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拟南芥生长素响应因子8基因的破坏和过表达影响下胚轴伸长和根系生长习性,表明其可能参与光照条件下的生长素稳态。

Disruption and overexpression of auxin response factor 8 gene of Arabidopsis affect hypocotyl elongation and root growth habit, indicating its possible involvement in auxin homeostasis in light condition.

作者信息

Tian Chang-En, Muto Hideki, Higuchi Kanako, Matamura Tomoyuki, Tatematsu Kiyoshi, Koshiba Tomokazu, Yamamoto Kotaro T

机构信息

Division of Biological Sciences, Graduate School of Science, Hokkaido University, Sapporo 060-0810, Japan.

出版信息

Plant J. 2004 Nov;40(3):333-43. doi: 10.1111/j.1365-313X.2004.02220.x.

Abstract

Auxin response factor (ARF) family genes play a central role in controlling sensitivity to the plant hormone auxin. We characterized the function of ARF8 in Arabidopsis by investigating a T-DNA insertion line (arf8-1) and overexpression lines (ARF8 OX) of ARF8. arf8-1 showed a long-hypocotyl phenotype in either white, blue, red or far-red light conditions, in contrast to ARF8 OX that displayed short hypocotyls in the light. Stronger and weaker apical dominance, and promotion and inhibition of lateral root formation were observed in arf8-1 and ARF8 OX respectively. Sensitivity to auxin was unaltered in arf8-1 hypocotyls with respect to growth inhibition caused by exogenously applied auxin and growth promotion induced by higher temperatures. ARF8 expression was observed constitutively in shoot and root apexes, and was induced in the light condition in hypocotyls. Free IAA contents were approximately 30% reduced in light-grown hypocotyls of ARF8 OX, but were similar between those of arf8-1 and wild type. Expression of the three GH3 genes was reduced in arf8-1 and increased in ARF8 OX, indicating that they are targets of ARF8 transcriptional control. Because the three GH3 proteins may be involved in the conjugation of IAA as suggested by Staswick et al. (2002), and because two of the three GH3 genes are auxin inducible, ARF8 may control the free IAA level in a negative feedback fashion by regulating GH3 gene expression. ARF family genes seem to control both auxin sensitivity and homeostasis in Arabidopsis.

摘要

生长素响应因子(ARF)家族基因在控制植物对生长素激素的敏感性方面发挥着核心作用。我们通过研究ARF8的T-DNA插入系(arf8-1)和过表达系(ARF8 OX)来表征ARF8在拟南芥中的功能。与在光照下表现出短下胚轴的ARF8 OX相比,arf8-1在白色、蓝色、红色或远红光条件下均表现出长下胚轴表型。在arf8-1中观察到更强的顶端优势,而在ARF8 OX中观察到较弱的顶端优势,并且arf8-1和ARF8 OX分别对侧根形成有促进和抑制作用。就外源施加生长素引起的生长抑制和较高温度诱导的生长促进而言,arf8-1下胚轴对生长素的敏感性未发生改变。在茎尖和根尖中组成型观察到ARF8表达,并且在光照条件下下胚轴中ARF8表达被诱导。在光照下生长的ARF8 OX下胚轴中游离IAA含量大约降低了30%,但arf8-1和野生型之间的游离IAA含量相似。arf8-1中三个GH3基因的表达降低,而在ARF8 OX中表达增加,这表明它们是ARF8转录调控的靶标。正如Staswick等人(2002年)所指出的,由于这三种GH3蛋白可能参与IAA的缀合,并且由于这三个GH3基因中的两个是生长素诱导型的,ARF8可能通过调节GH3基因表达以负反馈方式控制游离IAA水平。ARF家族基因似乎在拟南芥中控制生长素敏感性和内稳态。

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