Kenong Xu, Ph.D.

Affiliations: 
2000 University of California, Davis, Davis, CA 
Area:
Genetics, Agronomy Agriculture, Agricultural Engineering
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"Kenong Xu"

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David J. MacKill grad student 2000 UC Davis
 (Towards positional cloning of the rice submergence tolerance locus Sub1.)
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Publications

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Ban S, El-Sharkawy I, Zhao J, et al. (2022) An apple somatic mutation of delayed fruit maturation date is primarily caused by a retrotransposon insertion associated large deletion. The Plant Journal : For Cell and Molecular Biology
Ban S, Xu K. (2020) Identification of two QTLs associated with high fruit acidity in apple using pooled genome sequencing analysis. Horticulture Research. 7: 171
Ban S, Xu K. (2020) Identification of two QTLs associated with high fruit acidity in apple using pooled genome sequencing analysis. Horticulture Research. 7: 171
Dougherty L, Bai T, Brown S, et al. (2020) Exploring DNA Variant Segregation Types Enables Mapping Loci for Recessive Phenotypic Suppression of Columnar Growth in Apple. Frontiers in Plant Science. 11: 692
Hu Y, Han Z, Sun Y, et al. (2020) ERF4 affects fruit firmness through TPL4 by reducing ethylene production. The Plant Journal : For Cell and Molecular Biology
Li CL, Dougherty L, Coluccio AE, et al. (2019) Apple ALMT9 requires a conserved C-terminal domain for malate transport underlying fruit acidity. Plant Physiology
Dougherty L, Singh R, Brown S, et al. (2018) Exploring DNA variant segregation types in pooled genome sequencing enables effective mapping of weeping trait in Malus. Journal of Experimental Botany
Duan N, Bai Y, Sun H, et al. (2017) Genome re-sequencing reveals the history of apple and supports a two-stage model for fruit enlargement. Nature Communications. 8: 249
Dougherty L, Zhu Y, Xu K. (2016) Assessing the allelotypic effect of two aminocyclopropane carboxylic acid synthase-encoding genes MdACS1 and MdACS3a on fruit ethylene production and softening in Malus. Horticulture Research. 3: 16024
El-Sharkawy I, Liang D, Xu K. (2015) Transcriptome analysis of an apple (Malus × domestica) yellow fruit somatic mutation identifies a gene network module highly associated with anthocyanin and epigenetic regulation. Journal of Experimental Botany
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