Agricultural Sciences

Agricultural Sciences

ISSN Print: 2156-8553
ISSN Online: 2156-8561
www.scirp.org/journal/as
E-mail: as@scirp.org
"Bacillus subtilis Strains with Antifungal Activity against the Phytopathogenic Fungi"
written by Ayslu Mirkasimovna Mardanova, Guzel Fanisovna Hadieva, Marat Tafkilevich Lutfullin, Irina Valer’evna Khilyas, Leyla Farvazovna Minnullina, Adelya Gadelevna Gilyazeva, Lidiya Mikhailovna Bogomolnaya, Margarita Rashidovna Sharipova,
published by Agricultural Sciences, Vol.8 No.1, 2017
has been cited by the following article(s):
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[1] Mecanismos de acción de Bacillus spp.(Bacillaceae) contra microorganismos fitopátogenos durante su interacción con plantas.
2020
[2] MECANISMOS DE ACCIÓN DE Bacillus spp.(Bacillaceae) CONTRA MICROORGANISMOS FITOPÁTOGENOS DURANTE SU INTERACCIÓN CON PLANTAS
ACTA BIOLóGICA COLOMBIANA, 2020
[3] Biocontrol activity and putative mechanism of Bacillus amyloliquefaciens (SF14 and SP10), Alcaligenes faecalis ACBC1, and Pantoea agglomerans ACBP1 against …
2020
[4] Effects of Endophytic Bacillus Subtilis and Salicylic Acid on Postharvest Diseases (Phytophthora infestans, Fusarium oxysporum) Development in Stored Potato …
2020
[5] Prospects and Applications of Lipopeptide-Producing Bacteria for Plant Protection
2020
[6] The significance of Bacillus spp. in disease suppression and growth promotion of field and vegetable crops
2020
[7] Antagonistic potential of Bacillus siamensis LDR against Aspergillus niger ABP and ART
2020
[8] Isolation and Identification of antifungal metabolite producing endophytic Bacillus subtilis (S17) and its in vitro effect on Colletotrichum falcatum causing red rot in …
2020
[9] Mecanismos de acción de Bacillus spp.(Bacillaceae) contra microorganismos fitopatógenos durante su interacción con plantas
2020
[10] Research Article Plant Growth Promoting and Antagonistic Potential of Endophytic Bacteria Isolated from Melon in Indonesia
2020
[11] Перспективы применения бактерий–продуцентов липопептидов для защиты растений (обзор)
2020
[12] Mechanisms of action of Bacillus spp.(Bacillaceae) against phytopathogenic microorganisms during their interaction with plants
2020
[13] СУРФАКТИН BACILLUS SUBTILIS 26Д В ЗАЩИТЕ ПШЕНИЦЫ ОТ ФИТОПАТОГЕННОГО ГРИБА STAGONOSPORA NODORUM (BERK.)
2019
[14] ВЛИЯНИЕ ПРОБИОТИКОВ BACILLUS SUBTILIS GM2 И GM5 НА РОСТ И УСВОЯЕМОСТЬ КОРМОВ У ЦЫПЛЯТ-БРОЙЛЕРОВ
2019
[15] The effect of Bacillus subtilis GM2 and GM5 probiotics on the growth and fodder digestibility of broiler chickens.
2019
[16] РОЛЬ БАЦИЛЛЯРНОГО СУРФАКТИНА В ЗАЩИТЕ ПШЕНИЦЫ ОТ СЕПТОРИОЗА
2019
[17] The Isolation and Molecular Identification of Bacterial and Fungal Species from Potato Fields of Indore District of Madhya Pradesh
2019
[18] Second generation of pepino mosaic virus vectors: improved stability in tomato and a wide range of reporter genes
2019
[19] Caracterización de Bacillus subtilis aislado a partir del café variedad pacamara como agente controlador de la roya del cafeto producida por Hemileia vastatrix
2019
[20] Phylogenetic characteristics of novel Bacillus weihenstephanensis and Pseudomonas sp. to desert locust, Schistocerca gregaria Forskål (Orthoptera …
2019
[21] Comparative Chemical and Bioactivity Studies of Intra- and Extracellular Metabolites of Endophytic Bacteria, Bacillus subtilis NCIB 3610
2019
[22] Bio-management of anthracnose disease in chilli with microencapsulates containing Bacillus subtilis B298
2019
[23] IN SELECTION OF CARBON SOURCES
2019
[24] Isolation and identification of phosphate solubilizing bacteria and evaluate its effect on of Mung bean (Vigna radita [L.] R. Wilczek) growth
2019
[25] AKTIVITAS ANTI-FITOPATOGEN HASIL FERMENTASI Bacillus subtilis AAF2 PADA PEMILIHAN SUMBER KARBON
2019
[26] Data on the genome analysis of the probiotic strain Bacillus subtilis GM5
2019
[27] The action mechanism and biocontrol potentiality of novel isolates of Saccharomyces cerevisiae against the aflatoxigenic Aspergillus flavus
2019
[28] Bacillus spp.: efficient biotic strategy to control postharvest diseases of fruits and vegetables
2019
[29] Potential of a novel endophytic Bacillus velezensis in tomato growth promotion and protection against Verticillium wilt disease
2019
[30] Biological control of root rot in lettuce caused by Exserohilum rostratum and Fusarium oxysporum via induction of the defense mechanism
Biological Control, 2019
[31] New Bacillus subtilis Strains as Promising Probiotics
Microbiology, 2018
[32] Potensi Metabolit Sekunder Asal Bakteri Endofit dalam Menekan Pertumbuhan Miselium Ganoderma boninense
2018
[33] Новые штаммы Bacillus subtilis как перспективные пробиотики
2018
[34] Isolation, identification and in vitro characterization of grapevine rhizobacteria to control ochratoxigenic Aspergillus spp. on grapes
Biological Control, 2018
[35] Bacillus isolates as potential biocontrol agents of Fusarium clove rot of garlic.
2018
[36] Antagonistic activity of Bacillus subtilis strains isolated from various sources
2018
[37] Optimalizace prvního stupně kolonového systému LITHIM
2018
[38] Lipopeptides of endophytes and phytoimmunity: prospects for practical use
2018
[39] Fungal Contamination of Non-Renewable Groundwater in the Arabian Peninsula: Assessing the Harmfulness to Humans
Geomicrobiology Journal, 2018
[40] Biocontrol of Fusarium mangiferae responsible for mango malformation using bacterial isolates
Scientia Horticulturae, 2018
[41] Липопептиды эндофитов и фитоиммунитет: перспективы практического использования
2018
[42] Novel multifunctional plant growth–promoting bacteria in co-compost of palm oil industry waste
Journal of Bioscience and Bioengineering, 2017
[43] Isolation, screening and growth optimization of antagonistic Bacillus subtilis MS21 from Thengapattanam estuary against plant fungal pathogens
2017
[44] Antifungal activity of indigenous Bacillus spp. isolated from soil
2017
[45] ANTIFUNGAL ACTIVITY OF INDIGENOUS Bacillus spp. ISOLATED FROM SOIL.
Matica Srpska Journal for Natural Sciences, 2017
[46] Antifungal activity of some strains of plant growth-promoting rhizobacteria
2017
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