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巴山木竹发笋和大熊猫取食的时空格局及相关性分析 被引量:18
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作者 卢志军 王巍 +5 位作者 张文辉 李红 曹庆 党高弟 何东 scott franklin 《生物多样性》 CAS CSCD 北大核心 2009年第1期1-9,共9页
巴山木竹(Bashania fargesii)是秦岭大熊猫冬季和春季主要食物来源。秦岭地区巴山木竹的更新是保护大熊猫和评价其生境质量的一个重要因子,而发笋是巴山木竹更新的主要方式。揭示巴山木竹发笋和大熊猫取食的时空格局以及二者空间和数量... 巴山木竹(Bashania fargesii)是秦岭大熊猫冬季和春季主要食物来源。秦岭地区巴山木竹的更新是保护大熊猫和评价其生境质量的一个重要因子,而发笋是巴山木竹更新的主要方式。揭示巴山木竹发笋和大熊猫取食的时空格局以及二者空间和数量上的相关性对保护和恢复大熊猫栖息地具有重要意义。运用单变量和双变量Ripley K函数点格局方法,对秦岭南坡佛坪国家级自然保护区40×40m永久样地竹子发笋和大熊猫取食情况连续6年(2002-2008年,2007年除外)研究表明,由于自身克隆生长、资源异质性、大熊猫取食和践踏等因素,巴山木竹发笋呈现聚集分布格局;而大熊猫取食的聚集格局可能归因于食物聚集分布、自身取食习惯和取食地段小地形特征。大熊猫取食和巴山木竹发笋空间上呈现正相关,显示出巴山木竹为秦岭大熊猫食物主要来源。同时,线性回归结果显示,大熊猫取食强度与巴山木竹发笋产量之间相关性不显著,说明该地区还存在其他竹子提供食物来源,大熊猫对巴山木竹不是完全依赖。 展开更多
关键词 大熊猫保护 动植物关系 空间点格局 Ripley’s K 种群更新
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Heterotrophic and Autotrophic Soil Respiration under Simulated Dormancy Conditions
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作者 Daniel Beverly scott franklin 《Open Journal of Forestry》 2015年第3期274-286,共13页
Carbon cycling research has increased over the past 20 years, but less is known about the primary contributors to soil respiration (i.e. heterotrophic and autotrophic) under dormant conditions. It is understood that s... Carbon cycling research has increased over the past 20 years, but less is known about the primary contributors to soil respiration (i.e. heterotrophic and autotrophic) under dormant conditions. It is understood that soil CO2 effluxes are significantly lower during the winter of temperate ecosystems and assumed microorganisms dominate efflux origination. We hypothesized that heterotrophic contributions would be greater than autotrophic under simulated dormancy conditions. To test this hypothesis, we designed an experiment with the following treatments: combined autotrophic heterotrophic respiration, heterotrophic respiration, autotrophic respiration, no respiration, autotrophic respiration in vermiculite, and no respiration in vermiculite. Engelmann spruce seedlings and soil substrates were placed in specially designed respiration chambers and soil CO2 efflux measurements were taken four times over the course of a month. Soil microbial densities and root volumes were measured for each chamber after day thirty-three. Seedling presence resulted in significantly higher soil CO2 efflux rates for all soil substrates. Autotrophic respiration treatments were not representative of solely autotrophic soil CO2 efflux due to soil microbial contamination of autoclaved soil substrates;however, the mean autotrophic contributions averaged less than 25% of the total soil CO2 efflux. Soil microorganism communities were likely the primary contributor to soil CO2 efflux in simulated dormant conditions, as treatments with the greatest proportions of microbial densities had the highest soil CO2 efflux rates. Although this study is not directly comparable to field dormant season soil CO2 effluxes of Engelmann spruce forest, as snowpack is not maintained throughout this experiment, relationships, and metrics from such small-scale ecosystem component processes may yield more accurate carbon budget models. 展开更多
关键词 Dormant AUTOTROPHIC RESPIRATION HETEROTROPHIC RESPIRATION Dormant SOIL CO2 EFFLUX SOIL RESPIRATION Engelmann SPRUCE
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