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有机和常规生产系统中甜瓜氮素吸收差异分析 总被引:1,自引:0,他引:1
在甜瓜有机生产系统中,设置3个有机肥料水平处理,即空白(OZ)、半量施肥(OH)和标准施肥(OS),在常规生产系统中设置两个化肥水平处理.即空白(CZ)和正常施肥(CS),以研究有机和常规两种土壤中速效氮的变化及甜瓜对氮素的吸收规律.结果表明,在甜瓜的生长发育过程中,有机肥料向土壤中提供了与常规处理相同水平的速效氮.两种生产系统中甜瓜的生物量和产量差异不显著,且不受施肥水平的影响.甜瓜植株的氮素含量在生育过程中逐渐降低,氮素吸收量逐渐增加,常规处理显著高于有机处理,生产系统内部不同的施肥水平之间差异不显著.常规处理中甜瓜的氮素吸收速率显著高于有机处理,同时植株体内积累了较多的硝态氮从而降低了氮素利用效率.图4表4参22 相似文献
104.
Claas Hiebenthal Eva E. R. Philipp Anton Eisenhauer Martin Wahl 《Marine Biology》2013,160(8):2073-2087
Acidification of the World’s oceans may directly impact reproduction, performance and shell formation of marine calcifying organisms. In addition, since shell production is costly and stress in general draws on an organism’s energy budget, shell growth and stability of bivalves should indirectly be affected by environmental stress. The aim of this study was to investigate whether a combination of warming and acidification leads to increased physiological stress (lipofuscin accumulation and mortality) and affects the performance [shell growth, shell breaking force, condition index (Ci)] of young Mytilus edulis and Arctica islandica from the Baltic Sea. We cultured the bivalves in a fully-crossed 2-factorial experimental setup (seawater (sw) pCO2 levels “low”, “medium” and “high” for both species, temperature levels 7.5, 10, 16, 20 and 25 °C for M. edulis and 7.5, 10 and 16 °C for A. islandica) for 13 weeks in summer. Mytilus edulis and A. islandica appeared to tolerate wide ranges of sw temperature and pCO2. Lipofuscin accumulation of M. edulis increased with temperature while the Ci decreased, but shell growth of the mussels only sharply decreased while its mortality increased between 20 and 25 °C. In A. islandica, lipofuscin accumulation increased with temperature, whereas the Ci, shell growth and shell breaking force decreased. The pCO2 treatment had only marginal effects on the measured parameters of both bivalve species. Shell growth of both bivalve species was not impaired by under-saturation of the sea water with respect to aragonite and calcite. Furthermore, independently of water temperatures shell breaking force of both species and shell growth of A. islandica remained unaffected by the applied elevated sw pCO2 for several months. Only at the highest temperature (25 °C), growth arrest of M. edulis was recorded at the high sw pCO2 treatment and the Ci of M. edulis was slightly higher at the medium sw pCO2 treatment than at the low and high sw pCO2 treatments. The only effect of elevated sw pCO2 on A. islandica was an increase in lipofuscin accumulation at the high sw pCO2 treatment compared to the medium sw pCO2 treatment. Our results show that, despite this robustness, growth of both M. edulis and A. islandica can be reduced if sw temperatures remain high for several weeks in summer. As large body size constitutes an escape from crab and sea star predation, this can make bivalves presumably more vulnerable to predation—with possible negative consequences on population growth. In M. edulis, but not in A. islandica, this effect is amplified by elevated sw pCO2. We follow that combined effects of elevated sw pCO2 and ocean warming might cause shifts in future Western Baltic Sea community structures and ecosystem services; however, only if predators or other interacting species do not suffer as strong from these stressors. 相似文献
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Environmental Economics and Policy Studies - As climate change has gained more attention in the last decade, effects of environmental regulation on productivity are important to design green tax... 相似文献