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fraxinus excelsior/carbohydrate

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ČlanciKlinička ispitivanjaPatenti
Stranica 1 iz 25 rezultatima
We investigated soluble carbohydrate transport in trees that differed in their phloem loading strategies in order to better understand the transport of photosynthetic products into the roots and the rhizosphere as this knowledge is needed to better understand the respiratory processes in the
Non-structural carbohydrates (NSC, including soluble sugars and starch) are key meta-bolites in tree, the storage characteristics of which in tree organs have received extensive attention. It is still unclear how NSC are allocated in the tissues (phloem and xylem) that have different function. In

Drought and shade deplete nonstructural carbohydrate reserves in seedlings of five temperate tree species.

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Plants that store nonstructural carbohydrates (NSC) may rely on carbon reserves to survive carbon-limiting stress, assuming that reserves can be mobilized. We asked whether carbon reserves decrease in resource stressed seedlings, and if NSC allocation is related to species' relative stress
The maintenance of hydraulic function during and after a drought event is crucial for tree survival, but the importance of non-structural carbohydrates (NSCs) in the recovery phase is still debated. We tested whether higher NSC availability facilitates post-drought hydraulic recovery, by applying a

[Effects of defoliation on the allocation of non-structural carbohydrates in roots of Fraxinus mandshurica seedlings.]

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Global climate changes would lead to outbreaks of leaf-feeding insects. Leaf loss could reduce photosynthate production, with consequences on non-structural carbohydrates (NSC) storage and allocation in trees. In this study, the responses of NSC and its compartment concentrations in tap-, coarse-

Note on certain carbohydrate constituents of the bark of ash (Fraxinus excelsior).

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Safety evaluation and nutritional composition of a Fraxinus excelsior seed extract, FraxiPure™.

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A natural extract obtained from the seeds of Fraxinus excelsior L. (FraxiPure™) has been previously reported to reduce glycemia in animal models and in humans. The objective of this work was to evaluate the safety of FraxiPure™ at in vitro, in vivo and human levels. In addition, nutritional analyses

The biology of human chondrosarcoma. I. Description of the cases, grading, and biochemical analyses.

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Tissues from sixty-nine cartilage tumors in sixty-six individuals were obtained at the time of operation and each lesion was graded as benign (seventeen) or as a low-grade (thirty-three) or high-grade (nineteen) chondrosarcoma according to histological and roentgenographic criteria. The material
Transcription factors play a key role to enable plants to cope with abiotic stresses. DREB2 regulates the expression of several stress-inducible genes and constitutes major hubs in the water stress signalling webs. We cloned and characterized a novel gene encoding the FpDREB2A transcription factor

Volatile compounds in acacia, chestnut, cherry, ash, and oak woods, with a view to their use in cooperage.

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Extracts of wood from acacia, European ash, American ash, chestnut, cherry, and three oak species (Quercus pyrenaica, Quercus alba and Quercus petraea) before and after toasting in cooperage were studied by GC-MS. 110 compounds were detected, and 97 of them were identified. In general, all studied

[Evaluation of qualitative properties of amaranth (Amaranthus)].

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The work contains results of determination of protein, fat, carbohydrates, water, ash, energy value, B group vitamins (B1, B2, PP, B6) and minerals (Ca, P, Mg, Fe, Na, K, Cu, Mn, Zn, Co, Ni, Cr, Cd, Pb) in three products of amaranth. The nutrients components were determined by general approved
Differences in structural and nonstructural carbohydrates, lignin and chlorophyll, and Rubisco (ribulose-1,5-bisphosphate carboxylase/oxygenase) activity between petioles and leaflets were studied along a canopy light gradient in Fraxinus excelsior L., which has pinnate compound leaves and up to 20%
Biotic and abiotic environmental factors affect plant nutritional quality and defensive compounds that confer plant resistance to herbivory. Influence of leaf age, light availability, and girdling on foliar nutrition and defense of green ash (Fraxinus pennsylvanica Marsh) was examined in this study.
Tree roots are highly heterogeneous in form and function. Previous studies revealed that fine root respiration was related to root morphology, tissue nitrogen (N) concentration and temperature, and varied with both soil depth and season. The underlying mechanisms governing the relationship between

Chemical composition of the washed cells of Streptococcus sanguis (804) and Streptococcus mutans (B-14).

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Washed cells of Streptococcus saguis (804) and Streptococcus mutans (B14) were analyzed for water, ash, protein, carbohydrate, lipid, and nucleic acid content. Lipids were analyzed by gas chromatography. Ash was subjected to elemental analysis. These data were compared with the published values for
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