Drosophila melanogaster and the future of 'evo-devo' biology in space. Challenges and problems in the path of an eventual colonization project outside the earth.
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Roberto Marco | David Husson | Raul Herranz | Jesús Mateos | F Javier Medina | R. Marco | R. Herranz | F. Medina | D. Husson | Jesús Mateos | David Husson
[1] K. O'Connor,et al. Tri‐dimensional prostate cell cultures in simulated microgravity and induced changes in lipid second messengers and signal transduction , 2001, Journal of cellular and molecular medicine.
[2] M L Lewis,et al. cDNA microarray reveals altered cytoskeletal gene expression in space‐flown leukemic T lymphocytes (Jurkat) , 2001, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[3] A. Cogoli,et al. Simulated microgravity inhibits the genetic expression of interleukin‐2 and its receptor in mitogen‐activated T lymphocytes , 1998, FEBS letters.
[4] R. Weindruch,et al. Decreased mitochondrial RNA levels without accumulation of mitochondrial DNA deletions in aging Drosophila melanogaster. , 1998, Mutation research.
[5] B. S. Baker,et al. Gene Expression During the Life Cycle of Drosophila melanogaster , 2002, Science.
[6] M. Noll,et al. Evolution of distinct developmental functions of three Drosophila genes by acquisition of different cis-regulatory regions , 1994, Nature.
[7] I. Vernos,et al. Microgravity effects on the oogenesis and development of embryos of Drosophila melanogaster laid in the Spaceshuttle during the Biorack experiment (ESA). , 1989, The International journal of developmental biology.
[8] Massimo Pigliucci,et al. Phenotypic Plasticity: Beyond Nature and Nurture , 2001 .
[9] S. Gordon,et al. The effects of 10 days of spaceflight on the shuttle Endeavour on predominantly fast-twitch muscles in the rat , 2000, Histochemistry and Cell Biology.
[10] E. Fyrberg,et al. Monitoring development and pathology of Drosophila indirect flight muscles using green fluorescent protein. , 1995, Developmental biology.
[11] D. Wallace. Mitochondrial diseases in man and mouse. , 1999, Science.
[12] Augusto Cogoli,et al. Gravitational and space biology at the cellular level , 1996 .
[13] E H Burger,et al. Microgravity and bone cell mechanosensitivity. , 1998, Bone.
[14] J. den Hertog,et al. Nuclear responses to protein kinase C signal transduction are sensitive to gravity changes. , 1991, Experimental cell research.
[15] J. Miquel,et al. Gravity effects on reproduction, development, and aging. , 1991, Advances in space biology and medicine.
[16] J. Gerhart,et al. Cells, Embryos and Evolution , 1997 .
[17] A. Duprat,et al. Does gravity influence the early stages of the development of the nervous system in an amphibian? , 1998, Brain Research Reviews.
[18] E. Horn,et al. Induction of a Gravity-Related Response by a Single Receptor Cell in an Insect , 1998, Naturwissenschaften.
[19] David Moore,et al. Biological and Medical Research in Space , 1996, Springer Berlin Heidelberg.
[20] Augusto Cogoli,et al. Mitogenic signal transduction in Tlymphocytes in microgravity , 1993, Journal of leukocyte biology.
[21] M L Lewis,et al. Spaceflight and clinorotation cause cytoskeleton and mitochondria changes and increases in apoptosis in cultured cells. , 2001, Acta astronautica.
[22] J. Klein-Nulend,et al. MECHANOTRANSDUCTION IN BONE : ROLE OF THE LACUNOCANALICULAR NETWORK , 1999 .
[23] G. Malacinski. Cytoplasmic organization systems , 1990 .
[24] Marian L. Lewis,et al. Spaceflight alters microtubules and increases apoptosis in human lymphocytes (Jurkat) , 1998, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[25] V. Foe,et al. Mitotic domains reveal early commitment of cells in Drosophila embryos. , 1989, Development.
[26] K. Edwards,et al. GFP-moesin illuminates actin cytoskeleton dynamics in living tissue and demonstrates cell shape changes during morphogenesis in Drosophila. , 1997, Developmental biology.
