نتایج جستجو برای: anthracnose

تعداد نتایج: 1854  

Journal: Mycologia Iranica 2015

Sixteen isolates of Colletotrichum were collected from leaves with anthracnose symptoms or leaf spots of twelve wild, cultivated and ornamental plant species from the Guilan, Mazandaran, and Golestan provinces in Northern Iran. Five different species, including C. aenigma, C. gigasporum, C. godetiae, C. karstii, and C. musae were identified based on the DNA sequence data (TUB2, GS, GAPDH). Four...

2018
Wilson José da Silva Junior Raul Maia Falcão Lucas Christian de Sousa-Paula Nicolau Sbaraini Willie Anderson dos Santos Vieira Waléria Guerreiro Lima Sérgio de Sá Leitão Paiva Junior Charley Christian Staats Augusto Schrank Ana Maria Benko-Iseppon Valdir de Queiroz Balbino Marcos Paz Saraiva Câmara

Colletotrichum musae is an important cosmopolitan pathogenic fungus that causes anthracnose in banana fruit. The entire genome of C. musae isolate GM20 (CMM 4420), originally isolated from infected banana fruit from Alagoas State, Brazil, was sequenced and annotated. The pathogen genomic DNA was sequenced on HiSeq Illumina platform. The C. musae GM20 genome has 50,635,197 bp with G + C content ...

Journal: : 2023

Abiotic and biotic stresses have been a serious threat to crop growth productivity in the agricultural system. In this study, four strains (HS1, H30-3, KJ40, BC42), which biological activities related disease suppression or alleviation of salinity drought stresses, were tested for broad-spectrum biocontrol activity against anthracnose caused by <i>Colletotrichum orbiculare</i>, bact...

Journal: :Agronomy Science and Biotechnology 2023

Anthracnose, caused by the fungus Colletotrichum lindemuthianum (Sacc. and Magnus) Briosi Cavara, is a major disease affecting common bean (Phaseolus vulgaris L.), potentially causing yield losses of up to 100%. Utilizing resistant cultivars most effective approach for control. This study aimed characterize genetic resistance two cultivars, TU Michigan Dark Red Kidney (MDRK), anthracnose. Inher...

Journal: :FEMS microbiology letters 2015
Eiji Tanaka

Many phytopathogenic fungi form appressoria on some artificial substances. However, it is difficult to induce appressorium-mediated penetration into artificial substances. In the present study, novel artificial agar media were developed to investigate the in vitro penetration process of phytopathogenic fungi. The media contained sodium carboxymethyl cellulose or sodium alginate, and the surface...

Journal: :Japanese Journal of Phytopathology 1940

Journal: :Journal of Environmental Horticulture 1998

Journal: :Plant physiology 1974
P Albersheim B S Valent

The results presented demonstrate that microbial pathogens of plants have the ability to secrete proteins which effectively inhibit an enzyme synthesized by the host; an enzyme whose substrate is a constituent of the cell wall of the pathogen. The system in which this was discovered is the anthracnose-causing fungal pathogen (Colletotrichum lindemuthianum) and its host, the French bean (Phaseol...

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