Microspore Embryo Induction and Development in Higher Plants: Cytological and Ultrastructural Aspects
暂无分享,去创建一个
[1] C. Clément,et al. Differential development of plastids during microspore embryogenesis in barley , 1999, Protoplasma.
[2] E. Heberle‐Bors,et al. Cellular changes during the acquisition of embryogenic potential in isolated pollen grains ofNicotiana tabacum , 1995, Protoplasma.
[3] M. Jardinaud,et al. uidA gene transfer and expression in maize microspores using the biolistic method , 1995, Protoplasma.
[4] R. Sangwan,et al. Ultrastructural localization of acid phosphatase during male meiosis and sporogenesis inDatura: Evidence for digestion of cytoplasmic structures in the vacuoles , 1989, Protoplasma.
[5] B. Sangwan-Norreel,et al. Ultrastructural cytology of plastids in pollen grains of certain androgenic and nonandrogenic plants , 1987, Protoplasma.
[6] R. Sangwan,et al. Ribosomal bodies specific to both pollen and zygotic embryogenesis inDatura , 1982, Experientia.
[7] M. Jardinaud,et al. Optimisation of DNA transfer and transientβ-glucuronidase expression in electroporated maize (Zea mays L.) microspores , 2005, Plant Cell Reports.
[8] C. Dumas,et al. Proteins produced by barley microspores and their derived androgenic structures promote in vitro zygotic maize embryo formation , 2003, Plant Cell, Tissue and Organ Culture.
[9] C. Dumas,et al. Genes normally expressed in the endosperm are expressed at early stages of microspore embryogenesis in maize , 2000, Plant Molecular Biology.
[10] Jiahua Xie,et al. Improved isolated microspore culture efficiency in medium with maltose and optimized growth regulator combination in japonica rice (Oryza sativa) , 1995, Plant Cell, Tissue and Organ Culture.
[11] I. Romagosa,et al. Production of large number of doubled haploid plants from barley anthers pretreated with high concentrations of mannitol , 1994, Plant Cell Reports.
[12] J. Cordewener,et al. Temperature controls both gametophytic and sporophytic development in microspore cultures of Brassica napus , 1994, Plant Cell Reports.
[13] K. Kao. Viability, cell division and microcallus formation of barley microspores in culture , 1993, Plant Cell Reports.
[14] E. Heberle‐Bors,et al. Derepression of the cell cycle by starvation is involved in the induction of tobacco pollen embryogenesis , 1992, Sexual Plant Reproduction.
[15] P. Alderson,et al. Plant tissue culture and its agricultural applications , 1989, Plant Growth Regulation.
[16] C. Clément,et al. Plastid ultrastructure and DNA related to albinism in androgenetic embryos of various barley (Hordeum vulgare L.) cultivars , 2004, Plant Cell, Tissue and Organ Culture.
[17] G. Lamers,et al. Apoptosis in developing anthers and the role of ABA in this process during androgenesis in Hordeum vulgare L. , 2004, Plant Molecular Biology.
[18] R. Sangwan,et al. The tonoplast, a specific marker of embryogenic microspores of Datura cultured in vitro , 2004, Histochemistry.
[19] V. Kauppinen,et al. Efficient regeneration of fertile plants from protoplasts isolated from microspore cultures of barley (Hordeum vulgare L.) , 2004, Plant Cell Reports.
[20] D. Honys,et al. Comparative Analysis of the Arabidopsis Pollen Transcriptome1[w] , 2003, Plant Physiology.
[21] Ji-yeon Lee,et al. Use of Serial Analysis of Gene Expression Technology to Reveal Changes in Gene Expression in Arabidopsis Pollen Undergoing Cold Stress1[w] , 2003, Plant Physiology.
[22] Y. Shim,et al. The influence of pretreatment on cell stage progression and the time of DNA synthesis in barley (Hordeum vulgare L.) uninucleate microspores , 2003, Plant Cell Reports.
[23] C. Clément,et al. Anther culture in barley , 2003 .
[24] M. Coronado,et al. Young microspore-derived maize embryos show two domains with defined features also present in zygotic embryogenesis. , 2002, The International journal of developmental biology.
[25] C. Clément,et al. Influence of copper sulfate on anther culture in barley (Hordeum vulgare L.) , 2002 .
[26] E. Heberle‐Bors,et al. Tracking individual wheat microspores in vitro: identification of embryogenic microspores and body axis formation in the embryo , 2001, Planta.
[27] C. Clément,et al. Plastid differentiation during androgenesis in albino and non-albino producing cultivars of barley (Hordeum vulgare L.) , 2000, Sexual Plant Reproduction.
[28] B. Barnabás,et al. Cellular approach to the study of androgenesis in maize anthers: immunocytochemical evidence of the involvement of the ubiquitin degradative pathway in androgenesis induction. , 2000 .
[29] K. Kasha,et al. A cytological study of pretreatments used to improve isolated microspore cultures of wheat (Triticum aestivum L.) cv. Chris , 1999 .
[30] J. Kumlehn,et al. Monitoring sporophytic development of individual microspores of barley (Hordeum vulgare L.) , 1999 .
[31] C. Clément,et al. Androgenesis and albinism in Poaceae: influence of genotype and carbohydrates , 1999 .
[32] E. Matthys-Rochon,et al. Androgenic development: a fascinating embryo formation process , 1999 .
[33] C. Clément,et al. Anther and pollen : from biology to biotechnology , 1999 .
[34] B. Oppedijk,et al. Programmed cell death during androgenesis in Hordeum vulgare L. , 1999 .
