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Registro Completo |
Biblioteca(s): |
Embrapa Florestas; Embrapa Instrumentação; Embrapa Pantanal; Embrapa Recursos Genéticos e Biotecnologia. |
Data corrente: |
14/06/1991 |
Data da última atualização: |
23/01/2008 |
Autoria: |
HALE, M. G.; ORCUTT, D. M. |
Título: |
The physiology of plants under stress. |
Ano de publicação: |
1987 |
Fonte/Imprenta: |
New York: J. Wiley, 1987. |
Páginas: |
206p. |
ISBN: |
0-471-88997-0 |
Idioma: |
Inglês |
Conteúdo: |
Terminology; Drought stress; Basic water relations concepts; Effects of drought on growth and Yield; Effects on ultrastructure; Effects on water stress on photosynthesis; Nitrogen metabolism under water stress; Water logging and anaerobiosis; Drought resistance; Osmotic adjustment; Cell elasticity; Drought tolerance; Measurement of droutht stress; Breeding for drought stress resistance; Temperature stress; Chilling injury; Effects on membranes; The freezing process; Freezubg unjury to membranes; Effects of freeze - thaw cycles on plasma; Membranes; Tolerance of freezing stress; Frost resistance and cold hardiness; Effect of temperature on root processes; Breeding for temperature tolerance; Effects of high temperature; Temperature acclimation; Acclimation of photosynthesis; High-temperature acclimation; Acclimation to low temperature; Factors affecting cold hardening; Nutrient stress; Conditions causing nutrient stress; Deficiency causes and symptoms; Deficiency and toxicity causes and effects; Plant analysis as a diagnostic tool; Nutrient and metal toxicity; Aluminum toxicity; Manganese toxicity; Copper toxicity; Mycorrhizae as a factor in stress alleviation; Chelation as a mechanism of tolerance; Genetics of mineral element stress tolerance; Salt stress; Mechanisms of tolerance; Breeding for salt tolerance; Specific ion effects; Irradiation stress; Atmospheric attenuation of solar radiation; Distribution of radiation in a plant community; Uptake of radiation by plants; Sun versus shade plants; Effects of light deficit (Shade); Effects of bright light; Resistance to high light intensity injury; Ionizing radiation as stress; Allelochemical stress; The juglone story; Sources and nature of allelochemicals; Classification of allelochemicals; Allelopathy occurrence; Physiological action of allelochemicals; Breeding for ecological allelopathic advantage; Effects of stress on membranes; Membrane structure and function; Temperature and membrane function; Ionic interactions and membrane function; Membranes and dehydration stress; Light and membrane permeability; Membrane permeability and Phytohormones; The role of phytohormones in stressed plants; Phytohormones response and water relations; Interactions of phytohormones in droutht stress; Phytohormone response and temperature; Phytohormone response and nutrition; Phytohormone response and photoperiod; Phytohormone response to pathogens and insects; Stress tolerance through biotechnology; Use of plant growth regulators; Use of genetic engineering; Stress proteins and tolerance. MenosTerminology; Drought stress; Basic water relations concepts; Effects of drought on growth and Yield; Effects on ultrastructure; Effects on water stress on photosynthesis; Nitrogen metabolism under water stress; Water logging and anaerobiosis; Drought resistance; Osmotic adjustment; Cell elasticity; Drought tolerance; Measurement of droutht stress; Breeding for drought stress resistance; Temperature stress; Chilling injury; Effects on membranes; The freezing process; Freezubg unjury to membranes; Effects of freeze - thaw cycles on plasma; Membranes; Tolerance of freezing stress; Frost resistance and cold hardiness; Effect of temperature on root processes; Breeding for temperature tolerance; Effects of high temperature; Temperature acclimation; Acclimation of photosynthesis; High-temperature acclimation; Acclimation to low temperature; Factors affecting cold hardening; Nutrient stress; Conditions causing nutrient stress; Deficiency causes and symptoms; Deficiency and toxicity causes and effects; Plant analysis as a diagnostic tool; Nutrient and metal toxicity; Aluminum toxicity; Manganese toxicity; Copper toxicity; Mycorrhizae as a factor in stress alleviation; Chelation as a mechanism of tolerance; Genetics of mineral element stress tolerance; Salt stress; Mechanisms of tolerance; Breeding for salt tolerance; Specific ion effects; Irradiation stress; Atmospheric attenuation of solar radiation; Distribution of radiation in a plant community; Uptake of radiation by plants; Sun ... Mostrar Tudo |
