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941.
Silvano Fares Elina Oksanen Mika Lännenpää Riitta Julkunen-Tiitto Francesco Loreto 《Photosynthesis research》2010,104(1):61-74
Plants are exposed to increasing levels of tropospheric ozone concentrations. This pollutant penetrates in leaves through
stomata and quickly reacts inside leaves, thus making plants valuable ozone sinks, but at the same time triggers oxidation
processes which lead to leaf injuries. To counteract these negative effects, plants produce an array of antioxidants which
react with ozone and reactive molecules which ozone generates in the leaf tissues. In this study, we measured the effect of
an ozone concentration which is likely to be attained in many areas of the world in the near future (80 ppb) on leaves of
the vertical profile of the widespread agroforestry species Populus nigra. Changes in (1) physiological parameters (photosynthesis and stomatal conductance), (2) ozone uptake, (3) emission of volatile
organic compounds (VOCs, i.e. isoprene, methanol and other oxygenated compounds), (4) concentration of antioxidant surface
compounds, and (5) concentration of phenolic compounds were assessed. The aim was to assess whether the defensive pathways
leading to isoprenoids and phenolics formation were induced when a moderate and chronic increment of ozone is not able to
damage photosynthesis. No visual injuries and minor changes in physiology and ozone uptake were observed. The emission of
isoprene and oxygenated six-carbon (C6) volatiles were inhibited by ozone, whereas methanol emission was increased, especially
in developing leaves. We interpret these results as suggesting an ontogenetic shift in ozone-treated leaves, leading to a
slower development and a faster senescence. Most surface and phenolic compounds showed a declining trend in concentration
from the youngest to the fully expanded leaves. Ozone reduced the concentrations of chlorogenic acid derivatives at the leaf
surface, whereas in total leaf extracts a metabolic shift towards few phenolics with higher antioxidant capacity was observed. 相似文献
942.
Nakazawa Y Sagane Y Kikuchi T Uchino M Nagai T Sato H Toeda K Takano K 《The protein journal》2010,29(8):598-608
We previously isolated Streptomyces racemochromogenes strain 10-3, which produces a phospholipase D (PLD) with high transphosphatidylation activity. Here, we purified and cloned
the PLD (PLD103) from the strain. PLD103 exerted the highest hydrolytic activity at a slightly alkaline pH, which is in contrast
to the majority of known Streptomyces PLDs that have a slightly acidic optimum pH. PLD103 shares only 71–76% amino acid sequence identity with other Streptomyces PLDs that have a slightly acidic optimum pH; thus, the diversity in the primary structure might explain the discrepancy observed
in the optimum pH. The purified PLD displayed high transphosphatidylation activity in the presence of glycerol, l-serine, and 2-aminoethanol hydrochloride with a conversion rate of 82–97% in a simple one-phase system, which was comparable
to the rate of other Streptomyces PLDs in a complicated biphasic system. 相似文献
943.
Geert Potters Marcel A. K. Jansen Nele Horemans Yves Guisez Taras Pasternak 《In vitro cellular & developmental biology. Plant》2010,46(3):289-297
A Nicotiana tabacum L. SR-1 leaf protoplast system was used to study the effects of dehydroascorbate and glutathione on cellular development. We found that dehydroascorbate is readily taken up by protoplasts and internally reduced to ascorbate. Concomitantly, cell division was inhibited and cell expansion stimulated. In this respect, dehydroascorbate counteracted auxin-mediated leaf protoplast development. In contrast to the effects of dehydroascorbate, glutathione-induced cell dedifferentiation, and this effect is similar to that mediated by high auxin concentrations. We conclude that dehydroascorbate and glutathione affect the auxin-mediated regulation of cellular development. Therefore, the biological role of these compounds extends beyond stress tolerance and defense. 相似文献
944.
Vedat Cinar Rasim Mogulkoc Abdulkerim Kasim Baltaci Ozgur Bostanci 《Biological trace element research》2010,133(1):29-33
This study was performed to determine how the calcium supplementation for a 4-week period affects the glucose and insulin
levels at rest and at exhaustion in athletes. This is a 4-week study performed on 30 healthy subjects varying between 18 and
22 ages. Subjects were separated into three groups: first group (group supplemented with calcium, sedentary group), second
group (calcium supplementations + exercise group), and third group (training group). Glucose and insulin parameters of the
groups were measured four times, at rest and exhaustion in the beginning of the research and at rest and exhaustion after
the end of 4 weeks application period. Exhaustion measurements both before and after the supplementations significantly decreased
in compared to rest measurements in terms of insulin (p < 0.05). Significant difference was not determined in the glucose values of groups. In terms of glucose, values increased
in all of the three groups occurred with exercise both before and after the supplementation by exercise and exhaustion (p < 0.05). The results of our study indicate that calcium gluconate supplementations for 4 weeks in sedentary subjects and
athletes did not significantly affect plasma insulin levels at rest and exhaustion. However, glucose levels were affected
by calcium supplementation and exhausting exercise in athletes. 相似文献
945.
