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当单独施加时,升高的二氧化碳或臭氧如何影响大豆的叶面积指数?

How does elevated CO2 or ozone affect the leaf-area index of soybean when applied independently?

作者信息

Dermody Orla, Long Stephen P, DeLucia Evan H

机构信息

Program in Ecology and Evolutionary Biology, University of Illinois, Urbana, IL 61801, USA.

出版信息

New Phytol. 2006;169(1):145-55. doi: 10.1111/j.1469-8137.2005.01565.x.

Abstract

Changes in leaf-area index (LAI) may alter ecosystem productivity in elevated [CO2] or [O3]. By increasing the apparent quantum yield of photosynthesis (phi(c,max)), elevated [CO2] may increase maximum LAI. However, [O3] when elevated independently accelerates senescence and may reduce LAI. Large plots (20 m diameter) of soybean (Glycine max) were exposed to ambient (approx. 370 micromol mol(-1)) or elevated (approx. 550 micromol mol(-1)) CO2 or 1.2 times ambient [O3] using soybean free-air concentration enrichment (SoyFACE). In 2001 elevated CO2 had no detectable effect on maximum LAI, but in 2002 maximum LAI increased by 10% relative to ambient air. Elevated [CO2] also increased the phi(c,max) of shade leaves in both years. Elevated [CO2] delayed LAI loss to senescence by approx. 54% and also increased leaf-area duration. Elevated [O3] accelerated senescence, reducing LAI by 40% near the end of the growing season. No effect of elevated [O3] on photosynthesis was detected. Elevated [CO2] or [O3] affected LAI primarily by altering the rate of senescence; knowledge of this may aid in optimizing future soybean productivity.

摘要

叶面积指数(LAI)的变化可能会改变高浓度[CO₂]或[O₃]条件下的生态系统生产力。通过提高光合作用的表观量子产率(φ(c,max)),高浓度[CO₂]可能会增加最大叶面积指数。然而,单独升高[O₃]会加速衰老并可能降低叶面积指数。利用大豆开放式空气浓度富集系统(SoyFACE),将直径20米的大豆大样地暴露于环境浓度(约370微摩尔/摩尔⁻¹)或高浓度(约550微摩尔/摩尔⁻¹)的CO₂ ,或1.2倍环境浓度的[O₃]环境中。2001年,高浓度CO₂ 对最大叶面积指数没有可检测到的影响,但在2002年,最大叶面积指数相对于环境空气增加了10%。在这两年中,高浓度[CO₂]也增加了遮荫叶片的φ(c,max)。高浓度[CO₂]使叶面积指数因衰老而减少的时间延迟了约54%,还增加了叶面积持续时间。高浓度[O₃]加速了衰老,在生长季节末期使叶面积指数降低了40%。未检测到高浓度[O₃]对光合作用有影响。高浓度[CO₂]或[O₃]主要通过改变衰老速率来影响叶面积指数;了解这一点可能有助于优化未来大豆的生产力。

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