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Lixin Zhang

Researcher at East China University of Science and Technology

Publications -  716
Citations -  28752

Lixin Zhang is an academic researcher from East China University of Science and Technology. The author has contributed to research in topics: Cache & Chemistry. The author has an hindex of 78, co-authored 659 publications receiving 23737 citations. Previous affiliations of Lixin Zhang include Chinese Academy of Sciences & University of Science and Technology of China.

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Patent

System and Method for Priority-Based Prefetch Requests Scheduling and Throttling

Lei Chen, +1 more
TL;DR: In this paper, a prefetch engine (PE) assigns a priority to a first prefetch stream, indicating a relative priority for scheduling prefetch operations of the first pre-loaded stream, and determines when to throttle prefetching, based on the current usage level of resources relevant to completing the prefetch.
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Comparative proteomic study reveals dynamic proteome changes between superhybrid rice LYP9 and its parents at different developmental stages

TL;DR: Comparison of leaf proteomic analysis between a superhybrid rice LYP9 and its parental cultivars 9311 and PA64 at tillering, flowering and grain-filling stages suggest that the proteins involved in photosynthesis, glycolysis, and disease/defense as well as their dynamic regulation at different developmental stages may be responsible for heterosis in rice.
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Secretory expression of a heterologous nattokinase in Lactococcus lactis.

TL;DR: A novel strategy to express a nattokinase from Bacillus subtilis in a live delivery vehicle, Lactococcus lactis, showed potent fibrinolytic activity, equivalent to 41.7 urokinase units per milliliter culture.
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RTA2, a novel gene involved in azole resistance in Candida albicans.

TL;DR: The findings suggest that RTA2 is involved in the development of azole resistance in C. albicans, and ectopic overexpression of RTA 2 was found elevated in clinical azole-resistant isolates of C.Albicans.
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Tricycloalternarenes F-H: three new mixed terpenoids produced by an endolichenic fungus Ulocladium sp. using OSMAC method.

TL;DR: Three new mixed terpenoids, tricycloalternarenes (TCAs) F-H (1-3), together with ten known tricy CLAs (4-13), were isolated from the Czapek's culture of an endophytic fungus Ulocladium sp.