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拟南芥根的伸长和向重力性反应受油菜素内酯和生长素调控。

Elongation and gravitropic responses of Arabidopsis roots are regulated by brassinolide and IAA.

作者信息

Kim Tae-Wuk, Lee Sun Min, Joo Se-Hwan, Yun Hye Sup, Lee Yew, Kaufman Peter B, Kirakosyan Ara, Kim Soo-Hwan, Nam Kyoung Hee, Lee June Seung, Chang Soo Chul, Kim Seong-Ki

机构信息

Department of Life Science, Chung-Ang University, Seoul, Korea.

出版信息

Plant Cell Environ. 2007 Jun;30(6):679-89. doi: 10.1111/j.1365-3040.2007.01659.x.

DOI:10.1111/j.1365-3040.2007.01659.x
PMID:17470144
Abstract

Exogenously applied brassinolide (BL) increased both gravitropic curvature and length of primary roots of Arabidopsis at low concentration (10(-10) M), whereas at higher concentration, BL further increased gravitropic curvature while it inhibited primary root growth. BRI1-GFP plants possessing a high steady-state expression level of a brassinosteroid (BR) receptor kinase rendered the plant's responses to gravity and root growth more sensitive, while BR-insensitive mutants, bri1-301 and bak1, delayed root growth and reduced their response to the gravitropic stimulus. The stimulatory effect of BL on the root gravitropic curvature was also enhanced in auxin transport mutants, aux1-7 and pin2, relative to wild-type plants, and increasing concentration of auxin attenuated BL-induced root sensitivity to gravity. Interestingly, IAA treatment to the roots of bri1-301 and bak1 plants or of plants pretreated with a BL biosynthetic inhibitor, brassinazole, increased their sensitivity to gravity, while these treatments for the BL-hypersensitive transgenic plants, BRI1-GFP and 35S-BAK1, were less effective. Expression of a CYP79B2 gene, encoding an IAA biosynthetic enzyme, was suppressed in BL-hypersensitive plant types and enhanced in BL-insensitive or -deficient plants. In conclusion, our results indicate that BL interacts negatively with IAA in the regulation of plant gravitropic response and root growth, and its regulation is achieved partly by modulating biosynthetic pathways of the counterpart hormone.

摘要

外源施加的油菜素内酯(BL)在低浓度(10⁻¹⁰ M)时增加了拟南芥初生根的向重力性弯曲和长度,而在较高浓度时,BL进一步增加了向重力性弯曲,同时抑制了初生根生长。具有高稳态表达水平的油菜素类固醇(BR)受体激酶的BRI1-GFP植株使植物对重力和根生长的反应更敏感,而BR不敏感突变体bri1-301和bak1则延迟了根生长并降低了它们对向重力性刺激的反应。相对于野生型植株,在生长素运输突变体aux1-7和pin2中,BL对根向重力性弯曲的刺激作用也增强了,并且生长素浓度增加减弱了BL诱导的根对重力的敏感性。有趣的是,用IAA处理bri1-301和bak1植株的根或用BL生物合成抑制剂油菜唑预处理的植株的根,增加了它们对重力的敏感性,而对BL超敏感转基因植株BRI1-GFP和35S-BAK1进行这些处理效果较差。编码IAA生物合成酶的CYP79B2基因的表达在BL超敏感植物类型中受到抑制,而在BL不敏感或缺陷型植物中增强。总之,我们的结果表明,在植物向重力性反应和根生长的调节中,BL与IAA存在负相互作用,并且其调节部分是通过调节对应激素的生物合成途径实现的。

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