数字农科院2.0

Postharvest biocontrol ability and antagonistic mechanism of Bacillus altitudins h217 against Penicillium digitatum in citrus

文献类型: 外文期刊

作者: Yongqing Lu;Shuqi Liu;Yuqing Wang;Fan Yang;Zhonghuan Tian;Chao an Long

作者机构:

关键词: (0-1-3)Bacillus altitudins h217;Citrus;Penicillium digitatum;ROS;VOCs

期刊名称: Postharvest Biology and Technology

ISSN: 0925-5214

年卷期: 2024 年 212 卷

页码:

收录情况: SCIE(2024版)

摘要: Penicillium digitatum is the main fungi causing postharvest decay of citrus fruits. In this study, the strain h217 was identified as Bacillus altitudins and it showed strong biocontrol activity against P. digitatum in citrus. In vitro tests, B. altitudins h217 can effectively inhibit the growth of P. digitatum and form an inhibitory region with a diameter of 52.79 mm in PDA plate. It can also effectively delay the occurrence of P. digitatum, and reduce the incidence rate and the severity of P. digitatum in vivo. In addition, B. altitudins h217 could produce volatile organic compound (VOCs), and its VOCs have an inhibitory rate of 76.83% against P. digitatum. Three possible antifungal substances (5-methyl-2-hexanone, methoxy-phenyl oxime and 2-pentylfuran) were identified through gas chromatography-mass spectrometry (GC-MS). Acetophenone oxime (alternative compounds of methoxy-phenyl oxime) was selected for antifungal tests in vitro and in vivo, which confirmed its antifungal activity. Fluorescence staining experiments showed that B. altitudins h217 can severely damage the cell membrane of P. digitatum and cause an explosion of intracellular reactive oxygen species (ROS). In addition, B. altitudins h217 can significantly reduce the activity of peroxidase (POD) in P. digitatum. These results indicated that B. altitudins h217 has great potential in controlling postharvest diseases of citrus, and its VOCs can also provide new ideas for the development of postharvest fumigants for citrus. This study may provide a new biocontrol agent for controlling P. digitatum in citrus and deepen understanding of the biocontrol mechanism of B. altitudins h217.

分类号:

  • 相关文献

[1]Calcium disodium edetate controls citrus green mold by chelating Mn2+ and targeting pyruvate synthesis in the pathogen. Fan Yang,Shuqi Liu,Zhonghuan Tian,Yujie Du,Deyao Zhang,Chao an Long. 2023

[2]Exploration of the antimicrobial activities of biocontrol agent Streptomyces strain h114 against Penicillium digitatum in citrus. Tian Z.,Du Y.,Lu Y.,Zhu J.,Long C.-A.. 2024

[3]Perillaldehyde controls citrus green mold by inhibiting the ribosome biogenesis of Penicillium digitatum and improving citrus disease resistance. Shuqi Liu,Yuxin Jiang,Jiancheng Sun,Fan Yang,Yuqing Wang,Yongqing Lu,Weiqiang Lai,Chao an Long. 2025

[4]Butylated hydroxyanisole controls anthracnose on postharvest citrus fruit by inducing autophagosome formation in Colletotrichum gloeosporioides. Wang Y.,Ji S.,Chen X.,Liu S.,Zhao J.,Long C.-A.. 2024

[5]中国葡萄类病毒基因多样性分析及其新种的发现. 姜冬梅,郭瑞,彭山,吴祖建. 2009

[6]中国栽培葡萄上发生的类病毒的种类鉴定. 王晶,SanoTeruo. 2003

[7]添加剂对堆肥过程中挥发性有机物(VOCs)的减排效果. 李新荣,田壮,杨金凤,郭旋,杜连凤,王悦,成卫民. 2023

[8]活性氧在柠檬醛抑制黄曲霉产毒过程中的作用. 李金寒,商博,梁丹丹,Jonathan Nimal Selvaraj,鲁志松,刘阳. 2016

[9]活性氧(ROS)对牛卵母细胞体外成熟凋亡的影响. 刘涛,李向臣,浦亚斌,姚雅馨,关伟军,马月辉. 2010

[10]低氧适应的线粒体调控机制研究进展. 左清清,姚娜,董坤哲,叶绍辉,马月辉. 2013

[11]OsPHGPx基因的过量表达增强水稻抗氧化能力. 宋建辉,李甜,吴秀云,吴赴清,刘进元. 2014

[12]赭曲霉毒素A诱导Caco-2细胞的细胞毒性及DNA损伤. 张捷,李发弟,李爱军,郑楠,李松励,王加启. 2016

[13]烟草转录因子NtNAC080在非生物胁迫下的表达分析及功能鉴定. 文利超,熊涛,邓智超,刘涛,郭存,李伟,郭永峰. 2023

[14]AP2转录因子Oserf34正向调控水稻种子休眠. 杜志敏,贾一楠,段影青,曹妮,马刘洋,董欣丽,徐海,焦桂爱,唐绍清,胡培松. 2025

[15]弓形虫TR与ROP5双基因缺失株的构建及其生物学功能研究. 耿小玲,李瑞芳,徐卫兵,杜晶莹,张曼玉,孙卿,蒋蔚,米荣升,陈兆国,王权. 2025

[16]PdStuA Is a Key Transcription Factor Controlling Sporulation, Hydrophobicity, and Stress Tolerance in Penicillium digitatum. Yujie Du,Jinfan Zhu,Zhonghuan Tian,Chaoan Long. 2023

[17]PdMesA regulates polar growth, cell wall integrity, and full virulence in Penicillium digitatum of citrus. Shuqi Liu,Xinying Liu,Weiqiang Lai,Yongqing Lu,Yuqing Wang,Chao an Long. 2024

[18]Methylparaben suppresses the citrus postharvest pathogen Penicillium digitatum by undermining the cell wall and membrane and inducing the antioxidant system. Fan Yang,Xiuying Zhong,Yuqing Wang,Juan Zhao,Yongqing Lu,Chao an Long. 2024

[19]Functional analysis of potential fumiquinazoline biosynthetic gene clusters in Penicillium digitatum of citrus. Shuqi Liu,Yongqing Lu,Yuqing Wang,Wei Fang,Chao an Long. 2025

[20]Influence of bulking agents on odor production during aerobic composting of sewage sludge. Shen Yujun,Hou Yueqing,Zhao Lixin,Meng Haibo. 2014

作者其他论文 更多>>