[35] L. Fowke,et al. Comparative Morphological Study of Zygotic and Microspore-derived Embryos ofBrassica napusL. as Revealed by Scanning Electron Microscopy , 1998 .
[36] J. Cordewener,et al. A short severe heat shock is required to induce embryogenesis in late bicellular pollen of Brassica napus L. , 1997, Sexual Plant Reproduction.
[37] E. Heberle‐Bors,et al. Initiation of microspore embryogenesis by stress , 1997 .
[38] Q. Yao,et al. Biolistic transformation of haploid isolated microspores of barley (Hordeum vulgare L.). , 1997, Genome.
[39] H. Mogensen,et al. INVITED SPECIAL PAPER: The hows and whys of cytoplasmic inheritance in seed plants , 1996 .
[40] H. Mogensen,et al. The hows and whys of cytoplasmic inheritance in seed plants , 1996 .
[41] J. Cordewener,et al. Molecular and biochemical events during the induction of microspore embryogenesis , 1996 .
[42] P. Testillano,et al. The immunolocalization of nuclear antigens during the pollen developmental program and the induction of pollen embryogenesis. , 1995, Experimental cell research.
[43] A. Jähne,et al. Cereal microspore culture , 1995 .
[44] K. Lindsey,et al. The Significance of Microspore Division and Division Symmetry for Vegetative Cell-Specific Transcription and Generative Cell Differentiation. , 1995, The Plant cell.
[45] T. Loeb,et al. Transient expression of the uidA gene in pollen embryoids of wheat following microprojectile bombardment , 1994 .
[46] A. Mordhorst,et al. Embryogenesis and development of isolated barley (Hordeum vulgare L.) microspores are influenced by the amount and composition of nitrogen sources in culture media , 1993 .
[47] B. Sangwan-Norreel,et al. Agrobacterium-mediated transformation of pollen embryos in Datura innoxia and Nicotiana tabacum: production of transgenic haploid and fertile homozygous dihaploid plants , 1993 .
[48] I. Szarejko,et al. The effect of sugars and growth regulators on embryoid formation and plant regeneration from barley anther culture , 1992 .
[49] P. Devaux. Haploidy in Barley and Wheat Improvement , 1992 .
[50] P. Shewry. Barley: genetics, biochemistry, molecular biology and biotechnology , 1992 .
[51] D. Luckett,et al. Utilisation of Microspore Culture in Wheat and Barley Improvement , 1992 .
[52] F. Heidekamp,et al. Anther and microspore culture of Hordeum vulgare L. cv. Igri , 1992 .
[53] D. Luckett,et al. Doubled Haploid Production by Anther Culture for Australian Barley Breeding , 1992 .
[54] P. Shewry,et al. Haploid production: approaches and use in plant breeding. , 1992 .
[55] C. Dumas,et al. Reproductive Biology and Plant Breeding , 1992, Springer Berlin Heidelberg.
[56] R. Hill,et al. High frequency of pollen embryoid formation and plant regeneration in Triticum aestivum L. on monosaccharide containing media , 1990 .
[57] V. Žárský,et al. Biochemical and Cytological Changes in Young Tobacco Pollen during in vitro Starvation in Relation to Pollen Embryogenesis , 1990 .
[58] H. Nijkamp,et al. Progress in Plant Cellular and Molecular Biology , 1990, Current Plant Science and Biotechnology in Agriculture.
[59] B. Sangwan-Norreel,et al. Biochemical cytology of pollen embryogenesis , 1987 .
[60] R. Lyne,et al. 37 – EMBRYOID AND PLANT PRODUCTION FROM CULTURED BARLEY ANTHERS , 1986 .
[61] R. Sangwan. Formation and cytochemistry of nuclear vacuoles during meiosis in datura , 1986 .
[62] R. Sangwan,et al. Cold-treatment Related Structural Modifications in the Embryogenic Anthers of Datura , 1984 .
[63] B. Sangwan-Norreel. Male gametophyte nuclear DNA content evolution during androgenic induction in Datura innoxia Mill , 1983 .
[64] B. S. Sangwan-Norreel. Evolution in vitro du contenu en ADN nucléaire et de la ploïdie des embryons polliniques du Datura innoxia , 1981 .
[65] B. Sangwan-Norreel,et al. Biochemical and structural aspects of induction and development of pollen-embryos in Datura , 1980 .
[66] B. Sangwan-Norreel. Cytochemical and ultrastructural peculiarities of embryogenic pollen grains and of young androgenic embryos in Datura innoxia , 1978 .
[67] V. Raghavan. Role of the Generative Cell in Androgenesis in Henbane , 1976, Science.
[68] V. Raghavan. Experimental embryogenesis in vascular plants , 1976 .
[69] B. Vazart. Formation d'embryoides à partir de microspores de tabac: Evolution de l'infrastructure des cellules au cours de la première semaine de culture des anthères , 1973 .
[70] R. Knox. Pollen-wall proteins: localization, enzymic and antigenic activity during development in Gladiolus (iridaceae). , 1971, Journal of cell science.
[71] B. Norreel. Étude cytologique de l'androgénèse expérimentale chez Nicotiania tabacum et Datura innoxia , 1970 .
[72] H. Dickinson,et al. Elimination of Ribosomes during Meiotic Prophase , 1967, Nature.
[73] S. Maheshwari,et al. Cell Division and Differentiation of Embryos in the Pollen Grains of Datura in vitro , 1966, Nature.
[74] S. Maheshwari,et al. In vitro Production of Embryos from Anthers of Datura , 1964, Nature.