Literature DB >> 33802124

Bioactivity and Control Efficacy of the Novel Antibiotic Tetramycin against Various Kiwifruit Diseases.

Qiuping Wang1, Cheng Zhang2, Youhua Long2, Xiaomao Wu2, Yue Su1, Yang Lei1, Qiang Ai1.   

Abstract

Tetramycin, a novel polyene agriculture antibiotic, has excellent antimicrobial activity against many plant pathogens. In this study, the antimicrobial activities of tetramycin and conventional antibiotics on eight common pathogens and their field control efficacies against four serious diseases in kiwifruit were investigated. The results show that 0.3% tetramycin aqueous solutions (AS) exhibited the superior antibacterial and antifungal activity against Pseudomonas syringae pv. actinidiae, Pseudomonas fulva, Agrobacterium tumefaciens, Botryosphaeriadothidea, Phomopsis sp., Alternaria tenuissima, Armillariella mellea and Phytophthora cactorum of kiwifruit pathogens with EC50 values of 1.21, 1.24, 0.72, 0.14, 0.09, 0.16, 0.06 and 0.17 mg kg-1, respectively. These EC50 values of tetramycin were much higher than those of conventional kasugamycin, zhongshengmycin or polyoxin. Meanwhile, 0.3% tetramycin AS possessed the good field control efficacies for canker, soft rot, blossom blight and brown spot disease of kiwifruit with 74.45, 83.55, 84.74 and 89.62%. Moreover, 0.3% tetramycin AS application notably increased fruit resistance substances contents, activated fruit superoxide dismutase and polyphenoloxidase activities, as well as remarkably enhanced fruit growth, improved fruit quality and storability. This study highlights that tetramycin can be used as a preferred alternative to conventional antibiotics in kiwifruit production.

Entities:  

Keywords:  antimicrobial activity; conventional antibiotics; kiwifruit disease; storage quality; tetramycin

Year:  2021        PMID: 33802124      PMCID: PMC7998335          DOI: 10.3390/antibiotics10030289

Source DB:  PubMed          Journal:  Antibiotics (Basel)        ISSN: 2079-6382


  10 in total

1.  Baseline Sensitivity and Control Efficacy of Tetramycin Against Phytophthora capsici Isolates in China.

Authors:  Dicheng Ma; Jiamei Zhu; Leiming He; Kaidi Cui; Wei Mu; Feng Liu
Journal:  Plant Dis       Date:  2018-02-28       Impact factor: 4.438

2.  Evaluation of bioactivity and control efficacy of tetramycin against Corynespora cassiicola.

Authors:  Dicheng Ma; Jiamei Zhu; Jiangong Jiang; Yunhe Zhao; Beixing Li; Wei Mu; Feng Liu
Journal:  Pestic Biochem Physiol       Date:  2018-09-20       Impact factor: 3.963

3.  Pectin-conjugated silica microcapsules as dual-responsive carriers for increasing the stability and antimicrobial efficacy of kasugamycin.

Authors:  Chen Fan; Mingcheng Guo; You Liang; Hongqiang Dong; Guanglong Ding; Wenbing Zhang; Gang Tang; Jiale Yang; Dandan Kong; Yongsong Cao
Journal:  Carbohydr Polym       Date:  2017-05-21       Impact factor: 9.381

4.  Enhancement of nystatin production by redirecting precursor fluxes after disruption of the tetramycin gene from Streptomyces ahygroscopicus.

Authors:  Jun Ren; Yuqiong Cui; Fan Zhang; Hao Cui; Xianpu Ni; Fei Chen; Li Li; Huanzhang Xia
Journal:  Microbiol Res       Date:  2013-10-19       Impact factor: 5.415

5.  Genome mining of the biosynthetic gene cluster of the polyene macrolide antibiotic tetramycin and characterization of a P450 monooxygenase involved in the hydroxylation of the tetramycin B polyol segment.

