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根瘤菌NGR234结瘤因子的硫酸化依赖于noeE,一个新的宿主特异性基因。

Sulphation of Rhizobium sp. NGR234 Nod factors is dependent on noeE, a new host-specificity gene.

作者信息

Hanin M, Jabbouri S, Quesada-Vincens D, Freiberg C, Perret X, Promé J C, Broughton W J, Fellay R

机构信息

LBMPS, Université de Genève, Chambesy/Genève, Switzerland.

出版信息

Mol Microbiol. 1997 Jun;24(6):1119-29. doi: 10.1046/j.1365-2958.1997.3981777.x.

Abstract

Rhizobia secrete specific lipo-chitooligosaccharide signals (LCOs) called Nod factors that are required for infection and nodulation of legumes. In Rhizobium sp. NGR234, the reducing N-acetyl-D-glucosamine of LCOs is substituted at C6 with 2-O-methyl-L-fucose which can be acetylated or sulphated. We identified a flavonoid-inducible locus on the symbiotic plasmid pNGR234a that contains a new nodulation gene, noeE, which is required for the sulphation of NGR234 Nod factors (NodNGR). noeE was identified by conjugation into the closely related Rhizobium fredii strain USDA257, which produces fucosylated but non-sulphated Nod factors (NodUSDA). R. fredii transconjugants producing sulphated LCOs acquire the capacity to nodulate Calopogonium caeruleum. Furthermore, mutation of noeE (NGRdelta noeE) abolishes the production of sulphated LCOs and prevents nodulation of Pachyrhizus tuberosus. The sulphotransferase activity linked to NoeE is specific for fucose. In contrast, the sulphotransferase NodH of Rhizobium meliloti seems to be less specific than NoeE, because its introduction into NGRdelta noeE leads to the production of a mixture of LCOs that are sulphated on C6 of the reducing terminus and sulphated on the 2-O-methylfucose residue. Together, these findings show that noeE is a host-specificity gene which probably encodes a fucose-specific sulphotransferase.

摘要

根瘤菌分泌特定的脂壳寡糖信号(LCOs),即根瘤因子,这是豆科植物感染和结瘤所必需的。在根瘤菌属NGR234中,LCOs的还原性N-乙酰-D-葡萄糖胺在C6位被2-O-甲基-L-岩藻糖取代,该岩藻糖可以被乙酰化或硫酸化。我们在共生质粒pNGR234a上鉴定了一个类黄酮诱导位点,该位点包含一个新的结瘤基因noeE,它是NGR234根瘤因子(NodNGR)硫酸化所必需的。noeE是通过接合到密切相关的费氏中华根瘤菌菌株USDA257中鉴定出来的,该菌株产生岩藻糖基化但非硫酸化的根瘤因子(NodUSDA)。产生硫酸化LCOs的费氏中华根瘤菌转接合子获得了结瘤天蓝野百合的能力。此外,noeE(NGRdelta noeE)的突变消除了硫酸化LCOs的产生,并阻止了豆薯的结瘤。与NoeE相关的磺基转移酶活性对岩藻糖具有特异性。相比之下,苜蓿根瘤菌的磺基转移酶NodH似乎比NoeE的特异性低,因为将其引入NGRdelta noeE会导致在还原端的C6位硫酸化和在2-O-甲基岩藻糖残基上硫酸化的LCOs混合物的产生。总之,这些发现表明noeE是一个宿主特异性基因,可能编码一种岩藻糖特异性磺基转移酶。

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