World's Best Scientists 2026 revealed!

D-Index & Metrics

Genetics

D-Index
70
Citations
12021
World Ranking
2296
National Ranking
1030

Research.com Recognitions

  • 2021 - Fellow of the American Society of Plant Biologists
  • 2018 - Fellow of the American Association for the Advancement of Science (AAAS)

Overview

Robert J. Ferl is affiliated with the University of Florida in the United States. Their research primarily spans the fields of Agricultural and Biological Sciences as well as Biochemistry, Genetics, and Molecular Biology, with a focused emphasis on plant science, molecular biology, physiology, ecology, and aspects of astronomy and astrophysics.

The main topics addressed in their body of work include plant molecular biology research, spaceflight effects on biology, polar research and ecology, photosynthetic processes and mechanisms, soybean genetics and cultivation, light effects on plants, and magnetic and electromagnetic effects.

Frequent collaborators in their research include Anna-Lisa Paul, Mingqi Zhou, Natasha J. Haveman, Jordan Callaham, and Hunter F. Strickland.

Their publications have appeared regularly in several notable scientific venues, including Frontiers in Plant Science, npj Microgravity, Life Sciences in Space Research, bioRxiv (Cold Spring Harbor Laboratory), and Communications Biology.

Significant recent papers authored or co-authored by Robert J. Ferl include:

  • Plants grown in Apollo lunar regolith present stress-associated transcriptomes that inform prospects for lunar exploration, 2022, Communications Biology
  • Root Skewing-Associated Genes Impact the Spaceflight Response of Arabidopsis thaliana, 2020, Frontiers in Plant Science
  • Epigenomic Regulators Elongator Complex Subunit 2 and Methyltransferase 1 Differentially Condition the Spaceflight Response in Arabidopsis, 2021, Frontiers in Plant Science
  • Integrative transcriptomics and proteomics profiling of Arabidopsis thaliana elucidates novel mechanisms underlying spaceflight adaptation, 2023, Frontiers in Plant Science
  • NDVI imaging within space exploration plant growth modules - A case study from EDEN ISS Antarctica, 2020, Life Sciences in Space Research

Robert J. Ferl's work relates closely to understanding biological and molecular mechanisms in plants under unique environmental conditions such as spaceflight and lunar regolith. This interdisciplinary research contributes to knowledge relevant to space exploration and plant adaptation sciences.

Recognition for their professional contributions includes being named Fellow of the American Association for the Advancement of Science (AAAS) in 2018 and Fellow of the American Society of Plant Biologists in 2021.

Best Publications

  • An Essential Role for 14-3-3 Proteins in Brassinosteroid Signal Transduction in Arabidopsis

    Srinivas S. Gampala;Tae-Wuk Kim;Jun-Xian He;Wenqiang Tang

  • Trans-Pacific migrations of the loggerhead turtle (Caretta caretta) demonstrated with mitochondrial DNA markers.

    B W Bowen;F A Abreu-Grobois;G H Balazs;N Kamezaki

  • 14-3-3 proteins in plant physiology

    Fiona C. Denison;Anna-Lisa Paul;Agata K. Zupanska;Robert J. Ferl

  • Evolution of the 14-3-3 protein family: does the large number of isoforms in multicellular organisms reflect functional specificity?

    Magnus Rosenquist;Paul Sehnke;Robert J. Ferl;Marianne Sommarin

  • Increased gene expression by the first intron of maize shrunken-1 locus in grass species.

    Vimla Vasil;M. Clancy;R. J. Ferl;I. K. Vasil

  • Consummating Signal Transduction: The Role of 14-3-3 Proteins in the Completion of Signal-Induced Transitions in Protein Activity

    Paul C. Sehnke;Justin M. DeLille;Robert J. Ferl

  • cDNA clones for Brassica napus seed storage proteins: evidence from nucleotide sequence analysis that both subunits of napin are cleaved from a precursor polypeptide.

