Graduate School of Life Sciences, Tohoku University, Katahira, Aoba-ku, Sendai, Japan.
Institute of Plant Science and Resources, Okayama University, 2-20-1 Chuo, Kurashiki, Okayama, Japan.
Plant Cell Physiol. 2019 Jan 1;60(1):29-37. doi: 10.1093/pcp/pcy182.
The plant pathogen Agrobacterium tumefaciens infects plants and introduces the transferred-DNA (T-DNA) region of the Ti-plasmid into nuclear DNA of host plants to induce the formation of tumors (crown galls). The T-DNA region carries iaaM and iaaH genes for synthesis of the plant hormone auxin, indole-3-acetic acid (IAA). It has been demonstrated that the iaaM gene encodes a tryptophan 2-monooxygenase which catalyzes the conversion of tryptophan to indole-3-acetamide (IAM), and the iaaH gene encodes an amidase for subsequent conversion of IAM to IAA. In this article, we demonstrate that A. tumefaciens enhances the production of both IAA and phenylacetic acid (PAA), another auxin which does not show polar transport characteristics, in the formation of crown galls. Using liquid chromatography-tandem mass spectroscopy, we found that the endogenous levels of phenylacetamide (PAM) and PAA metabolites, as well as IAM and IAA metabolites, are remarkably increased in crown galls formed on the stem of tomato plants, implying that two distinct auxins are simultaneously synthesized via the IaaM-IaaH pathway. Moreover, we found that the induction of the iaaM gene dramatically elevated the levels of PAM, PAA and its metabolites, along with IAM, IAA and its metabolites, in Arabidopsis and barley. From these results, we conclude that A. tumefaciens enhances biosynthesis of two distinct auxins in the formation of crown galls.
植物病原体根癌农杆菌感染植物,并将 Ti 质粒的转移 DNA(T-DNA)区域导入宿主植物的核 DNA 中,诱导肿瘤(冠瘿)的形成。T-DNA 区域携带 iaaM 和 iaaH 基因,用于合成植物激素生长素,吲哚-3-乙酸(IAA)。已经证明,iaaM 基因编码色氨酸 2-单加氧酶,该酶催化色氨酸转化为吲哚-3-乙酰胺(IAM),而 iaaH 基因编码酰胺酶,用于随后将 IAM 转化为 IAA。在本文中,我们证明根癌农杆菌在冠瘿的形成过程中增强了 IAA 和苯乙酸(PAA)的产生,PAA 是另一种不表现极性运输特征的生长素。使用液相色谱-串联质谱法,我们发现番茄植株茎上形成的冠瘿中,内源性苯乙酰胺(PAM)和 PAA 代谢物以及 IAM 和 IAA 代谢物的水平显著增加,这意味着通过 IaaM-IaaH 途径同时合成了两种不同的生长素。此外,我们发现 iaaM 基因的诱导显著提高了拟南芥和大麦中 PAM、PAA 及其代谢物以及 IAM、IAA 及其代谢物的水平。根据这些结果,我们得出结论,根癌农杆菌在冠瘿的形成过程中增强了两种不同生长素的生物合成。