946.
Zong-wen Pang Jing-juan Liang Xiao-juan Qin Ji-rui Wang Jia-xun Feng Ri-bo Huang 《Biotechnology letters》2010,32(12):1847-1851
Kluyveromyces marxianus GX-15 was mutated multiple times by alternately treatment with UV irradiation and NTG for two cycles. Four mutant strains
with improved ethanol yield were obtained. The maximum ethanol concentration, ethanol yield coefficient and theoretical ethanol
yield of the best mutant strain, GX-UN120, was 69 g/l, 0.46 g/g and 91%, respectively, when fermenting 150 g glucose/l at
40°C. The corresponding values for GX-15 were 58 g/l, 0.39 g/g and 76%, respectively. GX-UN120 grew well in 11% (v/v) of ethanol,
while GX-15 could not grow when ethanol was greater than 8% (v/v). 相似文献
947.
948.
A new species, Allium pseudosenescens, belonging to sect. Rhizirideum (Alliaceae), is described from northeastern China. It is easily distinguished from A. senescens by the slender pedicels, pale pink perianths, narrower tepals and ovaries, yellowish anthers, and sometimes toothed subulate
filaments. Also, A. senescens var. minus in sect. Rhizirideum is raised to the rank of species, as A. minus. This Korean endemic taxon is shown to be a biologically distinct species based on morphological and cytological characters.
Taxonomic keys for the species of Allium sect. Rhizirideum in northeastern China and Korea are provided. 相似文献
949.
For animals to carry out a wide range of detection, recognition and navigation tasks, visual motion signals are crucial. The
encoding of motion information has therefore, attracted much attention in the experimental and computational study of brain
function. Two main alternative mechanisms have been proposed on the basis of behavioural and physiological experiments. On
one hand, correlation-type and motion energy detectors are simple and efficient in the design of their basic mechanism but
are tuned to temporal frequency rather than to speed. On other hand, gradient-type motion detectors directly represent an
estimate of speed, but may require more demanding processing mechanisms. We demonstrate here how the temporal frequency dependence
observed for sine-wave gratings can disappear for less constrained stimuli, to be replaced by responses reflecting speed for
stimuli like square waves when a phase-sensitive detection mechanism is employed. We conclude from these observations that
temporal frequency tuning is not necessarily a limitation for motion vision based on correlation detectors, and more generally
demonstrate in view of the typical Fourier composition of natural scenes, that correlation detectors operating in such environments
can encode image speed. In the context of our results, we discuss the implications of the loss of phase sensitivity inherent
in using a linear system approach to describe neural processing. 相似文献
950.
Seasonal dynamics of zooplankton in a shallow eutrophic,man-made hyposaline lake in Delhi (India): role of environmental factors 总被引:1,自引:0,他引:1
Old Fort Lake, a small (1.6 ha), shallow, and recreational water body in Delhi (India) was studied through monthly surveys
in two consecutive years (January, 2000–December, 2001). Precipitation is the major source of water for this closed basin
lake. In addition, ground water is used for replenishing the lake regularly. This alkaline, hyposaline hard water lake contains
very high ionic concentration, especially of nitrates. Based on overall ionic composition, this lake can be categorized as
chloride–sulfate alkaline waters with the anion sequence dominated by SO4
2− > Cl− > HCO3
−, and the cations by Mg++ > Ca++. The overall seasonal variability in physicochemical profile was largely regulated by the annual cycle of evaporation and
precipitation, whereas the ground water largely influences its water quality. The lake exhibited phytoplankton-dominated turbid
state due to dominance of the blue green alga, Microcystis aeruginosa. The persistent cyanobacterial blooms and the elevated nutrient levels are indicative of the cultural eutrophication of the
lake. This study focuses on the relative importance of eutrophic vis-à-vis hyposaline conditions in determining the structure
and seasonal dynamics of zooplankton species assemblages. A total of 52 zooplankton species were recorded and rotifers dominated
the community structure qualitatively as well as quantitatively. The genus Brachionus comprised a significant component of zooplankton community with B. plicatilis as the most dominant species. The other common taxa were B. quadridentatus, B. angularis, Lecane grandis, L. thalera, L. punctata, Mesocyclops sp., and Alona rectangula. Multivariate data analysis techniques, Canonical Correspondence Analysis (CCA) along with Monte Carlo Permutation Tests
were used to determine the minimum number of environmental factors that could explain statistically significant (P < 0.05) proportions of variation in the species data. The significant variables selected by CCA were NH3–N followed by percent saturation of DO, COD, SS, BOD, NO2–N, rainfall, silicates, and PO4–P. The results indicate that the seasonal succession patterns of the zooplankton species were largely controlled by physicochemical
factors related directly or indirectly to the process of eutrophication, whereas hyposaline conditions in the lake determined
the characteristic species composition.
Guest Editors: J. John & B. Timms
Salt Lake Research: Biodiversity and Conservation—Selected papers from the 9th Conference of the International Society for
Salt Lake Research 相似文献