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81.
Influence of light intensity and wavelength on the yield of free radicals in seeds of tomato and carrot.
Seeds of tomato ( Lycopersicum esculentum L. cv. Gribovsky-1180) and carrot ( Daucus carota L. cv. Santanet) were irradiated by continuous light of different wavelengths (white, blue, green, red, far-red and He-Ne laser) and different power density. Free radical output was measured using Electron Spin Resonance spectra (ESR). The dependence of the content of free radicals (FR) on the light power density was established. The yield of FR in the seeds irradiated with monochromatic light of the same power density was inversely proportional to the wavelength. The ESR spectra showed maximum absolute number of FR for white light. Successive irradiations gave cumulative effects on the output of free radicals in both directions: increase by the action of white light and decrease by the action of red and far-red light. The contact of irradiated seeds with steam decreased the amount of FR.  相似文献   
82.
During the 1950s, the submerged vegetation of shallow lakes in north‐eastern Germany was dominated by nutrient tolerant species, with Ceratophyllum demersum and Myriophyllum sp. being most common. Almost one third of 300 investigated lakes had already lost their submerged macrophytes at that time. Very shallow lakes showed either high or low macrophyte abundance. Increasing depth resulted in medium macrophyte abundances, which may contribute to the stabilisation of local or temporary clearwater states. Forty years later, the percentage of lakes without macrophytes had dramatically increased. Between 55 and 85% of the investigated lakes showed a low abundance. The decline was most pronounced in very shallow lakes. The majority of the investigated lakes showed summer TP concentrations below 100 μg L–1, but no colonisation by submerged macrophytes, which indicates a resilience against re‐colonisation.  相似文献   
83.
The birth of the oil shale industry, in the Autun basin (Saône-et-Loire, department in Burgundy), at the beginning of the 1830s, corresponded to a time during which the scientific progress in geology and paleontology was quite fast-paced. The development of the schist industry happened at a time when landmark works were published such as those by Louis Agassiz or Adolphe Brongniart. These scientists relied upon the on-going findings in the Autunois area. An outstanding dynamics was on its way. It brought about the updating of many samples sparking off important paleontological studies. A remarkable coordination set up between the industrial workers of the schist industry, the local scholars on the one hand and the National Museum of Natural History in Paris on the other hand. There resulted from it a frequent if not constant interest in the discovery of the fossils that the layers of schists – exploited with the aim of obtaining oil used as a quaffing product – can contain. This dynamics kept going on till the beginning of the 19th century. It was carried out by outstanding personalities such as Bernard Renault or Auguste Roche who were at the origin of the first collections gathered by the Society of Natural History in Autun, founded in 1886. But then, the findings were made rare. The mechanization of the chopping down and crushing of the schist did not any more offer the suitable conditions to discover new specimens. Anyway, the accumulated collections are already considerable and make of the Autunois one of the major places of great French paleontological progress in the years 1870 and 1880.  相似文献   
84.
Proteins can be redesigned to fold downhill on a free energy surface characterized by only a few coordinates, confirming a principal prediction of the 'energy-landscape' model. Nonetheless, natural proteins have small but significant barriers. Spectroscopy and kinetics reveal potential biological causes for activation barriers during protein folding: evolution against protein aggregation and for protein function.  相似文献   
85.
To obtain direct dietary information, carbon and nitrogen isotope ratios were measured from bone collagen acquired from the well-preserved skeleton of a Magdalenian woman from the site of Saint-Germain-la-Rivière in southwestern France. Comparison of delta13C and delta15N values of the human bone collagen to those of bone collagen from local herbivores and carnivores indicates that the woman's primary source of protein was the meat of large terrestrial herbivores. Application of a linear mixing model to the woman's isotopic signature indicates that (1) no significant marine-derived protein contributed to her average diet; (2) saiga antelope, which dominates the faunal remains at Saint-Germain-la-Rivière, was not the main source of terrestrial protein; and (3) her pattern of subsistence reflects a less opportunistic behavior than generally attributed to humans from this period. Dietary proportions of prey reflected by the number of identified specimens are revised using meat percentage estimates, which de-emphasize the importance of saiga antelope in human subsistence at Saint-Germain-la-Rivière during the middle Magdalenian.  相似文献   
86.
Plant-associated microbial diversity encompasses symbionts, protecting their host against various aggressions. Mycorrhizal and rhizospheric microorganisms buffer effects of soil toxic compounds and soil-borne pathogens. Endophytic bacteria and fungi, some of which are vertically inherited through seeds, take part in plant protection by acting directly on aggressive factors (mainly pathogens and herbivores) or by enhancing plant responses. Plant protective microbial symbionts determine the ecological success of plants; they drastically modify plant communities and related trophic webs. This review suggests approaches to improve the inventory of diversity and functions of in situ plant-associated microorganisms.  相似文献   
87.
