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Zhanjiang Liu

Researcher at Syracuse University

Publications -  300
Citations -  14095

Zhanjiang Liu is an academic researcher from Syracuse University. The author has contributed to research in topics: Catfish & Ictalurus. The author has an hindex of 65, co-authored 293 publications receiving 12731 citations. Previous affiliations of Zhanjiang Liu include University of Alabama & Centre national de la recherche scientifique.

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Identification of reproduction-related genes and SSR-markers through expressed sequence tags analysis of a monsoon breeding carp rohu, Labeo rohita (Hamilton).

TL;DR: Identification of 182 important reproduction-related genes and expression pattern of 16 transcripts in preparatory and post-spawning phase along with 20 polymorphic EST-SSRs should be highly useful for the future reproductive molecular studies and selection program in Labeo rohita.
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The E5 gene product of rhesus papillomavirus is an activator of endogenous Ras and phosphatidylinositol-3′-kinase in NIH 3T3 cells

TL;DR: E5 genes of papillomaviruses play a major role in the regulation of transduction pathways leading to the possible activation of Ras protein (p21ras) and phosphatidylinositol kinase.
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Identification and characterization of matrix metalloproteinase-13 sequence structure and expression during embryogenesis and infection in channel catfish (Ictalurus punctatus).

TL;DR: This study characterized the MMP-13 gene in channel catfish, and determined its pattern of expression in various healthy tissues and during embryogenesis, and studied its involvement in the defense responses of catfish after bacterial infection.
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Comparative transcriptome analysis of papilla and skin in the sea cucumber, Apostichopus japonicus

TL;DR: Comparative transcriptome analysis of the papilla and skin from the sea cucumber in order to identify and characterize gene expression profiles by using RNA-Seq technology indicated that cell part, metabolic process and catalytic activity were the most abundant GO category in cell component, biological process and molecular funcation, respectively.
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Molecular and cellular evidence for biased mitotic gene conversion in hybrid scallop.

TL;DR: Evidence is provided for homogenization of the rDNA sequences into maternal genotypes through the use of a hybrid scallop system to support rapid concerted gene evolution via maternally biased gene conversion and the detection of six recombinant variants in the hybrid involving short recombination regions.