Identification of regulatory molecules involved in pollen development and ovary growth in tomato plants.
PID2021-123705OB-I00
Duración: 1/9/2022 a 31/08/2025.Entidad financiadora: MICINN
IP: Concha Gómez Mena.
El objetivo general del grupo se dirige hacia el estudio de genes implicados en el proceso de floración (transición, inducción, morfogénesis y desarrollo de flores y frutos) con vistas a su utilización biotecnológica en la producción de plantas modificadas genéticamente con interés agronómico (leguminosas, tomate, melocotonero, tabaco, Paulownia, etc.).
SUPERMAN strikes again in legumes
Frontiers in Plant Science 14:1120342. doi: 10.3389/fpls.2023.1120342
The tapetal tissue is essential for the maintenance of redox homeostasis during microgametogenesis in tomato.
The Plant Journal 112,1281–1297. doi: 10.1111/tpj.16014.
Editorial: Advances in Pollen Research: Biology, Biotechnology, and Plant Breeding Applications.
PsEND1 is a key player in pea pollen development through the modulation of redox homeostasis
Frontiers in Plant Science 12:765277
MtSUPERMAN plays a key role in compound inflorescence and flower development in Medicago truncatula
The Plant Journal 105 (3): 816-830. doi.org/10.1111/tpj.15075
Isolation and Functional Analysis of a PISTILLATA-like MADS-Box Gene from Argan Tree (Argania spinosa).
Plants (Basel) 10(8):1665. doi:10.3390/plants10081665
PLANTS ON DEMAND: Genome editing for plant improvement.
Metode Science Studies Journal (11), pp.25-29.
Engineered Male Sterility by Early Anther Ablation Using the Pea Anther-Specific Promoter PsEND1
Frontiers in Plant Science 10:819
The DOF transcription factor SlDOF10 regulates vascular tissue formation during ovary development in tomato
Frontiers in Plant Science 10:216
Chapter 1. Grain and forage legumes: nutritional value and agriculture sustainability. In Functional genomics in Medicago truncatula. Methods and Protocols.
Methods in Molecular Biology Series nº 1822
Chapter 18. Functional genomics and genetic control of floral and fruit development in Medicago truncatula: an overview. In Functional genomics in Medicago truncatula. Methods and Protocols
Methods in Molecular Biology Series nº 1822
Chapter 2. Model legumes: functional genomics tools in Medicago truncatula. In Functional genomics in Medicago truncatula. Methods and Protocols.
Methods in Molecular Biology Series nº 1822
Enzymatic Assays and Enzyme Histochemistry of Tuta absoluta Feeding on Tomato Leaves.
Bio-protocol 8(17): e2993
Functional genomics in Medicago truncatula. Methods and Protocols.
Methods in Molecular Biology Series nº 1822
Non-isotopic RNA In Situ Hybridization for Functional Analyses in Medicago truncatula
Methods in Molecular Biology 1822(10):133-144
Developmental landmarks during flower development in jalapeño chili pepper (Capsicum annuum L.) and the effect of gibberellin in ovary growth
Plant Reproduction 30(3): 119-129
Expression of two barley proteinase inhibitors in tomato promotes endogenous defensive response and enhances resistance to Tuta absoluta
BMC Plant Biology 18:24
Metabolic engineering to simultaneously activate anthocyanin and proanthocyanidin biosynthetic pathways in Nicotiana spp
PLoS One 12(9): e0184839
The parthenocarpic hydra mutant reveals a new function for a SPOROCYTELESS-like gene in the control of fruit set in tomato
New Phytologist 214 (3): 1198-1212
Combining enhanced biomass density with reduced lignin level for improved forage quality
Plant Biotechnology Journal 14: 895-904
Evolution by gene duplication of Medicago truncatula PISTILLATA-like transcription factors
Journal of Experimental Botany 67: 1805-1817
Two euAGAMOUS genes control C-function in Medicago truncatula
PLoS ONE 9: e103770
Early anther ablation triggers parthenocarpic fruit development in tomato
Plant Biotechnology Journal 11: 770-779
PsPMEP a pollen-specific pectin methylesterase of pea (Pisum sativum L.)
