Xiang Chen
Zhejiang University
5 Papers
3 Citations
Xiang Chen is an academic researcher from Zhejiang University. The author has contributed to research in topics: Conidiation & Biology. The author has an hindex of 4, co-authored 5 publications. Previous affiliations of Xiang Chen include Laboratory of Molecular Biology.
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Papers
The ATP-binding protein FgArb1 is essential for penetration, infectious and normal growth of Fusarium graminearum.
TL;DR: A novel insight into functions of the ABC transporter in fungal pathogenesis is provided and acetylation modification at sites K28, K65, K341 and K525 in FgArb1 is required for its biological functions.
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Detection and dynamics of different carbendazim‐resistance conferring β‐tubulin variants of Gibberella zeae collected from infected wheat heads and rice stubble in China
Ye Liu,Xiang Chen,Jinhua Jiang,Mohamed Sobhy Hamada,Mohamed Sobhy Hamada,Yanni Yin,Zhonghua Ma +6 more
TL;DR: Car(R) populations of G. zeae develop rapidly under the selection pressure of carbendazim, and real-time PCR assays detecting the resistance frequencies in populations of perithecia would provide useful information for FHB control and management of resistance.
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The tubulin cofactor A is involved in hyphal growth, conidiation and cold sensitivity in Fusarium asiaticum
TL;DR: Results indicate that FaTBCA is involved in cell division under cold stress (4°C) in F. asiaticum and plays crucial roles in vegetative growth, conidiation, temperature sensitivity and virulence in filamentous fungi.
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Serine O-acetyltransferase is important, but not essential for cysteine-methionine synthesis in Fusarium graminearum.
TL;DR: In this paper, three deletion mutants of O-acetyltransferase (SAT) were obtained using a gene replacement strategy and three mutants did not show recognizable phenotypic changes on potato dextrose agar medium, but exhibited a very weak growth on fructose gelatin agar (FGA) medium containing SO₄µµ as sole sulfur source.
3
α1-Tubulin FaTuA1 plays crucial roles in vegetative growth and conidiation in Fusarium asiaticum
TL;DR: Results indicate that FaTuA1 plays crucial roles in vegetative growth and development, and the functions of FaT UA1 and FaTUA2 are partially interchangeable in F. asiaticum.