    Crouch Ml;Tenbarge Km;Simon Ae;Ferl R

  • 14-3-3 proteins associate with the regulatory phosphorylation site of spinach leaf nitrate reductase in an isoform-specific manner and reduce dephosphorylation of Ser-543 by endogenous protein phosphatases.

    Markus Bachmann;Joan L. Huber;Gurdeep S. Athwal;Ke Wu

  • Brain proteins in plants: an Arabidopsis homolog to neurotransmitter pathway activators is part of a DNA binding complex

    Guihua Lu;A. J. Delisle;N. C. De Vetten;R. J. Ferl

  • The arabidopsis 14-3-3 family of signaling regulators.

    Justin M. DeLille;Paul C. Sehnke;Robert J. Ferl

  • Regulation of starch accumulation by granule-associated plant 14-3-3 proteins.

    Paul C. Sehnke;Hwa-Jee Chung;Ke Wu;Robert J. Ferl

  • 14-3-3 PROTEINS AND SIGNAL TRANSDUCTION.

    Robert J. Ferl

  • GLOBAL PHYLOGEOGRAPHY OF THE RIDLEY SEA TURTLES (LEPIDOCHELYS SPP.) AS INFERRED FROM MITOCHONDRIAL DNA SEQUENCES

    B.W. Bowen;A.M. Clark;F.A. Abreu-Grobois;A. Chaves

  • The 14-3-3s.

    Robert J Ferl;Michael S Manak;Matthew F Reyes

  • The 14-3-3 proteins: cellular regulators of plant metabolism.

    Hwa-Jee Chung;Paul C Sehnke;Robert J Ferl

  • Plants in space.

    Robert Ferl;Raymond Wheeler;Howard G Levine;Anna Lisa Paul

  • cDNA cloning and induction of the alcohol dehydrogenase gene (Adh1) of maize.

    W. L. Gerlach;A. J. Pryor;E. S. Dennis;R. J. Ferl

  • Arabidopsis Alcohol Dehydrogenase Expression in Both Shoots and Roots Is Conditioned by Root Growth Environment

    Hwa-Jee Chung;Robert J. Ferl

  • Spaceflight Transcriptomes: Unique Responses to a Novel Environment

    Anna-Lisa Paul;Agata K. Zupanska;Dejerianne T. Ostrow;Yanping Zhang

  • Phosphorylation and calcium binding properties of an Arabidopsis GF14 brain protein homolog.

    Guihua Lu;Paul C. Sehnke;Robert J. Ferl

Frequent Co-Authors

Indra K. Vasil
Indra K. Vasil University of Florida
Vimla Vasil
Vimla Vasil University of Florida
Brian W. Bowen
Brian W. Bowen University of Hawaii at Manoa
Marianne Sommarin
Marianne Sommarin Umeå University
Daniel J. Cantliffe
Daniel J. Cantliffe University of Florida
Christer Larsson
Christer Larsson Lund University
Kevin M. Folta
Kevin M. Folta University of Florida
Christopher P. McKay
Christopher P. McKay Ames Research Center
Raymond M. Wheeler
Raymond M. Wheeler Kennedy Space Center
Donald R. McCarty
Donald R. McCarty University of Florida

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

Studying Genetics in the USA can open doors to diverse careers across healthcare, research, and administration. Many students find that related degrees help complement their genetic studies or create alternative career pathways.

Healthcare is a popular route. Some choose nursing, where applicants can benefit from nursing program no teas options, which make entry easier by removing exam hurdles. For those seeking administrative roles, an affordable online master's in healthcare administration can be an excellent, flexible choice for advancing into hospital or clinic management positions.

Practical, fast-track options are also gaining traction. Many choose fast track lpn programs online to quickly become licensed professionals and start earning while learning. For those eyeing leadership or academic positions, pursuing an online nursing doctorate can pave the way to high-level teaching, research, or policy-making roles.

Exploring these degree and career pathways can help genetics students diversify their skill sets and expand professional opportunities in healthcare and beyond.

Best Scientists Citing Robert J. Ferl

Trending Scientists

Recently Published Articles