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首页> 外文期刊>Functional Plant Biology >Effects of elevated atmospheric carbon dioxide, soil nutrients and water conditions on photosynthetic and growth responses of Alnus hirsuta
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Effects of elevated atmospheric carbon dioxide, soil nutrients and water conditions on photosynthetic and growth responses of Alnus hirsuta

机译:大气二氧化碳,土壤养分和水分条件的升高对草光合和生长响应的影响

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The objective of this paper is to clarify the effects of multiple environmental conditions, elevated atmospheric CO2 concentration ([CO2]) and soil conditions on the physiological and morphological properties of Alnus hirsuta Turcz., an N-2-fixing species, to predict its responses to environmental changes. We examined the responses of photosynthetic properties, leaf characteristics, biomass and N allocation of A. hirsuta to elevated [CO2], soil Nand phosphorus availability, and soil drought by using the results of two experiments. The effects of P availability were more marked than those of N availability and soil drought. The photosynthetic responses of A. hirsuta to elevated[CO2] under high Pwere considered to be 'photosynthetic acclimation', while A. hirsuta presented the obvious 'photosynthetic downregulation' to elevated [CO2] under low P. Soil P availability affected the growth responses to elevated [CO2] through effects on these photosynthetic properties and biomass allocation. Though elevated [CO2] caused no marked change in the allometric relationships in biomass, with some exceptions, the responses of N allocation among tissue to elevated [CO2] differed from those of biomass allocation. These results suggest that it is necessary to evaluate N mass allocation as well as biomass when we consider the N-2-fixing ability of Alnus under elevated [CO2].
机译:本文的目的是阐明多种环境条件,升高的大气CO2浓度([CO2])和土壤条件对N-2固定种Alnus hirsuta Turcz。的生理和形态特性的影响,以预测其变化。对环境变化的反应。我们通过两个实验的结果,研究了草的光合特性,叶片特性,生物量和氮分配对升高的[CO2],土壤氮和磷的利用率以及土壤干旱的响应。磷有效性的影响比氮有效性和土壤干旱的影响更为明显。在高磷下,hirsuta对升高的[CO2]的光合作用被认为是“光合适应”,而在低磷下,hirsuta对升高的[CO2]表现出明显的“光合作用下调”。土壤磷的有效性影响了生长反应。通过影响这些光合特性和生物量分配来提高[CO2]。尽管升高的[CO2]不会引起生物量中异形关系的显着变化,但有一些例外,组织之间的氮分配对升高的[CO2]的响应不同于生物量的响应。这些结果表明,当我们考虑在[CO2]升高下,Al木的N-2-固定能力时,有必要评估氮的质量分配以及生物量。

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