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排序方式: 共有174条查询结果,搜索用时 31 毫秒
91.
BEN P. WERLING TIMOTHY D. MEEHAN BRUCE A. ROBERTSON CLAUDIO GRATTON DOUGLAS A. LANDIS 《Global Change Biology Bioenergy》2011,3(5):347-359
We examined the potential local‐ and landscape‐level impacts of different biofuel production systems on biocontrol, an important service provided by arthropod natural enemies. Specifically, we sampled natural enemies with sweep nets and measured predation of sentinel pest eggs in stands of corn, switchgrass and mixed prairie in Michigan and Wisconsin (total n=40 for natural enemy sampling, n=60 for egg predation), relating them to crop type, forb cover and diversity, and the composition and heterogeneity of the surrounding landscape. Grasslands with intermediate levels of forb cover and flower diversity supported two‐orders of magnitude more natural enemy biomass, fourfold more natural enemy families, and threefold greater rates of egg predation than corn. Data suggest this was in part due to a general increase in biomass, richness and predation in perennial grasslands compared with corn, combined with a positive effect of intermediate levels of forb cover and flower diversity. Specifically, natural enemy biomass and family richness showed hump‐shaped relationships to forb cover that peaked in sites with 5–25% forbs, while egg predation increased with floral diversity. At the landscape scale, both natural‐enemy biomass and egg predation increased with the area of forest in the landscape, and egg predation almost doubled as the area of herbaceous, perennial habitats within 1.5 km of study sites increased. Our results suggest that floristically diverse, perennial grasslands support diverse and abundant predator communities that contribute to natural pest suppression. In addition, large‐scale production of biofuel crops could positively or negatively affect biocontrol services in agricultural landscapes through associated changes in the area of perennial habitats. Biofuel landscapes that incorporate perennial grasslands could support a variety of beneficial organisms and ecosystem services in addition to producing biomass. 相似文献
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Growth, N-metabolism and isoenzyme pattern of glutamate dehydrogenase in batch-cultures of Pisum sativum cells under light and dark conditions. Cell suspension cultures of Pisum sativum L. derived from root and shoot sections of seedlings have been prepared and cultured in defined nutrient medium. Both the cells and the media were analysed daily for the N-fractions and carbohydrates during the growth period. The data obtained indicate specific correlations between growth and nitrogen and carbohydrate metabolism. At the beginning of the growth cycle ammonia as compared to nitrate was favoured in uptake. An increased uptake of nitrate occurred at the end of the linear growth phase when carbohydrate in the media was depleted. The uptake of sucrose was rapid during the whole growth cycle, only in the range of the linear growth phase the uptake stagnated for 3 or 4 days. During increased biosynthesis of nitrogenous compounds at the beginning of the growth cycle up to seven isoenzymes of the glutamate dehydrogenase could be separated by polyacrylamide gel electrophoresis. The isoenzyme pattern changed during the stationary growth phase, especially when the carbohydrate content in the medium decreased. There is some evidence that the isoenzyme pattern is influenced by carbohydrate metabolism. 相似文献
94.
FRIDA BEN RAIS LASRAM FRANÇOIS GUILHAUMON CAMILLE ALBOUY SAMUEL SOMOT WILFRIED THUILLER DAVID MOUILLOT 《Global Change Biology》2010,16(12):3233-3245
The Mediterranean Sea is a hotspot of biodiversity, and climate warming is expected to have a significant influence on its endemic fish species. However, no previous studies have predicted whether fish species will experience geographic range extensions or contractions as a consequence of warming. Here, we projected the potential future climatic niches of 75 Mediterranean Sea endemic fish species based on a global warming scenario implemented with the Mediterranean model OPAMED8 and a multimodel inference, which included uncertainty. By 2070–2099, the average surface temperature of the Mediterranean Sea was projected to warm by 3.1 °C. Projections for 2041–2060 are that 25 species would qualify for the International Union for the Conservation of Nature and Natural Resources (IUCN) Red List, and six species would become extinct. By 2070–2099, 45 species were expected to qualify for the IUCN Red List whereas 14 were expected to become extinct. By the middle of the 21st century, the coldest areas of the Mediterranean Sea (Adriatic Sea and Gulf of Lion) would act as a refuge for cold‐water species, but by the end of the century, those areas were projected to become a ‘cul‐de‐sac’ that would drive those species towards extinction. In addition, the range size of endemic species was projected to undergo extensive fragmentation, which is a potentially aggravating factor. Since a majority of endemic fishes are specialists, regarding substratum and diet, we may expect a reduced ability to track projected climatic niches. As a whole, 25% of the Mediterranean Sea continental shelf was predicted to experience a total modification of endemic species assemblages by the end of the 21st century. This expected turnover rate could be mitigated by marine protected areas or accelerated by fishing pressure or competition from exotic fishes. It remains a challenge to predict how these assemblage modifications might affect ecosystem function. 相似文献
95.
