Detalhes do Documento

Photosynthetic responses of Lupinus albus to soil water fluctuations

Autor(es): Barrote, Isabel cv logo 1 ; Osório, Maria Leonor cv logo 2 ; Osório, Júlio cv logo 3 ; David, Maria Manuela cv logo 4 ; Correia, Maria João cv logo 5

Data: 2002

Identificador Persistente: http://hdl.handle.net/10400.1/1066

Origem: Sapientia - Universidade do Algarve

Assunto(s): Drought; Photosynthesis; Lupinus albus


Descrição
Lupinus albus plants were grown in 3 dm3 pots in a semi-controled greenhouse. Two water regimes were imposed: water deficit (S, 47% of soil capacity), and control (T, 86% of soil capacity). Plants water status was monitored through foliar relative water content (TRA) and pre-dawn (ypd) and midday water potential (ymd). Gas exchanges, chlorophyll a fluorescence and photosynthetic capacity (Amax) were measured. Pigments and soluble protein were quantified and antioxidant system enzymes activity was determined. Plants under water deficit were rehydrated and the same measurements and sampling were done again after 48 h (R1) and 72 h (R2). Albeit water availability has diminished from 86% to 47% of soil capacity, there weren’t any remarkable changes on S plants. R1 plants which haven’t shown any alterations neither in Amax nor in stomatal conductance (gH2O), exhibited a significant decrease on net photosynthesis (A), reaching negative values, along with a raise in non-photochemical quenching (NPQ). Presumably this raise should be related with an increase in the xanthophyll cycle deepoxidation state. The significantly increase in Superoxide dismutase (SOD) specific activity in R1 and R2 plants might be related with the activation of Mehler-peroxidase reaction which provokes lumen DpH raising. This can provide photosynthesis protection through VAZ cycle and may justify the NPQ increase.
Tipo de Documento Documento de conferência
Idioma Português
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