Dwayne D Hegedus
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Explore the profile of Dwayne D Hegedus including associated specialties, affiliations and a list of published articles.
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72
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1387
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Recent Articles
1.
Mori B, Coutu C, Erlandson M, Hegedus D
Arch Insect Biochem Physiol
. 2024 Jul;
116(3):e22135.
PMID: 39038196
The larvae of Contarinia nasturtii (Kieffer) (Diptera: Cecidomyiidae), the swede midge, targets the meristem of brassica crops where they induce the formation of galls and disrupt seed and vegetable production....
2.
Heydarian Z, Harrington M, Hegedus D
Plant J
. 2024 Jul;
119(4):1703-1719.
PMID: 38967095
Previously, expression of the Arabidopsis thaliana GLABRA3 (GL3) induced trichome formation in Brassica napus. GL3 orthologues were examined from glabrous (B. oleracea), semi-glabrous (B. napus), moderately hirsute (B. rapa), and...
3.
Guney G, Cedden D, Hanniger S, Hegedus D, Heckel D, Toprak U
Insect Biochem Mol Biol
. 2024 Jan;
166:104073.
PMID: 38215915
The peritrophic matrix (or peritrophic membrane, PM) is present in most insects where it acts as a barrier to mechanical insults and pathogens, as well as a facilitator of digestive...
4.
Mori B, Coutu C, Erlandson M, Hegedus D
Curr Res Insect Sci
. 2023 Aug;
4:100064.
PMID: 37575317
Proteins in saliva of gall-forming insect larvae govern insect-host plant interactions. , the swede midge, is a pest of brassicaceous vegetables (cabbage, cauliflower, broccoli) and canola. We examined the salivary...
5.
Buchwaldt L, Garg H, Puri K, Durkin J, Adam J, Harrington M, et al.
PLoS One
. 2022 Feb;
17(2):e0262891.
PMID: 35130285
The ascomycete, Sclerotinia sclerotiorum, has a broad host range and causes yield loss in dicotyledonous crops world wide. Genomic diversity was determined in a population of 127 isolates obtained from...
6.
Dogan C, Guney G, Guzel K, Can A, Hegedus D, Toprak U
Front Physiol
. 2021 Nov;
12:773688.
PMID: 34803746
Lipids and carbohydrates are the two primary energy sources for both animals and insects. Energy homeostasis is under strict control by the neuroendocrine system, and disruption of energy homeostasis leads...
7.
Huang A, Coutu C, Harrington M, Rozwadowski K, Hegedus D
Transgenic Res
. 2021 Nov;
31(1):131-148.
PMID: 34802109
Camelina sativa (camelina) is emerging as an alternative oilseed crop due to its short growing cycle, low input requirements, adaptability to less favorable growing environments and a seed oil profile...
8.
Gasmi L, Sieminska E, Okuno S, Ohta R, Coutu C, Vatanparast M, et al.
Science
. 2021 Jul;
373(6554):535-541.
PMID: 34326235
Interkingdom competition occurs between hymenopteran parasitoids and insect viruses sharing the same insect hosts. It has been assumed that parasitoid larvae die with the death of the infected host or...
9.
Guney G, Cedden D, Hanniger S, Heckel D, Coutu C, Hegedus D, et al.
Arch Insect Biochem Physiol
. 2021 Jul;
108(2):e21834.
PMID: 34288075
The Colorado potato beetle, Leptinotarsa decemlineata (Coleoptera: Chrysomelidae), is a major pest of potato plants worldwide and is notorious for its ability to develop resistance to insecticides. Cry3 toxins synthesized...
10.
Mori B, Coutu C, Chen Y, Campbell E, Dupuis J, Erlandson M, et al.
Genome Biol Evol
. 2021 Mar;
13(3).
PMID: 33662122
The swede midge, Contarinia nasturtii, is a cecidomyiid fly that feeds specifically on plants within the Brassicaceae. Plants in this family employ a glucosinolate-myrosinase defense system, which can be highly...