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nodT,一种正向作用的品种特异性决定因子,控制着根瘤菌豌豆生物变种对地下三叶草的结瘤作用。

nodT, a positively-acting cultivar specificity determinant controlling nodulation of Trifolium subterraneum by Rhizobium leguminosarum biovar trifolii.

作者信息

Lewis-Henderson W R, Djordjevic M A

机构信息

Plant-Microbe Interactions Group, Research School of Biological Sciences, Australian National University, Canberra City.

出版信息

Plant Mol Biol. 1991 Apr;16(4):515-26. doi: 10.1007/BF00023418.

Abstract

Rhizobium leguminosarum biovar trifolii strain TA1 nodulates a range of Trifolium plants including red, white and subterranean clovers. Nitrogen-fixing nodules are promptly initiated on the tap roots of these plants at the site of inoculation. In contrast to these associations, strain TA1 has a 'Nod-' phenotype on a particular cultivar of subterranean clover called Woogenellup (A.H. Gibson, Aust J Agric Sci 19: (1968) 907-918) where it induces rare, poorly developed, slow-to-appear and ineffective lateral root nodules. By comparing the nodulation gene region of strain TA1 with that of another R. leguminosarum bv. trifolii strain ANU843, which is capable of efficiently nodulating cv. Woogenellup, we have shown that the nodT gene (B.P. Surin et al., Mol Microbiol 4: (1990) 245-252) is essential for nodulation on cv. Woogenellup. The nodT gene is naturally absent in strain TA1. A cosmid clone spanning the entire nodulation gene region of strain TA1 was capable of conferring nodulation ability to R.l. bv. trifolii strains deleted for nodulation genes, but only on cultivars of subterranean clovers nodulated by strain TA1. This shows that cultivar recognition events are, in part, determined by genes in the nodulation region of strain TA1. Complementation studies also indicated that strain TA1 contains negatively-acting genes located on the Sym plasmid and elsewhere, which specifically block nodulation of cv. Woogenellup.

摘要

豌豆根瘤菌三叶草生物变种TA1菌株能使一系列三叶草植物结瘤,包括红三叶草、白三叶草和地下三叶草。在接种部位,这些植物的主根上能迅速形成固氮根瘤。与这些共生关系不同的是,TA1菌株在一种名为沃根内卢普的特定地下三叶草品种上表现出“不结瘤”表型(A.H. 吉布森,《澳大利亚农业科学杂志》19: (1968) 907 - 918),在该品种上它诱导形成的侧根瘤稀少、发育不良、出现缓慢且无效。通过将TA1菌株的结瘤基因区域与另一种能够高效使沃根内卢普品种结瘤的豌豆根瘤菌三叶草生物变种ANU843的结瘤基因区域进行比较,我们发现nodT基因(B.P. 苏林等人,《分子微生物学》4: (1990) 245 - 252)对于沃根内卢普品种的结瘤至关重要。TA1菌株天然缺失nodT基因。一个跨越TA1菌株整个结瘤基因区域的黏粒克隆能够赋予缺失结瘤基因的豌豆根瘤菌三叶草生物变种结瘤能力,但仅针对TA1菌株能使其结瘤的地下三叶草品种。这表明品种识别事件部分由TA1菌株结瘤区域的基因决定。互补研究还表明,TA1菌株含有位于共生质粒和其他位置的负向作用基因,这些基因特异性地阻断了沃根内卢普品种的结瘤。

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