Shibata Satoshi, Mitsui Hisayuki, Kouchi Hiroshi
Department of Plant Physiology, National Institute of Agrobiological Sciences, Tsukuba, Ibaraki, 305-8602 Japan.
Plant Cell Physiol. 2005 Jun;46(6):1016-20. doi: 10.1093/pcp/pci099. Epub 2005 Mar 31.
NodMl-V(C(18:1), Me, Cb, AcFuc) is a major component of lipo-chitin oligosaccharides (LCOs), or Nod factors, produced by Mesorhizobium loti. The presence of a 4-O-acetylated fucosyl residue (AcFuc) at the reducing end has been thought to be essential for symbiotic interactions with the compatible host plant, Lotus japonicus. We generated an M. loti mutant in which the nolL gene is disrupted; nolL has been shown to encode acetyltransferase that is responsible for acetylation of the fucosyl residue. The nolL disruptant Ml107 produced LCOs that lacked acetylation of fucosyl residues as expected, but exhibited nodulation performance on L. japonicus as efficiently as the wild-type M. loti strain MAFF303099. We show that LCOs without acetylation of a fucosyl residue purified from Ml107 are also able to induce abundant root hair deformation and nodule primordium formation. These results indicate that NolL-dependent acetylation of a fucosyl residue at the reducing end of M. loti LCOs is not essential for nodulation of L. japonicus.
NodMl-V(C(18:1), 甲基, 氨基甲酰基, 乙酰化岩藻糖)是百脉根中生根瘤菌产生的脂壳寡糖(LCOs)或结瘤因子的主要成分。据认为,还原端存在4-O-乙酰化岩藻糖残基(AcFuc)对于与宿主植物日本百脉根的共生相互作用至关重要。我们构建了一个百脉根突变体,其中nolL基因被破坏;nolL已被证明编码负责岩藻糖残基乙酰化的乙酰转移酶。nolL破坏突变体Ml107产生了如预期那样缺乏岩藻糖残基乙酰化的LCOs,但在日本百脉根上的结瘤性能与野生型百脉根菌株MAFF303099一样高效。我们表明,从Ml107中纯化的未乙酰化岩藻糖残基的LCOs也能够诱导大量根毛变形和根瘤原基形成。这些结果表明,百脉根LCOs还原端的岩藻糖残基的NolL依赖性乙酰化对于日本百脉根的结瘤不是必需的。