12 – Water Relations of Arctic Vascular Plants
暂无分享,去创建一个
[1] S. Mariko,et al. Mechanism of Methane Transport from the Rhizosphere to the Atmosphere through Rice Plants. , 1990, Plant physiology.
[2] Donald A. Walker,et al. Terrain, vegetation and landscape evolution of the R4D research site, Brooks Range Foothills, Alaska , 1989 .
[3] N. Rosenberg,et al. Evapotranspiration in a greenhouse-warmed world: A review and a simulation , 1989 .
[4] D. Lashof. The dynamic greenhouse: Feedback processes that may influence future concentrations of atmospheric trace gases and climatic change , 1989 .
[5] N. Rosenberg,et al. Sensitivity of evapotranspiration in a wheat field, a forest, and a grassland to changes in climate and direct effects of carbon dioxide , 1989 .
[6] W. Reeburgh,et al. A methane flux time series for tundra environments , 1988 .
[7] W. Oechel,et al. THE EFFECTS OF TOPOGRAPHY AND NUTRIENT STATUS ON THE BIOMASS, VEGETATIVE CHARACTERISTICS, AND GAS EXCHANGE OF TWO DECIDUOUS SHRUBS ON AN ARCTIC TUNDRA SLOPE , 1988 .
[8] U. KyawThaPaw,et al. Applications of solutions to non-linear energy budget equations , 1988 .
[9] F. Chapin,et al. Productivity and Nutrient Cycling of Alaskan Tundra: Enhancement by Flowing Soil Water , 1988 .
[10] N. Grulke,et al. Comparative Life History Characteristics of Two High Arctic Grasses, Northwest Territories , 1988 .
[11] J. Passioura,et al. Water Transport in and to Roots , 1988 .
[12] J. E. Dale,et al. The Control of Leaf Expansion , 1988 .
[13] J. G. Molenaar,et al. An Ecohydrological Approach to Floral and Vegetational Patterns in Arctic Landscape Ecology , 1987, Arctic and Alpine Research.
[14] J. Svoboda,et al. Succession in Marginal Arctic Environments , 1987 .
[15] J. McKendrick. Plant Succession on Disturbed Sites, North Slope, Alaska, U.S.A.* , 1987 .
[16] W. D. Billings. Constraints to Plant Growth, Reproduction, and Establishment in Arctic Environments , 1987, Arctic and Alpine Research.
[17] S. Hastings,et al. Downslope fertilizer movement in arctic tussock tundra , 1987 .
[18] T. Dawson,et al. Species patterns, edaphic characteristics, and plant water potential in a high-arctic brackish marsh , 1987 .
[19] David T. Tissue,et al. Response of Eriophorum Vaginatum to Elevated CO_2 and Temperature in the Alaskan Tussock Tundra , 1987 .
[20] W. D. Billings. CARBON BALANCE OF ALASKAN TUNDRA AND TAIGA ECOSYSTEMS: PAST, PRESENT AND FUTURE , 1987 .
[21] G. Henry,et al. DINITROGEN FIXATION (ACETYLENE REDUCTION) IN HIGH ARCTIC SEDGE MEADOW COMMUNITIES , 1986 .
[22] D. I. Sebacher,et al. Atmospheric methane sources: Alaskan tundra bogs, an alpine fen, and a subarctic boreal marsh , 1986 .
[23] T. Warn. Statistical mechanical equilibria of the shallow water equations , 1986 .
[24] K. G. McNaughton,et al. Stomatal Control of Transpiration: Scaling Up from Leaf to Region , 1986 .
[25] L. C. Bliss,et al. Environmental control of the prostrate growth form in two high arctic grasses , 1985 .
[26] J. McGraw. EXPERIMENTAL ECOLOGY OF DRYAS OCTOPETALA ECOTYPES. III. ENVIRONMENTAL FACTORS AND PLANT GROWTH , 1985 .
[27] F. Stuart Chapin,et al. Individualistic Growth Response of Tundra Plant Species to Environmental Manipulations in the Field , 1985 .
[28] D. I. Sebacher,et al. Methane emissions to the atmosphere through aquatic plants , 1985 .
[29] P. Karlsson. Effects of water and mineral nutrient supply on a deciduous and an evergreen dwarf shrub: Vaccinium uliginosum L. and V. vitisidaea L. , 1985 .
[30] W. D. Billings,et al. Influence of water table and atmospheric CO/sub 2/ concentration on the carbon balance of arctic tundra , 1984 .
[31] E. W. Beals,et al. Bray-curtis ordination: an effective strategy for analysis of multivariate ecological data , 1984 .
