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Transcriptomic responses of marine medaka’s ovary to hypoxia
Keng Po LAI
, Jing Woei LI
, Anna Chung Kwan TSE
, Angela CHEUNG
, Simon Yuan WANG
, Ting Fung CHAN
, Richard Yuen Chong KONG
,
Shiu Sun Rudolf WU
Department of Science and Environmental Studies (SES)
Research output
:
Contribution to journal
›
Articles
›
peer-review
24
Citations (Scopus)
Overview
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Keyphrases
Hypoxia
100%
Transcriptomic Response
100%
Female Reproductive System
50%
Marine Fish
50%
Hypoxic Stress
50%
Bioinformatics Analysis
50%
Molecular Mechanism
50%
Copyright
25%
Endocrine Disruptors
25%
Number of Females
25%
Global Problems
25%
Metabolic Processes
25%
Differential Expressed Genes
25%
A1 Receptor
25%
Growth Factors
25%
Deregulation
25%
High-throughput Transcriptome Sequencing
25%
Marine Medaka
25%
Insulin-like
25%
Dead Zone
25%
Steroidogenic Genes
25%
Hypoxia Response
25%
Female Reproductive Function
25%
Hormone Production
25%
Reproductive System
25%
Sex Hormones
25%
Dysregulation
25%
PCR Validation
25%
Gonad
25%
Oryzias Melastigma
25%
Follicle-stimulating Hormone
25%
Gonad Development
25%
Quantitative RT-PCR
25%
Ovarian Follicular Development
25%
Leukemia Inhibitory Factor
25%
Transcriptome Sequencing Analysis
25%
Marine Organisms
25%
Disruptive Effect
25%
Transcriptional Signature
25%
Biochemistry, Genetics and Molecular Biology
Transcriptomics
100%
Reproductive System
100%
Oryzias Melastigma
66%
Hormone Synthesis
33%
Insulin-Like Growth Factor 1 Receptor
33%
Marine Species
33%
RNA Sequencing
33%
Quantitative Reverse Transcription Polymerase Chain Reaction
33%
Follicle-Stimulating Hormone
33%
Folliculogenesis
33%
Gonad Development
33%
Gene Expression
33%
Leukemia Inhibitory Factor
33%
Reproduction
33%
Medicine and Dentistry
Hypoxia
100%
Transcriptomics
100%
Reproductive System
42%
Reproductive Medicine
14%
Leukemia Inhibitory Factor
14%
Gene Expression
14%
Somatomedin C Receptor
14%
Ovary Follicle Development
14%
Hormone Synthesis
14%
Ovarian Follicle
14%
Endocrine Disruptor
14%
Marine Organism
14%
Sex Hormone
14%
Follitropin
14%
RNA Sequencing
14%
Quantitative Reverse Transcription Polymerase Chain Reaction
14%
Gonad Development
14%
Gonad
14%