Area of research
Plant Science
Research interest
Research interests include Biology, Arabidopsis thaliana, Arsenate, Arsenite, Arsenic, and Quantitative trait locus.
Individual leaf microbiota tunes a genetic regulatory network to promote leaf growth
A chloroplast localized heavy metal-associated domain containing protein regulates grain calcium accumulation in rice
Plant microbiota controls an alternative root branching regulatory mechanism in plants
Combined genomics to discover genes associated with tolerance to soil carbonate
Climate change challenges, plant science solutions
Transcriptional network underpinning ploidy-related elevated leaf potassium in neo-tetraploids
Univariate and Multivariate QTL Analyses Reveal Covariance Among Mineral Elements in the Rice Ionome
Coordination between microbiota and root endodermis supports plant mineral nutrient homeostasis
Uclacyanin Proteins Are Required for Lignified Nanodomain Formation within Casparian Strips
Targeted expression of the arsenate reductase HAC1 identifies cell type specificity of arsenic metabolism and transport in plant roots
Mutation in <i>OsCADT1</i> enhances cadmium tolerance and enriches selenium in rice grain
Variation in the BrHMA3 coding region controls natural variation in cadmium accumulation in Brassica rapa vegetables
Epigenetic regulation of sulfur homeostasis in plants
Genome-Wide Association Studies Reveal the Genetic Basis of Ionomic Variation in Rice
Fluctuating selection on migrant adaptive sodium transporter alleles in coastal <i>Arabidopsis thaliana</i>
Natural variation in a molybdate transporter controls grain molybdenum concentration in rice
Dissecting the components controlling root‐to‐shoot arsenic translocation in <i>Arabidopsis thaliana</i>
OsHAC1;1 and OsHAC1;2 Function as Arsenate Reductases and Regulate Arsenic Accumulation
A loss‐of‐function allele of <i>OsHMA3</i> associated with high cadmium accumulation in shoots and grain of <i>Japonica</i> rice cultivars
OPT3 Is a Phloem-Specific Iron Transporter That Is Essential for Systemic Iron Signaling and Redistribution of Iron and Cadmium in<i>Arabidopsis</i>
Genome-wide Association Mapping Identifies a New Arsenate Reductase Enzyme Critical for Limiting Arsenic Accumulation in Plants
Genome Wide Association Mapping of Grain Arsenic, Copper, Molybdenum and Zinc in Rice (Oryza sativa L.) Grown at Four International Field Sites
Lateral root morphogenesis is dependent on the mechanical properties of the overlaying tissues
The CTR/COPT-dependent copper uptake and SPL7-dependent copper deficiency responses are required for basal cadmium tolerance in A. thaliana
Genome-Wide Association Studies Identify Heavy Metal ATPase3 as the Primary Determinant of Natural Variation in Leaf Cadmium in Arabidopsis thaliana
Knocking Out ACR2 Does Not Affect Arsenic Redox Status in Arabidopsis thaliana: Implications for As Detoxification and Accumulation in Plants
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