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James N. Siedow

James N. Siedow

D-Index & Metrics

Biology and Biochemistry

D-Index
59
Citations
12824
World Ranking
12505
National Ranking
5352

Research.com Recognitions

  • 2007 - Fellow of the American Society of Plant Biologists
  • 2002 - Fellow of the American Association for the Advancement of Science (AAAS)

Overview

James N. Siedow was affiliated with Duke University in the United States. Their research spanned multiple areas within agricultural and biological sciences, particularly focused on plant science and molecular biology. The work predominantly addressed topics related to plant stress responses and tolerance, photosynthetic processes and mechanisms, and plant-microbe interactions and immunity.

Siedow contributed to research published in venues including:

  • Nature

One notable publication by Siedow and collaborators was titled "Hydrogen peroxide sensor HPCA1 is an LRR receptor kinase in Arabidopsis", published in 2020 in Nature. This paper explored molecular signaling mechanisms in plants and had a substantial number of citations.

Siedow worked with several frequent co-authors during their career. These included:

  • Fei-Hua Wu
  • Yuan Chi
  • Zhonghao Jiang
  • Yuanyuan Xu
  • Ling Xie

Their research domains covered:

  • Agricultural and Biological Sciences
  • Biochemistry, Genetics and Molecular Biology

Within subfields, Siedow's publications focused primarily on:

  • Plant Science
  • Molecular Biology

The main topics addressed in Siedow's work were:

  • Plant Stress Responses and Tolerance
  • Photosynthetic Processes and Mechanisms
  • Plant-Microbe Interactions and Immunity

During their career, James N. Siedow received recognition in the form of fellowships, including being named a Fellow of the American Society of Plant Biologists in 2007 and a Fellow of the American Association for the Advancement of Science (AAAS) in 2002.

Best Publications

  • PLANT LIPOXYGENASE: STRUCTURE AND FUNCTION

    James N. Siedow

  • OSCA1 mediates osmotic-stress-evoked Ca2+ increases vital for osmosensing in Arabidopsis

    Fang Yuan;Huimin Yang;Yan Xue;Dongdong Kong

  • Mitochondrial Reactive Oxygen Species. Contribution to Oxidative Stress and Interorganellar Signaling

    David M. Rhoads;Ann L. Umbach;Chalivendra C. Subbaiah;James N. Siedow

  • Hydrogen peroxide sensor HPCA1 is an LRR receptor kinase in Arabidopsis.

    Feihua Wu;Yuan Chi;Yuan Chi;Yuan Chi;Zhonghao Jiang;Zhonghao Jiang;Yuanyuan Xu

  • Plant cell-surface GIPC sphingolipids sense salt to trigger Ca 2+ influx

    Zhonghao Jiang;Xiaoping Zhou;Ming Tao;Fang Yuan;Fang Yuan

  • The regulation and nature of the cyanide-resistant alternative oxidase of plant mitochondria

    Anthony L. Moore;James N. Siedow

  • Covalent and Noncovalent Dimers of the Cyanide-Resistant Alternative Oxidase Protein in Higher Plant Mitochondria and Their Relationship to Enzyme Activity.

    A. L. Umbach;J. N. Siedow

  • Plant Mitochondrial Electron Transfer and Molecular Biology.

    James N. Siedow;Ann L. Umbach

  • Characterization of transformed Arabidopsis with altered alternative oxidase levels and analysis of effects on reactive oxygen species in tissue.

    Ann L. Umbach;Fabio Fiorani;James N. Siedow

  • The mitochondrial cyanide-resistant oxidase: structural conservation amid regulatory diversity.

    James N Siedow;Ann L Umbach

  • The Alternative Oxidase of Plant Mitochondria Is Involved in the Acclimation of Shoot Growth at Low Temperature. A Study of Arabidopsis AOX1a Transgenic Plants

    Fabio Fiorani;Ann L. Umbach;James N. Siedow

  • Regulation of the Cyanide-resistant Alternative Oxidase of Plant Mitochondria IDENTIFICATION OF THE CYSTEINE RESIDUE INVOLVED IN α-KETO ACID STIMULATION AND INTERSUBUNIT DISULFIDE BOND FORMATION

    David M. Rhoads;Ann L. Umbach;Charles R. Sweet;Adrian M. Lennon

  • A 13-kilodalton maize mitochondrial protein in E. coli confers sensitivity to Bipolaris maydis toxin.

    RE Dewey;JN Siedow;DH Timothy;CS Levings

  • Regulation of alternative oxidase kinetics by pyruvate and intermolecular disulfide bond redox status in soybean seedling mitochondria

    Ann L. Umbach;Joseph T. Wiskich;James N. Siedow

  • Does elevated atmospheric CO2 concentration inhibit mitochondrial respiration in green plants

    Bert G. Drake;J. Azcon-Bieto;J. Berry;J. Bunce

  • The effect of growth and measurement temperature on the activity of the alternative respiratory pathway

    Miquel A. Gonzàlez-Meler;Miquel Ribas-Carbo;Larry Giles;James N. Siedow

  • Regulation of the Alternative Oxidase in Plants and Fungi.

    DA Day;J Whelan;AH Millar;JN Siedow

  • Direct Inhibition of Plant Mitochondrial Respiration by Elevated CO2.

    Miguel A. Gonzalez-Meler;Miguel Ribas-Carbo;James N. Siedow;Bert G. Drake

  • The active site of the cyanide-resistant oxidase from plant mitochondria contains a binuclear iron center.

    James N. Siedow;Ann L. Umbach;Anthony L. Moore

  • Alternative Respiratory Pathway: ITS ROLE IN SEED RESPIRATION AND ITS INHIBITION BY PROPYL GALLATE.

    James N. Siedow;Mark E. Girvin

Frequent Co-Authors

Charles S. Levings
Charles S. Levings North Carolina State University
Miquel Ribas-Carbo
Miquel Ribas-Carbo University of the Balearic Islands
Zhen-Ming Pei
Zhen-Ming Pei Duke University
Miquel A. Gonzalez-Meler
Miquel A. Gonzalez-Meler University of Illinois at Chicago
Joseph A. Berry
Joseph A. Berry Carnegie Institution for Science
Hans Lambers
Hans Lambers University of Western Australia
Ian M. Møller
Ian M. Møller Aarhus University
Fabio Fiorani
Fabio Fiorani Forschungszentrum Jülich
Sharon A. Robinson
Sharon A. Robinson University of Wollongong
Richard B. Thomas
Richard B. Thomas West Virginia University

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