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David G. Mendoza-Cózatl

David G. Mendoza-Cózatl

D-Index & Metrics

Plant Science and Agronomy

D-Index
30
Citations
4673
World Ranking
6342
National Ranking
1529

Best Publications

  • Arsenic tolerance in Arabidopsis is mediated by two ABCC-type phytochelatin transporters

    Won-Yong Song;Jiyoung Park;David G. Mendoza-Cózatl;Marianne Suter-Grotemeyer

  • Sulfur assimilation and glutathione metabolism under cadmium stress in yeast, protists and plants.

    David Mendoza-Cózatl;Herminia Loza-Tavera;Andrea Hernández-Navarro;Rafael Moreno-Sánchez

  • Long-distance transport, vacuolar sequestration, tolerance, and transcriptional responses induced by cadmium and arsenic

    David G Mendoza-Cózatl;Timothy O Jobe;Felix Hauser;Julian I Schroeder

  • Identification of high levels of phytochelatins, glutathione and cadmium in the phloem sap of Brassica napus. A role for thiol-peptides in the long-distance transport of cadmium and the effect of cadmium on iron translocation.

    David G. Mendoza-Cózatl;Emerald Butko;Franziska Springer;Justin W. Torpey

  • Phytochelatin–metal(loid) transport into vacuoles shows different substrate preferences in barley and Arabidopsis

    Won-Yong Song;David G. Mendoza-Cózatl;Youngsook Lee;Julian I. Schroeder

  • OPT3 is a component of the iron-signaling network between leaves and roots and misregulation of OPT3 leads to an over-accumulation of cadmium in seeds.

    David G. Mendoza-Cózatl;David G. Mendoza-Cózatl;Qingqing Xie;Garo Z. Akmakjian;Timothy O. Jobe

  • Common Bean: A Legume Model on the Rise for Unraveling Responses and Adaptations to Iron, Zinc, and Phosphate Deficiencies.

    Unknown

  • The Pb-hyperaccumulator aquatic fern Salvinia minima Baker, responds to Pb2+ by increasing phytochelatins via changes in SmPCS expression and in phytochelatin synthase activity

    N. Estrella-Gómez;D. Mendoza-Cózatl;R. Moreno-Sánchez;D. González-Mendoza

  • Hydroponics: A Versatile System to Study Nutrient Allocation and Plant Responses to Nutrient Availability and Exposure to Toxic Elements

    Unknown

  • Cd2+ transport and storage in the chloroplast of Euglena gracilis.

    David G. Mendoza-Cózatl;Rafael Moreno-Sánchez

  • Cadmium accumulation in the chloroplast of Euglena gracilis.

    David Mendoza-Cozatl;Silvia Devars;Herminia Loza-Tavera;Rafael Moreno-Sánchez

  • Moving toward a precise nutrition: preferential loading of seeds with essential nutrients over non-essential toxic elements.

    Unknown

  • Changes in iron availability in Arabidopsis are rapidly sensed in the leaf vasculature and impaired sensing leads to opposite transcriptional programs in leaves and roots.

    Mather A. Khan;Norma A. Castro‐Guerrero;Samuel A. McInturf;Nga T. Nguyen

  • ARS5 is a component of the 26S proteasome complex and negatively regulates thiol biosynthesis and arsenic tolerance in Arabidopsis

    Dong-Yul Sung;Tae-Houn Kim;Elizabeth A. Komives;David G. Mendoza-Cózatl

  • Feedback inhibition by thiols outranks glutathione depletion: a luciferase-based screen reveals glutathione-deficient γ-ECS and glutathione synthetase mutants impaired in cadmium-induced sulfate assimilation.

    Timothy O. Jobe;Dong-Yul Sung;Garo Akmakjian;Allis Pham

  • Cell wall composition affects Cd2+ accumulation and intracellular thiol peptides in marine red algae.

    Virginia García-Ríos;Yolanda Freile-Pelegrín;Daniel Robledo;David Mendoza-Cózatl

  • Expression of a dominant-negative AtNEET-H89C protein disrupts iron-sulfur metabolism and iron homeostasis in Arabidopsis.

    Sara I Zandalinas;Luhua Song;Soham Sengupta;Samuel A McInturf

  • Hydroponics: A Versatile System to Study Nutrient Allocation and Plant Responses to Nutrient Availability and Exposure to Toxic Elements

    Unknown

  • Copper uptake mechanism of Arabidopsis thaliana high-affinity COPT transporters.

    Unknown

  • Moderate to severe water limitation differentially affects the phenome and ionome of Arabidopsis.

    Unknown

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