Palavras-Chave: |
Disease; Estresse; Fosiologia; Plant; Plantas. |
Thesagro: |
Distúrbio; Doença; Fisiologia; Planta; Stress. |
Thesaurus Nal: |
physiology; plant physiology. |
Categoria do assunto: |
-- |
Marc: |
LEADER 03214nam a2200289 a 4500 001 1295306 005 2008-01-23 008 1987 bl uuuu 00u1 u #d 020 $a0-471-88997-0 100 1 $aHALE, M. G. 245 $aThe physiology of plants under stress. 260 $aNew York: J. Wiley$c1987 300 $a206p. 520 $aTerminology; Drought stress; Basic water relations concepts; Effects of drought on growth and Yield; Effects on ultrastructure; Effects on water stress on photosynthesis; Nitrogen metabolism under water stress; Water logging and anaerobiosis; Drought resistance; Osmotic adjustment; Cell elasticity; Drought tolerance; Measurement of droutht stress; Breeding for drought stress resistance; Temperature stress; Chilling injury; Effects on membranes; The freezing process; Freezubg unjury to membranes; Effects of freeze - thaw cycles on plasma; Membranes; Tolerance of freezing stress; Frost resistance and cold hardiness; Effect of temperature on root processes; Breeding for temperature tolerance; Effects of high temperature; Temperature acclimation; Acclimation of photosynthesis; High-temperature acclimation; Acclimation to low temperature; Factors affecting cold hardening; Nutrient stress; Conditions causing nutrient stress; Deficiency causes and symptoms; Deficiency and toxicity causes and effects; Plant analysis as a diagnostic tool; Nutrient and metal toxicity; Aluminum toxicity; Manganese toxicity; Copper toxicity; Mycorrhizae as a factor in stress alleviation; Chelation as a mechanism of tolerance; Genetics of mineral element stress tolerance; Salt stress; Mechanisms of tolerance; Breeding for salt tolerance; Specific ion effects; Irradiation stress; Atmospheric attenuation of solar radiation; Distribution of radiation in a plant community; Uptake of radiation by plants; Sun versus shade plants; Effects of light deficit (Shade); Effects of bright light; Resistance to high light intensity injury; Ionizing radiation as stress; Allelochemical stress; The juglone story; Sources and nature of allelochemicals; Classification of allelochemicals; Allelopathy occurrence; Physiological action of allelochemicals; Breeding for ecological allelopathic advantage; Effects of stress on membranes; Membrane structure and function; Temperature and membrane function; Ionic interactions and membrane function; Membranes and dehydration stress; Light and membrane permeability; Membrane permeability and Phytohormones; The role of phytohormones in stressed plants; Phytohormones response and water relations; Interactions of phytohormones in droutht stress; Phytohormone response and temperature; Phytohormone response and nutrition; Phytohormone response and photoperiod; Phytohormone response to pathogens and insects; Stress tolerance through biotechnology; Use of plant growth regulators; Use of genetic engineering; Stress proteins and tolerance. 650 $aphysiology 650 $aplant physiology 650 $aDistúrbio 650 $aDoença 650 $aFisiologia 650 $aPlanta 650 $aStress 653 $aDisease 653 $aEstresse 653 $aFosiologia 653 $aPlant 653 $aPlantas 700 1 $aORCUTT, D. M.
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1. | | SIMÕES, E. B.; SANTOS, M. E. P. DOS; TUMWET, T.; RAJENDER, B.; KANG, H. J.; MANABU, K.; ARYANI, D. C.; HAMZAH, A.; BAOYING, Z.; MULLER, E. M.; MARTINEZ, A. M.; ZAMBRZYCKI, B.; GAVELLE, E. DE; KALMAN, Z.; AXMANN, H.; STEIHAUG, Y. V.; ANTYUKHIN, K.; EGUILLOR, P.; MORÓN, P.; BASSO, N.; MONTANI, N.; FREIRE JUNIOR, M.; CECILIANO, L. F.; STENO, R.; AL SHAMY, E.; ELTAHIR, F. E.; BUZBY, J.; MIROSA, M.; LAPIDGE, S. Código de conducta voluntario para la reducción de las pérdidas y el desperdicio de alimentos. In: CONFERENCIA DE LA FAO, 42., 2021. División de Sistemas Alimentarios e Inocuidad de los Alimentos (ESF). 2021. Disponível em: . Acesso em: 05 ago. 2021. 40 p.Tipo: Artigo em Anais de Congresso |
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