372
Views
21
CrossRef citations to date
0
Altmetric
RESEARCH ARTICLE

Biocontrol of Fusarium oxysporum f.sp. cubense tropical race 4 by formulated cells and cell-free extracts of Streptomyces griseus in sterile soil environment

&
Pages 685-696 | Received 08 Jul 2014, Accepted 10 Jan 2015, Published online: 12 Mar 2015

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Khadidja Allali, Miyada Zamoum, Abderrahmane Benadjila, Abdelghani Zitouni & Yacine Goudjal. (2022) Optimisation of talcum powder formulation based on Nocardiopsis albirubida strain NA2 spores for biocontrol of Bipolaris sorokiniana root rot in durum wheat seedlings. Biocontrol Science and Technology 32:12, pages 1434-1452.
Read now
Miyada Zamoum, Yacine Goudjal, Nasserdine Sabaou, Florence Mathieu & Abdelghani Zitouni. (2017) Development of formulations based on Streptomyces rochei strain PTL2 spores for biocontrol of Rhizoctonia solani damping-off of tomato seedlings. Biocontrol Science and Technology 27:6, pages 723-738.
Read now

Articles from other publishers (19)

Shine Kadaikunnan, Naiyf S. Alharbi, Jamal M. Khaled & Ahmed S. Alobaidi. (2023) Biocontrol property of Streptomyces parvulus VRR3 in green gram plant (Vigna radiata L.) against Fusarium solani in greenhouse. Physiological and Molecular Plant Pathology 128, pages 102128.
Crossref
Ayushi Sharma, Nutan Kaushik, Abhishek Sharma & Naceur Djébali. (2022) Development of Novel Liquid Formulation of Bacillus siamensis with Antifungal and Plant Growth Promoting Activity . ACS Agricultural Science & Technology 3:1, pages 55-66.
Crossref
Wenjin Zhang, Lihao Zheng, Duoyong Lang, Xiaojia Zhang, Xin Ma, Xiaokang Li & Xinhui Zhang. (2023) Eco-friendly bio-encapsulation from sodium alginate-trehalose-kaolin and its performance evaluation in improving plant growth under salt or/and drought conditions. International Journal of Biological Macromolecules 225, pages 123-134.
Crossref
María Elena Mancera-López, Josefina Barrera-Cortés, Roberto Mendoza-Serna, Armando Ariza-Castolo & Rosa Santillan. (2022) Polymeric Encapsulate of Streptomyces Mycelium Resistant to Dehydration with Air Flow at Room Temperature. Polymers 15:1, pages 207.
Crossref
Miyada Zamoum, Khadidja Allali, Abderrahmane Benadjila, Abdelghani Zitouni & Yacine Goudjal. (2022) Formulation of biofungicides based on Streptomyces caeruleatus strain ZL-2 spores and efficacy against Rhizoctonia solani damping-off of tomato seedlings. Archives of Microbiology 204:10.
Crossref
Amel Balla, Allaoua Silini, Hafsa Cherif-Silini, Ali Chenari Bouket, Faizah N. Alenezi & Lassaad Belbahri. (2022) Recent Advances in Encapsulation Techniques of Plant Growth-Promoting Microorganisms and Their Prospects in the Sustainable Agriculture. Applied Sciences 12:18, pages 9020.
Crossref
Huacai Fan, Shu Li, Li Zeng, Ping He, Shengtao Xu, Tingting Bai, Yuling Huang, Zhixiang Guo & Si-Jun Zheng. (2021) Biological Control of Fusarium oxysporum f. sp. cubense Tropical Race 4 Using Natively Isolated Bacillus spp. YN0904 and YN1419. Journal of Fungi 7:10, pages 795.
Crossref
Gaber Abo-Zaid, Ahmed Abdelkhalek, Saleh Matar, Mai Darwish & Muhammad Abdel-Gayed. (2021) Application of Bio-Friendly Formulations of Chitinase-Producing Streptomyces cellulosae Actino 48 for Controlling Peanut Soil-Borne Diseases Caused by Sclerotium rolfsii. Journal of Fungi 7:3, pages 167.
Crossref
Abhishek Walia, Chayanika Putatunda, Ravi Kant Bhatia, Preeti Solanki & Shruti Pathania. 2021. Microbiological Activity for Soil and Plant Health Management. Microbiological Activity for Soil and Plant Health Management 599 627 .
Siti Nur Ezzati Yazid, Selamat Jinap, Siti Izera Ismail, Naresh Magan & Nik Iskandar Putra Samsudin. (2020) Phytopathogenic organisms and mycotoxigenic fungi: Why do we control one and neglect the other? A biological control perspective in Malaysia. Comprehensive Reviews in Food Science and Food Safety 19:2, pages 643-669.
Crossref
C.K.F. Wong, N.B. Saidi, G. Vadamalai, C.Y. Teh & D. Zulperi. (2019) Effect of bioformulations on the biocontrol efficacy, microbial viability and storage stability of a consortium of biocontrol agents against Fusarium wilt of banana . Journal of Applied Microbiology 127:2, pages 544-555.
Crossref
Muhammad Anees, Muhammad Abid, Shafiq ur Rehman, Nadeem Ahmed, Muhammad Ashraf, Lixin Zhang & Kil Yong Kim. (2019) Antifungal activity of various chitinolytic bacteria against Colletotrichum in pepper. Plant Protection Science 55:2, pages 109-115.
Crossref
Honghong Dong, Huiyun Fan, Zhaoxi Lei, Chao Wu, Dengbo Zhou & Huaping Li. (2019) Histological and Gene Expression Analyses in Banana Reveals the Pathogenic Differences between Races 1 and 4 of Banana Fusarium Wilt Pathogen. Phytopathology® 109:6, pages 1029-1042.
Crossref
Giovanni Bubici, Manoj Kaushal, Maria Isabella Prigigallo, Carmen Gómez-Lama Cabanás & Jesús Mercado-Blanco. (2019) Biological Control Agents Against Fusarium Wilt of Banana. Frontiers in Microbiology 10.
Crossref
Phuong-Anh Nguyen, Caroline Strub, Noel Durand, Pascaline Alter, Angélique Fontana & Sabine Schorr-Galindo. (2018) Biocontrol of Fusarium verticillioides using organic amendments and their actinomycete isolates. Biological Control 118, pages 55-66.
Crossref
Huiyun Fan, Honghong Dong, Chunxiang Xu, Jing Liu, Bei Hu, Jingwen Ye, Guiwan Mai & Huaping Li. (2017) Pectin methylesterases contribute the pathogenic differences between races 1 and 4 of Fusarium oxysporum f. sp. cubense. Scientific Reports 7:1.
Crossref
Mahboobeh Soltanzadeh, Meysam Soltani Nejad & Gholam Hosein Shahidi Bonjar. (2016) Application of Soil‐borne Actinomycetes for Biological Control against Fusarium Wilt of Chickpea ( Cicer arietinum ) caused by Fusarium solani fsp pisi . Journal of Phytopathology 164:11-12, pages 967-978.
Crossref
Naveen Kumar Arora & Jitendra Mishra. (2016) Prospecting the roles of metabolites and additives in future bioformulations for sustainable agriculture. Applied Soil Ecology 107, pages 405-407.
Crossref
Liroa Shaltiel-Harpaz, Segula Masaphy, Leah Tsror & Eric Palevsky. 2016. Agriculturally Important Microorganisms. Agriculturally Important Microorganisms 273 291 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.