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Biosynthesis and Secretion of Indole-3-Acetic Acid and Its Morphological Effects on Tricholoma vaccinum-Spruce Ectomycorrhiza

机译:吲哚-3-乙酸的生物合成,分泌及其对口蘑云杉外生菌根的形态学影响

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Fungus-derived indole-3-acetic acid (IAA), which is involved in development of ectomycorrhiza, affects both partners, i.e., the tree and the fungus. The biosynthesis pathway, excretion from fungal hyphae, the induction of branching in fungal cultures, and enhanced Hartig net formation in mycorrhiza were shown. Gene expression studies, incorporation of labeled compounds into IAA, heterologous expression of a transporter, and bioinformatics were applied to study the effect of IAA on fungal morphogenesis and on ectomycorrhiza. Tricholoma vaccinum produces IAA from tryptophan via indole-3-pyruvate, with the last step of this biosynthetic pathway being catalyzed by an aldehyde dehydrogenase. The gene ald1 was found to be highly expressed in ectomycorrhiza and induced by indole-3-acetaldehyde. The export of IAA from fungal cells is supported by the multidrug and toxic extrusion (MATE) transporter Mte1 found in T. vaccinum . The addition of IAA and its precursors induced elongated cells and hyphal ramification of mycorrhizal fungi; in contrast, in saprobic fungi such as Schizophyllum commune , IAA did not induce morphogenetic changes. Mycorrhiza responded by increasing its Hartig net formation. The IAA of fungal origin acts as a diffusible signal, influencing root colonization and increasing Hartig net formation in ectomycorrhiza.
机译:涉及外生菌根发育的源自真菌的吲哚-3-乙酸(IAA)影响树木和真菌这两个伙伴。显示了生物合成途径,真菌菌丝的排泄,真菌培养物中分支的诱导以及菌根中增强的Hartig网形成。基因表达研究,将标记化合物掺入IAA,转运蛋白的异源表达和生物信息学被用于研究IAA对真菌形态发生和对菌根的影响。牛口蘑(Tricholoma vaccinum)通过色氨酸吲哚-3-丙酮酸酯从色氨酸产生IAA,该生物合成途径的最后一步是由醛脱氢酶催化的。发现ald1基因在外生菌根中高表达,并被吲哚-3-乙醛诱导。 I. AAA从真菌细胞中的输出得到了T. vaccinum中的多药和有毒挤压(MATE)转运蛋白Mte1的支持。 IAA及其前体的添加诱导了菌根真菌的伸长细胞和菌丝分支;相比之下,在腐生真菌(如裂褶菌属公社)中,IAA不会诱导形态发生变化。菌根通过增加其Hartig净形成来应对。真菌来源的IAA充当扩散信号,影响根外生菌并增加外生菌根中的Hartig净形成。

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