Advances in Microbiology

Advances in Microbiology

ISSN Print: 2165-3402
ISSN Online: 2165-3410
www.scirp.org/journal/aim
E-mail: aim@scirp.org
"Diagnosis and Control of Harpophora maydis, the Cause of Late Wilt in Maize"
written by Ofir Degani, Gilad Cernica,
published by Advances in Microbiology, Vol.4 No.2, 2014
has been cited by the following article(s):
  • Google Scholar
  • CrossRef
[1] Pathogenic Interactions between Macrophomina phaseolina and Magnaporthiopsis maydis in Mutually Infected Cotton Sprouts
Agriculture, 2022
[2] Mapping genomic regions controlling resistance to late wilt disease caused by Harpophora maydis in maize (Zea mays L.)
Euphytica, 2022
[3] Crop Rotation and Minimal Tillage Selectively Affect Maize Growth Promotion under Late Wilt Disease Stress
Journal of Fungi, 2022
[4] Chitosan and Nano-Chitosan for Management of Harpophora maydis: Approaches for Investigating Antifungal Activity, Pathogenicity, Maize-Resistant Lines, and …
Journal of Fungi, 2022
[5] Aggressive strains of the late wilt fungus of corn exist in Israel in mixed populations and can specialize in disrupting growth or plant health
Fungal Biology, 2022
[6] Distribution and Biodiversity of Seed-Borne Pathogenic and Toxigenic Fungi of Maize in Egypt and Their Correlations with Weather Variables
Plants, 2022
[7] Prevention and Control of Fusarium spp., the Causal Agents of Onion (Allium cepa) Basal Rot
Horticulturae, 2022
[8] Trichoderma Biological Control to Protect Sensitive Maize Hybrids Against Late Wilt Disease in the Field. J. Fungi 2021, 7, 315
2021
[9] Functional analyses of FvMYB46-CRISPR/Cas9-edited Fragaria vesca plants
2021
[10] Trichoderma biological control to protect sensitive maize hybrids against late wilt disease in the field
2021
[11] Comparative breeding potential of two crosses for response to late wilt disease (LWD) in maize (Zea mays L.)
2021
[12] Trichoderma longibrachiatum and Trichoderma asperellum Confer Growth Promotion and Protection against Late Wilt Disease in the Field
2021
[13] Identification of high yielding inbred lines resistant to late wilt disease caused by Harpophora maydis in maize
2021
[14] Maize Diseases and Their Sustainable Management in India: Current Status and Future Perspectives
2021
[15] A Review: Late Wilt of Maize—The Pathogen, the Disease, Current Status, and Future Perspective
Journal of Fungi, 2021
[16] Control strategies to cope with late wilt of maize
Pathogens, 2021
[17] Crop Cycle and Tillage Role in the Outbreak of Late Wilt Disease of Maize Caused by Magnaporthiopsis maydis
Journal of Fungi, 2021
[18] The microflora of maize grains as a biological barrier against the late wilt causal agent, Magnaporthiopsis maydis
2021
[19] Molecular Tracking and Remote Sensing to Evaluate New Chemical Treatments Against the Maize Late Wilt Disease Causal Agent, Magnaporthiopsis maydis
2020
[20] Interactions between Magnaporthiopsis maydis and Macrophomina phaseolina, the Causes of Wilt Diseases in Maize and Cotton
2020
[21] Soil Bioassay for Detecting Magnaporthiopsis maydis Infestation Using a Hyper Susceptible Maize Hybrid
2020
[22] Potential Role of Laccases in the Relationship of the Maize Late Wilt Causal Agent, Magnaporthiopsis maydis, and Its Host
2020
[23] A detached leaf assay to rapidly screen for resistance of maize to Bipolaris maydis, the causal agent of southern corn leaf blight
2019
[24] Methods for Studying Magnaporthiopsis maydis, the Maize Late Wilt Causal Agent
2019
[25] Uncovering the Host Range for Maize Pathogen Magnaporthiopsis maydis
2019
[26] PCR-Based Assay for Detection of Harpophora maydis the Causal Agent of Late Wilt Disease in Maize Plant Parts
2019
[27] Effective chemical protection against the maize late wilt causal agent, Harpophora maydis, in the field
2018
[28] Inhibitory effect of Lycium europaeum extracts on phytopathogenic soil-borne fungi and the reduction of late wilt in maize
European Journal of Plant Pathology, 2018
[29] Evaluating Azoxystrobin seed coating against maize late wilt disease using a sensitive qPCR-based method
2018
[30] Influence of Some Bioagents and Chitosan Nanoparticles on Controlling Maize Late Wilt and Improving Plants Characteristics
2018
[31] Chemical and Histological Differences of Maize (Zea mays L.) Responsive to Harpophora maydis Infection
2017
[32] Chemical and Histological Differences of Corn (Zea mays L.) Responsive to Harpophora maydis Infection
2017
[33] Identification of maize (Zea mays L.) inbred lines resistant for late wilt disease caused by Harpophora maydis.
2016
[34] Identification of Maize (Zea mays L.) Inbred Lines Resistant for Late Wilt Disease caused by Harpophora maydis
2016
[35] Geographic distribution and aggressiveness of Harpophora maydis in the Iberian peninsula, and thermal detection of maize late wilt
European Journal of Plant Pathology, 2015
[36] Morphological, Pathological and Genetic Diversities among Cephalosporium maydis Isolates
2014
[37] Ambient Stresses Regulate the Development of the Maize Late Wilt Causing Agent, Harpophora maydis
Agricultural Sciences, 2014
[38] Plant growth hormones suppress the development of Harpophora maydis, the cause of late wilt in maize
Physiology and Molecular Biology of Plants, 2014
[39] Chemical control of maize late wilt in the field
Phytoparasitica, 2014
[40] Post Flowering Stalk Rot Complex of Maize-Present Status and Future Prospects
Maydica, 2014
Free SCIRP Newsletters
Copyright © 2006-2024 Scientific Research Publishing Inc. All Rights Reserved.
Top