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2008 journal article

Evaluation of application timing and efficacy of the fungicides fluazinam. and boscalid for control of Sclerotinia blight of peanut

CROP PROTECTION, 27(3-5), 823–833.

By: D. Smith n, M. Garrison n, J. Hollowell n, T. Isleib n & B. Shew n

author keywords: Sclerotinia minor; Sclerotinia blight; peanut; fungicide groundnut; logistic regression
topics (OpenAlex): Plant pathogens and resistance mechanisms; Agronomic Practices and Intercropping Systems; Plant Disease Management Techniques
TL;DR: In the field, applications of fungicide that preceded the largest incremental increase in disease incidence provided the best control of disease or increased yield and in both the field and greenhouse studies boscalid performed marginally better than fluazinam. (via Semantic Scholar)
UN Sustainable Development Goals Color Wheel
UN Sustainable Development Goal Categories
2. Zero Hunger (Web of Science)
3. Good Health and Well-being (OpenAlex)
13. Climate Action (Web of Science)
Source: Web Of Science
Added: August 6, 2018

2007 journal article

A site-specific, weather-based disease regression model for Sclerotinia blight of peanut

PLANT DISEASE, 91(11), 1436–1444.

By: D. Smith*, J. Hollowell*, T. Isleib n & B. Shew n

author keywords: groundnut
topics (OpenAlex): Plant pathogens and resistance mechanisms; Peanut Plant Research Studies; Genetics and Plant Breeding
TL;DR: A Sclerotinia blight disease model was developed using regression strategies in an effort to describe the relationships between modeled environmental variables and disease increase and will be used to develop site- and cultivar-specific spray advisories for Scleriotia blight. (via Semantic Scholar)
UN Sustainable Development Goals Color Wheel
UN Sustainable Development Goal Categories
2. Zero Hunger (Web of Science)
13. Climate Action (Web of Science)
Source: Web Of Science
Added: August 6, 2018

2006 journal article

Analysis of factors that influence the epidemiology of Sclerotinia minor on peanut

PLANT DISEASE, 90(11), 1425–1432.

By: D. Smith*, J. Hollowell*, T. Isleib* & B. Shew n

author keywords: Arachis hypogaea; groundnut; Sclerotinia blight
topics (OpenAlex): Plant pathogens and resistance mechanisms; Peanut Plant Research Studies; Plant Disease Management Techniques
TL;DR: Results of this work show that knowledge of peanut part susceptibility has application in improving Sclerotinia blight prediction models for recommending protective fungicide applications, and particularly the effects of temperature on S. minor. (via Semantic Scholar)
UN Sustainable Development Goals Color Wheel
UN Sustainable Development Goal Categories
2. Zero Hunger (Web of Science)
13. Climate Action (Web of Science)
Source: Web Of Science
Added: August 6, 2018

2006 journal article

Registration of N96076L peanut germplasm line

CROP SCIENCE, 46(5), 2329–2330.

By: T. Isleib n, P. Rice n, R. Mozingo n, S. Copeland n, J. Graeber n, B. Shew n, D. Smith n, H. Melouk*, H. Stalker n

topics (OpenAlex): Peanut Plant Research Studies; Agricultural pest management studies; Enterobacteriaceae and Cronobacter Research
TL;DR: A large-seeded virginia-type peanut germplasm line with resistance to multiple diseases including early leafspot, it also was evaluated for resistance to other diseases common to theVirginia–Carolina region. (via Semantic Scholar)
UN Sustainable Development Goals Color Wheel
UN Sustainable Development Goal Categories
2. Zero Hunger (Web of Science; OpenAlex)
13. Climate Action (Web of Science)
Source: Web Of Science
Added: August 6, 2018

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