4.6 Article

Efficacy of Plant Growth-Promoting Bacteria Bacillus cereus YN917 for Biocontrol of Rice Blast

期刊

FRONTIERS IN MICROBIOLOGY
卷 12, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fmicb.2021.684888

关键词

Magnaporthe oryzae; Bacillus cereus; biological control; plant growth promoting; antagonistic activities

资金

  1. National Key R&D Program of China [2016YFD0300700]
  2. Central Government Financed Projects, China [2014ZX0800102B]
  3. Public Welfare Industry (Agriculture) Special Scientific Research Projects, China [201203014]

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Bacillus cereus YN917 is a potential biocontrol agent and bio-fertilizer with plant growth-promoting and disease prevention properties. The strain produces various compounds and enzymes beneficial for plant growth and exhibits significant antifungal activity against Magnaporthe oryzae. Through fermentation experiments and genome analysis, the mechanisms underlying its effects have been verified. The findings provide a new approach for reducing chemical pesticide use and promoting sustainable agriculture.
Bacillus cereus YN917, obtained from a rice leaf with remarkable antifungal activity against Magnaporthe oryzae, was reported in our previous study. The present study deciphered the possible biocontrol properties. YN917 strain exhibits multiple plant growth-promoting and disease prevention traits, including production of indole-3-acetic acid (IAA), ACC deaminase, siderophores, protease, amylase, cellulase, and beta-1,3-glucanase, and harboring mineral phosphate decomposition activity. The effects of the strain YN917 on growth promotion and disease prevention were further evaluated under detached leaf and greenhouse conditions. The results revealed that B. cereus YN917 can promote seed germination and seedling plant growth. The growth status of rice plants was measured from the aspects of rice plumule, radicle lengths, plant height, stem width, root lengths, fresh weights, dry weights, and root activity when YN917 was used as inoculants. YN917 significantly reduced rice blast severity under detached leaf and greenhouse conditions. Genome analysis revealed the presence of gene clusters for biosynthesis of plant promotion and antifungal compounds, such as IAA, tryptophan, siderophores, and phenazine. In summary, YN917 can not only be used as biocontrol agents to minimize the use of chemical substances in rice blast control, but also can be developed as bio-fertilizers to promote the rice plant growth.

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