[27] E. Wang. Age‐dependent atrophy and microgravity travel: what do they have in common? , 1999, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[28] L. Partridge,et al. Optimally, mutation and the evolution of ageing , 1993, Nature.
[29] Michael V Berry,et al. Of flying frogs and levitrons , 1997 .
[30] R. S. Sohal,et al. Extension of life-span by overexpression of superoxide dismutase and catalase in Drosophila melanogaster. , 1994, Science.
[31] R. Raff. Understanding Evolution: The Next Step. (Book Reviews: The Shape of Life. Genes, Development, and the Evolution of Animal Form.) , 1996 .
[32] J. David,et al. Viability and rate of development at different temperatures in Drosophila: a comparison of constant and alternating thermal regimes. , 2001, Journal of thermal biology.
[33] R. Marco,et al. Mitochondrial DNA remains intact during Drosophila aging, but the levels of mitochondrial transcripts are significantly reduced. , 1993, The Journal of biological chemistry.
[34] J P Hatton,et al. The distribution of protein kinase C in human leukocytes is altered in microgravity , 1996, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[35] R. Gruener,et al. Vector-free gravity disrupts synapse formation in cell culture. , 1990, The American journal of physiology.
[36] T. Dobzhansky,et al. Effects of selection and migration on geotactic and phototactic behaviour of Drosophila. II , 1969, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[37] R. E. Lee,et al. A rapid cold-hardening response protecting against cold shock injury in Drosophila melanogaster. , 1990, The Journal of experimental biology.
[38] A. Cogoli. The effect of hypogravity and hypergravity on cells of the immune system , 1993, Journal of leukocyte biology.
[39] J. Cooke,et al. Evolutionary origins and maintenance of redundant gene expression during metazoan development. , 1997, Trends in genetics : TIG.
[40] V R Edgerton,et al. Invited review: gravitational biology of the neuromotor systems: a perspective to the next era. , 2000, Journal of applied physiology.
[41] S. Endow. GFP fusions to a microtubule motor protein to visualize meiotic and mitotic spindle dynamics in Drosophila. , 1999, Methods in cell biology.
[42] R. Marco,et al. Effects of the space environment on Drosophila melanogaster development. Implications of the IML-2 experiment. , 1996, Journal of biotechnology.
[43] L. Guarente,et al. Molecular Biology of Aging , 1999, Cell.
[44] Mario Passalacqua,et al. Clinorotation-induced weightlessness influences the cytoskeleton of glial cells in culture , 2002, Brain Research.
[45] R. Marco,et al. Enhancement of the immunocytochemical detection of antigens by microwave irradiation. Benefits and limitations analysed in isolated plant nuclei and Drosophila embryos in toto , 1994, Histochemistry.
[46] R. Weindruch,et al. Oxidative Stress, Caloric Restriction, and Aging , 1996, Science.
[47] A Cogoli,et al. Activation and proliferation of lymphocytes and other mammalian cells in microgravity. , 1997, Advances in space biology and medicine.
[48] F. Lints,et al. Drosophila as a Model Organism for Ageing Studies , 1987 .
[49] R. Weindruch,et al. Oxidative stress and aging reduce COX I RNA and cytochrome oxidase activity in Drosophila. , 1998, Free radical biology & medicine.
[50] M. Ashburner. Drosophila. A laboratory manual. , 1989 .
[51] G. Albrecht-Buehler,et al. In defense of "nonmolecular" cell biology. , 1990, International review of cytology.
[52] D Volkmann,et al. Graviorientation in protists and plants. , 1999, Journal of plant physiology.
[53] Roy L. Walford,et al. Free radicals, aging, and degenerative diseases , 1986 .
[54] G. Schulze-Tanzil,et al. Simulated microgravity alters differentiation and increases apoptosis in human follicular thyroid carcinoma cells , 2002, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[55] D. Bikle,et al. Altered skeletal pattern of gene expression in response to spaceflight and hindlimb elevation. , 1994, The American journal of physiology.
