Evaluation of Aspergillus aculeatus GC-09 for the biological control of citrus blue mold caused by Penicillium italicum

被引:23
作者
Zhang, Jun [1 ,2 ]
He, Lian [1 ]
Guo, Can [1 ]
Liu, Ziyue [1 ]
Kaliaperumal, Kumaravel [1 ]
Zhong, Balian [1 ]
Jiang, Yueming [2 ]
机构
[1] Gannan Normal Univ, Natl Engn Res Ctr Navel Orange, Ganzhou 341000, Peoples R China
[2] Chinese Acad Sci, South China Bot Garden, Guangzhou 510650, Peoples R China
基金
芬兰科学院; 中国国家自然科学基金;
关键词
Antifungal; Citrus blue mold; Penicillium italicum; Aspergillusaculeatus; ANTIFUNGAL ACTIVITY; GREEN MOLD; POSTHARVEST DISEASES; IN-VITRO; DIGITATUM; MEMBRANE; FRUIT; ACID; IDENTIFICATION; INHIBITION;
D O I
10.1016/j.funbio.2021.12.006
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Blue mold caused by Penicillium italicum is a severe postharvest disease in citrus fruits. In this study, the fermentation product (FP-E) of Aspergillus aculeatus GC-09, an endophytic fungus isolated from a citrus plant, was found to exhibit antifungal activity against P. italicum with a MIC of 0.3125 mg/mL. The fungus A. aculeatus GC-09 was identified based on the studies of morphology and ITS nucleotide sequence. FP-E significantly inhibited the spore germination and mycelial growth of P. italicum. Scanning electron microscopy (SEM) results of P. italicum treated with FP-E showed shrunken, distorted and collapsed hyphae and conidiospores, indicative of the cell membrane damage, which was further confirmed by the propidium iodide (PI) fluorescent staining analysis. Consistent with the microscopy observation, FP-E led to the leakage of cellular constituents from P. italicum, which is evident from the increase in electrical conductivity and nucleic acid contents in the mycelial solution incubated with FP-E. In addition, FP-E treatment considerably increased the intracellular reactive oxygen species (ROS) content, and reduced the enzyme activities of both catalase (CAT) and peroxidase (POD) in P. italicum cells. Furthermore, orange fruits treated with FP-E showed fewer disease symptoms compared to the untreated fruits. These results suggested that the antifungal activity of FP-E might be associated with the disruption of cell membrane integrity, the accumulation of ROS level, and the reduction of the antioxidant enzymes activity of P. italicum. Therefore, A. aculeatus GC-09 might be a potential microbial resource for the biocontrol of citrus postharvest blue mold. (c) 2022 British Mycological Society. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:201 / 212
页数:12
相关论文
共 53 条
[1]   Itaconic acid derivatives and diketopiperazine from the marine-derived fungus Aspergillus aculeatus CRI322-03 [J].
Antia, Bassey S. ;
Aree, Thammarat ;
Kasettrathat, Chairut ;
Wiyakrutta, Suthep ;
Ekpa, Okon D. ;
Ekpe, Udofot J. ;
Mahidol, Chulabhorn ;
Ruchirawat, Somsak ;
Kittakoop, Prasat .
PHYTOCHEMISTRY, 2011, 72 (08) :816-820
[2]   The use of essential oils for postharvest decay control. A review [J].
Antunes, Maria Dulce C. ;
Cavaco, Ana Margarida .
FLAVOUR AND FRAGRANCE JOURNAL, 2010, 25 (05) :351-366
[3]   In vitro and in vivo antifungal activity of several Moroccan plants against Penicillium italicum, the causal agent of citrus blue mold [J].
Askarne, L. ;
Talibi, I. ;
Boubaker, H. ;
Boudyach, E. H. ;
Msanda, F. ;
Saadi, B. ;
Serghini, M. A. ;
Ben Aoumar, A. Ait .
CROP PROTECTION, 2012, 40 :53-58
[4]   Biological control of onion basal rot disease using phosphate solubilising rhizobacteria [J].
Bektas, Idris ;
Kusek, Mustafa .
BIOCONTROL SCIENCE AND TECHNOLOGY, 2021, 31 (02) :190-205
[5]   The role of iturin A from B. amyloliquefaciens BUZ-14 in the inhibition of the most common postharvest fruit rots [J].
Calvo, H. ;
Mendiara, I ;
Arias, E. ;
Blanco, D. ;
Venturini, M. E. .
FOOD MICROBIOLOGY, 2019, 82 :62-69
[6]   A flavonone pinocembroside inhibits Penicillium italicum growth and blue mold development in 'Newhall' navel oranges by targeting membrane damage mechanism [J].
Chen, Chuying ;
Wan, Chunpeng ;
Peng, Xuan ;
Chen, Jinyin .
PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY, 2020, 165
[7]   Pinocembrin-7-Glucoside (P7G) Reduced Postharvest Blue Mold of Navel Orange by Suppressing Penicillium italicum Growth [J].
Chen, Chuying ;
Chen, Jinyin ;
Wan, Chunpeng .
MICROORGANISMS, 2020, 8 (04)
[8]   Clove Essential Oil as an Alternative Approach to Control Postharvest Blue Mold Caused by Penicillium italicum in Citrus Fruit [J].
Chen, Chuying ;
Cai, Nan ;
Chen, Jinyin ;
Wan, Chunpeng .
BIOMOLECULES, 2019, 9 (05)
[9]   Role of citrus volatiles in host recognition, germination and growth of Penicillium digitatum and Penicillium italicum [J].
Droby, S. ;
Eick, A. ;
Macarisin, D. ;
Cohen, L. ;
Rafael, G. ;
Stange, R. ;
McColum, G. ;
Dudai, N. ;
Nasser, A. ;
Wisniewski, M. ;
Shapira, R. .
POSTHARVEST BIOLOGY AND TECHNOLOGY, 2008, 49 (03) :386-396
[10]   Non-Fungicides-Based Promising Technologies for Managing Post-Production Penicillium Induced Spoilage in Horticultural Commodities: A Comprehensive Review [J].
Dukare, Ajinath Shridhar ;
Singh, Rajesh Kumar ;
Jangra, Ramesh Kumar ;
Bhushan, Bharat .
FOOD REVIEWS INTERNATIONAL, 2022, 38 (03) :227-267