Authors:  Bo Cao; Fen Yao; Xiaoqing Zheng; Dongbing Cui; Yucheng Shao; Changxiong Zhu; Zixin Deng; Delin You
Journal:  Chembiochem       Date:  2012-09-07       Impact factor: 3.164

6.  Toxicity and biochemical action of the antibiotic fungicide tetramycin on Colletotrichum scovillei.

Authors:  Yangyang Gao; Lifei He; Xiaoxu Li; Jin Lin; Wei Mu; Feng Liu
Journal:  Pestic Biochem Physiol       Date:  2018-02-26       Impact factor: 3.963

7.  Pseudomonas syringae pv. actinidiae: a re-emerging, multi-faceted, pandemic pathogen.

Authors:  Marco Scortichini; Simone Marcelletti; Patrizia Ferrante; Milena Petriccione; Giuseppe Firrao
Journal:  Mol Plant Pathol       Date:  2012-02-21       Impact factor: 5.663

8.  Dissipation and dietary risk assessment of kasugamycin and saisentong in Chinese cabbage.

Authors:  Guofeng Chen; Yuxin Qiao; Feng Liu; Xiaobo Zhang; Hui Liao; Ruiying Zhang; Jiannan Dong
Journal:  Environ Sci Pollut Res Int       Date:  2020-06-26       Impact factor: 4.223

9.  Fabrication of pH-Sensitive Tetramycin Releasing Gel and Its Antibacterial Bioactivity against Ralstonia solanacearum.

Authors:  Xiaozhou Ma; Shunyu Xiang; Huijun Xie; Linhai He; Xianchao Sun; Yongqiang Zhang; Jin Huang
Journal:  Molecules       Date:  2019-10-07       Impact factor: 4.411

  10 in total
  12 in total

1.  Exogenous Alanine Reverses the Bacterial Resistance to Zhongshengmycin with the Promotion of the P Cycle in Xanthomonas oryzae.

Authors:  Yi Guan; Peihua Shen; Meiyun Lin; Xiuyun Ye
Journal:  Antibiotics (Basel)       Date:  2022-02-14

2.  Co-Application of Tetramycin and Matrine Improves Resistance of Kiwifruit against Soft Rot Disease and Enhances Its Quality and Amino Acids.

Authors:  Cheng Zhang; Wenzhi Li; Youhua Long; Yue Su; Qinghai Zhang
Journal:  Antibiotics (Basel)       Date:  2022-05-17

3.  Co-Application of Tetramycin and Chitosan in Controlling Leaf Spot Disease of Kiwifruit and Enhancing Its Resistance, Photosynthesis, Quality and Amino Acids.

Authors:  Cheng Zhang; Haitao Li; Xiaomao Wu; Yue Su; Youhua Long
Journal:  Biomolecules       Date:  2022-03-25

4.  Active Metabolites From the Endophyte Paenibacillus polymyxa Y-1 of Dendrobium nobile for the Control of Rice Bacterial Diseases.

Authors:  Wenshi Yi; Chao Chen; Xiuhai Gan
Journal:  Front Chem       Date:  2022-03-29       Impact factor: 5.221

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

Authors:  Wenshi Yi; Chao Chen; Xiuhai Gan
Journal:  Front Cell Infect Microbiol       Date:  2022-03-28       Impact factor: 6.073

6.  Chitosan as an Adjuvant to Enhance the Control Efficacy of Low-Dosage Pyraclostrobin against Powdery Mildew of Rosa roxburghii and Improve Its Photosynthesis, Yield, and Quality.

Authors:  Cheng Zhang; Qinju Li; Jiaohong Li; Yue Su; Xiaomao Wu
Journal:  Biomolecules       Date:  2022-09-16

7.  Sesquiterpenoids and Xanthones from the Kiwifruit-Associated Fungus Bipolaris sp. and Their Anti-Pathogenic Microorganism Activity.

Authors:  Jun-Jie Yu; Ying-Xue Jin; Shan-Shan Huang; Juan He
Journal:  J Fungi (Basel)       Date:  2021-12-23

8.  Chitosan Augments Tetramycin against Soft Rot in Kiwifruit and Enhances Its Improvement for Kiwifruit Growth, Quality and Aroma.

Authors:  Qiuping Wang; Cheng Zhang; Xiaomao Wu; Youhua Long; Yue Su
Journal:  Biomolecules       Date:  2021-08-24

9.  New Biomolecules and Drug Delivery Systems as Alternatives to Conventional Antibiotics.

Authors:  Helena P Felgueiras
Journal:  Antibiotics (Basel)       Date:  2022-02-28

10.  Co-Application of Allicin and Chitosan Increases Resistance of Rosa roxburghii against Powdery Mildew and Enhances Its Yield and Quality.

Authors:  Jiaohong Li; Rongyu Li; Cheng Zhang; Zhenxiang Guo; Xiaomao Wu; Huaming An
Journal:  Antibiotics (Basel)       Date:  2021-11-25
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