The Bradyrhizobium Sp. LmicA16 Type VI Secretion System Is Required for Efficient Nodulation of Lupinus Spp.

被引:0
作者
L. Tighilt
F. Boulila
B. F. S. De Sousa
E. Giraud
T. Ruiz-Argüeso
J. M. Palacios
J. Imperial
L. Rey
机构
[1] Université de Bejaia,Laboratoire d’Ecologie Microbienne, Faculté Des Sciences de La Nature Et de La Vie
[2] Universidad Politécnica de Madrid (UPM),Centro de Biotecnología Y Genómica de Plantas
[3] Instituto Nacional de Investigación Y Tecnología Agraria Y Alimentaria (INIA),Departamento de Biotecnología Y Biología Vegetal
[4] ETSI Agronómica,IRD, Laboratoire Des Symbioses Tropicales Et Méditerranéennes (LSTM)
[5] Alimentaria Y de Biosistemas,undefined
[6] Universidad Politécnica de Madrid,undefined
[7] UMR IRD/SupAgro/INRA/Université de Montpellier/CIRAD,undefined
[8] TA-A82/J-Campus International de Baillarguet,undefined
[9] Instituto de Ciencias Agrarias,undefined
[10] CSIC,undefined
来源
Microbial Ecology | 2022年 / 84卷
关键词
Type VI secretion; –legume symbiosis; Effector; Methyltransferase;
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摘要
Many bacteria of the genus Bradyrhizobium are capable of inducing nodules in legumes. In this work, the importance of a type VI secretion system (T6SS) in a symbiotic strain of the genus Bradyrhizobium is described. T6SS of Bradyrhizobium sp. LmicA16 (A16) is necessary for efficient nodulation with Lupinus micranthus and Lupinus angustifolius. A mutant in the gene vgrG, coding for a component of the T6SS nanostructure, induced less nodules and smaller plants than the wild-type (wt) strain and was less competitive when co-inoculated with the wt strain. A16 T6SS genes are organized in a 26-kb DNA region in two divergent gene clusters of nine genes each. One of these genes codes for a protein (Tsb1) of unknown function but containing a methyltransferase domain. A tsb1 mutant showed an intermediate symbiotic phenotype regarding vgrG mutant and higher mucoidity than the wt strain in free-living conditions. T6SS promoter fusions to the lacZ reporter indicate expression in nodules but not in free-living cells grown in different media and conditions. The analysis of nodule structure revealed that the level of nodule colonization was significantly reduced in the mutants with respect to the wt strain.
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页码:844 / 855
页数:11
相关论文
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