Abstract: In the semiarid Mulga Lands of southern Queensland soil nitrogen (N) levels have declined after clearance of the native mulga (Acacia aneura F. Muell. ex Benth.) and conversion to grazed buffel grass (Cenchrus ciliaris) pasture. At three mulga sites, declines in soil total N ranged from 14% to 28% in the surface 10 cm of soil. In situ net N mineralization from December 2003 until November 2004 in the surface 10 cm was 49.5 kg N ha?1 year?1 in the mulga woodland, 48.2 kg N ha?1 year?1 in the young (<5 years old) buffel pasture (previously sown to wheat (Triticum aestivum L.) and 34.6 kg N ha?1 year?1 in the old buffel pasture (>20 years). Ammonium‐N was the dominant N pool under mulga in the top 30 cm, while nitrate‐N was dominant under the buffel pastures. Although ammonium‐N under mulga was significantly different to that for 21‐year‐old buffel pasture at all depths, nitrification and net N mineralization were not different between the three land uses at any depth or in the entire 90 cm profile. The Soil Nitrogen Availability Predictor model was used to predict field N mineralization rates for the mulga woodland and 21‐year‐old buffel pasture by using a medium‐term (6‐week) laboratory incubation to establish basal rates of N mineralization. The Soil Nitrogen Availability Predictor overestimated annual net N mineralization in the 0–30 cm depth of mulga by 9% and underestimated it by 28% for the old buffel pasture. The Soil Nitrogen Availability Predictor could be modified further to accurately predict net N mineralization for the mulga woodlands. 相似文献
96.
Summer heatwaves promote blooms of harmful cyanobacteria 总被引:13,自引:0,他引:13
KLAUS D. JÖHNK JEF HUISMAN JONATHAN SHARPLES† BEN SOMMEIJER‡ PETRA M. VISSER JASPER M. STROOM§ 《Global Change Biology》2008,14(3):495-512
Dense surface blooms of toxic cyanobacteria in eutrophic lakes may lead to mass mortalities of fish and birds, and provide a serious health threat for cattle, pets, and humans. It has been argued that global warming may increase the incidence of harmful algal blooms. Here, we report on a lake experiment where intermittent artificial mixing failed to control blooms of the harmful cyanobacterium Microcystis during the summer of 2003, one of the hottest summers ever recorded in Europe. To understand this failure, we develop a coupled biological–physical model investigating how competition for light between buoyant cyanobacteria, diatoms, and green algae in eutrophic lakes is affected by the meteorological conditions of this extreme summer heatwave. The model consists of a phytoplankton competition model coupled to a one-dimensional hydrodynamic model, driven by meteorological data. The model predicts that high temperatures favour cyanobacteria directly, through increased growth rates. Moreover, high temperatures also increase the stability of the water column, thereby reducing vertical turbulent mixing, which shifts the competitive balance in favour of buoyant cyanobacteria. Through these direct and indirect temperature effects, in combination with reduced wind speed and reduced cloudiness, summer heatwaves boost the development of harmful cyanobacterial blooms. These findings warn that climate change is likely to yield an increased threat of harmful cyanobacteria in eutrophic freshwater ecosystems. 相似文献
97.
利用FPLC系统结合自装层析柱纯化兔血清IgG 总被引:1,自引:0,他引:1
为了建立一种简便、成本低的纯化兔血清IgG的实用方法,采用FPLC系统结合实验室常规手段填充的Sephacryl-S200凝胶柱和DEAE-Sephadex A-50离子交换柱进行兔血清IgG的纯化,结果表明,在流速为0.5ml/min时,此方法可以纯化得到高纯度的兔IgG;脱盐柱Sephadex G-25重复实验证明此实验方法具有很好的稳定性;并且与商品化的层析柱相比,成本大为下降;此方法主要的不足之处是层析柱的流速较低,为0.5ml/min左右。该方法可以推广到其他生物大分子的纯化中去。 相似文献
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