[32] L. C. Bliss,et al. Adaptations of Luzula confusa to the Polar Semi-Desert Environment , 1984 .
[33] L. C. Bliss,et al. Germination Ecology of Ledum groenlandicum and Ledum palustre ssp. decumbens , 1983 .
[34] P. Jarvis,et al. CHAPTER 1 – PREDICTING EFFECTS OF VEGETATION CHANGES ON TRANSPIRATION AND EVAPORATION , 1983 .
[35] P. Miller. Plant and Soil Water Storage in Arctic And Boreal Forest Ecosystems , 1983 .
[36] P. Mølgaard. Temperature Observations in High Arctic Plants in Relation to Microclimate in the Vegetation of Peary Land, North Greenland , 1982 .
[37] S. Oberbauer,et al. Effect of water potential on seed germination , 1982 .
[38] P. Miller. Environmental and vegetational variation across a snow accumulation area in montane tundra in central Alaska , 1982 .
[39] W. Oechel,et al. Photosynthetic and respiratory responses to temperature and light of three Alaskan tundra growth forms , 1982 .
[40] S. Oberbauer,et al. Growth of Alaskan tundra plants in relation to water potential , 1982 .
[41] S. Oberbauer,et al. Evapotranspiration measurements in Eriophorum vaginatum tussock tundra in Alaska , 1982 .
[42] T. Hsiao,et al. Physiological Responses to Moderate Water Stress , 1982 .
[43] J. Dacey. Pressurized Ventilation in the Yellow Waterlily , 1981 .
[44] S. Oberbauer,et al. Some Aspects of Plant Water Relations in Alaskan Arctic Tundra Species , 1981 .
[45] J. Radin. Water Relations of Cotton Plants under Nitrogen Deficiency: III. STOMATAL CONDUCTANCE, PHOTOSYNTHESIS, AND ABSCISIC ACID ACCUMULATION DURING DROUGHT. , 1981, Plant physiology.
[46] F. S. Chapin,et al. The Mineral Nutrition of Wild Plants , 1980 .
[47] F. S. Chapin,et al. Response to fertilization by various plant growth forms in an Alaskan tundra: nutrient accumulation and growth , 1980 .
[48] S. Oberbauer,et al. Plant Water Relations in Montane and Tussock Tundra Vegetation Types in Alaska , 1979 .
[49] A. Ulrich,et al. Plant Nutrient Limitations of Tundra Plant Growth , 1978 .
[50] L. Tieszen. Photosynthesis in the Principal Barrow, Alaska, Species: A Summary of Field and Laboratory Responses , 1978 .
[51] P. Webber. Spatial and Temporal Variation of the Vegetation and Its Production, Barrow, Alaska , 1978 .
[52] L. Tieszen,et al. A MODEL OF STAND PHOTOSYNTHESIS FOR THE WET MEADOW TUNDRA AT BARROW, ALASKA' , 1976 .
[53] M. Caldwell,et al. Water Potential Components, Stomatal Function, and Liquid Phase Water Transport Resistances of Four Arctic and Alpine Species in Relation to Moisture Stress , 1976 .
[54] P. Miller,et al. WATER RELATIONS OF PLANT SPECIES IN THE WET COASTAL TUNDRA AT BARROW, ALASKA , 1975 .
[55] L. Tieszen. PHOTOSYNTHESIS AND RESPIRATION IN ARCTIC TUNDRA GRASSES: FIELD LIGHT INTENSITY AND TEMPERATURE RESPONSES , 1973 .
[56] E. Small. Photosynthetic rates in relation to nitrogen recycling as an adaptation to nutrient deficiency in peat bog plants , 1972 .
[57] Harold A. Mooney,et al. THE ECOLOGY OF ARCTIC AND ALPINE PLANTS , 1968 .
[58] J. W. Wilson. An Analysis of Plant Growth and its Control in Arctic Environments , 1966 .
[59] J. Monteith. Evaporation and environment. , 1965, Symposia of the Society for Experimental Biology.
[60] L. C. Bliss. Adaptations of Arctic and Alpine Plants to Environmental Conditions , 1962 .
[61] J. W. Wilson. NOTES ON WIND AND ITS EFFECTS IN ARCTIC-ALPINE VEGETATION* , 1959 .
[62] L. C. Bliss. Seed Germination in Arctic and Alpine Species , 1958 .
[63] J. W. Wilson. OBSERVATIONS ON THE TEMPERATURES OF ARCTIC PLANTS AND THEIR ENVIRONMENT , 1957 .
[64] H. L. Penman. Natural evaporation from open water, bare soil and grass , 1948, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.