Plant Reproduction 26: 245-254
Production of engineered long-life and male sterile Pelargonium plants
BMC Plant Biology 12: 156-172
VEGETATIVE1 is essential for development of the compound inflorescence in pea
Nature Communications 3: 797
Efficient transformation of Kalanchoe blossfeldiana and production of male-sterile plants by engineered anther ablation
Plant Cell Reports 29: 61-77
The pea PsEND1 promoter drives the expression of GUS in transgenic wheat at the binucleate microspores stage and during pollen tube development
Molecular Breeding 21: 401-405
The PsEND1 promoter: a novel tool to produce genetically engineered male-sterile plants by early anther ablation
Plant Cell Reports 26: 313-325
Isolation of mtpim proves Tnt1 a useful reverse genetics tool in Medicago truncatula and uncovers new aspects of AP1-like functions in legumes
Plant Physiology 142: 972-983
Functional conservation of PISTILLATA activity in a pea homolog lacking the PI motif
Plant Physiology 139: 174-185
Transformation and regeneration of peach plants (Prunus persica L.) from embryo sections using the green fluorescent protein (GFP) as a vital marker
Molecular Breeding 14: 419-427
Floral development of the model legume Medicago truncatula: ontogeny studies to characterize homeotic mutations
Sexual Plant Reproduction 15: 231-241
Monoclonal antibodies as developmental markers to characterize pea floral homeotic transformation
Sexual Plant Reproduction 15: 141-152
A new and efficient system for plant regeneration independent of exogenous growth regulators suitable for dicotyledoneus Agrobacterium mediated plant engineering
Plant Cell Tissue and Organ Culture 67: 173-180
Analysis of PEAM4, the pea AP1 functional homologue, supports a model for AP1-like genes controlling both floral meristem and floral organ identity in different plant species
Plant Journal 25: 441-451
Up-regulation of genes encoding novel extracellular proteins during fruit set in pea
Plant Molecular Biology 46: 373-382
Flower development in pisum sativum: from the war of the whorls to the battle of the common primordia
Developmental Genetics 25: 280-290
Immunolocalization of lipoxygenase in pea (Pisum sativum L.) carpels
Plant Cell Reports 15: 620-626
Repression of the pea lipoxygenase gene loxg is associated with carpel development
Plant Molecular Biology 27: 887-899
Identification of regulatory molecules involved in pollen development and ovary growth in tomato plants.
PID2021-123705OB-I00
Duración: 1/9/2022 a 31/08/2025.Entidad financiadora: MICINN
IP: Concha Gómez Mena.
Red Temática de Cultivo in vitro y Transformación genética de Especies Frutales. (BIO2007-30945-E), /30-05-2010.
Gómez, M.D., Cañas, L.A., Madueño, F., Beltrán, J.P. Oficina Española de Patentes y Marcas 2164599 (solicitud nº: P200000814). WO2001/73088 A1; US7,078,593 B2; CSIC-UPV. PCT/ES01/00127.
Roque E., Ellul P., Gómez, M.D., Madueño, F., Beltrán, J.P., Cañas, L.A. Oficina Española de Patentes y Marcas 2265232 (solicitud nº: P200401761). WO2006/095034; US2009/0089900 A1; EP 1801222 A1. CSIC-UPV. PCT/ES2005/070102.
Cañas, L. A., Medina, M., Roque, E.,Castellblanque, L., Pineda, B., García-Sogo, B., Moreno, V., Beltrán J.P. Oficina Española de Patentes y Marcas 2319842 (nº solicitud: P200700618). WO2008/107509 A1. CSIC-UPV. PCT/ES2008/070043.
Edición de genes de tomate implicados en la gametogénesis masculina.
Tipo: Tesis Doctorales
Tipo: Tesis Doctorales
Tipo: Tesis Doctorales