@ARTICLE{TreeBASE2Ref29692,
author = {Paulina Vignatti and Mar?a Elisa Gonzalez and Edgardo Jofre and Hernando Jose Bolivar-Anillo and Javier Moraga and Muriel Viaud and Isidro Gonzalez-Collado and Fernando Luis Pieckenstain},
title = {Botrydial confers Botrytis cinerea the ability to antagonize soil and phyllospheric bacteria.},
year = {2019},
keywords = {Botrydial, Botrytis cinerea, antibacterial compound, gray mold, biocontrol, Bacillus spp, lipopeptides, phytotoxin},
doi = {10.1016/j.funbio.2019.11.003},
url = {http://www.sciencedirect.com/science/article/pii/S1878614619301618?via%3Dihub},
pmid = {},
journal = {Fungal Biology},
volume = {},
number = {},
pages = {},
abstract = {The role of the sesquiterpene botrydial in the interaction of the phytopathogenic fungus Botrytis cinerea and plant-associated bacteria was analyzed. From a collection of soil and phyllospheric bacteria, nine strains susceptible to growth-inhibition by B. cinerea were identified. B. cinerea mutants unable to produce botrydial caused no bacterial inhibition, thus demonstrating the inhibitory role of botrydial. A taxonomic analysis showed that these bacteria corresponded to different Bacillus species (six strains), Pseudomonas yamanorum (two strains) and Erwinia aphidicola (one strain). Inoculation of WT and botrydial non-producing mutants of B. cinerea along with B. amyloliquefaciens strain MEP218 in soil demonstrated that both microorganisms exert reciprocal inhibitory effects; the inhibition caused by B. cinerea being dependent on botrydial production. Moreover, botrydial production was modulated by the presence of B. amyloliquefaciens MEP218 in confrontation assays in vitro. Purified botrydial in turn, inhibited growth of Bacillus strains in vitro and cyclic lipopeptide (surfactin) production by B. amyloliquefaciens MEP218. As a whole, results demonstrate that botrydial confers B. cinerea the ability to inhibit potential biocontrol bacteria of the genus Bacillus. We propose that resistance to botrydial could be used as an additional criterion for the selection of biocontrol agents of plant diseases caused by B. cinerea.}
}
Taxa for tree 118359 of Study 24543

Citation title:
"Botrydial confers Botrytis cinerea the ability to antagonize soil and phyllospheric bacteria.".

Study name:
"Botrydial confers Botrytis cinerea the ability to antagonize soil and phyllospheric bacteria.".

This study is part of submission 24543
(Status: Published).
Taxa
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ID |
Taxon Label |
NCBI taxid |
uBIO namebankID |
3653608 |
A6 MH750311 |
|
|
3653612 |
BB6L MH750310 |
|
|
3653607 |
Bacillus amyloliquefaciens DSM7 T FN597644 |
1390
|
2554182
|
3653604 |
Bacillus coagulans NBRC 12583 T CP009709 |
1398
|
2554203
|
3653611 |
Bacillus licheniformis DSM 13 T AE017333 |
1402
|
691189
|
3653610 |
Bacillus methylotrophicus CBMB205 T NZ CP011937 |
|
|
3653613 |
Bacillus siamensis KCTC 13613 T NZ AJVF01000041 |
|
5343138
|
3653606 |
Bacillus subtilis KCTC 3135 T CP015375 |
1423
|
2107618
|
3653605 |
Bacillus vallismortis DSM 11031 T NZ JH600197 |
72361
|
2554300
|
3653603 |
Bacillus velezensis CR 502 T NZ LHCC01000001 |
|
|
3653609 |
GrB7L MH750309 |
|
|