Evolutionary, interaction and expression analysis of floral meristem identity genes in inflorescence induction of the second crop in two-crop-a-year grape culture system
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Ying Zhang | Sihong Zhou | X. Bai | Rongrong Guo | Ling Lin | G. Cheng | M. Cao | Xiaofang Shi | Shuyu Xie | Bo Wang
[1] Shuxun Yu,et al. Characterization and Functional Analysis of PEBP Family Genes in Upland Cotton (Gossypium hirsutum L.) , 2016, PloS one.
[2] C. Srinivasan,et al. Flowering in Vitis: Effects oi genotype on cytokinin-induced conversion oi tenddls into inflorescences , 2016 .
[3] Yi Zheng,et al. Evolutionary and expression analysis of a MADS-box gene superfamily involved in ovule development of seeded and seedless grapevines , 2015, Molecular Genetics and Genomics.
[4] Yi Zheng,et al. Evolutionary and expression analysis of a MADS-box gene superfamily involved in ovule development of seeded and seedless grapevines , 2014, Molecular Genetics and Genomics.
[5] L. Carvalho,et al. Heat and water stress induce unique transcriptional signatures of heat-shock proteins and transcription factors in grapevine , 2014, Functional & Integrative Genomics.
[6] M. Wada,et al. Functions of the apple TFL1/FT orthologs in phase transition , 2013 .
[7] Yi Zheng,et al. Genome-wide identification, evolutionary and expression analysis of the aspartic protease gene superfamily in grape , 2013, BMC Genomics.
[8] Peer Bork,et al. SMART 7: recent updates to the protein domain annotation resource , 2011, Nucleic Acids Res..
[9] Yali Zhang,et al. Influence of growing season on phenolic compounds and antioxidant properties of grape berries from vines grown in subtropical climate. , 2011, Journal of agricultural and food chemistry.
[10] S. Lavee,et al. Cytokinin-induced VvTFL1A expression may be involved in the control of grapevine fruitfulness , 2011, Planta.
[11] C. You,et al. Ectopic over-expression of two apple Flowering Locus T homologues, MdFT1 and MdFT2, reduces juvenile phase in Arabidopsis , 2010, Biologia Plantarum.
[12] M. Malnoy,et al. Over-expression of an FT-homologous gene of apple induces early flowering in annual and perennial plants , 2010, Planta.
[13] S. Moriya,et al. Molecular characterization of FLOWERING LOCUS T-like genes of apple (Malus x domestica Borkh.). , 2010, Plant & cell physiology.
[14] M. Trought,et al. The Flowering Process of Vitis vinifera: A Review , 2009, American Journal of Enology and Viticulture.
[15] H. Flachowsky,et al. RNAi-silencing of MdTFL1 induces early flowering in apple. , 2009 .
[16] S. Swain,et al. Functional characterization of AP3, SOC1 and WUS homologues from citrus (Citrus sinensis). , 2007, Physiologia plantarum.
[17] Antonio Serrano-Mislata,et al. Floral initiation and inflorescence architecture: a comparative view. , 2007, Annals of botany.
[18] J. Martínez-Zapater,et al. The FT/TFL1 gene family in grapevine , 2007, Plant Molecular Biology.
[19] M. Thomas,et al. VvFT and VvMADS8, the grapevine homologues of the floral integrators FT and SOC1, have unique expression patterns in grapevine and hasten flowering in Arabidopsis. , 2006, Functional plant biology : FPB.
[20] François Parcy,et al. How Floral Meristems are Built , 2006, Plant Molecular Biology.
[21] Wolfgang Busch,et al. Integration of Spatial and Temporal Information During Floral Induction in Arabidopsis , 2005, Science.
[22] K. Goto,et al. FD, a bZIP Protein Mediating Signals from the Floral Pathway Integrator FT at the Shoot Apex , 2005, Science.
[23] Detlef Weigel,et al. The Floral Regulator LEAFY Evolves by Substitutions in the DNA Binding Domain , 2005, Science.
