首页> 美国卫生研究院文献>PLoS Genetics >Disturbed Local Auxin Homeostasis Enhances Cellular Anisotropy and Reveals Alternative Wiring of Auxin-ethylene Crosstalk in Brachypodium distachyon Seminal Roots
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Disturbed Local Auxin Homeostasis Enhances Cellular Anisotropy and Reveals Alternative Wiring of Auxin-ethylene Crosstalk in Brachypodium distachyon Seminal Roots

机译:受干扰的局部生长素稳态增加了细胞的各向异性并揭示了短枝曲霉精根中生长素-乙烯串扰的替代布线

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摘要

Observations gained from model organisms are essential, yet it remains unclear to which degree they are applicable to distant relatives. For example, in the dicotyledon Arabidopsis thaliana (Arabidopsis), auxin biosynthesis via indole-3-pyruvic acid (IPA) is essential for root development and requires redundant TRYPTOPHAN AMINOTRANSFERASE OF ARABIDOPSIS 1 (TAA1) and TAA1-RELATED (TAR) genes. A promoter T-DNA insertion in the monocotyledon Brachypodium distachyon (Brachypodium) TAR2-LIKE gene (BdTAR2L) severely down-regulates expression, suggesting reduced tryptophan aminotransferase activity in this mutant, which thus represents a hypomorphic Bdtar2l allele (Bdtar2lhypo). Counterintuitive however, Bdtar2lhypo mutants display dramatically elongated seminal roots because of enhanced cell elongation. This phenotype is also observed in another, stronger Bdtar2l allele and can be mimicked by treating wild type with L-kynerunine, a specific TAA1/TAR inhibitor. Surprisingly, L-kynerunine-treated as well as Bdtar2l roots display elevated rather than reduced auxin levels. This does not appear to result from compensation by alternative auxin biosynthesis pathways. Rather, expression of YUCCA genes, which are rate-limiting for conversion of IPA to auxin, is increased in Bdtar2l mutants. Consistent with suppression of Bdtar2lhypo root phenotypes upon application of the ethylene precursor 1-aminocyclopropane-1-carboxylic-acid (ACC), BdYUCCA genes are down-regulated upon ACC treatment. Moreover, they are up-regulated in a downstream ethylene-signaling component homolog mutant, Bd ethylene insensitive 2-like 1, which also displays a Bdtar2l root phenotype. In summary, Bdtar2l phenotypes contrast with gradually reduced root growth and auxin levels described for Arabidopsis taa1/tar mutants. This could be explained if in Brachypodium, ethylene inhibits the rate-limiting step of auxin biosynthesis in an IPA-dependent manner to confer auxin levels that are sub-optimal for root cell elongation, as suggested by our observations. Thus, our results reveal a delicate homeostasis of local auxin and ethylene activity to control cell elongation in Brachypodium roots and suggest alternative wiring of auxin-ethylene crosstalk as compared to Arabidopsis.
机译:从模型生物中获得的观察是必不可少的,但仍不清楚它们在多大程度上适用于远亲。例如,在双子叶拟南芥(Arabidopsis)中,通过吲哚3-丙酮酸(IPA)合成植物生长素对根发育至关重要,并且需要多余的拟南芥TRYPTOPHAN氨基转移酶1(TAA1)和TAA1-RELATED(TAR)基因。单子叶植物Brachypodium distachyon(Brachypodium)TAR2-LIKE基因(BdTAR2L)中的启动子T-DNA插入严重下调表达,表明该突变体中色氨酸氨基转移酶活性降低,因此代表了亚型的Bdtar2l等位基因(Bdtar2l )。然而,违反直觉的是,Bdtar2l hypo 突变体由于增强的细胞伸长而显示出显着伸长的精根。在另一个更强的Bdtar2l等位基因中也观察到了该表型,可以通过用特异的TAA1 / TAR抑制剂L-kynerunine处理野生型来模拟。出人意料的是,经L-酪氨酸处理的根以及Bdtar21根显示出的生长素水平升高而不是降低。这似乎不是由其他生长素生物合成途径的补偿引起的。而是,在Bdtar21突变体中增加了YUCCA基因的表达,这是IPA转化为生长素的速率限制。与乙烯前体1-氨基环丙烷-1-羧酸(ACC)施用后抑制Bdtar2l hypo 根表型相一致,BdYUCCA基因在ACC处理后下调。此外,它们在下游乙烯信号组分同源突变体Bd乙烯不敏感2-like 1中被上调,该突变体还表现出 Bdtar21 根表型。总之, Bdtar2l 表型与拟南芥 taa1 / tar 突变体所述的根生长和生长素水平逐渐降低形成鲜明对比。如我们的观察所暗示的,这可以解释为,如果在腕足纲中,乙烯以IPA依赖的方式抑制了植物生长素生物合成的限速步骤,从而赋予植物生长素的水平低于根细胞伸长的最佳水平。因此,我们的结果揭示了局部生长素和乙烯活性的微妙的动态平衡,以控制腕足动物根中的细胞伸长,并提出了与拟南芥相比生长素-乙烯串扰的替代布线。

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