Search Results - "Borland, Anne M"
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Engineering crassulacean acid metabolism to improve water-use efficiency
Published in Trends in plant science (01-05-2014)“…•CAM species exhibit high WUE.•Introduction of CAM into crops should enhance WUE and improve carbon balance.•Genome and transcriptome sequencing of diverse…”
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The photosynthetic plasticity of crassulacean acid metabolism: an evolutionary innovation for sustainable productivity in a changing world
Published in The New phytologist (01-08-2011)“…The photosynthetic specialization of crassulacean acid metabolism (CAM) has evolved many times in response to selective pressures imposed by water limitation…”
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Orchestration of carbohydrate processing for crassulacean acid metabolism
Published in Current opinion in plant biology (01-06-2016)“…•Chloroplast transporters regulate partitioning of carbohydrate between CAM and growth.•The route of starch degradation is a key point of divergence between C3…”
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Are cell wall traits a component of the succulent syndrome?
Published in Frontiers in plant science (25-11-2022)“…Succulence is an adaptation to low water availability characterised by the presence of water-storage tissues that alleviate water stress under low water…”
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Editorial: Systems Biology and Synthetic Biology in Relation to Drought Tolerance or Avoidance in Plants
Published in Frontiers in plant science (09-04-2020)“…Drought stress has been a long-time limitation to crop production that is being exacerbated by climate change and associated reductions in the availability of…”
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Diel rewiring and positive selection of ancient plant proteins enabled evolution of CAM photosynthesis in Agave
Published in BMC genomics (06-08-2018)“…Crassulacean acid metabolism (CAM) enhances plant water-use efficiency through an inverse day/night pattern of stomatal closure/opening that facilitates…”
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Informing the improvement and biodesign of crassulacean acid metabolism via system dynamics modelling
Published in The New phytologist (01-12-2013)Get full text
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Overexpression of an Agave Phosphoenolpyruvate Carboxylase Improves Plant Growth and Stress Tolerance
Published in Cells (Basel, Switzerland) (06-03-2021)“…It has been challenging to simultaneously improve photosynthesis and stress tolerance in plants. Crassulacean acid metabolism (CAM) is a CO2-concentrating…”
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Sequencing complex plants on a budget: The development of Kalanchoë blossfeldiana as a C3, CAM comparative tool
Published in Plants, people, planet (01-11-2024)“…Societal Impact Statement Research efforts in plant biology have often been focused on sequenced and well‐studied ‘model’ organisms. Despite the advent of…”
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Correction to: Diel rewiring and positive selection of ancient plant proteins enabled evolution of CAM photosynthesis in Agave
Published in BMC genomics (10-04-2019)“…Following publication of the original article…”
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Elevated nocturnal respiratory rates in the mitochondria of CAM plants: current knowledge and unanswered questions
Published in Annals of botany (25-11-2023)“…Crassulacean acid metabolism (CAM) is a metabolic adaptation that has evolved convergently in 38 plant families to aid survival in water-limited niches. Whilst…”
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How to resolve the enigma of diurnal malate remobilisation from the vacuole in plants with crassulacean acid metabolism?
Published in The New phytologist (01-03-2021)“…Summary Opening of stomata in plants with crassulacean acid metabolism (CAM) is mainly shifted to the night period when atmospheric CO2 is fixed by…”
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Leaf vein density correlates with crassulacean acid metabolism, but not hydraulic capacitance, in the genus Clusia
Published in Annals of botany (25-11-2023)“…Many succulent species are characterized by the presence of Crassulacean acid metabolism (CAM) and/or elevated bulk hydraulic capacitance (CFT). Both CAM and…”
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Isolation and Characterization of Mutants of Common Ice Plant Deficient in Crassulacean Acid Metabolism
Published in Plant physiology (Bethesda) (01-05-2008)“…Crassulacean acid metabolism (CAM) is a specialized mode of photosynthesis that improves water use efficiency by shifting part or all of net atmospheric CO₂…”
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Differential usage of storage carbohydrates in the CAM bromeliad Aechmea 'Maya' during acclimation to drought and recovery from dehydration
Published in Physiologia plantarum (01-02-2009)“…CAM requires a substantial investment of resources into storage carbohydrates to account for nocturnal CO₂ uptake, thereby restricting carbohydrate…”
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Low internal air space in plants with crassulacean acid metabolism may be an anatomical spandrel
Published in Annals of botany (25-11-2023)“…Crassulacean acid metabolism (CAM) is a photosynthetic adaptation found in at least 38 plant families. Typically, the anatomy of CAM plants is characterized by…”
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Development and use of bioenergy feedstocks for semi-arid and arid lands
Published in Journal of experimental botany (01-07-2015)“…Global climate change is predicted to increase heat, drought, and soil-drying conditions, and thereby increase crop sensitivity to water vapour pressure…”
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Expression of phosphoenolpyruvate carboxylase and phosphoenolpyruvate carboxylase kinase genes. Implications for genotypic capacity and phenotypic plasticity in the expression of crassulacean acid metabolism
Published in Plant physiology (Bethesda) (01-05-2004)“…In plants with crassulacean acid metabolism (CAM), dark CO2 uptake is mediated by phosphoenolpyruvate carboxylase (PEPC), an enzyme that can be regulated at…”
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The starch-deficient plastidic PHOSPHOGLUCOMUTASE mutant of the constitutive crassulacean acid metabolism (CAM) species Kalanchoë fedtschenkoi impacts diel regulation and timing of stomatal CO2 responsiveness
Published in Annals of botany (25-11-2023)“…Crassulacean acid metabolism (CAM) is a specialized type of photosynthesis characterized by a diel pattern of stomatal opening at night and closure during the…”
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Exploiting the potential of plants with crassulacean acid metabolism for bioenergy production on marginal lands
Published in Journal of Experimental Botany (01-07-2009)“…Crassulacean acid metabolism (CAM) is a photosynthetic adaptation that facilitates the uptake of CO₂ at night and thereby optimizes the water-use efficiency of…”
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