Martin I Chilvers
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Explore the profile of Martin I Chilvers including associated specialties, affiliations and a list of published articles.
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101
Citations
676
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Recent Articles
1.
Chahal K, Wachendorf E, Miles L, Grove A, Chilvers M, Miles T
Phytopathology
. 2025 Mar;
PMID: 40072349
Oak wilt, caused by the fungal pathogen , spreads via root grafts and insect vectors, threating oaks ( spp.) and chestnuts ( spp.) in the United States. Detection and management...
2.
Nikzainalalam N, Copeland D, Copeland D, Wiggins M, Wiggins M, Telenko D, et al.
Plant Dis
. 2024 Sep;
109(2):423-434.
PMID: 39314052
Gray leaf spot (GLS) is an important corn disease reportedly caused by and . Recently, flutriafol, a demethylation inhibitor (azole) fungicide, received Environmental Protection Agency registration as Xyway LFR, a...
3.
DiBiase C, Cheng X, Lee G, Moore R, McCoy A, Chilvers M, et al.
G3 (Bethesda)
. 2024 Aug;
14(10).
PMID: 39141590
Phytophthora sansomeana is an emerging oomycete pathogen causing root rot in many agricultural species including soybean. However, as of now, only one potential resistance gene has been identified in soybean,...
4.
Lee G, DiBiase C, Liu B, Li T, McCoy A, Chilvers M, et al.
Plant Genome
. 2024 Jul;
17(3):e20487.
PMID: 39001589
Phytophthora root rot, caused by oomycete pathogens in the Phytophthora genus, poses a significant threat to soybean productivity. While resistance mechanisms against Phytophthora sojae have been extensively studied in soybean,...
5.
Rogers A, Jaiswal N, Roggenkamp E, Kim H, MacCready J, Chilvers M, et al.
Phytopathology
. 2024 May;
114(8):1940-1949.
PMID: 38717940
is an ascomycete foliar fungal pathogen and the causal agent of tar spot in maize. Although is considered an economically important foliar pathogen of maize, our general knowledge of the...
6.
McCoy A, Jacobs J, Chilvers M
Plant Dis
. 2024 Apr;
108(9):2710-2721.
PMID: 38600772
Formally described in 2009, is a pathogen of increasing interest in native, agricultural, and horticulturally important plant species. The objective of this study was to elucidate the symptomatic and asymptomatic...
7.
Check J, Harkness R, Heger L, Chilvers M, Mahaffee W, Sakalidis M, et al.
Plant Dis
. 2024 Mar;
108(7):1923-1936.
PMID: 38537138
An increasing number of researchers are looking to understand the factors affecting microbial dispersion but are often limited by the costs of commercially available air samplers. Some have reduced these...
8.
Check J, Harkness R, Heger L, Sakalidis M, Chilvers M, Mahaffee W, et al.
Plant Dis
. 2024 Feb;
108(7):1910-1922.
PMID: 38411610
Although improved knowledge on the movement of airborne plant pathogens is likely to benefit plant health management, generating this knowledge is often far more complicated than anticipated. This complexity is...
9.
Characterization of soybean chitinase genes induced by rhizobacteria involved in the defense against
Chen J, Sang H, Chilvers M, Wu C, Chang H
Front Plant Sci
. 2024 Feb;
15:1341181.
PMID: 38405589
Rhizobacteria are capable of inducing defense responses via the expression of pathogenesis-related proteins (PR-proteins) such as chitinases, and many studies have validated the functions of plant chitinases in defense responses....
10.
Lin F, Salman M, Zhang Z, McCoy A, Li W, Magar R, et al.
Theor Appl Genet
. 2024 Feb;
137(3):55.
PMID: 38386094
The first single dominant resistance gene contributing major resistance to the oomycete pathogen Phytophthora sansomeana was identified and mapped from soybean 'Colfax'. Phytophthora root rot (PRR) is one of the...