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Gene family structure, expression and functional analysis of HD-Zip III genes in angiosperm and gymnosperm forest trees

机译:被子植物和裸子植物林木中HD-Zip III基因的基因家族结构,表达和功能分析

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Background Class III Homeodomain Leucine Zipper (HD-Zip III) proteins have been implicated in the regulation of cambium identity, as well as primary and secondary vascular differentiation and patterning in herbaceous plants. They have been proposed to regulate wood formation but relatively little evidence is available to validate such a role. We characterised and compared HD-Zip III gene family in an angiosperm tree, Populus spp. (poplar), and the gymnosperm Picea glauca (white spruce), representing two highly evolutionarily divergent groups. Results Full-length cDNA sequences were isolated from poplar and white spruce. Phylogenetic reconstruction indicated that some of the gymnosperm sequences were derived from lineages that diverged earlier than angiosperm sequences, and seem to have been lost in angiosperm lineages. Transcript accumulation profiles were assessed by RT-qPCR on tissue panels from both species and in poplar trees in response to an inhibitor of polar auxin transport. The overall transcript profiles HD-Zip III complexes in white spruce and poplar exhibited substantial differences, reflecting their evolutionary history. Furthermore, two poplar sequences homologous to HD-Zip III genes involved in xylem development in Arabidopsis and Zinnia were over-expressed in poplar plants. PtaHB1 over-expression produced noticeable effects on petiole and primary shoot fibre development, suggesting that PtaHB1 is involved in primary xylem development. We also obtained evidence indicating that expression of PtaHB1 affected the transcriptome by altering the accumulation of 48 distinct transcripts, many of which are predicted to be involved in growth and cell wall synthesis. Most of them were down-regulated, as was the case for several of the poplar HD-Zip III sequences. No visible physiological effect of over-expression was observed on PtaHB7 transgenic trees, suggesting that PtaHB1 and PtaHB7 likely have distinct roles in tree development, which is in agreement with the functions that have been assigned to close homologs in herbaceous plants. Conclusions This study provides an overview of HD-zip III genes related to woody plant development and identifies sequences putatively involved in secondary vascular growth in angiosperms and in gymnosperms. These gene sequences are candidate regulators of wood formation and could be a source of molecular markers for tree breeding related to wood properties.
机译:背景技术III类Homeodomain亮氨酸拉链(HD-Zip III)蛋白已经参与了对草本植物中形成层身份的调控以及初级和次级血管的分化和模式的调控。已经提出了它们来调节木材的形成,但是很少有证据可以证明这种作用。我们在被子树Populus spp中鉴定并比较了HD-Zip III基因家族。 (杨树)和裸子植物Picea glauca(白云杉),代表两个进化高度不同的群体。结果从白杨和白云杉中分离到全长cDNA序列。系统发育重建表明,一些裸子植物序列是从比被子植物序列更早发散的谱系衍生的,似乎在被子植物谱系中已经丢失。响应极性植物生长素运输的抑制剂,通过RT-qPCR在两个物种和杨树的组织面板上评估转录物的积累概况。白云杉和杨树中HD-Zip III复合物的总体转录谱显示出很大的差异,反映了它们的进化历史。此外,在杨树植物中过表达与拟南芥和百日草中木质部发育有关的HD-Zip III基因同源的两个杨树序列。 PtaHB1的过表达对叶柄和初级芽纤维的发育产生显着影响,表明PtaHB1参与初级木质部的发育。我们还获得了表明PtaHB1的表达通过改变48种不同转录物的积累而影响转录组的证据,其中许多转录物预计会参与生长和细胞壁合成。其中大多数被下调,一些杨树HD-Zip III序列也是如此。在PtaHB7转基因树上未观察到过表达的明显生理效应,这表明PtaHB1和PtaHB7可能在树的发育中具有不同的作用,这与已分配给草本植物近亲同源物的功能相符。结论这项研究概述了与木本植物发育有关的HD-zip III基因,并鉴定了被认为与被子植物和裸子植物的次级血管生长有关的序列。这些基因序列是木材形成的候选调节物,并且可能是与木材特性有关的树木育种的分子标记物的来源。

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