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Development of Ecosystem Research

机译:生态系统研究的发展

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Experimental studies established the major community-physiological processes that determine the structure, growth and biodiversity of overstorey and understorey plants and resident vertebrates in an ecosystem. These community-physiological studies were promoted internationally by the UNESCO Arid Zone Research Program, the International Biological Program (Sections Productivity, Production Processes and Conservation), the International Union for the Conservation of Nature and, finally, the International Geosphere-Biosphere Program that is studying the impact of Global Warming on the World's ecosystems. During the short period of annual foliage growth in evergreen plant communities, aerodynamic fluxes (frictional, thermal, evaporative) in the atmosphere as it flows over and through a plant community determine the foliage projective covers and leaf attributes in overstorey and understorey strata. These foliar attributes determine the community-physiological constant, the evaporative coefficient, of the plant community. An increase in air temperature of2∘Cduring this period of annual foliage growth will affect the structure of the plant community, so that tall open-forests→open forests→woodlands→open scrub→low open-shrubland→desert communities. Variation in available soil water during this short period of annual foliage growth will influence vertical shoot growth but not foliage projective covers and leaf attributes produced in the overstorey stratum.
机译:实验研究确定了主要的群落生理过程,这些过程决定了生态系统中过高和低层植物以及栖息的脊椎动物的结构,生长和生物多样性。这些社区生理学研究是由联合国教科文组织的干旱地区研究计划,国际生物计划(生产力,生产过程和保护),国际自然保护联盟以及国际地圈生物圈计划在国际上推广的。研究全球变暖对世界生态系统的影响。在常绿植物群落中,在短短的年度叶片生长期间,大气在其上流过并穿过植物群落时的空气动力通量(摩擦,热,蒸发)决定了超高和低层地层的叶片射影覆盖和叶片属性。这些叶的属性决定了植物群落的群落生理常数,即蒸发系数。气温每升高2℃,在此期间每年的叶子生长都会影响植物群落的结构,因此高大的阔叶林→开阔的森林→林地→开放的灌木丛→低矮的灌木丛→荒漠群落。在每年的叶子生长的短期内,可用土壤水的变化将影响垂直枝条的生长,但不会影响在层层中产生的叶子投射盖和叶子属性。

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