生长素
韧皮部
髓
薄壁组织
维管形成层
生物
血管组织
植物
生长素极性运输
格斯报告系统
木质部
细胞生物学
报告基因
形成层
基因
生物化学
基因表达
拟南芥
突变体
作者
Thomas Teichmann,W. H. Bolu-Arianto,Anne Olbrich,Rosemarie Langenfeld-Heyser,Claus Göbel,Peter Grzeganek,Ivo Feußner,Robert Hänsch,Andrea Polle
出处
期刊:Tree Physiology
[Oxford University Press]
日期:2008-07-01
卷期号:28 (9): 1305-1315
被引量:43
标识
DOI:10.1093/treephys/28.9.1305
摘要
GH3 genes related to the auxin-inducible Glycine max (L.) Merr. GmGH3 gene encode enzymes that conjugate amino acids to auxin. To investigate the role of GH3 enzymes in stress responses and normal wood development, Populus × canescens (Ait.) was transformed with the promoter-reporter construct GH3::GUS containing a GH3 promoter and the 5′ UTR from soybean. β-Glucuronidase (GUS) activity was present in the vascular tissues of leaves and in developing lateral roots and was inducible in silent tissues by external auxin application. A decrease in GUS activity from the stem apex to the bottom corresponded to decreases in auxin concentrations in these tissues. High auxin concentration and high GH3::GUS activity were present in the pith tissue, which may provide storage for auxin compounds. GH3 reporter was active in ray cells, paratracheal parenchyma cells, maturing vessels and in cells surrounding maturing phloem fibers but not in the cambium and immature phloem, despite high auxin concentrations in the latter tissues. However, the GH3 promoter in these tissues became active when the plants were exposed to abiotic stresses, like bending or salinity, causing changes in wood anatomy. We suggest that adjustment of the internal auxin balance in wood in response to environmental cues involves GH3 auxin conjugate synthases.
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