Area of research
Molecular Biology · Plant Science
Research interest
Research interests include Photosynthetic Processes and Mechanisms, Plant Gene Expression Analysis, Plant Molecular Biology Research, and Plant biochemistry and biosynthesis.
The variegated <i>canalized-1</i> tomato mutant is linked to photosystem assembly
Selection and adaptive introgression guided the complex evolutionary history of the European common bean
Multi‐year field trials provide a massive repository of trait data on a highly diverse population of tomato and uncover novel determinants of tomato productivity
The genetic and physiological basis of <i>Arabidopsis thaliana</i> tolerance to <i>Pseudomonas viridiflava</i>
The AtMYB60 transcription factor regulates stomatal opening by modulating oxylipin synthesis in guard cells
The diversity of quinoa morphological traits and seed metabolic composition
Autophagy modulates the metabolism and growth of tomato fruit during development
Identification of a Hydroxygallic Acid Derivative, Zingibroside R1 and a Sterol Lipid as Potential Active Ingredients of Cuscuta chinensis Extract That Has Neuroprotective and Antioxidant Effects in Aged Caenorhabditis elegans
Selection and adaptive introgression guided the complex evolutionary history of the European common bean
Mass spectrometry-based metabolomics: a guide for annotation, quantification and best reporting practices
MicroTom Metabolic Network: Rewiring Tomato Metabolic Regulatory Network throughout the Growth Cycle
The Penium margaritaceum Genome: Hallmarks of the Origins of Land Plants
Auto-deconvolution and molecular networking of gas chromatography–mass spectrometry data
Quantitative trait loci analysis of seed‐specialized metabolites reveals seed‐specific flavonols and differential regulation of glycoalkaloid content in tomato
Quantitative Trait Loci Analysis Identifies a Prominent Gene Involved in the Production of Fatty Acid-Derived Flavor Volatiles in Tomato
A plastidial pantoate transporter with a potential role in pantothenate synthesis
A <i>Solanum neorickii</i> introgression population providing a powerful complement to the extensively characterized <i>Solanum pennellii</i> population
De Novo Assembly of a New <i>Solanum pennellii</i> Accession Using Nanopore Sequencing
Canalization of Tomato Fruit Metabolism
Identification and Mode of Inheritance of Quantitative Trait Loci for Secondary Metabolite Abundance in Tomato
The genome of the stress-tolerant wild tomato species Solanum pennellii
Resolution by recombination: breaking up Solanum pennellii introgressions