Martin Yanofsky

Cell and Developmental Biology University of California, San Diego, La Jolla, CA 
"Martin Yanofsky"

DOI: 10.1038/35056041 Martin Yanofsky received his Ph.D. from Eugene Nester's laboratory at the University of Washington, studying the mechanism of T-DNA transfer from Agrobacterium to plants. As a postdoctoral fellow in Elliot Meyerowitz's laboratory at CalTech, …


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Eugene W. Nester grad student 1986 University of Washington (Cell Biology Tree)
 (Early events in the Agrobacterium tumefaciens - plant interaction)
Elliot M Meyerowitz post-doc Caltech


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Sarah J. Liljegren grad student
Anusak Pinyopich grad student 2003 UCSD
José R. Dinneny grad student 2005 UCSD
Adrienne H. Roeder grad student 2005 UCSD
Kristina Gremski grad student 2006 UCSD
Gary S Ditta research scientist UCSD
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Balanzà V, Martínez-Fernández I, Sato S, et al. (2019) Inflorescence Meristem Fate Is Dependent on Seed Development and FRUITFULL in . Frontiers in Plant Science. 10: 1622
Ripoll JJ, Zhu M, Brocke S, et al. (2019) Growth dynamics of the fruit is mediated by cell expansion. Proceedings of the National Academy of Sciences of the United States of America. 116: 25333-25342
Gomez MD, Barro-Trastoy D, Escoms E, et al. (2018) Gibberellins negatively modulate ovule number in plants. Development (Cambridge, England)
Balanzà V, Martínez-Fernández I, Sato S, et al. (2018) Genetic control of meristem arrest and life span in Arabidopsis by a FRUITFULL-APETALA2 pathway. Nature Communications. 9: 565
Rodríguez-Cazorla E, Ortuño-Miquel S, Candela H, et al. (2018) Ovule identity mediated by pre-mRNA processing in Arabidopsis. Plos Genetics. 14: e1007182
Díaz-Manzano FE, Cabrera J, Ripoll JJ, et al. (2017) A role for the gene regulatory module microRNA172/TARGET OF EARLY ACTIVATION TAGGED 1/FLOWERING LOCUS T (miRNA172/TOE1/FT) in the feeding sites induced by Meloidogyne javanica in Arabidopsis thaliana. The New Phytologist
Gaillochet C, Stiehl T, Wenzl C, et al. (2017) Control of plant cell fate transitions by transcriptional and hormonal signals. Elife. 6
Reyes-Olalde JI, Zúñiga-Mayo VM, Serwatowska J, et al. (2017) The bHLH transcription factor SPATULA enables cytokinin signaling, and both activate auxin biosynthesis and transport genes at the medial domain of the gynoecium. Plos Genetics. 13: e1006726
Cosio C, Ranocha P, Francoz E, et al. (2016) The class III peroxidase PRX17 is a direct target of the MADS-box transcription factor AGAMOUS-LIKE15 (AGL15) and participates in lignified tissue formation. The New Phytologist
José Ripoll J, Bailey LJ, Mai QA, et al. (2015) microRNA regulation of fruit growth. Nature Plants. 1: 15036
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