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- W2074084927 abstract "Traits associated with carbon acquisition in plants may exhibit plastic responses as part of the phytochrome‐mediated, stem‐elongation response. In this study, stem elongation and the responses in gas exchange traits were examined in plants grown in high and low water availabilities under low red to far‐red ratio (R:FR) and neutral shade at low density and under high R:FR and neutral shade at high density. Although we were not able to explicitly test for the effects of density because the plants did not elongate in response to high density, the differences between light quality–density treatments in stem elongation and the responses in gas exchange traits did allow for examination of the role of R:FR. Gas exchange responded to changes in R:FR in Brassica rapa. Low R:FR induced stem elongation and resulted in reduced biomass accumulation, lower photosynthetic rates, and lower water‐use efficiency relative to plants under comparatively higher R:FR. The responses in gas exchange to low R:FR indicated that there are potential costs associated with stem elongation. The costs associated with stem elongation appear to be strongly linked to plant water relations and are expected to be more significant in water‐limited environments. We also found unexpected physiological responses to high R:FR. Plants that grew under high R:FR showed higher rates of photosynthesis and stomatal conductance relative to plants under comparatively lower R:FR. Our results offer further evidence that the physiology of carbon acquisition can be affected by R:FR." @default.
- W2074084927 created "2016-06-24" @default.
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- W2074084927 date "2001-03-01" @default.
- W2074084927 modified "2023-09-25" @default.
- W2074084927 title "Phenotypic Plasticity in Carbon Acquisition of Rapid Cycling<i>Brassica rapa</i>L. in Response to Light Quality and Water Availability" @default.
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- W2074084927 doi "https://doi.org/10.1086/319584" @default.
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