Seed Germination and Dormancy
暂无分享,去创建一个
[1] C. M. Karssen. Hormonal Regulation of Seed Development, Dormancy, and Germination Studied by Genetic Control , 1995 .
[2] R. Mullen,et al. Changes in mRNA populations during loblolly pine (Pinus taeda) seed stratification, germination and post‐germinative growth , 1996 .
[3] J. Bewley,et al. Development of Mitochondrial Activities in Pea Cotyledons during and following Germination of the Axis. , 1980, Plant physiology.
[4] C. Morris,et al. Molecular cloning and expression of abscisic Acid-responsive genes in embryos of dormant wheat seeds. , 1991, Plant physiology.
[5] A. Trewavas,et al. Signal Perception and Transduction: The Origin of the Phenotype. , 1997, The Plant cell.
[6] M. Walker-Simmons. ABA Levels and Sensitivity in Developing Wheat Embryos of Sprouting Resistant and Susceptible Cultivars. , 1987, Plant physiology.
[7] L. Comai,et al. Transcriptional activities in dry seed nuclei indicate the timing of the transition from embryogeny to germination. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[8] J. Sandoval,et al. N-Acylphosphatidylethanolamine in Dry and Imbibing Cottonseeds (Amounts, Molecular Species, and Enzymatic Synthesis) , 1995, Plant physiology.
[9] M. E. Foley,et al. Transcriptional and Posttranscriptional Regulation of Dormancy-Associated Gene Expression by Afterripening in Wild Oat , 1996, Plant physiology.
[10] H. Hilhorst,et al. Primary dormancy in tomato (Lycopersicon esculentum cv. Moneymaker): studies with the sitiens mutant , 1996 .
[11] D. Cosgrove. Relaxation in a high-stress environment: the molecular bases of extensible cell walls and cell enlargement. , 1997, The Plant cell.
[12] R. Sánchez,et al. Phytochrome promotion of mannan-degrading enzyme activities in the micropylar endosperm of Datura ferox seeds requires the presence of the embryo and gibberellin synthesis , 1997, Seed Science Research.
[13] R. Paiva,et al. Effect of abscisic acid on embryo-specific gene expression during normal and precocious germination in normal and viviparous maize (Zea mays) embryos , 2004, Planta.
[14] W. E. Dyer,et al. Characterization of cDNA clones for differentially expressed genes in embryos of dormant and nondormant Avena fatua L. caryopses , 1995, Plant Molecular Biology.
[15] M. A. Ajtkhozhin,et al. Informosomes as a stored form of mRNA in wheat embryos , 1976, FEBS letters.
[16] J. Bewley,et al. A Role for the Surrounding Fruit Tissues in Preventing the Germination of Tomato (Lycopersicon esculentum) Seeds : A Consideration of the Osmotic Environment and Abscisic Acid. , 1992, Plant physiology.
[17] W. E. Dyer. Dormancy‐associated embryonic mRNAs and proteins in imbibing Avena fatua caryopses , 1993 .
[18] Y. Morohashi,et al. Physiological Studies on Germination of Phaseolus mungo Seeds II. GLUCOSE AND ORGANIC-ACID METABOLISMS IN THE EARLY PHASES OF GERMINATION , 1972 .
[19] S. McQueen-Mason,et al. Expansin Mode of Action on Cell Walls (Analysis of Wall Hydrolysis, Stress Relaxation, and Binding) , 1995, Plant physiology.
[20] M. Pagés,et al. Regulation of Gene Expression in Developing Zea mays Embryos: Protein Synthesis during Embryogenesis and Early Germination of Maize. , 1986, Plant physiology.
[21] J. Bewley,et al. Gene expression in seed development and germination. , 1990, Progress in nucleic acid research and molecular biology.
[22] J. H. Wilson,et al. Weakening of muskmelon perisperm envelope tissue during germination , 1995 .
[23] B. Lane. Oxalate, germin, and the extracellular matrix of higher plants , 1994, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[24] W. Peumans,et al. Some aspects of the synthesis of long-lived messenger ribonucleoproteins in developing rye embryos , 2004, Planta.
[25] J. Bewley,et al. Sensitivity to Abscisic Acid and Osmoticum Changes During Embryogenesis of Alfalfa (Medicago sativa) , 1991 .
