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氮供应和二氧化碳浓度升高对火炬松(L.)幼苗叶片构建成本的影响。

Effects of nitrogen supply and elevated carbon dioxide on construction cost in leaves of Pinus taeda (L.) seedlings.

作者信息

Griffin Kevin L, Thomas Richard B, Strain Boyd R

机构信息

Department of Botany, Duke University, 27708, Durham, NC, USA.

出版信息

Oecologia. 1993 Oct;95(4):575-580. doi: 10.1007/BF00317443.

Abstract

Seedlings of loblolly pine (Pinus taeda L.) were grown under varying conditions of soil nitrogen and atmospheric carbon dioxide availability to investigate the interactive effects of these resources on the energetic requirements for leaf growth. Increasing the ambient CO partial pressure from 35 to 65 Pa increased seedling growth only when soil nitrogen was high. Biomass increased by 55% and photosynthesis increased by 13% after 100 days of CO enrichment. Leaves from seedlings grown in high soil nitrogen were 7.0% more expensive on a g glucose g dry mass basis to produce than those grown in low nitrogen, while elevated CO decreased leaf cost by 3.5%. Nitrogen and CO availability had an interactive effect on leaf construction cost expressed on an area basis, reflecting source-sink interactions. When both resources were abundant, leaf construction cost on an area basis was relatively high (81.8±3.0 g glucose m) compared to leaves from high nitrogen, low CO seedlings (56.3±3.0 g glucose m) and low nitrogen, low CO seedlings (67.1±2.7 g glucose m). Leaf construction cost appears to respond to alterations in the utilization of photoassimilates mediated by resource availability.

摘要

火炬松(Pinus taeda L.)幼苗在土壤氮素和大气二氧化碳可利用性不同的条件下生长,以研究这些资源对叶片生长能量需求的交互作用。仅当土壤氮素含量高时,将环境CO分压从35 Pa提高到65 Pa才会促进幼苗生长。CO富集100天后,生物量增加了55%,光合作用增加了13%。与在低氮条件下生长的幼苗相比,在高土壤氮条件下生长的幼苗叶片,以每克葡萄糖每克干重计,生产成本高出7.0%,而CO浓度升高使叶片成本降低了3.5%。氮素和CO可利用性对以面积计的叶片构建成本具有交互作用,反映了源-库相互作用。当两种资源都充足时,与高氮、低CO幼苗(56.3±3.0克葡萄糖/平方米)和低氮、低CO幼苗(67.1±2.7克葡萄糖/平方米)的叶片相比,以面积计的叶片构建成本相对较高(81.8±3.0克葡萄糖/平方米)。叶片构建成本似乎对由资源可利用性介导的光同化物利用变化做出响应。

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