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Xinping Li

Researcher at Soochow University (Suzhou)

Publications -  6
Citations -  4

Xinping Li is an academic researcher from Soochow University (Suzhou). The author has contributed to research in topics: Medicine & Chemistry. The author has co-authored 1 publications.

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Polyhydroxylated sesquiterpenes and ergostane glycosides produced by the endophytic fungus Xylaria sp. from Azadirachta indica.

TL;DR: Xylaria sp. YM 311647 in solid fermentation resulted in the isolation of six undescribed compounds, namely xylarioxides A, E and F, respectively as mentioned in this paper .
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Melatonin-Induced Inhibition of Shiraia Hypocrellin A Biosynthesis Is Mediated by Hydrogen Peroxide and Nitric Oxide

TL;DR: New insight is provided into the regulatory roles of MLT on fungal secondary metabolism activities and a basis for understanding self-resistance in phototoxin-producing fungi is provided.
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Three Chitin Deacetylase Family Members of Beauveria bassiana Modulate Asexual Reproduction and Virulence of Fungi by Mediating Chitin Metabolism and Affect Fungal Parasitism and Saprophytic Life

TL;DR: In this article , the roles of CDA family in entomopathogenic fungus B. bassiana were investigated and the results indicated that CDA modulates asexual development and regulates fungal virulence by altering chitin deacetylation and metabolic capacity.
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Lanthanum: a novel inducer for enhancement of fungal laccase production by Shiraia bambusicola

TL;DR: In vivo, La3+ added to the mycelium culture not only promoted a continuous and high expression of laccase gene (lcc1), but also induced a rapid generation of signaling molecules including reactive oxygen species (ROS) and nitric oxygen (NO).
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Ada2 and Ada3 Regulate Hyphal Growth, Asexual Development, and Pathogenicity in Beauveria bassiana by Maintaining Gcn5 Acetyltransferase Activity

TL;DR: In this article , the role of Ada2 and Ada3 genes in the growth and development of B. bassiana was investigated, and it was shown that Ada genes are vital virulence factors, and their deletion caused the most virulence loss, mainly by inhibiting the activity of a series of hydrolytic enzymes.