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植物的呼吸代谢,大小和的普遍缩放
Peter B Reich1, Mark G Tjoelker, Jose-Luis Machado
1Department of Forest Resources, University of Minnesota, St Paul, Minnesota 55108, USA. preich@umn.edu
Nature
|January 27, 2006
概括
植物的呼吸速率与质量对比,与动物不同. 这一发现在各种条件中一致,表明植物和动物之间存在不同的代谢缩放机制.
科学领域:
- 植物生理学 植物生理学
- 代谢缩放的代谢缩放
- 生态生态学 生态生态学
背景情况:
- 动物的新陈代谢按三分之四的法则与体重相比例.
- 人们还认为植物新陈代谢遵循这种全米缩放规则.
- 在植物和动物中,类似的缩放被归因于碎形运输网络.
研究的目的:
- 为了研究整个植物的呼吸速率与植物质量的缩放.
- 为了确定植物代谢缩放是否遵循已建立的动物全度规则.
- 检查呼吸速率与植物含量之间的关系.
主要方法:
- 分析了来自大约500种实验室和野外种植植物的呼吸数据,涉及43个物种.
- 呼吸速率与植物总质量的缩放指数的比较.
- 在不同的生长条件下,评估呼吸速率与总含量之间的变化.
主要成果:
- 整个植物的呼吸速率尺度是以实验中的总植物质量以同位数 (指数 ≈ 1) 的方式进行的,而不是普遍的.
- 在所有数据中,整个植物的呼吸速率和总含量之间存在一致的等比缩放关系.
- 这种等比缩放是独立于生长条件 (光,,温度,CO2) 和植物物种或功能组.
结论:
- 与动物相比,植物表现出不同的代谢缩放模式.
- 整个植物的呼吸缩放主要是由含量驱动的,而不是总质量.
- 在植物和动物中,不同的潜在机制控制了代谢缩放.
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