Mole Simon, Joern Anthony, O'Leary Marion H, Madhavan S
School of Biological Science, University of Nebraska-Lincoln, 68588-0118, Lincoln, NE, USA.
Center for Biological Chemistry, University of Nebraska-Lincoln, 68583-0718, Lincoln, NE, USA.
Oecologia. 1994 Apr;97(3):316-321. doi: 10.1007/BF00317320.
We present the results of a 5-year examination of variation in the stable carbon isotope composition (δ) of three C graminoid species from a Sandhills prairie: Agropyron smithii, Carex heliophila and Stipa comata. Although consistent species-specific patterns for mean δ were seen, there was also significant and substantial among-year and within-season variation in δ. A smaller contribution to variation in δ came from topographic variation among sampling sites. Effects of species, year, season and topography contribute to variation in δ in an additive manner. An association between climate and δ exists that is consistent with previous work suggesting that δ reflects the interplay between photosynthetic gas exchange and plant water relations. Within the growing season, the time over which δ integrates plant response to the environment ranges from days to months.
我们展示了对来自沙丘草原的三种C类禾本科植物:史密斯冰草、嗜阳苔草和兔尾草的稳定碳同位素组成(δ)进行5年研究的结果。虽然观察到了各物种平均δ的一致模式,但δ在年际和季节内也存在显著且较大的变化。采样点之间的地形变化对δ变化的贡献较小。物种、年份、季节和地形的影响以累加方式促成了δ的变化。气候与δ之间存在关联,这与之前的研究结果一致,即δ反映了光合气体交换与植物水分关系之间的相互作用。在生长季节内,δ整合植物对环境响应的时间范围从数天到数月不等。