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Featured researches published by Keke Zheng.


Comparative Biochemistry and Physiology B | 2017

Cloning and characterization of fatty acid-binding proteins (fabps) from Japanese seabass (Lateolabrax japonicus) liver, and their gene expressions in response to dietary arachidonic acid (ARA)

Houguo Xu; Yuanqin Zhang; Chengqiang Wang; Yuliang Wei; Keke Zheng; Mengqing Liang

In the present study, putative cDNA of five fabp isoforms, i.e., fabp1, fabp2, fabp3, fabp4, and fabp7, was cloned and characterized from the liver of Japanese seabass (Lateolabrax japonicus), and their expression in response to diets with different arachidonic acid (ARA) levels (0.05%, 0.22%, 0.37%, 0.60%, 1.38% and 2.32% of dry matter) was investigated following a feeding trial. The Japanese seabass fabps showed high identity to their orthologs in other fish species and mammals. However, a specific fabp of Japanese seabass showed much lower identity to other Japanese seabass fabps. fabp1 has high expressions in liver and intestine, whereas fabp2 is mainly expressed in the gastrointestinal tract. The highest expression level of fabp3, fabp4, and fabp7 was observed in muscle, eye, and liver respectively. Different tissue expression patterns of fabp2, fabp4, and fabp7 between Japanese seabass and other teleost may indicate specific evolutionary Fabp functions in Japanese seabass. Moderate levels of dietary ARA (0.37-0.60%) enhanced the gene expressions of fabp1 in liver and intestine, fabp2 in intestine, and fabp3 in intestine, whereas excess dietary ARA levels (1.38-2.323%) were ineffective. The highest level of dietary ARA (2.32%) increased only the expression of fabp3 in muscle compared to the control diet. Gene expressions of fabp3 and fabp7 in liver, and fabp4 in liver, intestine, and muscle were not significantly influenced by dietary ARA. To our knowledge, this is the first study investigating the regulation of fabp expressions by dietary ARA.


Aquaculture Nutrition | 2012

Effect of dietary fish protein hydrolysate on growth, feed utilization and IGF‐I levels of Japanese flounder (Paralichthys olivaceus)

Keke Zheng; Mengqing Liang; Hongbo Yao; Jialin Wang; Qing Chang


Aquaculture Research | 2013

Effect of size‐fractionated fish protein hydrolysate on growth and feed utilization of turbot (Scophthalmus maximus L.)

Keke Zheng; Mengqing Liang; Hongbo Yao; Jialin Wang; Qing Chang


Aquaculture Nutrition | 2014

Effect of low molecular weight fish protein hydrolysate on growth performance and IGF-I expression in Japanese flounder (Paralichthys olivaceus) fed high plant protein diets

Keke Zheng; T. Xu; C. Qian; Mengqing Liang; X.-X. Wang


Archive | 2009

Method for preparing sea cucumber compound feed with additional Enteromorpha

Mengqing Liang; Jian Yao; Qing Chang; Keke Zheng


Aquaculture Nutrition | 2016

The effect of ultrafiltered fish protein hydrolysate level on growth performance, protein digestibility and mRNA expression of PepT1 in juvenile turbot (Scophthalmus maximus L.)

Y. Wei; Mengqing Liang; Y. Mu; Keke Zheng; Houguo Xu


Aquaculture Nutrition | 2014

Effects of dietary n‐3 to n‐6 fatty acid ratios on spawning performance and larval quality in tongue sole Cynoglossus semilaevis

Mengqing Liang; Q.-K. Lu; C. Qian; Keke Zheng; X.-X. Wang


Aquaculture Nutrition | 2017

1H NMR-based metabolomics studies on the effect of size-fractionated fish protein hydrolysate, fish meal and plant protein in diet for juvenile turbot (Scophthalmus maximus L.)

Y. Wei; Mengqing Liang; K. Mai; Keke Zheng; Houguo Xu


Archive | 2010

Juvenile turbot culturing and feeding method

Keke Zheng; Mengqing Liang; Qing Chang; Wei Fang


Archive | 2009

Preparation method of green algae enteromorpha as turbot attractant

Mengqing Liang; Fuyan Xin; Qing Chang; Jialin Wang; Keke Zheng

Collaboration


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Mengqing Liang

Chinese Academy of Fishery Sciences

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Qing Chang

Chinese Academy of Fishery Sciences

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Houguo Xu

Chinese Academy of Fishery Sciences

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Jialin Wang

Chinese Academy of Fishery Sciences

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Yuliang Wei

Chinese Academy of Fishery Sciences

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Hongbo Yao

Chinese Academy of Fishery Sciences

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C. Qian

Sun Yat-sen University

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Chengqiang Wang

Chinese Academy of Fishery Sciences

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X.-X. Wang

Chinese Academy of Fishery Sciences

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Y. Wei

Chinese Academy of Fishery Sciences

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