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火炬松MYB1和MYB8在苯丙烷代谢和次生细胞壁生物合成中的作用:植物体内的比较分析

Involvement of Pinus taeda MYB1 and MYB8 in phenylpropanoid metabolism and secondary cell wall biogenesis: a comparative in planta analysis.

作者信息

Bomal Claude, Bedon Frank, Caron Sébastien, Mansfield Shawn D, Levasseur Caroline, Cooke Janice E K, Blais Sylvie, Tremblay Laurence, Morency Marie-Josée, Pavy Nathalie, Grima-Pettenati Jacqueline, Séguin Armand, Mackay John

机构信息

Centre d'Etude de Forêt, Université Laval, Québec (QC), Canada G1V 0A6.

出版信息

J Exp Bot. 2008;59(14):3925-39. doi: 10.1093/jxb/ern234. Epub 2008 Sep 19.

Abstract

The involvement of two R2R3-MYB genes from Pinus taeda L., PtMYB1 and PtMYB8, in phenylpropanoid metabolism and secondary cell wall biogenesis was investigated in planta. These pine MYBs were constitutively overexpressed (OE) in Picea glauca (Moench) Voss, used as a heterologous conifer expression system. Morphological, histological, chemical (lignin and soluble phenols), and transcriptional analyses, i.e. microarray and reverse transcription quantitative PCR (RT-qPCR) were used for extensive phenotyping of MYB-overexpressing spruce plantlets. Upon germination of somatic embryos, root growth was reduced in both transgenics. Enhanced lignin deposition was also a common feature but ectopic secondary cell wall deposition was more strongly associated with PtMYB8-OE. Microarray and RT-qPCR data showed that overexpression of each MYB led to an overlapping up-regulation of many genes encoding phenylpropanoid enzymes involved in lignin monomer synthesis, while misregulation of several cell wall-related genes and other MYB transcription factors was specifically associated with PtMYB8-OE. Together, the results suggest that MYB1 and MYB8 may be part of a conserved transcriptional network involved in secondary cell wall deposition in conifers.

摘要

在植物体内研究了来自火炬松(Pinus taeda L.)的两个R2R3-MYB基因PtMYB1和PtMYB8在苯丙烷类代谢和次生细胞壁生物合成中的作用。这些松树MYB基因在白云杉(Picea glauca (Moench) Voss)中组成型过表达(OE),白云杉用作异源针叶树表达系统。利用形态学、组织学、化学(木质素和可溶性酚类)和转录分析,即微阵列和逆转录定量PCR(RT-qPCR),对过表达MYB的云杉幼苗进行广泛的表型分析。体细胞胚萌发后,两种转基因植株的根生长均受到抑制。木质素沉积增强也是一个共同特征,但异位次生细胞壁沉积与PtMYB8-OE的相关性更强。微阵列和RT-qPCR数据表明,每个MYB的过表达导致许多编码参与木质素单体合成的苯丙烷类酶的基因重叠上调,而一些细胞壁相关基因和其他MYB转录因子的调控异常则与PtMYB8-OE特异性相关。总之,结果表明MYB1和MYB8可能是参与针叶树次生细胞壁沉积的保守转录网络的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/200d/2638951/331b84a5ebcd/jexbotern234f01_lw.jpg

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