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升高的二氧化碳浓度会改变根系在“小型”生长容器中的分布。

Elevated CO alters deployment of roots in "small" growth containers.

作者信息

Berntson G M, McConnaughay K D M, Bazzaz F A

机构信息

Department of Organismic and Evolutionary Biology, Harvard University, 02138, Cambridge, MA, USA.

出版信息

Oecologia. 1993 Jul;94(4):558-564. doi: 10.1007/BF00566972.

Abstract

Previously we examined how limited rooting space and nutrient supply influenced plant growth under elevated atmospheric CO concentrations (McConnaughay et al. 1993). We demonstrated that plant growth enhancement under elevated CO was influenced more by the concentration of nutrients added to growth containers than to either the total nutrient content per pot or amount or the dimensions of available rooting space. To gain insight into how elevated CO atmospheres affect how plants utilize available belowground space when rooting space and nutrient supply are limited we measured the deployment of roots within pots through time. Contrary to aboveground responses, patterns of belowground deployment were most strongly influenced by elevated CO in pots of different volume and shape. Further, elevated CO conditions interacted differently with limited belowground space for the two species we studied,Abutilon theophrasti, a C dicot with a deep taproot, andSetaria faberii, a C monocot with a shallow fibrous root system. ForSetaria, elevated CO increased the size of the largest region of low root density at the pot surface in larger rooting volumes independent of nutrient content, thereby decreasing their efficiency of deployment. ForAbutilon, plants responded to elevated CO concentrations by equalizing the pattern of deployment in all the pots. Nutrient concentration, and not pot size or shape, greatly influenced the density of root growth. Root densities forAbutilon andSetaria were similar to those observed in field conditions, for annual dicots and monocots respectively, suggesting that studies using pots may successfully mimic natural conditions.

摘要

此前我们研究了在大气CO浓度升高的情况下,有限的生根空间和养分供应如何影响植物生长(麦康纳希等人,1993年)。我们证明,在CO浓度升高时植物生长的增强,更多地受到添加到生长容器中的养分浓度的影响,而不是每盆的总养分含量、可用生根空间的数量或尺寸。为了深入了解在生根空间和养分供应有限时,CO浓度升高的大气环境如何影响植物利用可用地下空间的方式,我们测量了随着时间推移根在花盆内的分布情况。与地上部分的反应相反,地下分布模式在不同体积和形状的花盆中受CO浓度升高的影响最为强烈。此外,对于我们研究的两个物种,即具有深主根的C3双子叶植物苘麻和具有浅须根系的C4单子叶植物法氏狗尾草,CO浓度升高的条件与有限的地下空间之间的相互作用方式不同。对于法氏狗尾草,在较大的生根体积中,CO浓度升高会增加花盆表面低根密度最大区域的大小,而与养分含量无关,从而降低其分布效率。对于苘麻,植物通过使所有花盆中的分布模式均匀化来响应CO浓度升高。养分浓度而非花盆大小或形状,对根系生长密度有很大影响。苘麻和法氏狗尾草的根密度分别与田间一年生双子叶植物和单子叶植物的根密度相似,这表明使用花盆进行的研究可能成功模拟自然条件。

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