Results 31 to 40 of about 11,154 (221)

Occurrence of Sclerotium Rot of Cucumber Caused by Sclerotium rolfsii

open access: yesResearch in Plant Disease, 2015
Sclerotium rot of cucumber (Cucumis sativus L.) occurred at the experimental field of Gyeongsangnam-do Agricultural Research and Extension Services in July 2012.
Jin-Hyeuk Kwon   +4 more
doaj   +1 more source

Bioefficacy of Plant Extracts on Collar Rot Disease (Sclerotium rolfsii Sacc.) of Soybean

open access: yesInternational Journal of Economic Plants, 2020
Among different production constraints in soybean cultivation, the most serious being is diseases. In Assam and other North Eastern states, collar rot caused by Sclerotium rolfsii Sacc.
Munmi Borah, Sukanya Gogoi
doaj  

Redução de perdas de estacas da pimenteira-do-reino causadas por Sclerotium rolfsii no pré-enraizador. [PDF]

open access: yes, 2013
bitstream/item/36250/1/ORIENTAL-BPD54.pdfVersão eletrônica.
ALBUQUERQUE, F. A. B. de   +3 more
core  

Pemanfaatan Beberapa Kaldu Hewan sebagai Bahan Formula Cair Pseudomonas Fluorescens P60 untuk Mengendalikan Sclerotium Rolfsii pada Tanaman Mentimun [PDF]

open access: yes, 2011
A research aiming at knowing the potency of several animal broths as organic liquid formula of Pseudomonas fluorescens P60, soaking period of Sclerotium rolfsii sclerotia, and its application method on cucumber stem-end rot was done.
Mugiastuti, E. (Endang)   +1 more
core   +2 more sources

Antagonistic effect of rhizospheric bacteria against white rot (Sclerotium cepivorum) of garlic (Allium sativum L.) under in vitro and in vivo conditions

open access: yesAgrosystems, Geosciences &Environment, Volume 9, Issue 1, March 2026.
Abstract Garlic (Allium sativum), a vegetable crop used for food, medicine, and condiments, is affected by white rot (Sclerotium cepivorum). Garlic yield reduction is influenced by several factors, with biotic stresses, particularly fungal pathogens, being among the most significant.
Mussa Adal Mohammed, Asmare Dejen Demeke
wiley   +1 more source

Efficacy of Trichoderma against Sclerotium rolfsii causing collar rot disease of lentil under in vitro conditions [PDF]

open access: yes, 2018
Three biocontrol agents viz., Trichoderma viride, T. virens and T. harzianum were evaluated to test the antagonism against Sclerotium rolfsii under in vitro conditions. All the three antagonists’ viz., T. viride, T. virens and T. harzianum have shown the
Chaudhary, Balkishan   +2 more
core   +2 more sources

Green Synthesis and Antifungal Activity of Sophora flavescens‐Mediated Silver Nanoparticles

open access: yesNew Zealand Journal of Botany, Volume 64, Issue 1, March 2026.
This study describes a green, simple, and low‐cost biological way tosynthesize silvernanoparticles (AgNPs)using the ethanolic root extract of Sophora flavescens. It investigates its antifungal activity against four strains of Candida albicans, Candida tropicalis, Candida utilis, and Aspergillus flavus.
Hadeel S. Almaliki   +9 more
wiley   +1 more source

Keefektifan Perlakuan Panas Kering dan Iradiasi UV-C untuk Mematikan Cendawan Model Microcyclus ulei

open access: yesJurnal Fitopatologi Indonesia, 2014
This study was carried out to develop treatment methods and determine the effective dose of dry heat treatment and UV-C irradiation to kill the fungus models of Microcyclus ulei on soybean grains and soybean meals without damaging its nutritional ...
Aprida Cristin   +2 more
doaj   +1 more source

Konsorsium Bacillus spp. Untuk pengendalian penyakit rebah kecambah dan busuk batang (Sclerotium rolfsii) pada tanaman Cabai

open access: yesJurnal Agro, 2022
Sclerotium rolfsii merupakan patogen tular tanah yang dapat menyebabkan kehilangan hasil hingga 75% pada tanaman cabai. Alternatif pengendalian ramah lingkungan bisa menggunakan agens hayati yaitu konsorsium bakteri endofit Bacillus spp.
Yulmira Yanti   +3 more
doaj   +1 more source

Metabolism of L-Threonine and its Relationship to Sclerotium Formation in Sclerotium rolfsii [PDF]

open access: yesJournal of General Microbiology, 1976
The activities of L-threonine dehydrogenase (I), 2-amino-3-oxybutyrate:CoA ligase (II), malate synthetase (III), isocitrate lyase (IV), glyoxylate dehydrogenase (V), glycine decarboxylase (VI), L-serine hydroxymethyltransferase (VII), glucan synthetase (VIII), glucose 6-phosphate dehydrogenase (IX) and succinic dehydrogenase (X) were detected in cell ...
G, Kritzman, Y, Okon, I, Chet, Y, Henis
openaire   +2 more sources

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