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      Fusaricidins in Paenibacillus polymyxa A21 and their antagonistic activity against Botrytis cinerea on tomato

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          Abstract

          Four kinds of antifungal compounds from an extract of Paenibacillus polymyxa A21 with molecular masses of 883.56, 897.59, 947.55, and 961.58 Da were characterized as the members of fusaricidin-type of antibiotics according to LC-MS analysis. Fusaricidins isolated from culture filtrate displayed high antagonistic activity against several plant fungal pathogens, especially Botrytis cinerea, the causal agent of gray mold. The fusaricidins biosynthetic gene cluster (BGC) from A21 was cloned by PCR and comparative cluster analysis revealed that gene fusTE, the 3′ boundary of the fusaricidin BGC in strain PKB1, was not present in fusaricidin BGC of A21, indicating that fusTE is not necessary for fusaricidin synthesis. Fusaricidin extract from A21 significantly reduced gray mold disease incidence and severity on tomato. The mRNA levels for three patho-genesis-related proteins (PRs) revealed that treatment of tomato leaves with fusaricidin extract induced the expression of PR genes to different levels, suggesting that one reason for the reduction of gray mold infection by fusaricidin is induction of PR proteins, which lead to increased resistance to pathogens. This is the first report of the application of fusaricidins to control tomato gray mold and the comparative cluster analysis provides important molecular basis for research on fusaricidin biosynthesis.

          Most cited references34

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          Recommendations for naming plant pathogenesis-related proteins

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            The salicylic acid signal in plants.

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              Molecular identification of rRNA group 3 bacilli (Ash, Farrow, Wallbanks and Collins) using a PCR probe test. Proposal for the creation of a new genus Paenibacillus.

              Comparative 16S rRNA sequence analysis has demonstrated that the genus Bacillus consists of at least five phyletic lines. rRNA group 3 bacilli of Ash, Farrow, Wallbanks and Collins (1991) comprising Bacillus polymyxa and close relatives is phylogenetically so removed from Bacillus subtilis, the type species of the genus and other aerobic, endospore-forming bacilli that they warrant reclassification in a new genus Paenibacillus. The genus Paenibacillus can be readily distinguished from other Bacillus groups using a battery of phenotypic characters and a highly specific gene probe based on 16S rRNA.
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                Author and article information

                Contributors
                Journal
                Front. Agr. Sci. Eng.
                FASE
                CN10-1204/S
                Frontiers of Agricultural Science and Engineering
                Higher Education Press
                2095-7505
                2095-977X
                2018
                : 5
                : 2
                : 262-270
                Affiliations
                [1 ]. Institute of Plant and Environment Protection, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China
                [2 ]. Editorial Department of Chinese Science Abstracts, Science and Technology Review Publishing House, Beijing 100081, China
                Author notes
                wuhuiling925@126.com
                Article
                10.15302/J-FASE-2017166
                5e70b9a4-367a-4ea8-9530-731807bf3cda
                Copyright @ 2017
                History
                : 22 January 2017
                : 8 May 2017
                Categories
                RESEARCH ARTICLE

                Management,Industrial organization,Risk management,Economics
                antifungal activity,fusaricidin,Paenibacillus polymyxa ,biosynthetic gene cluster,Botrytis cinerea

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