Darcy E. P. Telenko

Darcy E. P. Telenko

Purdue University

H-index: 11

North America-United States

About Darcy E. P. Telenko

Darcy E. P. Telenko, With an exceptional h-index of 11 and a recent h-index of 11 (since 2020), a distinguished researcher at Purdue University, specializes in the field of Field Crop Pathology.

His recent articles reflect a diverse array of research interests and contributions to the field:

Tar spot of maize in the Americas is caused by a complex of closely related Phyllachora species which vary in their host and geographic range

Comparing tar spot epidemics in high-risk areas in the United States and Honduras

Development of a qPCR Assay for Species-Specific Detection of the Tar Spot Pathogen Phyllachora maydis

Assessing foliar fungicides for soybean disease management and yield in Indiana

Management of soybean cyst nematode and sudden death syndrome with nematode-protectant seed treatments across multiple environments in soybean

Tar Spot Disease Severity Influences Phyllosphere-Associated Bacterial and Fungal Microbiomes

Pre-symptomatic leaf reflectance of Fusarium virguliforme infected soybean plants in greenhouse conditions

Sensitivity of the causal agent of northern leaf blight of corn, Exserohilum turcicum, to the demethylase inhibiting fungicide flutriafol

Darcy E. P. Telenko Information

University

Position

Assistant Professor

Citations(all)

572

Citations(since 2020)

506

Cited By

100

hIndex(all)

11

hIndex(since 2020)

11

i10Index(all)

14

i10Index(since 2020)

14

Email

University Profile Page

Google Scholar

Darcy E. P. Telenko Skills & Research Interests

Field Crop Pathology

Top articles of Darcy E. P. Telenko

Tar spot of maize in the Americas is caused by a complex of closely related Phyllachora species which vary in their host and geographic range

Authorea Preprints

2024/1/31

Comparing tar spot epidemics in high-risk areas in the United States and Honduras

Canadian Journal of Plant Pathology

2024/1/29

Development of a qPCR Assay for Species-Specific Detection of the Tar Spot Pathogen Phyllachora maydis

PhytoFrontiers™

2024/1/17

Assessing foliar fungicides for soybean disease management and yield in Indiana

Plant Health Progress

2024/1/12

Management of soybean cyst nematode and sudden death syndrome with nematode-protectant seed treatments across multiple environments in soybean

Plant Disease

2024/1/10

Tar Spot Disease Severity Influences Phyllosphere-Associated Bacterial and Fungal Microbiomes

bioRxiv

2024

Pre-symptomatic leaf reflectance of Fusarium virguliforme infected soybean plants in greenhouse conditions

PhytoFrontiers

2024/4/1

Sensitivity of the causal agent of northern leaf blight of corn, Exserohilum turcicum, to the demethylase inhibiting fungicide flutriafol

Plant Health Progress

2024/3/26

First Report of Calonectria ilicicola Causing Red Crown Rot of Soybean in Indiana

Plant Disease

2024/3/1

Investigations into Economic Returns Resulting from Foliar Fungicides and Application Timing on Management of Tar Spot in Indiana Hybrid Corn

Plant Disease

2024/2/1

Characterization of Virulence Phenotypes of Heterodera glycines during 2020 in Indiana

Journal of Nematology

2023/2

Parental Inbred Lines of the Nested Association Mapping (NAM) Population of Corn Show Sources of Resistance to Tar Spot in Northern Indiana

Plant Disease

2023/2/1

Monitoring tar spot disease in corn at different canopy and temporal levels using aerial multispectral imaging and machine learning

Frontiers in Plant Science

2023/1/23

Small but significant genetic differentiation among populations of Phyllachora maydis in the midwestern United States revealed by microsatellite (SSR) markers.

bioRxiv

2023

Integration of host resistance, seed treatment, and seeding rate for management of sudden death syndrome, a disease of soybean caused by Fusarium virguliforme

Plant Health Progress

2023/12/27

Effects of Disease Resistance and Fungicide Application on Management of Tar Spot on Corn in the North Central United States

Plant Health Progress

2023/12/27

Integration of Sclerotinia sclerotiorum-Targeted Biofungicides Coniothyrium minitans and Bacillus amyloliquefaciens into Season-Long Soybean Pest …

PhytoFrontiers™

2023/11/19

Efficacy of Biocontrol Agents Coniothyrium minitans and Bacillus amyloliquefaciens for Managing Sclerotinia sclerotiorum in Indiana Soybean

PhytoFrontiers™

2023/11/16

Portable High-Throughput Digital Confocal Microscope for Early Disease Detection

Authorea Preprints

2023/10/30

Integrating Seeding Rates and Pesticide Programs for Managing Sclerotinia Stem Rot in Glycine max with Nitrogen Fertilizer Applications

Plant Health Progress

2023/10/23

See List of Professors in Darcy E. P. Telenko University(Purdue University)

Co-Authors

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