Department of Plant Biology, University of Georgia, Athens, Georgia 30602, USA.
Plant Physiol. 2010 Feb;152(2):1044-55. doi: 10.1104/pp.109.148270. Epub 2009 Dec 4.
Wood is the most abundant biomass produced by land plants. Dissection of the molecular mechanisms underlying the transcriptional regulation of wood formation is a fundamental issue in plant biology and has important implications in tree biotechnology. Although a number of transcription factors in tree species have been shown to be associated with wood formation and some of them are implicated in lignin biosynthesis, none of them have been demonstrated to be key regulators of the biosynthesis of all three major components of wood. In this report, we have identified a group of NAC domain transcription factors, PtrWNDs, that are preferentially expressed in developing wood of poplar (Populus trichocarpa). Expression of PtrWNDs in the Arabidopsis (Arabidopsis thaliana) snd1 nst1 double mutant effectively complemented the secondary wall defects in fibers, indicating that PtrWNDs are capable of activating the entire secondary wall biosynthetic program. Overexpression of PtrWND2B and PtrWND6B in Arabidopsis induced the expression of secondary wall-associated transcription factors and secondary wall biosynthetic genes and, concomitantly, the ectopic deposition of cellulose, xylan, and lignin. Furthermore, PtrWND2B and PtrWND6B were able to activate the promoter activities of a number of poplar wood-associated transcription factors and wood biosynthetic genes. Together, these results demonstrate that PtrWNDs are functional orthologs of SND1 and suggest that PtrWNDs together with their downstream transcription factors form a transcriptional network involved in the regulation of wood formation in poplar.
木材是陆生植物产生的最丰富的生物质。解析木质部形成的转录调控的分子机制是植物生物学的一个基本问题,对树木生物技术具有重要意义。尽管已经证明一些树种中的转录因子与木质部形成有关,其中一些与木质素生物合成有关,但没有一种被证明是木质部三种主要成分生物合成的关键调节因子。在本报告中,我们鉴定了一组 NAC 结构域转录因子 PtrWNDs,它们在杨树(Populus trichocarpa)的发育木材中优先表达。PtrWNDs 在拟南芥(Arabidopsis thaliana)snd1 nst1 双突变体中的表达有效地弥补了纤维中次生壁缺陷,表明 PtrWNDs 能够激活整个次生壁生物合成程序。在拟南芥中过表达 PtrWND2B 和 PtrWND6B 诱导了次生壁相关转录因子和次生壁生物合成基因的表达,同时,纤维素、木聚糖和木质素的异位沉积。此外,PtrWND2B 和 PtrWND6B 能够激活许多杨树木质部相关转录因子和木质素生物合成基因的启动子活性。总之,这些结果表明 PtrWNDs 是 SND1 的功能同源物,并表明 PtrWNDs 与其下游转录因子一起形成了一个参与调控杨树木质部形成的转录网络。