生物
根瘤菌
共生
缓生根瘤菌
固氮酶
植物
根瘤菌
莲藕
根瘤菌科
固氮
细菌
遗传学
作者
Shin Okazaki,Panlada Tittabutr,Albin Teulet,Julien Thouin,Joël Fardoux,Clémence Chaintreuil,Djamel Gully,Jean-François Arrighi,Noriyuki Furuta,Hiroki Miwa,Michiko Yasuda,Nico Nouwen,Neung Teaumroong,Éric Giraud
出处
期刊:The ISME Journal
[Springer Nature]
日期:2015-07-10
卷期号:10 (1): 64-74
被引量:116
标识
DOI:10.1038/ismej.2015.103
摘要
The occurrence of alternative Nod factor (NF)-independent symbiosis between legumes and rhizobia was first demonstrated in some Aeschynomene species that are nodulated by photosynthetic bradyrhizobia lacking the canonical nodABC genes. In this study, we revealed that a large diversity of non-photosynthetic bradyrhizobia, including B. elkanii, was also able to induce nodules on the NF-independent Aeschynomene species, A. indica. Using cytological analysis of the nodules and the nitrogenase enzyme activity as markers, a gradient in the symbiotic interaction between bradyrhizobial strains and A. indica could be distinguished. This ranged from strains that induced nodules that were only infected intercellularly to rhizobial strains that formed nodules in which the host cells were invaded intracellularly and that displayed a weak nitrogenase activity. In all non-photosynthetic bradyrhizobia, the type III secretion system (T3SS) appears required to trigger nodule organogenesis. In contrast, genome sequence analysis revealed that apart from a few exceptions, like the Bradyrhizobium ORS285 strain, photosynthetic bradyrhizobia strains lack a T3SS. Furthermore, analysis of the symbiotic properties of an ORS285 T3SS mutant revealed that the T3SS could have a positive or negative role for the interaction with NF-dependent Aeschynomene species, but that it is dispensable for the interaction with all NF-independent Aeschynomene species tested. Taken together, these data indicate that two NF-independent symbiotic processes are possible between legumes and rhizobia: one dependent on a T3SS and one using a so far unknown mechanism.
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