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61.
《植物生态学报》2015,39(9):932
The concept of ecological thresholds was raised in the 1970s. However, it was subsequently given different definitions and interpretations depending on research fields or disciplines. For most scientists, ecological thresholds refer to the points or zones that link abrupt changes between alternative stable states of an ecosystem. The measurement and quantification of ecological thresholds have great theoretical and practical significance in ecological research for clarifying the structure and function of ecosystems, for planning sustainable development modes, and for delimiting ecological red lines in managing the ecosystems of a region. By reviewing the existing concepts and classifications of ecological thresholds, we propose a new concept and definition at two different levels: the ecological threshold points, i.e. the turning points of quantitative changes to qualitative changes, which can be considered as ecological red lines; the ecological threshold zones, i.e. the regime shifts of the quantitative changes among different stable states, which can be considered as the yellow and/or orange warning boundaries of the gradual ecological changes. The yellow thresholds mean that an ecosystem can return to a stable state by its self-adjustment, the orange thresholds indicate that the ecosystem will stay in the equilibrium state after interference factors being removed, whereas the red thresholds, as the critical threshold points, indicate that the ecosystem will undergo irreversible degradation or even collapse beyond those points. We also summarizes two types of popular Methods in determining ecological thresholds: statistical analysis and modeling based on data of field observations. The applications of ecological thresholds in ecosystem service, biodiversity conservation and ecosystem management research are also reviewed. Future research on ecological thresholds should focus on the following aspects: (1) methodological development for measurement and quantification of ecological thresholds; (2) emphasizing the scaling effect of ecological thresholds and establishment of national-scale observation system and network; and (3) implementation of ecological thresholds as early warning tools in ecosystem management and delimiting ecological red lines. 相似文献
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Fast protein liquid chromatography on Superose 6 of crude extracts from Chlorella kessleri, Fott et Novákóva, grown autotrophically in blue or in red light yields three different oligomeric forms of phosphofructokinase (PFK, EC 2.7.1.11). Their substrate affinities and responses to homotropic and heterotropic effectors are different. In vitro, the degree of oligomerization of the enzyme can be influenced by specific intermediates or cofactors. Its substrate, MgATP (10 mM/5 mM), and the negative effector, phosphoenolpyruvate (5 mM), both lead to some dissociation, while the second substrate, fructose-6-phosphate (5 mM), and the positive effector, inorganic phosphate (50 mM), have no effect. It is discussed whether formation or dissociation of oligomeric PFK forms in vivo result from alterations in the levels or in the intracellular distribution of effector molecules and whether such processes are involved in the different regulation of cell metabolism in blue or in red light. 相似文献
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Boundaries of loop domains (insulators): Determinants of chromosome form and function in multicellular eukaryotes 下载免费PDF全文
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退耕还林还草工程对陕北地区生态系统服务价值时空演变的影响 总被引:5,自引:0,他引:5
基于陕北地区1990、2000、2015年土地利用数据,运用单位面积生态系统价值当量因子法、格网法、探索性空间数据法(ESDA),分析了退耕还林还草工程实施前后生态系统服务价值(ESV)的空间分布和演化规律,探讨了退耕还林还草工程对ESV的影响。结果表明:(1)陕北地区退耕还林还草工程实施效果显著,工程实施后共有297066.15 hm2耕地转化为林地和草地,林草覆盖率由57.33%增长至60.50%。(2)退耕还林还草工程使得陕北地区ESV得到了显著提升。25年间陕北地区ESV共增加了32.82亿元,ESV在工程实施后比工程实施前多增加了5.93亿元,增长主要源于退耕引起林地和草地面积的增加。(3)ESV空间分布上呈显著的“南高北低”分布格局,并表现出正向的集聚性和依存性,ESV热点区和冷点区集聚效果明显,热点区集聚与林地、草地的空间分布相吻合,冷点区集聚与未利用地、耕地和建设用地的空间分布相吻合。(4)受退耕还林还草工程影响,陕北地区中部中等等级和次高ESV分布区域逐渐增大、次热点区空间集聚性逐渐增强,北部次低等级和低等级ESV分布区域逐渐减少、冷点区空间集聚性逐渐减弱。整体而言,陕北地区土地利用类型转移和ESV的增减变化与推行退耕还林还草工程在时间上相呼应、在空间上相匹配,退耕还林还草工程实施使得陕北地区生态环境得到了有效改善,ESV得到了显著提升。 相似文献
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The hydrology of the Loosdrecht lakes area 总被引:5,自引:5,他引:0
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