Environmentally driven evolution of Rubisco and improved photosynthesis and growth within the C3 genus Limonium (Plumbaginaceae).
about
Weak coordination between leaf structure and function among closely related tomato species.On the adaptive value of cytoplasmic genomes in plants.Rubisco catalytic properties of wild and domesticated relatives provide scope for improving wheat photosynthesis.Leaf morphological and physiological adaptations of a deciduous oak (Quercus faginea Lam.) to the Mediterranean climate: a comparison with a closely related temperate species (Quercus robur L.).Leaf functional plasticity decreases the water consumption without further consequences for carbon uptake in Quercus coccifera L. under Mediterranean conditions.A worldwide analysis of within-canopy variations in leaf structural, chemical and physiological traits across plant functional types.Temperature responses of the Rubisco maximum carboxylase activity across domains of life: phylogenetic signals, trade-offs, and importance for carbon gain.Temperature responses of Rubisco from Paniceae grasses provide opportunities for improving C3 photosynthesis.A compendium of temperature responses of Rubisco kinetic traits: variability among and within photosynthetic groups and impacts on photosynthesis modelingRubisco Catalytic Properties and Temperature Response in Crops.Coordination between leaf CO2 diffusion and Rubisco properties allows maximizing photosynthetic efficiency in Limonium species.Positively selected amino acid replacements within the RuBisCO enzyme of oak trees are associated with ecological adaptationsOne-third of the plastid genes evolved under positive selection in PACMAD grasses.Photosynthetic limitations in two Antarctic vascular plants: importance of leaf anatomical traits and Rubisco kinetic parameters.Coordinated modifications in mesophyll conductance, photosynthetic potentials and leaf nitrogen contribute to explain the large variation in foliage net assimilation rates across Quercus ilex provenances.Cell-level anatomical characteristics explain high mesophyll conductance and photosynthetic capacity in sclerophyllous Mediterranean oaks.Surveying Rubisco Diversity and Temperature Response to Improve Crop Photosynthetic Efficiency.The photosynthetic capacity in 35 ferns and fern allies: mesophyll CO2 diffusion as a key trait.Engineering photosynthesis: progress and perspectives.Linking plant functional trait plasticity and the large increase in forest water use efficiency
P2860
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P2860
Environmentally driven evolution of Rubisco and improved photosynthesis and growth within the C3 genus Limonium (Plumbaginaceae).
description
2014 nî lūn-bûn
@nan
2014年の論文
@ja
2014年論文
@yue
2014年論文
@zh-hant
2014年論文
@zh-hk
2014年論文
@zh-mo
2014年論文
@zh-tw
2014年论文
@wuu
2014年论文
@zh
2014年论文
@zh-cn
name
Environmentally driven evoluti ...... nus Limonium (Plumbaginaceae).
@en
Environmentally driven evoluti ...... h within the C3 genus Limonium
@nl
type
label
Environmentally driven evoluti ...... nus Limonium (Plumbaginaceae).
@en
Environmentally driven evoluti ...... h within the C3 genus Limonium
@nl
prefLabel
Environmentally driven evoluti ...... nus Limonium (Plumbaginaceae).
@en
Environmentally driven evoluti ...... h within the C3 genus Limonium
@nl
P2093
P2860
P50
P356
P1433
P1476
Environmentally driven evoluti ...... enus Limonium (Plumbaginaceae)
@en
P2093
Alfred J Keys
Arántzazu Molins
Miquel À Conesa
P John Andralojc
P2860
P304
P356
10.1111/NPH.12858
P407
P577
2014-05-23T00:00:00Z