Ana səhifə

Tesis de grado


Yüklə 7.89 Mb.
səhifə9/9
tarix24.06.2016
ölçüsü7.89 Mb.
1   2   3   4   5   6   7   8   9
8: p. 37-52.

61. Addo-Bediako, A., S.L. Chown, and K.J. Gaston, Thermal tolerance, climatic variability and latitude. Proceedings of the Royal Society of London Biology, 2000. 267: p. 739-745.

62. Bustamante, R.H., et al., Comunidades Submareales Rocosas I: Organismos Sésiles y Mesoinvertebrados, in La Reserva Marina de Galápagos. Línea Base de la Biodiversidad, E. Danulat and G. Edgar, Editors. 2002, Fundación Charles Darwin/ Parque Nacional Galápagos: Santa Cruz, Galápagos, Ecuador. p. 38-67.

63. Edgar, G., et al., Comunidades Submareales Rocosas II: Peces y Macroinvertebrados Móviles, in La Reserva Marina de Galápagos. Línea Base de la Biodiversidad, E. Danulat and G. Edgar, Editors. 2002, Fundación Charles Darwin/ Parque Nacional Galápagos: Santa Cruz, Galápagos, Ecuador. p. 68-97.

64. Stenseth, N., et al., Ecological Effects of Climate Fluctuations. Science, 2002. 297: p. 1292-1296.

65. Ranta, E., V. Kaitala, and J. Lindström, Spatially autocorrelated disturbances and patterns in population synchrony. Proceedings of the Royal Society B: Biological, 1999. 266: p. 1851-1856.

66. Lundberg, P., et al., Population variability in space and time. Trends in Ecology & Evolution, 2000. 15(11): p. 460-464.

67. Planque, B. and J.M. Formentin, Marine Ecology Progress Series, 1996. 134: p. 101-110.

68. Robinson, C., Plankton gross production and respiration in the shallow water hydrothermal systems of Milos, Aegean Sea. Journal of Plankton Research, 2000. 22(5): p. 887-906.

69. Sorokin, Y.I., P.Y. Sorokin, and O.Y. Zakouskina, Microplankton and its function in a zone of shallow hydrothermal activity:the Craternaya Bay, Kurile Islands. Journal of Plankton Research, 2003. 25(5): p. 495-506.

70. McClanahan, T.R., et al., Recent seawater temperature histories, status, and predictions for Madagascar's coral reefs. Marine Ecology Progress Series, 2009. 380: p. 117-128.

71. Wellington, G., The Galápagos coastal marine environments. 1975, Department of National Parks and Wildlife: Quito.

72. Fujisawa, H., Differences in temperature dependence of early development of sea urchins with different growing seasons. Biological Bulletin, 1989. 176: p. 96–102.

73. Johnson, L.G. and R.C. Babcock, Temperature and the larval ecology of the crown-of-thorns starfish, Acanthaster planci. Biological Bulletin, 1994. 187: p. 304–308.

74. Reitzel, A.M., B.G. Miner, and L.R. McEdward, Relationships between spawning date and larval development time for benthic marine invertebrates: a modeling approach. Marine Ecology Progress, 2004. 280: p. 13-23.

75. Sewell, M.A. and C.M. Young, Temperature limits to fertilization and early development in the tropical sea urchin Echinometra lucunter. Journal of Experimental Marine Biology and Ecology, 1999. 236: p. 291-305.

76. McClanahan, T.R. and N.A. Muthiga, Ecology of Echinometra, in Edible Sea Urchins: Biology and Ecology, J.M. Lawrence, Editor. 2001, Elsevier Science. p. 297-316.

77. Andrew, N. and M. Byrne, The ecology of Centrostephanus rodgersii, in Edible Sea Urchins: Biology and Ecology, J.M. Lawrence, Editor. 2001, Elsevier Science BV. p. 149-160.

78. Hickman, C., Guía de campo sobre estrellas de mar y otros equinodermos de Galápagos. 1998, Lexington, Virginia, USA: Sugar Spring Press. 83.

79. Vinueza, L.R., et al., Top-down herbivory and bottom-up El Niño effects on Galápagos Rocky-Shore communities. Ecological Monographs, 2006. 76(1): p. 111-131.

80. Aguirre, M.L., S. Richiano, and Y.N. Sirch, Palaeoenvironments and palaeoclimates of the Quaternary molluscan faunas from the coastal area of Bahía Vera-Camarones (Chubut, Patagonia). Palaeogeography, Palaeoclimatology, Palaeoecology, 2006.

81. Rombough, P., The effects of temperature on embryonic and larval development, in Global Warming: Implications for Freshwater and Marine Fish, C. Wood and D. McDonald, Editors. 1997, Cambridge University Press: Cambridge. p. 177–223.

82. Hunt von Herbing, I., Effects of temperature on larval fish swimming performance: the importance of physics to physiology. Journal of Fish Biology, 2002. 61: p. 865-876.

83. McCormick, M. and B. Molony, Influence of water temperature during the larval stage on size, age and body condition of a tropical reef fish at settlement. Marine Ecology Progress Series, 1995. 118: p. 59–68.

84. Pörtner, H.O., et al., Climate induced temperature effects on growth performance, fecundity and recruitment in marine fish: developing a hypothesis for cause and effect relationships in Atlantic cod (Gadus morhua) and common eelpout (Zoarces viviparus). Continental Shelf Research, 2001. Volume 21(18-19): p. 1975-1997.

85. Meekan, M., J. Ackerman, and G. Wellington, Demography and age structures of coral reef damselfishes in the tropical eastern Pacific Ocean. Marine Ecology Progress Series, 2001. 212: p. 223–232.

86. Ruttenberg, B.I., et al., Patterns, causes and consequences of regional variation in the ecology and life history of a reef fish. Oecologia, 2005. 145: p. 394–403.

87. Meekan, M., G. Wellington, and L. Axe, El Niño- Southern Oscillation events produce checks in the otoliths of coral reef fishes in the Galapagos Archipelago. Bulletin of Marine Science, 1999. 64: p. 383–390.

88. Danilowicz, B.S., The role of temperature in spawning of the damselfish Dascyllus albisella. Bulletin of Marine Science, 1995. 57: p. 624–636.

89. Hilder, M.L. and N.W. Pankhurst, Evidence that temperature changes cues reproductive development in the spiny damselfish, Acanthochromis polyacanthus. Environmental Biology of Fishes, 2003. 66: p. 187–196.

90. Chiriboga, A.I., Churos, in Reserva Marina de Galápagos: Línea Base de la Biodiversidad, E. Danulat and G. Edgar, Editors. 2002, Fundación Charles Darwin - Parque Nacional Galápagos. p. 246-257.

91. Rodríguez, A. and M. Valencia T, Estudio de la Calidad de las Aguas Costeras Insulares en la Provincia de Galápagos 1999. Acta Oceanográfica del Pacífico - INOCAR, 2000. 10(1): p. 80-96.

92. Jobling, M., Temperature and growth: Modulation of growth rate via temperature change, in Global Warming: Implications for Freshwater and Marine Fish, C. Wood and D. McDonald, Editors. 1997, Cambridge University Press: Cambridge. p. 225–253.

93. Meekan, M., et al., What determines the growth of tropical reef fish larvae in the plankton: food or temperature? Marine Ecology Progress Series, 2003. 256: p. 193–204.



1 “Vivimos en el olvido de nuestras metamorfosis” Paul Éluard (El duro deseo de durar).
1   2   3   4   5   6   7   8   9


Verilənlər bazası müəlliflik hüququ ilə müdafiə olunur ©atelim.com 2016
rəhbərliyinə müraciət