[56] J. Miquel,et al. A two-step hypothesis on the mechanisms of in vitro cell aging: Cell differentiation followed by intrinsic mitochondrial mutagenesis , 1984, Experimental Gerontology.
[57] E de Juan,et al. Microgravity effects on Drosophila melanogaster behavior and aging. Implications of the IML-2 experiment. , 1996, Journal of biotechnology.
[58] R. S. Sohal,et al. DNA oxidative damage and life expectancy in houseflies. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[59] R. E. Pitt,et al. Cryopreservation of Drosophila melanogaster embryos , 1989, Nature.
[60] C. Finch,et al. Genetics of aging. , 1997, Science.
[61] Brian C. Goodwin,et al. The Evolution of Generic Forms , 2020, How the Leopard Changed Its Spots.
[62] B. Ames,et al. Oxidative damage and mitochondrial decay in aging. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[63] J. den Hertog,et al. Microgravity decreases c-fos induction and serum response element activity. , 1990, Journal of cell science.
[64] A. Amsterdam,et al. The Aequorea victoria green fluorescent protein can be used as a reporter in live zebrafish embryos. , 1995, Developmental biology.
[65] B S Spooner,et al. Impact of altered gravity on aspects of cell biology. , 1994, International review of cytology.
[66] A. Cogoli,et al. Movements and interactions of leukocytes in microgravity. , 1996, Journal of biotechnology.
[67] G. Boulianne,et al. Green fluorescent protein as a vital marker and reporter of gene expression in Drosophila. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[68] M C Maurel,et al. Why biologists should support the exploration of Mars. , 2001, BioEssays : news and reviews in molecular, cellular and developmental biology.
[69] Paul Martin,et al. Dynamic analysis of dorsal closure in Drosophila: from genetics to cell biology. , 2002, Developmental cell.
[70] J. Hirsch,et al. Studies in experimental behavior genetics. V. Negative geotaxis and further chromosome analyses in Drosophila melanogaster. , 1969, Journal of comparative and physiological psychology.
[71] R. Marco,et al. Microgravity effects on Drosophila melanogaster development and aging: comparative analysis of the results of the Fly experiment in the Biokosmos 9 biosatellite flight. , 1992, Advances in space research : the official journal of the Committee on Space Research.
[72] W. Arthur,et al. The Origin of Animal Body Plans , 1997 .
[73] S. P. Myers,et al. Chapter 6 Cryopreservation of Drosophila melanogaster embryos , 1996 .
[74] D. R. Morrison,et al. Production and action of cytokines in space. , 1994, Advances in space research : the official journal of the Committee on Space Research.
[75] James P. Brock,et al. The evolution of adaptive systems , 2000 .
[76] D. A. Wolf,et al. Gene expression in space , 1999, Nature Medicine.
[77] R. Marco,et al. The role of gravity in the evolutionary emergence of multicellular complexity: microgravity effects on arthropod development and aging. , 1999, Advances in space research : the official journal of the Committee on Space Research.
[78] J. Johnson,et al. Mitochondrial role in cell aging , 1980, Experimental Gerontology.
[79] Klaus Kalthoff,et al. Analysis of biological development , 1995 .
[80] M. Lafage-Proust,et al. Effects of gravitational changes on the bone system in vitro and in vivo. , 1998, Bone.
[81] E. Burger,et al. Decreased mineralization and increased calcium release in isolated fetal mouse long bones under near weightlessness , 1995, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[82] Jeffrey R. Powell,et al. Progress and Prospects in Evolutionary Biology: The Drosophila Model , 1997 .
[83] K. W. Cole,et al. Cryobiological preservation of Drosophila embryos. , 1992, Science.
[84] John Maynard Smith,et al. Organizational Constraints on the Dynamics of Evolution , 1990 .
[85] H. Atlan,et al. Effects of temperature on the life span, vitality and fine structure of Drosophila melanogaster , 1976, Mechanisms of Ageing and Development.
[86] R. Wassersug,et al. Amphibian development in the virtual absence of gravity. , 1995, Proceedings of the National Academy of Sciences of the United States of America.