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茉莉酰-L-色氨酸通过AUX1生长素通透酶破坏生长素活性。

Jasmonoyl-L-Tryptophan Disrupts IAA Activity through the AUX1 Auxin Permease.

作者信息

Staswick Paul, Rowe Martha, Spalding Edgar P, Splitt Bessie L

机构信息

Department of Agronomy and Horticulture, University of Nebraska-Lincoln, LincolnNE, USA.

Department of Botany, University of Wisconsin-Madison, MadisonWI, USA.

出版信息

Front Plant Sci. 2017 May 8;8:736. doi: 10.3389/fpls.2017.00736. eCollection 2017.

Abstract

Amide-linked conjugates between tryptophan (Trp) and jasmonic (JA) or indole-3-acetic (IAA) acids interfered with gravitropism and other auxin-dependent activities in Arabidopsis, but the mechanism was unclear. To identify structural features necessary for activity several additional Trp conjugates were synthesized. The phenylacetic acid (PAA) conjugate was active, while several others were not. Common features of active conjugates is that they have ring structures that are linked to Trp through an acetic acid side chain, while longer or shorter linkages are inactive or less active. A dominant mutant, called that is insensitive to JA-Trp, but still sensitive to other active conjugates, was identified and the defect was found to be a substitution of Asn for Asp in the C-terminal domain of the IAA cellular permease AUX1. Mutant seedling primary root growth in the absence of added conjugate was 15% less than WT, but otherwise plant phenotype appeared normal. These results suggest that JA-Trp disrupts AUX1 activity, but that endogenous JA-Trp has only a minor role in regulating plant growth. In contrast with IAA- and JA-Trp, which are present at <2 pmole g FW, PAA-Trp was found at about 30 pmole g FW. The latter, or other undiscovered Trp conjugates, may still have important endogenous roles, possibly helping to coordinate other pathways with auxin response.

摘要

色氨酸(Trp)与茉莉酸(JA)或吲哚 - 3 - 乙酸(IAA)之间的酰胺连接共轭物干扰了拟南芥的向重力性和其他生长素依赖性活动,但其机制尚不清楚。为了确定活性所需的结构特征,合成了几种额外的色氨酸共轭物。苯乙酸(PAA)共轭物具有活性,而其他几种则没有。活性共轭物的共同特征是它们具有通过乙酸侧链与色氨酸相连的环结构,而更长或更短的连接则无活性或活性较低。鉴定出一个显性突变体,称为 ,它对JA - Trp不敏感,但对其他活性共轭物仍敏感,并且发现缺陷是IAA细胞渗透酶AUX1的C末端结构域中Asn取代了Asp。在不添加共轭物的情况下,突变体幼苗的初生根生长比野生型少15%,但植物表型在其他方面看起来正常。这些结果表明JA - Trp会破坏AUX1的活性,但内源性JA - Trp在调节植物生长中仅起次要作用。与含量<2 pmole g FW的IAA - Trp和JA - Trp相比,发现PAA - Trp约为30 pmole g FW。后者或其他未发现的色氨酸共轭物可能仍具有重要的内源性作用,可能有助于将其他途径与生长素反应协调起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b969/5420569/111fc02eb35d/fpls-08-00736-g001.jpg

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