Arabidopsis thaliana Seedlings Influence Bacillus subtilis Spore Formation

被引:12
作者
Charron-Lamoureux, Vincent [1 ]
Beauregard, Pascale B. [1 ]
机构
[1] Univ Sherbrooke, Ctr SEVE, Dept Biol, Fac Sci, Sherbrooke, PQ J1K 2R1, Canada
关键词
bacteria-plant symbiosis; genetics and gene regulation; induced systemic resistance; PLANT IMMUNITY; SPORULATION; GROWTH; TRANSCRIPTION; TRANSDUCTION; CORECEPTOR; ACTIVATION; RESISTANCE; KINA;
D O I
10.1094/MPMI-10-18-0278-R
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Bacillus subtilis is a Gram-positive plant-growth-promoting rhizobacterium exerting many beneficial effects on plant health. Because they secrete antimicrobial compounds and elicit induced systemic resistance, B. subtilis and phylogenetically related species are of particular interest as antifungals in organic agriculture. These bacteria are also known for their capacity to differentiate phenotypically into endospores able to withstand many environmental stresses. However, although B. subtilis is often inoculated on plants as spores, dynamics of germination and sporulation on roots remain unexplored. Using a hydroponic culture system and a soil system for Arabidopsis thaliana, we observed that B. subtilis spores germinate rapidly on contact with plants. However, the vegetative cells are abundant on roots for only a few days before reversing back to spores. We observed that the germinant receptor GerK and sporulation kinases KinA and KinB identified in vitro control sporulation dynamics on plants. Surprisingly, when plants are inoculated with B. subtilis, free-living cells sporulate more rapidly than plant-associated cells. However, direct contact between plant and bacteria is required for the induction of sporulation in the surrounding B. subtilis. This study has fundamental implications for our understanding of interactions between Bacillus spp. and plants, and particularly for a more efficient usage of B. subtilis as a biofertilizer or biofungicide.
引用
收藏
页码:1188 / 1195
页数:8
相关论文
共 48 条
[1]   KinD Is a Checkpoint Protein Linking Spore Formation to Extracellular-Matrix Production in Bacillus subtilis Biofilms [J].
Aguilar, Claudio ;
Vlamakis, Hera ;
Guzman, Alejandra ;
Losick, Richard ;
Kolter, Roberto .
MBIO, 2010, 1 (01)
[2]  
Allard-Massicotte R, 2016, MBIO, V7, DOI [10.1128/mBio.01664-16, 10.1128/mbio.01664-16]
[3]   Ability of bacterium Bacillus subtilis to produce cytokinins and to influence the growth and endogenous hormone content of lettuce plants [J].
Arkhipova, TN ;
Veselov, SU ;
Melentiev, AI ;
Martynenko, EV ;
Kudoyarova, GR .
PLANT AND SOIL, 2005, 272 (1-2) :201-209
[4]   Cooperativity between different nutrient receptors in germination of spores of Bacillus subtilis and reduction of this cooperativity by alterations in the GerB receptor [J].
Atluri, S ;
Ragkousi, K ;
Cortezzo, DE ;
Setlow, P .
JOURNAL OF BACTERIOLOGY, 2006, 188 (01) :28-36
[5]   Transcriptome analysis of Arabidopsis roots treated with signaling compounds:: a focus on signal transduction, metabolic regulation and secretion [J].
Badri, Dayakar V. ;
Loyola-Vargas, Victor M. ;
Du, Jiang ;
Stermitz, Frank R. ;
Broeckling, Corey D. ;
Iglesias-Andreu, Lourdes ;
Vivanco, Jorge M. .
NEW PHYTOLOGIST, 2008, 179 (01) :209-223
[6]  
Badri DV, 2009, PLANT CELL ENVIRON, V32, P666, DOI [10.1111/j.1365-3040.2008.01926.x, 10.1111/j.1365-3040.2009.01926.x]
[7]   Bacillus subtilis biofilm induction by plant polysaccharides [J].
Beauregard, Pascale B. ;
Chai, Yunrong ;
Vlamakis, Hera ;
Losick, Richard ;
Kolter, Roberto .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2013, 110 (17) :E1621-E1630
[8]   Plant growth-promoting rhizobacteria (PGPR): Their potential as antagonists and biocontrol agents [J].
Beneduzi, Anelise ;
Ambrosini, Adriana ;
Passaglia, Luciane M. P. .
GENETICS AND MOLECULAR BIOLOGY, 2012, 35 (04) :1044-1051
[9]   Draft Genome Sequence of a Natural Root Isolate, Bacillus subtilis UD1022, a Potential Plant Growth-Promoting Biocontrol Agent [J].
Bishnoi, Usha ;
Polson, Shawn W. ;
Sherrier, D. Janine ;
Bais, Harsh P. .
GENOME ANNOUNCEMENTS, 2015, 3 (04)
[10]   Root Exudation of Phytochemicals in Arabidopsis Follows Specific Patterns That Are Developmentally Programmed and Correlate with Soil Microbial Functions [J].
Chaparro, Jacqueline M. ;
Badri, Dayakar V. ;
Bakker, Matthew G. ;
Sugiyama, Akifumi ;
Manter, Daniel K. ;
Vivanco, Jorge M. .
PLOS ONE, 2013, 8 (02)