Fruit Development and Seed Dispersal by Lars Ostergaard

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By Lars Ostergaard

Fruit improvement and seed dispersal are significant issues inside plant and crop sciences study with vital advancements in examine being mentioned on a regular basis. Drawing jointly stories by way of a few of the world's best specialists in those parts, the Editor of this quantity, Lars Ostergaard has supplied a quantity that's a vital buy for all these operating in plant and crop sciences around the globe.

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Fruit Development and Seed Dispersal

Fruit improvement and seed dispersal are significant themes inside plant and crop sciences learn with very important advancements in learn being mentioned frequently. Drawing jointly experiences by means of a few of the world's major specialists in those parts, the Editor of this quantity, Lars Ostergaard has supplied a quantity that's an important buy for all these operating in plant and crop sciences world wide.

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M. (1991) The war of the whorls – genetic interactions controlling flower development. Nature 353, 31–37. C. J. (1995) The petunia MADS box gene FBP11 determines ovule identity. Plant Cell 7, 1859–1868. , Sommer, H. and Schwarz-Sommer, Z. (1999) PLENA and FARINELLI: redundancy and regulatory interactions between two Antirrhinum MADS-box factors controlling flower development. Embo Journal 18, 4023–4034. E. and Savolainen, V. (2004) Darwin’s abominable mystery: insights from a supertree of the angiosperms.

And Laufs, P. (2006) The balance between the MIR164A and CUC2 genes controls leaf margin serration in Arabidopsis. Plant Cell 18, 2929–2945. Ohri, D. N. (1986) Genome size in gymnosperms. Plant Systematics and Evolution 153, 119–132. K. and Shimura, Y. (1989) Mutational analysis of pistil structure and development of Arabidopsis-Thaliana. Cell Differentiation and Development 28, 27–38. N. (1990) Coniferophytina. U. S. Green). Springer, Berlin. , MacKay, J. F. (2007) ForestTreeDB: a database dedicated to the mining of tree transcriptomes.

Ainsworth). Blackwell, Oxford. Becker, A. and Theissen, G. (2003) The major clades of MADS-box genes and their role in the development and evolution of flowering plants. Molecular Phylogenetics and Evolution 29, 464–489. , Saedler, H. and Theissen, G. (2000) MADS-box gene diversity in seed plants 300 million years ago. Molecular Biology and Evolution 17, 1425–1434. J. S. (2003) Comparisons with Caenorhabditis (similar to 100 Mb) and Drosophila (similar to 175 Mb) using flow cytometry show genome size in Arabidopsis to be similar to 157 Mb and thus similar to 25% larger than the Arabidopsis genome initiative estimate of similar to 125 Mb.

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