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Physiologia Plantarum : Impact Factor & More

eISSN: 1399-3054pISSN: 0031-9317

Aims and Scope of Physiologia Plantarum

Physiologia Plantarum is a peer-reviewed scientific journal published by Wiley-Blackwell on behalf of the Scandinavian Plant Physiology Society. The journal publishes papers on all aspects of all organizational levels of experimental plant biology ranging from biophysics, biochemistry, molecular and cell biology to ecophysiology. Less

Key Metrics

CiteScore
7.1
Eigenfactor
0.005 - 0.01
H-Index
160
Impact Factor
5 - 10
SJR
Q1Genetics
SNIP
1.38
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Topics Covered on Physiologia Plantarum

Physiologia Plantarum Journal Specifications

Indexed in the following public directories

  • Web of Science Web of Science
  • Scopus Scopus
  • SJR SJR
Overview
Publisher WILEY
Language English
Frequency Article-by-article
General Details
LanguageEnglish
FrequencyArticle-by-article
Publication Start Year1948
Publisher URLVisit website
Website URLVisit website
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Recently Published Papers in Physiologia Plantarum

Plant LHP1 as a Context-Dependent Regulator of Polycomb-Associated Chromatin.
  • 1 Jul 2026
  • Physiologia plantarum
Elucidating the Growth-Promoting Mechanism of Bacillus safensis in Nipponbare Rice Through Integrated Phenotypic and Transcriptome Analysis.
  • 1 Jul 2026
  • Physiologia plantarum
Glycine Betaine Mitigates Flooding and Drought Damage in Maize by Regulating Respiration, ROS Homeostasis, and Metabolism.
  • 1 Jul 2026
  • Physiologia plantarum
Weighted Gene Co-Expression Network Analysis Reveals Hub Genes Associated With Response to Low-Phosphorus Stress in Pueraria lobata.
  • 1 May 2026
  • Physiologia plantarum
Roles of Genetic Networks, Environmental Responses and Hormonal Regulation in the Maintenance and Differentiation of Tree Stem Cells.
  • 1 May 2026
  • Physiologia plantarum
Environmental Factors Shape Terpenoid Accumulation andPredicted Bioactivity in Houttuynia cordata.
  • 1 May 2026
  • Physiologia plantarum
Plant LHP1 as a Context-Dependent Regulator of Polycomb-Associated Chromatin.
  • 1 Jul 2026
  • Physiologia plantarum
Elucidating the Growth-Promoting Mechanism of Bacillus safensis in Nipponbare Rice Through Integrated Phenotypic and Transcriptome Analysis.
  • 1 Jul 2026
  • Physiologia plantarum
Glycine Betaine Mitigates Flooding and Drought Damage in Maize by Regulating Respiration, ROS Homeostasis, and Metabolism.
  • 1 Jul 2026
  • Physiologia plantarum
Weighted Gene Co-Expression Network Analysis Reveals Hub Genes Associated With Response to Low-Phosphorus Stress in Pueraria lobata.
  • 1 May 2026
  • Physiologia plantarum
Roles of Genetic Networks, Environmental Responses and Hormonal Regulation in the Maintenance and Differentiation of Tree Stem Cells.
  • 1 May 2026
  • Physiologia plantarum
Environmental Factors Shape Terpenoid Accumulation andPredicted Bioactivity in Houttuynia cordata.
  • 1 May 2026
  • Physiologia plantarum

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