Two Figures in Dense Violent Light
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Adams, W. III, Cohu, C. Associations between phloem-cell wall ingrowths in minor veins and maximal photosynthesis rate. Plant Sci. Foliar phloem infrastructure in support of photosynthesis. Photosynthesis and photoprotection in overwintering plants.
Plant Biol. III, Muller, O. Advances in Photosynthesis and Respiration , Vol.
Demmig-Adams, G. Garab, W. Google Scholar. May photoinhibition be a consequence, rather than a cause, of limited plant productivity? III, Stewart, J. Habitat temperature and precipitation of Arabidopsis thaliana ecotypes determine the response of foliar vasculature, photosynthesis, and transpiration to growth temperature. III, Watson, A. Photosynthetic acclimation in the context of structural constraints to carbon export from leaves.
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Reciprocal transplants demonstrate strong adaptive differentiation of the model organism Arabidopsis thaliana in its native range. New Phytol. Ainsworth, E. Carbohydrate export from the leaf: a highly regulated process to enhance photosynthesis and productivity. Plant Physiol. Alonso-Peral, M. Development , — Amiard, V. III Role of light and jasmonic acid signaling in regulating foliar phloem cell wall ingrowth development. Anatomical and photosynthetic acclimation to the light environment in species with differing mechanisms of phloem loading.
Brodribb, T. Leaf maximum photosynthetic rate and venation are linked by hydraulics. Buckley, T. How does leaf anatomy influence water transport outside the xylem? Candela, H. Venation pattern formation in Arabidopsis thaliana vegetative leaves. Caringella, M. Leaf hydraulic conductance varies with vein anatomy across Arabidopsis thaliana wild-type and leaf vein mutants. Plant Cell Environ. Cheng, Y. Cohu, C. Leaf anatomical and photosynthetic acclimation to cool temperature and high light in two winter versus two summer annuals.
Minor loading vein acclimation for three Arabidopsis thalian a ecotypes in response to growth under different temperature and light regimes. Association between minor loading vein architecture and light- and CO 2 -saturated photosynthetic oxygen evolution among Arabidopsis thaliana ecotypes from different latitudes. Delieu, T. Polarographic measurement of photosynthetic oxygen evolution by leaf discs. Demmig-Adams, B. Multiple feedbacks between chloroplast and whole plant in the context of plant adaptation and acclimation to the environment.
B Biol. Dengler, N. Vascular patterning and leaf shape. Dumlao, M. III, et al. Low temperature acclimation of photosynthetic capacity and leaf morphology in the context of phloem loading type. El-Lithy, M.
Quantitative trait locus analysis of growth-related traits in a new Arabidopsis recombinant inbred population. Fatichi, S. Moving beyond photosynthesis: from carbon source to sink-driven vegetation modeling. Feldman, A. Increasing leaf vein density via mutagenesis in rice results in an enhanced rate of photosynthesis, smaller cell sizes and can reduce interveinal mesophyll cell number. Hijmans, R. Very high resolution interpolated climate surfaces for global land areas. Version 7. Available at: www.
A steady-state stomatal model of balanced leaf gas exchange, hydraulics and maximal source-sink flux. Tree Physiol. Kasai, M. Koornneef, M. The development of Arabidopsis as a model plant. Plant J. Growth controls photosynthesis — mostly. Nova Acta Leopoldina , — Krapp, A. Planta , — Muller, O. Association between photosynthesis and contrasting features of minor veins in leaves of summer annuals loading phloem via symplastic versus apoplastic routes. Leaf architectural, vascular, and photosynthetic acclimation to temperature in two biennials.
High School Earth Science/Atmospheric Layers
Nikinmaa, E. Assimilate transport in phloem set conditions for leaf gas exchange. Paine, C. How to fit nonlinear plant growth models and calculate growth rates: an update for ecologists. Methods Ecol.
Pego, J. Photosynthesis, sugars and the regulation of gene expression.
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Lessons from a search of leaf mutants in Arabidopsis thaliana. Whole organ, venation and epidermal cell morphological variations are correlated in the leaves of Arabidopsis mutants. Polutchko, S. Evaluating the link between photosynthetic capacity and leaf vascular organization with principal component analysis. Photosynthetica 56, — Prado, K. Regulation of leaf hydraulics: from molecular to whole plant levels. Koncz, N. Chua, and J. Schell Singapore: World Scientific , 1— Sack, L.
Leaf venation: structure, function, development, evolution, ecology and applications in the past, present and future. Sperry, J. Predicting stomatal responses to the environment from the optimization of photosynthetic gain and hydraulic cost.
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Spurr, A. A low-viscosity epoxy resin embedding medium for electron microscopy. Stewart, J.
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Tocopherols modulate leaf vein arrangement and composition without impacting photosynthesis.