Results 61 to 70 of about 32,533 (95)
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Coyne D, Dubois T, Paparu P, Viljoen A
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Possibilities of endophytic fungi from Kenya for growth promotion of rice (Oryza sativa L.) and defense against nematodes [PDF]
Pili, Njira Njira
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Multitrophic interactions in soil and integrated control : combined with selected papers from the meetings "Thinking in lines from research to market products" in Einsiedeln, Switzerland, November 2-4, 2000 and "Biological mechanisms affecting nematode management" in Reading, England, September 5-6, 2001 : Proceedings of the WG meeting [PDF]
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Current progress on pathogenicity‐related transcription factors in Fusarium oxysporum
Fusarium oxysporum is a well‐known soilborne plant pathogen that causes severe vascular wilt in economically important crops worldwide. During the infection process, F.
Zong-Hua Wang, Yingzi Yun
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Banana plants are being inoculated with Fusarium oxysporum V5w2 and Beauveria bassiana G41 for endophytic control of pests. The effects of F. oxysporum V5w2 and B.
D. Ochieno
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Banana plants are being inoculated with Fusarium oxysporum V5w2 and Beauveria bassiana G41 for endophytic control of pests. The effects of F. oxysporum V5w2 and B.
D. Ochieno
openaire +2 more sources
Banana plants are being inoculated with Fusarium oxysporum V5w2 and Beauveria bassiana G41 for endophytic control of pests. The effects of F. oxysporum V5w2 and B.
Ochieno, D.M.W.
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New Phytologist, 2022
WRKY transcription factors (TFs) are crucial regulators in response to pathogen infection. However, the regulatory mechanisms of WRKY TFs in response to Fusarium oxysporum f. sp. vasinfectum (Fov), the most devastating pathogen of cotton, remain unclear.
Lijun Wang +6 more
semanticscholar +1 more source
WRKY transcription factors (TFs) are crucial regulators in response to pathogen infection. However, the regulatory mechanisms of WRKY TFs in response to Fusarium oxysporum f. sp. vasinfectum (Fov), the most devastating pathogen of cotton, remain unclear.
Lijun Wang +6 more
semanticscholar +1 more source

