Potential of Trichoderma viride to control Sclerotium rolfsii on soybean (Glycine max L.). This research aims to determine the potential of T. viride against S. rolfsii attack on soybean crop (Glycine max L.). The research was conducted in the field of Faculty of Agriculture, Graha Nusantara University Padangsidimpuan, from May to August 2017. The results showed the highest percentage disease of incidence of S. rolfsii at the highest observation of 2, 3, 4 MST (Week After Planting), from W2D0 (when planting / 75 gram /polybag) 46.77%, 61.35% and 73.29%. and the lowest was W1D4 (7 days before planting/300 gram / polybag) 1.8%, 2.3% and 3.41%. Keywords : Potential, Trichoderma viride, Sclerotium rolfsii, Soybea
ABSTRACT The possibility of controlling S. rolfsii on soybean (Glycine max) var. Rinjani using...
The leaves of some plants have been proved to suppress the development of plant diseases caused by p...
Sclerotium rolfsii is a fungus that causes stem rot disease in peanuts which causes losses of up to ...
This study was aimed at obtaining an effective dose and application timing of Trichoderm...
Encapsulation of Some Trichoderma sp. on Soybean Seed to Control Sclerotium rolfsii Sacc. The resear...
Sclerotium rolfsii is a pathogen that causes stem rot disease that causes a decrease in soybean prod...
Penelitian ini bertujuan mengisolasi dan menguji kemampuan antagonis Trichoderma spp. terhadap Scler...
Penelitian mengenai “Aplikasi Berbagai Sediaan Trichoderma viride Pers. untuk Pengendalian Sclerotiu...
Sclerotinia infection of stem and leaf of soybean Glycine max (L.) Merr. caused by the fungal pathog...
ABSTRACT Soybean plants is a strategic commodity in Indonesia, because soybean is an important crop ...
The objective of this study is to isolation and agonistic test ability of Trichoderma spp. againts S...
The study, titled power antagonism of Trichoderma sp. locally against fungal pathogens that cause di...
Pathogens often cause disease in plants, causing losses both in quality and quantity, and frequently...
Association of antagonistic fungi Trichoderma harzianum Rifai and arbuscular mycorrhizal fungi for c...
Biological control by utilizing Trichoderma asperellum from peatlands is one of the efforts to contr...
ABSTRACT The possibility of controlling S. rolfsii on soybean (Glycine max) var. Rinjani using...
The leaves of some plants have been proved to suppress the development of plant diseases caused by p...
Sclerotium rolfsii is a fungus that causes stem rot disease in peanuts which causes losses of up to ...
This study was aimed at obtaining an effective dose and application timing of Trichoderm...
Encapsulation of Some Trichoderma sp. on Soybean Seed to Control Sclerotium rolfsii Sacc. The resear...
Sclerotium rolfsii is a pathogen that causes stem rot disease that causes a decrease in soybean prod...
Penelitian ini bertujuan mengisolasi dan menguji kemampuan antagonis Trichoderma spp. terhadap Scler...
Penelitian mengenai “Aplikasi Berbagai Sediaan Trichoderma viride Pers. untuk Pengendalian Sclerotiu...
Sclerotinia infection of stem and leaf of soybean Glycine max (L.) Merr. caused by the fungal pathog...
ABSTRACT Soybean plants is a strategic commodity in Indonesia, because soybean is an important crop ...
The objective of this study is to isolation and agonistic test ability of Trichoderma spp. againts S...
The study, titled power antagonism of Trichoderma sp. locally against fungal pathogens that cause di...
Pathogens often cause disease in plants, causing losses both in quality and quantity, and frequently...
Association of antagonistic fungi Trichoderma harzianum Rifai and arbuscular mycorrhizal fungi for c...
Biological control by utilizing Trichoderma asperellum from peatlands is one of the efforts to contr...
ABSTRACT The possibility of controlling S. rolfsii on soybean (Glycine max) var. Rinjani using...
The leaves of some plants have been proved to suppress the development of plant diseases caused by p...
Sclerotium rolfsii is a fungus that causes stem rot disease in peanuts which causes losses of up to ...