A study was carried out within a 700-km river sector, including three types of ecosystems (a reservoir, a river and its estuary) to characterise the major features of zooplankton communities in the Seine Basin. In rivers, zooplankton biomass becomes significant only when the growth rate of the organisms is higher than the dilution rate (4-5th orders rivers, according to River Continuum Concept). Upstream, short residence times favour the development of small species (Rotifers) with low individual body weight and biomass. Conversely, larger species (microcrustaceans) develop more downstream, where increased residence time leads to autochthonous production (Riverine Productivity Model). Such a pattern is greatly modified by human impact. Zooplankton input from the Marne reservoir represents one type of disruption in the general upstream-downstream trend (according to the Serial Discontinuity Concept). This reservoir is a source of microcrustaceans; they rapidly disappear mainly through fish predation, and therefore have little impact on the river phytoplankton. Discontinuities, such as confluences, have a relatively small effect on the stock of zooplankton with regard to the water release from the reservoir, but they persist more downstream, because they have the same lotic origin. A few microhabitats with macrophytes play a small role for this canalised river, but they can modify locally the plankton community structure and composition. As a whole, the flux of zooplankton rises exponentially, whereas discharge increases linearly from upstream (4th order) to downstream (8th order). In the canalised sectors, Dreissena larvae build up an important biomass, adding to that of the zooplankton sensu stricto. Especially abundant in the downstream sector of the Marne and Seine Rivers, the larvae show a widespread colonisation of the benthic substrates by the adult Dreissena. One of the largest mussel colonies in the middle estuary can contribute to a rapid decrease of zooplankton. Estuary ecosystems form a transitional zone between freshwater and seawater, with zooplankton dynamics closely linked to the particular conditions on this part of the river system.  相似文献   
88.
Upon nutrient deprivation, microalgae partition photosynthate into starch and lipids at the expense of protein synthesis and growth. We investigated the role of starch biosynthesis with respect to photosynthetic growth and carbon partitioning in the Chlamydomonas reinhardtii starchless mutant, sta6, which lacks ADP‐glucose pyrophosphorylase. This mutant is unable to convert glucose‐1–phosphate to ADP‐glucose, the precursor of starch biosynthesis. During nutrient‐replete culturing, sta6 does not re‐direct metabolism to make more proteins or lipids, and accumulates 20% less biomass. The underlying molecular basis for the decreased biomass phenotype was identified using LC–MS metabolomics studies and flux methods. Above a threshold light intensity, photosynthetic electron transport rates (water → CO2) decrease in sta6 due to attenuated rates of NADPH re‐oxidation, without affecting photosystems I or II (no change in isolated photosynthetic electron transport). We observed large accumulations of carbon metabolites that are precursors for the biosynthesis of lipids, amino acids and sugars/starch, indicating system‐wide consequences of slower NADPH re‐oxidation. Attenuated carbon fixation resulted in imbalances in both redox and adenylate energy. The pool sizes of both pyridine and adenylate nucleotides in sta6 increased substantially to compensate for the slower rate of turnover. Mitochondrial respiration partially relieved the reductant stress; however, prolonged high‐light exposure caused accelerated photoinhibition. Thus, starch biosynthesis in Chlamydomonas plays a critical role as a principal carbon sink influencing cellular energy balance however, disrupting starch biosynthesis does not redirect resources to other bioproducts (lipids or proteins) during nutrient‐replete culturing, resulting in cells that are susceptible to photochemical damage caused by redox stress.  相似文献   
89.
90.
目的:用建立的稳定表达脆性组氨酸三联体(Fhit)突变体的细胞株,研究 Fhit 与复制蛋白 A(RPA)之间的相互作用对细胞在 DNA 损伤后的影响.方法:用电离辐射或 DNA 损伤诱导剂喜树碱处理稳定表达 Fhit 突变体的阳性细胞株 HeLa-FhitA/D/F 后,通过流式细胞技术、MTT 比色法及克隆形成实验,检测这些细胞系的细胞周期变化情况以及对 DNA 损伤诱导剂的敏感性.结果:DNA 损伤诱导剂处理后,Fhit 突变体基的高表达可以使细胞表现出更强的G2期阻滞及对 DNA 损伤诱导剂更耐受.结论:Fhit 与 RPA 相互作用的改变影响了细胞对 DNA 损伤诱导剂的耐受性,为阐明 Fhit 在维持基组完整性方面的机理提供了线索.  相似文献   
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