Skip to main navigation
Skip to search
Skip to main content
Penn State Home
Help & FAQ
Link opens in a new tab
Search content at Penn State
Home
Researchers
Research output
Research units
Equipment
Grants & Projects
Prizes
Activities
Heat tolerance in plants: An overview
A. Wahid
, S. Gelani
, M. Ashraf
,
M. R. Foolad
Plant Science
Plant Institute
Research output
:
Contribution to journal
›
Review article
›
peer-review
3411
Link opens in a new tab
Scopus citations
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Heat tolerance in plants: An overview'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Heat Stress
100%
Heat Tolerance
100%
Thermotolerance
62%
High Temperature
50%
Genetic Approach
37%
Plant Growth
25%
Membrane Stability
25%
Heat Stress Tolerance
25%
Reactive Oxygen Species Generation
25%
Photosynthesis
12%
Crop Plants
12%
Developmental Stages
12%
Mitogen-activated Protein Kinase
12%
Environmental Stress
12%
Transcriptional Activation
12%
Genetic Factors
12%
Genetic Transformation
12%
Adverse Effects
12%
Enhanced Expression
12%
Kinase Cascade
12%
Physiological Response
12%
Heat Shock Proteins
12%
Plant Species
12%
Respiration
12%
Chaperone
12%
Proline
12%
Plant Development
12%
Biochemical Changes
12%
Seed Germination
12%
Genetic Strategies
12%
Exogenous Application
12%
Traditional Breeding
12%
Heat Effect
12%
Plant Response
12%
Marker-assisted Breeding
12%
Secondary Metabolites
12%
Water Relations
12%
Threshold Level
12%
Germination
12%
Engineering Plants
12%
Transgenic Approaches
12%
Transformation Approach
12%
Anatomical Changes
12%
Osmoprotectants
12%
Stress Proteins
12%
Molecular Breeding
12%
Primary Metabolites
12%
Economic Yield
12%
Molecular Aspects
12%
Agricultural Problems
12%
Active Processes
12%
Structural Repair
12%
Calcium-dependent Protein Kinase
12%
Morpho-physiological Changes
12%
Waterproofing Membrane
12%
Function Maintenance
12%
Plant Resources
12%
Assimilate Partitioning
12%
Heat Threshold
12%
Compatible Solutes
12%
Plant Ontogeny
12%
Antioxidant Accumulation
12%
Glycine betaine
12%
Morpho-biochemical
12%
Heat Factor
12%
Map Gene
12%
Morpho-anatomical
12%
Phenotypic Flexibility
12%
Effect on Plants
12%
Biochemistry, Genetics and Molecular Biology
Heat Tolerance
100%
Heat Stress
83%
Genetic Approach
25%
Ontogeny
16%
Seed Germination
16%
Photosystem
8%
Protein Kinases
8%
Genetics
8%
Developmental Stage
8%
Mitogen-Activated Protein Kinase
8%
Transactivation
8%
Environmental Stress
8%
Heat Shock Protein
8%
Transgenics
8%
Genetic Transformation
8%
Genetic Determinism
8%
Transcription Initiation
8%
Growth, Development and Aging
8%
Plant Development
8%
Plant Response
8%
Marker Assisted Breeding
8%
Secondary Metabolite
8%
Molecular Breeding
8%
Proline
8%
Gene Mapping
8%
Immunology and Microbiology
Heat Tolerance
100%
Heat Stress
83%
Ontogeny
16%
Plant Growth
16%
Germination
16%
Phosphotransferase
16%
Kinase
16%
Dioxygen
16%
Photosynthesis
8%
Mitogen
8%
Heat Shock
8%
Genetic Transformation
8%
Transgenics
8%
Developmental Stage
8%
Transactivation
8%
Transcription Initiation
8%
Plant Development
8%
Growth, Development and Aging
8%
Secondary Metabolite
8%
Gene Mapping
8%
Proline
8%