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The Tryptophan Conjugates of Jasmonic and Indole-3-Acetic Acids Are Endogenous Auxin Inhibitors1[W][OA]

机译:茉莉酸和吲哚-3-乙酸的色氨酸缀合物是内源性生长素抑制剂[1] [W] [OA]

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摘要

Most conjugates of plant hormones are inactive, and some function to reduce the active hormone pool. This study characterized the activity of the tryptophan (Trp) conjugate of jasmonic acid (JA-Trp) in Arabidopsis (Arabidopsis thaliana). Unexpectedly, JA-Trp caused agravitropic root growth in seedlings, unlike JA or nine other JA-amino acid conjugates. The response was dose dependent from 1 to100 μm, was independent of the COI1 jasmonate signaling locus, and unlike the jasmonate signal JA-isoleucine, JA-Trp minimally inhibited root growth. The Trp conjugate with indole-3-acetic acid (IAA-Trp) produced a similar response, while Trp alone and conjugates with benzoic and cinnamic acids did not. JA-Trp and IAA-Trp at 25 μm nearly eliminated seedling root inhibition caused by 2 μm IAA. The TIR1 auxin receptor is required for activity because roots of tir1-1 grew only approximately 60% of wild-type length on IAA plus JA-Trp, even though tir1-1 is auxin resistant. However, neither JA-Trp nor IAA-Trp interfered with IAA-dependent interaction between TIR1 and Aux/IAA7 in cell-free assays. Trp conjugates inhibited IAA-stimulated lateral root production and DR5-β-glucuronidase gene expression. JA-deficient mutants were hypersensitive to IAA and a Trp-overaccumulating mutant was less sensitive, suggesting endogenous conjugates affect auxin sensitivity. Conjugates were present at 5.8 pmol g−1 fresh weight or less in roots, seedlings, leaves, and flowers, and the values increased approximately 10-fold in roots incubated in 25 μm Trp and IAA or JA at 2 μm. These results show that JA-Trp and IAA-Trp constitute a previously unrecognized mechanism to regulate auxin action.
机译:植物激素的大多数缀合物是无活性的,并且某些具有减少活性激素库的功能。这项研究表征了茉莉酸(JA-Trp)的色氨酸(Trp)共轭物在拟南芥(Arabidopsis thaliana)中的活性。出乎意料的是,与JA或其他9种JA-氨基酸缀合物不同,JA-Trp引起幼苗的引力根生长。响应是从1到100μm的剂量依赖性,独立于茉莉酸COI1信号传导基因座,并且与茉莉酸信号JA-异亮氨酸不同,JA-Trp对根生长的抑制最小。 Trp与吲哚-3-乙酸的共轭物(IAA-Trp)产生相似的响应,而单独的Trp和与苯甲酸和肉桂酸的共轭物则没有。 25μm的JA-Trp和IAA-Trp几乎消除了2μmIAA引起的幼苗根抑制。 TIR1生长素受体是活性所必需的,因为即使tir1-1对植物生长素具有抗性,在IAA加JA-Trp上,tir1-1的根仅生长约60%的野生型长度。但是,在无细胞试验中,JA-Trp和IAA-Trp都不会干扰TIR1和Aux / IAA7之间依赖IAA的相互作用。 Trp缀合物抑制IAA刺激的侧根产生和DR5-β-葡萄糖醛酸苷酶基因表达。 JA不足的突变体对IAA高度敏感,而Trp过度积累的突变体则较不敏感,表明内源性结合物会影响植物生长素的敏感性。根,幼苗,叶和花中的缀合物以5.8 pmol g-1鲜重或更少的形式存在,并且在25μmTrp和IAA或2μm的IAA或JA中孵育的根中,缀合物的含量增加约10倍。这些结果表明,JA-Trp和IAA-Trp构成了以前无法识别的调节生长素作用的机制。

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    Staswick, Paul E.;

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  • 年度 2009
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