4.7 Article

Polymyxin B1 and E2 From Paenibacillus polymyxa Y-1 for Controlling Rice Bacterial Disease

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fcimb.2022.866357

关键词

Paenibacillus polymyxa Y-1; polymyxin; rice bacterial blight; antibacterial activity; phenylpropanoid biosynthesis

资金

  1. National Key Research and Development Program of China [2018YFD0200100]
  2. Construction Project of Key Laboratories from the Education Department of Guizhou Province [QJHKY[2018]001]
  3. Subsidy Project for Outstanding Key Laboratory of Guizhou Province in China [20154004]
  4. Program of Introducing Talents of Discipline to Universities of China (111 Program) [D20023]

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The study found that polymyxin B-1 and E-2 have significant inhibitory activity against rice bacterial disease and possess superior protective and curative effects compared to existing pesticides.
To discover novel microbial pesticide for controlling rice bacterial disease, polymyxin B-1 and E-2 were firstly isolated from the supernatant of fermentation broth of Paenibacillus polymyxa Y-1 by bioactivity tracking separation. It is shown that polymyxin B-1 and E-2 had remarkable in vitro inhibitory activities to Xanthomonas oryzae pv. oryzae (Xoo) and Xanthomonas oryzae pv. oryzicola (Xoc) with the EC50 values of 0.19 mu g/ml and 0.21 mu g/ml against Xoo, and 0.32 mu g/ml and 0.41 mu g/ml against Xoc, respectively, which were better than those of Zhongshengmycin (0.31 mu g/ml and 0.73 mu g/ml) and Bismerthiazol (77.48 mu g/ml and 85.30 mu g/ml). Polymyxins B-1 and E-2 had good protection and curative activities against rice bacterial leaf blight (BLB) and rice bacterial leaf streak (BLS) in vivo. The protection and curative activities of polymyxins B-1 (45.8 and 35.8%, respectively) and E-2 (41.2 and 37.0%, respectively) to BLB were superior to those of Zhongshengmycin (34.8 and 29.8%, respectively) and Bismerthiazol (38.0 and 33.5%, respectively). Meanwhile, the protection and curative activities of polymyxins B-1 (44.8 and 39.8%, respectively) and E-2 (42.9 and 39.9%, respectively) to BLS were also superior to those of Zhongshengmycin (39.7 and 32.0%, respectively) and Bismerthiazol (41.5 and 34.3%, respectively). Polymyxin B-1 exerted the anti-pesticide properties via destroying the cell integrity of Xoo, reducing its infectivity and enhancing rice resistance against pathogens through activating the phenylpropanoid biosynthesis pathway of rice. It is indicated that polymyxin B-1 and E-2 were potential microbial pesticides for controlling rice bacterial disease.

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