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The detection of plasticity genes in heterogeneous environments
W. U. Rongling
Department of Public Health Sciences
Division of Biostatistics and Bioinformatics
Penn State Cancer Institute
Center for Statistical Genetics
Cancer Institute, Cancer Control
Research output
:
Contribution to journal
›
Article
›
peer-review
66
Scopus citations
Overview
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Dive into the research topics of 'The detection of plasticity genes in heterogeneous environments'. Together they form a unique fingerprint.
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Earth & Environmental Sciences
plasticity
100%
phenotypic plasticity
81%
gene
79%
detection
60%
regulation
52%
homeostasis
35%
reaction norm
23%
genetic variation
18%
gene expression
17%
phenotype
16%
genomics
14%
norm
14%
genome
13%
stem
13%
marker
12%
DNA
12%
effect
6%
Agriculture & Biology
plasticity
93%
quantitative trait loci
64%
phenotypic plasticity
63%
genes
36%
loci
27%
homeostasis
25%
growth traits
16%
homozygosity
15%
structural genes
15%
regulator genes
15%
Populus
14%
molecular genetics
14%
heterozygosity
12%
phenotype
9%
genomics
9%
stems
9%
genetic variation
9%
gene expression
9%
genome
8%
DNA
7%
Medicine & Life Sciences
Quantitative Trait Loci
93%
Physiological Adaptation
77%
Genes
41%
Populus
25%
Homeostasis
21%
Homozygote
16%
Heterozygote
15%
Genetic Markers
15%
Regulator Genes
15%
Genetic Variation
14%
Molecular Biology
12%
Genome
10%
Phenotype
8%
Gene Expression
8%
Growth
7%