[26] D. Cantliffe,et al. Mechanical Resistance of the Seed Coat and Endosperm during Germination of Capsicum annuum at Low Temperature. , 1983, Plant physiology.
[27] J. Bewley,et al. Long-term storage of dormant Grand Rapids lettuce seeds in the imbibed state: physiological and metabolic changes , 1983, Planta.
[28] P. Schopfer,et al. Control of Seed Germination by Abscisic Acid : III. Effect on Embryo Growth Potential (Minimum Turgor Pressure) and Growth Coefficient (Cell Wall Extensibility) in Brassica napus L. , 1985, Plant physiology.
[29] F. Botha,et al. Respiratory metabolism and gene expression during seed germination , 1992, Plant Growth Regulation.
[30] M. E. Foley,et al. Differential polypeptide patterns in imbibed dormant and after-ripened Avena fatua embryos , 1994 .
[31] E. Grill,et al. A protein phosphatase 2C involved in ABA signal transduction in Arabidopsis thaliana. , 1994, Science.
[32] C. M. Karssen,et al. Gibberellin‐biosynthesis and ‐sensitivity mediated stimulation of seed germination of Sisymbrium officinale by red light and nitrate , 1986 .
[33] DNA repair precedes replicative synthesis during early germination in maize , 1987, Plant Molecular Biology.
[34] G. Galau,et al. Changes in late-embryogenesis-abundant (LEA) messenger RNAs and dehydrins during maturation and premature drying ofRicinus communis L. seeds , 2004, Planta.
[35] M. Koornneef,et al. Arabidopsis Mutants with a Reduced Seed Dormancy , 1996, Plant physiology.
[36] M. Cohn. Operational and philosophical decisions in seed dormancy research , 1996, Seed Science Research.
[37] R. Sánchez,et al. Phytochrome Control of Cellulase Activity in Datura ferox L. Seeds and its Relationship with Germination , 1986 .
[38] H. Nonogaki,et al. An Endo-[beta]-Mannanase Develops Exclusively in the Micropylar Endosperm of Tomato Seeds Prior to Radicle Emergence , 1996, Plant physiology.
[39] J. Bewley,et al. An enzyme to degrade lettuce endosperm cell walls. Appearance of a mannanase following phytochrome- and gibberellin-induced germination , 2004, Planta.
[40] Y. Morohashi. Patterns of mitochondrial development in reserve tissues of germinated seeds: A survey , 1986 .
[41] C. Morris,et al. Cloning and expression of an embryo-specific mRNA up-regulated in hydrated dormant seeds , 1992, Plant Molecular Biology.
[42] J. Aldasoro,et al. Activity of the Pentose Phosphate Pathway and Changes in Nicotinamide Nucleotide Content during Germination of Seeds of Cicer arietinum L. , 1979 .
[43] A. Poljakoff-mayber,et al. Responsiveness to abscisic acid of embryos of dormant oat (Avena sativa) seeds : involvement of ABA-inducible proteins , 1991 .
[44] C. M. Karssen,et al. Gibberellins regulate seed germination in tomato by endosperm weakening: a study with gibberellin-deficient mutants , 1987, Planta.
[45] G. Lang,et al. Population-based models describing seed dormancy behaviour: implications for experimental design and interpretation. , 1996 .
[46] C. M. Karssen,et al. Redefining seed dormancy: an attempt to integrate physiology and ecology , 1995 .
[47] A. Pradet,et al. Quantification of carbon fluxes through the tricarboxylic acid cycle in early germinating lettuce embryos. , 1988, The Journal of biological chemistry.
[48] Elda Beltrán-Peña,et al. Synthesis of ribosomal proteins from stored mRNAs early in seed germination , 1995, Plant Molecular Biology.
[49] H. Hilhorst. A critical update on seed dormancy. I. Primary dormancy , 1995, Seed Science Research.
[50] C. M. Karssen,et al. Strongly reduced levels of endogenous abscisic acid in developing seeds of tomato mutant sitiens do not influence in vivo accumulation of dry matter and storage proteins , 1991 .
[51] H. Goodman,et al. Isolation of the Arabidopsis ABI3 gene by positional cloning. , 1992, The Plant cell.
