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pinus/carbohydrate

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Página 1 a partir de 221 resultados

Molecular response to water stress in two contrasting Mediterranean pines (Pinus pinaster and Pinus pinea).

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Adaptation to water stress has determined the evolution and diversification of vascular plants. Water stress is forecasted to increase drastically in the next decades in certain regions, such as in the Mediterranean basin. Consequently, a proper knowledge of the response and adaptations to drought

Gravitational stress on germinating Pinus pinea seeds.

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In the germination of lipid-rich seeds, the glyoxylate cycle plays a control role in that, bypassing the two decarboxylative steps of the Krebs cycle; it allows the net synthesis of carbohydrates from lipids. The activity of isocitrate lyase, the key enzyme of the glyoxylate cycle, is an indicator

Low molecular weight carbohydrates in pine nuts from Pinus pinea L.

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Low molecular weight carbohydrates in pine nuts from Pinus pinea L. (n = 7) have been studied by gas chromatography-mass spectrometry as their trimethylsilyl oximes. Besides previously reported components, such as glucose, fructose, sucrose, and raffinose, several soluble carbohydrates have been

CARBOHYDRATE CHANGES WITHIN THE NEEDLES OF PINUS PONDEROSA AND PSEUDOTSUGA TAXIFOLIA.

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Carbohydrate relations during propagation of cuttings from sexually mature Pinus banksiana trees.

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Concentrations of glucose, sucrose, soluble reducing sugars, starch and total non-structural carbohydrate were determined during propagation of cuttings from sexually mature Pinus banksiana Lamb. trees. Such cuttings rarely initiate adventitious roots whatever the method or duration of propagation.

Pinus sylvestris L. needles contain extracellular CuZn superoxide dismutase.

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Four new isoforms of superoxide dismutase (SOD; superoxide: superoxide oxidoreductase, EC 1.15.1.1.) were identified in extracellular washing fluid from Scots pine (Pinus sylvestris L.) needles. The isoforms had an apparent molecular mass of 33 kDa. No neutral carbohydrates were present in the

Preliminary studies on TCF bleaching of Pinus pinaster acetosolv pulps.

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Oxygen pre-treatment of Pinus pinaster acetosolv pulps has been studied as a first step towards TCF bleaching. Using a 2(3) factorial design, the influence of temperature (80-120 degrees C), time (1-2 h) and NaOH concentration (1.5-3%) on pulp yield in the oxygen stage, chemical composition and

[Soil microbial functional diversity of different altitude Pinus koraiensis forests].

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In order to comprehensively understand the soil microbial carbon utilization characteristics of Pinus koraiensis forests, we took the topsoil (0-5 cm and 5-10 cm) along the 700-1100 m altitude in Changbai Mountains and analyzed the vertical distributed characteristics and variation of microbial

Stem compression reversibly reduces phloem transport in Pinus sylvestris trees.

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Manipulating tree belowground carbon (C) transport enables investigation of the ecological and physiological roles of tree roots and their associated mycorrhizal fungi, as well as a range of other soil organisms and processes. Girdling remains the most reliable method for manipulating this flux and

Effects of acid precipitation and aluminum on carbohydrate metabolism in mycorrhizae of Pinus massioniana.

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Temporal dynamics of non-structural carbohydrates and xylem growth in Pinus sylvestris exposed to drought.

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Wood formation requires a continuous supply of carbohydrates for structural growth and metabolism. In the montane belt of the central Austrian Alps we monitored the temporal dynamics of xylem growth and non-structural carbohydrates (NSC) in stem sapwood of Pinus sylvestris L. during the growing

Homeostatic levels of nonstructural carbohydrates after 13 yr of drought and irrigation in Pinus sylvestris.

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Nonstructural carbohydrates (NSCs) are important for the growth and survival of trees. Drought may lead to a decrease in tree growth and to NSC depletion, whereas increased soil moisture in otherwise dry ecosystems may increase growth and NSC concentrations. A long-term (13 yr) irrigation experiment

Transcriptional Analysis of Masson Pine (Pinus massoniana) under High CO2 Stress.

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To explore the molecular mechanism of the response of Masson pine (Pinus massoniana), the main coniferous tree in southern China, to high CO2 stress, transcriptome sequencing was carried out to analyze the genome-wide responses of annual seedlings under different durations (0 h, 6

Carbohydrate-related genes and cell wall biosynthesis in vascular tissues of loblolly pine (Pinus taeda).

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Loblolly pine (Pinus taeda L.), the most widely planted tree species in the United States, is an important source of wood and wood fibers for a multitude of consumer products. Wood fibers are primarily composed of secondary cell walls, and cellulose, hemicelluloses and lignin are major components of

Genetic and environmental control of seasonal carbohydrate dynamics in trees of diverse Pinus sylvestris populations.

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We explored environmental and genetic factors affecting seasonal dynamics of starch and soluble nonstructural carbohydrates in needle and twig cohorts and roots of Scots pine (Pinus sylvestris L.) trees of six populations originating between 49 degrees and 60 degrees N, and grown under common garden
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