[24] M. Wada,et al. MdTFL1, a TFL1-like gene of apple, retards the transition from the vegetative to reproductive phase in transgenic Arabidopsis , 2005 .
[25] J. Martínez-Zapater,et al. Floral Meristem Identity Genes Are Expressed during Tendril Development in Grapevine1 , 2004, Plant Physiology.
[26] Paul K. Boss,et al. New insights into grapevine flowering. , 2003, Functional plant biology : FPB.
[27] J. Martínez-Zapater,et al. VFL, the Grapevine FLORICAULA/LEAFYOrtholog, Is Expressed in Meristematic Regions Independently of Their Fate1 , 2002, Plant Physiology.
[28] M. Wada,et al. Overexpression of MdMADS5, an APETALA1-like gene of apple, causes early flowering in transgenic Arabidopsis , 2002 .
[29] D. Weigel,et al. NFL1, a Nicotiana tabacum LEAFY-like gene, controls meristem initiation and floral structure. , 2001, Plant & cell physiology.
[30] Jianchang Yang,et al. Hormonal changes in the grains of rice subjected to water stress during grain filling. , 2001, Plant physiology.
[31] J. S. Lee,et al. The AGAMOUS-LIKE 20 MADS domain protein integrates floral inductive pathways in Arabidopsis. , 2000, Genes & development.
[32] Y. Kobayashi,et al. A pair of related genes with antagonistic roles in mediating flowering signals. , 1999, Science.
[33] M. Jamilena,et al. FALSIFLORA, the tomato orthologue of FLORICAULA and LEAFY, controls flowering time and floral meristem identity. , 1999, The Plant journal : for cell and molecular biology.
[34] D. Weigel,et al. A genetic framework for floral patterning , 1998, Nature.
[35] E. Coen,et al. Inflorescence Commitment and Architecture in Arabidopsis , 1997, Science.
[36] B. G. Coombe,et al. Growth Stages of the Grapevine: Adoption of a system for identifying grapevine growth stages , 1995 .
[37] S. Shannon,et al. Genetic Interactions That Regulate Inflorescence Development in Arabidopsis. , 1993, The Plant cell.
[38] Alain Bouquet,et al. Biology of the Grapevine , 1992 .
[39] J. C. Morrison. Bud Development in Vitis vinifera L. , 1991, Botanical Gazette.
[40] S. Shannon,et al. A Mutation in the Arabidopsis TFL1 Gene Affects Inflorescence Meristem Development. , 1991, The Plant cell.
[41] L. Eliasson,et al. Variation in endogenous cytokinin content during adventitious root formation in pea cuttings , 1988 .
[42] U. Posluszny,et al. Morphological and anatomical development in the Vitaceae. I: Vegetative development in Vitis riparia , 1988 .
[43] U. Posluszny,et al. The vegetative and floral development of the hybrid grape cultivar ‘Ventura’ , 1986 .
[44] C. Srinivasan,et al. Physiology of Flowering in the Grapevine — a Review , 1981, American Journal of Enology and Viticulture.
[45] C. Srinivasan,et al. Effects of Temperature and Growth Regulators on Formation of Anlagen, Tendrils and Inflorescences in Vitis vinifera L. , 1980 .
[46] A. Sugiura,et al. Effects of CCC and Pinching Treatment on the Inflorescence Induction and Development on Lateral Shoots in Grapevine , 1978 .
[47] C. Srinivasan,et al. Control of Flowering in the Grapevine (Vitis vinifera L.): Formation of Inflorescences in Vitro by Isolated Tendrils. , 1978, Plant physiology.
[48] J. Zeevaart. Physiology of Flower Formation , 1976 .
[49] C. Pratt. Vegetative Anatomy of Cultivated Grapes--A Review , 1974, American Journal of Enology and Viticulture.
[50] C. Pratt. Reproductive Anatomy in Cultivated Grapes - A Review , 1971, American Journal of Enology and Viticulture.
[51] S. Tucker,et al. ONTOGENY OF THE TENDRIL IN VITIS VINIFERA , 1968 .