[52] M. Koornneef,et al. A Seed Shape Mutant of Arabidopsis That Is Affected in Integument Development. , 1994, The Plant cell.
[53] M. Walker-Simmons,et al. Synthesis of abscisic Acid-responsive, heat-stable proteins in embryonic axes of dormant wheat grain. , 1990, Plant physiology.
[54] C. M. Karssen,et al. Key Role for Endogenous Gibberellins in the Control of Seed Germination , 1989 .
[55] J. Dommes,et al. Polysome formation and incorporation of new ribosomes into polysomes during germination of the embryonic axis of maize , 1990 .
[56] C. M. Karssen,et al. Gibberellin-induced hydrolysis of endosperm cell walls in gibberellin-deficient tomato seeds prior to radicle protrusion , 1988, Planta.
[57] F. Ouellette,et al. The Cooperative Role of Endo-β-Mannanase, β-Mannosidase and α-Galactosidase in the Mobilization of Endosperm Cell Wall Hemicelluloses of Germinated Lettuce Seed , 1983 .
[58] K. Bradford,et al. Water Relations of Seed Development and Germination in Muskmelon (Cucumis melo L.) : V. Water Relations of Imbibition and Germination. , 1990, Plant physiology.
[59] N. Kawakami,et al. Differential Changes in Levels of mRNAs during Maturation of Wheat Seeds That Are Susceptible and Resistant to Preharvest-Sprouting , 1992 .
[60] J. Carde,et al. Oxidative phosphorylation by mitochondria extracted from dry sunflower seeds. , 1991, Plant physiology.
[61] J. Chory,et al. Light modulation of vegetative development. , 1997, The Plant cell.
[62] E. Munthe,et al. A peroxiredoxin antioxidant is encoded by a dormancy-related gene,Per1, expressed during late development in the aleurone and embryo of barley grains , 1996, Plant Molecular Biology.
[63] R. E. Sharp,et al. Root Growth Maintenance at Low Water Potentials (Increased Activity of Xyloglucan Endotransglycosylase and Its Possible Regulation by Abscisic Acid) , 1994, Plant physiology.
[64] D. Osborne,et al. DNA and desiccation tolerance , 1994, Seed Science Research.
[65] A. Trewavas. Timing and memory processes in seed embryo dormancy – a conceptual paradigm for plant development questions , 1987 .
[66] D. McCarty. Genetic control and integration of maturation and germination pathways in seed development , 1995 .
[67] J. Bewley,et al. Changes in germination and respiratory potential of embryos of dormant Grand Rapids lettuce seeds during long-term imbibed storage, and related changes in the endosperm , 1984, Planta.
[68] J. Giraudat,et al. Arabidopsis ABA response gene ABI1: features of a calcium-modulated protein phosphatase. , 1994, Science.
[69] G. Leubner-Metzger,et al. Class I [beta]-1,3-Glucanases in the Endosperm of Tobacco during Germination , 1995, Plant physiology.
[70] Liwen Jiang,et al. Role of desiccation in the termination of expression of genes for storage proteins , 1994, Seed Science Research.
[71] K. Bradford,et al. Endo-[beta]-Mannanase Activity from Individual Tomato Endosperm Caps and Radicle Tips in Relation to Germination Rates , 1997, Plant physiology.
[72] C. M. Karssen,et al. In Vivo Inhibition of Seed Development and Reserve Protein Accumulation in Recombinants of Abscisic Acid Biosynthesis and Responsiveness Mutants in Arabidopsis thaliana. , 1989, Plant physiology.
[73] F. Katterman,et al. Storage and metabolism of poly(adenylic acid)-mRNA in germinating cotton seeds. , 1975, Biochemistry.
[74] J. Bewley. Protein and Nucleic Acid Synthesis During Seed Germination and Early Seedling Growth , 1982 .
[75] M. Ehrenshaft,et al. Respiration and mitochondrial biogenesis in germinating embryos of maize. , 1990, Plant physiology.
[76] J. Bewley,et al. Developing tomato seeds when removed from the fruit produce multiple forms of germinative and post-germinative endo-β-mannanase. Responses to desiccation, abscisic acid and osmoticum , 1996, Planta.