The phytopathogenic fungus Sclerotinia sclerotiorum detoxifies plant glucosinolate hydrolysis products via an isothiocyanate hydrolase
- Jingyuan Chen, C. Ullah, D. G. Vassão
- BiologyNature Communications
- 18 June 2020
It is shown that the plant pathogenic fungus Sclerotinia sclerotiorum converts isothiocyanates into non-toxic compounds via glutathione conjugation and, more effectively, via hydrolysis to amines using an isothuocyanate hydrolase.
Semiochemistry of Dendroctonus armandi Tsai and Li (Coleoptera: Curculionidae: Scolytinae): both female-produced aggregation pheromone and host tree kairomone are critically important
- Guofa Chen, Yushuang Song, Qing-He Zhang
- BiologyChemoecology
- 1 June 2015
Four bark beetle-related volatile compounds, trans-verbenol (tV; major component), exo-brevicomin (EBV), seudenol (SD), and 1-methyl-2-cyclohexen-1-ol (MCOL) were identified from both the aeration extracts of P. armandii logs with D. armandi females and their hindgut extracts, indicating a strong synergistic effect.
Identification and Characterization of Colletotrichum Species Associated with Anthracnose Disease of Camellia oleifera in China.
- Yixun Wang, Jingyuan Chen, De‐Wei Li
- Medicine, BiologyPlant Disease
- 30 November 2019
Five fungal isolates belonging to C. camelliae species showed strong pathogenicity on both leaves and fruits of Ca.
Two new hyphomycetes: Codinaea sinensis sp. nov. and Parapleurotheciopsis quercicola sp. nov., and two new records from Quercus phillyraeoides leaf litter
- De‐Wei Li, B. Kendrick, Jingyuan Chen
- BiologyMycological progress
- 12 January 2012
Two new species, Codinaea sinensis and Parapleurotheciopsis quercicola from leaf litter of Quercus phillyraeoides collected from Wudangshan, Hubei, China are described and illustrated. Conidiogenous…
First report of canker of Magnolia denudata caused by Fusarium decemcellulare in Hubei, China.
- Yixun Wang, Jingyuan Chen, De‐Wei Li, Junbin Huang, Lu Zheng
- Biology
- 3 June 2015
Fungal associates of the tree-killing bark beetle, Ips typographus, vary in virulence, ability to degrade conifer phenolics and influence bark beetle tunneling behavior
- T. Zhao, Dineshkumar Kandasamy, P. Krokene, Jingyuan Chen, J. Gershenzon, A. Hammerbacher
- Environmental ScienceFungal ecology
- 1 April 2019
CglCUT1 gene required for cutinase activity and pathogenicity of Colletotrichum gloeosporioides causing anthracnose of Camellia oleifera
- Yixun Wang, Jingyuan Chen, De‐Wei Li, Lu Zheng, Junbin Huang
- BiologyEuropean journal of plant pathology
- 2016
It is suggested that the CglCUT1 gene has a positive effect on fungal virulence of the hemibiotrophic C. gloeosporioides on C. oleifera.
Sclerotinia sclerotiorum Circumvents Flavonoid Defenses by Catabolizing Flavonol Glycosides and Aglycones.
- Jingyuan Chen, C. Ullah, M. Reichelt, J. Gershenzon, A. Hammerbacher
- BiologyPlant Physiology
- 31 July 2019
Investigation of how Sclerotinia sclerotiorum, a necrotrophic fungal pathogen that causes disease in a range of economically important crop species, is able to successfully infect flavonol-rich tissues of Arabidopsis shows the potential roles of these phenolic compounds in protecting plants against pathogens.
Sclerotinia sclerotiorum Circumvents Flavonoid Defenses by Catabolizing Flavonol Glycosides and Aglycones1[OPEN]
- Jingyuan Chen, C. Ullah, M. Reichelt, J. Gershenzon, A. Hammerbacher
- BiologyPlant Physiology
- 20 June 2019
Investigating how Sclerotinia sclerotiorum, a necrotrophic fungal pathogen that causes disease in a range of economically important crop species, is able to successfully infect flavonol-rich tissues of Arabidopsis found a quercetin dioxygenase gene (QDO) and characterized the encoded protein, which catalyzed cleavage of the Flavonol carbon skeleton.
Physical Map of FISH 5S rDNA and (AG3T3)3 Signals Displays Chimonanthus campanulatus R.H. Chang & C.S. Ding Chromosomes, Reproduces its Metaphase Dynamics and Distinguishes Its Chromosomes
- Xiaomei Luo, Jingyuan Chen
- BiologyGenes
- 1 November 2019
The physical map, which can reproduce dynamic metaphase progression and distinguish chromosomes, will powerfully guide cytogenetic research on Chimonanthus and other trees.
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