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Pan LIAO, Prof
Assistant Professor
,
Department of Biology
https://orcid.org/0000-0002-1156-8916
Email
panliao
hkbu.edu
hk
Accepting PhD Students
2009
2026
Research activity per year
Overview
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Network
Projects / Grants
(11)
Research Output
(58)
Activities
(9)
Similar Scholars
(6)
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Dive into the research topics where Pan LIAO is active. Topic labels come from the works of this scholar. Together they form a unique fingerprint.
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Biochemistry, Genetics and Molecular Biology
Anabolism
100%
Synthase
72%
Arabidopsis
69%
Acyl-CoA
66%
Transgenics
61%
Binding Protein
58%
Salvia Miltiorrhiza
58%
Molecular Cloning
42%
Brassica
39%
Gene Expression
36%
HMG-CoA
35%
Expression Analysis
33%
Sterol
27%
Enzyme
26%
Lipid Metabolism
26%
Metabolic Engineering
26%
Mevalonate Pathway
25%
Lipid
23%
Oxidoreductase
23%
Reductase
23%
Jasmonate
19%
Phytosterol
19%
Hairy Root Culture
19%
Metabolite
19%
Gene Expression Profiling
18%
Lipid Storage
18%
Coenzyme A
18%
Wild Type
18%
GenBank
18%
Amino Acid
17%
Transcription Factor
17%
Alkaloids Biosynthesis
17%
Escherichia coli
17%
HMG-CoA Synthase
16%
Maturation
16%
Sterol Synthesis
15%
Seed Development
15%
Carotenoid
15%
Open Reading Frame
14%
Bioinformatics
14%
Medicinal Plant
14%
Triglyceride
14%
Rapid Amplification of cDNA Ends
13%
Scopolamine
13%
Geranylgeranyl Pyrophosphate
12%
Xylulose
12%
Xylulose 5-Phosphate
12%
Glucosinolate
12%
Secondary Metabolite
12%
Acetyl-CoA
12%
Keyphrases
Acyl-CoA-binding Protein
63%
Overexpression
51%
Salvia Miltiorrhiza
49%
Arabidopsis
48%
3-hydroxy-3-methylglutaryl-CoA Synthase
42%
Anisodus Acutangulus
42%
Molecular Characterization
42%
Molecular Cloning
42%
Molecular Expression
42%
Tanshinone IIA
34%
Expression Analysis
33%
3-hydroxy-3-methylglutaryl-coenzyme A
33%
Metabolic Engineering
30%
Gene Expression
29%
Volatile Organic Compounds
29%
Rice
27%
Tropane Alkaloids
26%
Mevalonate Pathway
26%
Transgenic Arabidopsis
25%
Clone Analysis
25%
Lipid Metabolism
23%
Overexpressing
23%
Biosynthetic Pathway
23%
Transcription Factor
23%
Brassica Juncea
20%
Seed Yield
20%
Genetic Engineering
20%
Transgenic Rice
19%
Brassica Napus
19%
Changes in Gene Expression
19%
Tobacco
19%
Hairy Root Culture
18%
Natural Products
18%
Expression Profile
18%
Tanshinone Biosynthesis
18%
Full-length cDNA
18%
Sterols
17%
Seed Maturation
16%
HMG-CoA Synthase
16%
Salvia Miltiorrhiza Hairy Root
16%
Functional Identification
16%
Seed Coat
16%
Character Analysis
16%
Lipid Accumulation
16%
Comparative Transcriptome Analysis
16%
Dynamic Change
16%
Acyl-CoA
16%
Phytosterols
15%
Medicinal Plants
14%
Hairy Roots
14%