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油菜素内酯可诱导拟南芥中的IAA5、IAA19以及一种人工合成的生长素响应元件DR5,这意味着油菜素类固醇和生长素信号传导存在一个相互作用点。

Brassinolide induces IAA5, IAA19, and DR5, a synthetic auxin response element in Arabidopsis, implying a cross talk point of brassinosteroid and auxin signaling.

作者信息

Nakamura Ayako, Higuchi Kanako, Goda Hideki, Fujiwara Makoto T, Sawa Shinichiro, Koshiba Tomokazu, Shimada Yukihisa, Yoshida Shigeo

机构信息

Plant Science Center, RIKEN, Suehirocho, Tsurumi, Yokohama, Kanagawa 230-0045, Japan.

出版信息

Plant Physiol. 2003 Dec;133(4):1843-53. doi: 10.1104/pp.103.030031. Epub 2003 Nov 6.

Abstract

Despite numerous physiological studies addressing the interactions between brassinosteroids (BRs) and auxins, little is known about the underlying molecular mechanisms. We studied the expression of IAA5 and IAA19 in response to treatment with indole acetic acid (IAA) or brassinolide (BL), the most active BR. Exogenous IAA induced these genes quickly and transiently, whereas exogenous BL induced them gradually and continuously. We also found that a fusion of DR5, a synthetic auxin response element, with the GUS (beta-glucuronidase) gene was induced with similar kinetics to those of the IAA5 and IAA19 genes in response to both IAA and BL treatment of transgenic plants. These results suggest that the IAA genes are induced by BL, at least in part, via the activation of the auxin response element. Endogenous IAA levels per gram fresh weight did not increase when seedlings of Arabidopsis wild type (WT) or the BR-deficient mutant det2 were treated with BL. Furthermore, the levels of IAA transcripts were lower in the det2 mutant than in the WT, even though endogenous IAA levels per gram fresh weight were higher in the det2 mutant than in the WT. In conclusion, the lack of evidence for auxin-mediated activation of early auxin-inducible genes in response to BL suggests that the BR and auxin signaling pathways independently activate the transcriptional system of the IAA and DR5-GUS genes.

摘要

尽管有许多生理学研究探讨了油菜素类固醇(BRs)与生长素之间的相互作用,但对于其潜在的分子机制却知之甚少。我们研究了吲哚乙酸(IAA)或油菜素内酯(BL,最具活性的BR)处理后IAA5和IAA19的表达情况。外源IAA能快速且短暂地诱导这些基因,而外源BL则能逐渐且持续地诱导它们。我们还发现,在转基因植物中,合成生长素响应元件DR5与GUS(β-葡萄糖醛酸酶)基因的融合体在IAA和BL处理下,其诱导动力学与IAA5和IAA19基因相似。这些结果表明,IAA基因至少部分是通过生长素响应元件的激活而被BL诱导的。当拟南芥野生型(WT)或BR缺陷型突变体det2的幼苗用BL处理时,每克鲜重的内源IAA水平并未增加。此外,尽管det2突变体每克鲜重的内源IAA水平高于WT,但det2突变体中IAA转录本的水平却低于WT。总之,缺乏证据表明生长素介导的早期生长素诱导基因在响应BL时被激活,这表明BR和生长素信号通路独立地激活IAA和DR5-GUS基因的转录系统。

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