phaeodactylum tricornutum revealing their potential functions in the adaption to nitrogen deficiency and diurnal cycle.

机构信息

Guangdong Provincial Key Laboratory of Marine Biotechnology and STU-UNIVPM Joint Algal Research Center, College of Sciences, Institute of Marine Sciences, Shantou University, Shantou, China.

Southern Marine Science and Engineering Guangdong Laboratory, Guangzhou, China.

出版信息

J Phycol. 2022 Feb;58(1):121-132. doi: 10.1111/jpy.13217. Epub 2021 Nov 26.

Abstract

The MYB transcription factor (TF) family is one of the largest and most important TF families, regulating the growth and response of microalgae to stress. However, the gene structure and characteristics of Phaeodactylum tricornutum MYB TFs, and their functions under nitrogen deficiency, have not been explored yet. To identify all P. tricornutum MYB (PtMYB) genes, the MYB gene family was analyzed at the genome-wide level in this study. A total ofm26 PtMYB genes were identified from the genome of P. tricornutum. These PtMYB genes were divided into 5 subfamilies: 5R-MYB, 4R-MYB, R2R3-MYB, R1R2R3-MYB, and MYB-related proteins. Phylogenetical motif and gene structure analyses of MYB genes indicated that the number and proportion of MYB TFs were species-specific, and MYB genes exhibited a lot of duplication events from microalgae to higher plants. Furthermore, the differentially expressed patterns of all 26 PtMYB TFs implied that PtMYB genes might have functional specificity under nitrogen deficiency. Homology analysis of MYB genes revealed that PtMYB3, PtMYB15, and PtMYB21 might play important roles in the regulation of the diurnal cycle and response to nitrogen stress in P. tricornutum. PtMYB3, PtMYB15, and PtMYB21 genes might be used as potential candidate genes for further studying the regulatory mechanisms of P. tricornutum under nitrogen deficiency. This work provides an important foundation for the future research of the potential functions of PtMYB genes and its diurnal regulatory mechanisms under nitrogen deficiency.

摘要

MYB 转录因子(TF)家族是最大和最重要的 TF 家族之一,调节微藻的生长和对胁迫的反应。然而,三角褐指藻 MYB TF 的基因结构和特征及其在氮缺乏下的功能尚未被探索。为了鉴定所有三角褐指藻 MYB(PtMYB)基因,本研究在全基因组水平上分析了 MYB 基因家族。从三角褐指藻的基因组中鉴定出了总共 26 个 PtMYB 基因。这些 PtMYB 基因分为 5 个亚家族:5R-MYB、4R-MYB、R2R3-MYB、R1R2R3-MYB 和 MYB 相关蛋白。MYB 基因的系统发育 motif 和基因结构分析表明,MYB TF 的数量和比例是物种特异性的,并且 MYB 基因在从微藻到高等植物的过程中经历了大量的复制事件。此外,所有 26 个 PtMYB TF 的差异表达模式表明,PtMYB 基因在氮缺乏下可能具有功能特异性。MYB 基因的同源分析表明,PtMYB3、PtMYB15 和 PtMYB21 可能在三角褐指藻的昼夜节律调节和对氮胁迫的反应中发挥重要作用。PtMYB3、PtMYB15 和 PtMYB21 基因可能被用作进一步研究三角褐指藻在氮缺乏下调节机制的潜在候选基因。这项工作为未来研究 PtMYB 基因在氮缺乏下的潜在功能及其昼夜调节机制提供了重要基础。

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