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Growth and physiological responses of creeping bentgrass (Agrostis stolonifera) to elevated carbon dioxide concentrations

机译:bent草(Ag草)的生长及其对二氧化碳浓度升高的生理响应

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摘要

The atmospheric carbon dioxide level has increased and is predicted to continue increasing, which may affect various aspects of plant growth. The objective of this study was to investigate the effects of doubling the carbon dioxide level on the growth and physiological activities of a widely utilized cool-season turfgrass species, creeping bentgrass (Agrostis stolonifera L. ‘Penncross’). ‘Penncross’ plants were established in fritted clay medium and maintained under well-irrigated and well-fertilized conditions in growth chambers. The plants were exposed to either ambient carbon dioxide concentrations (400±10 µmol L−1) or elevated carbon dioxide concentrations (800±10 µmol L−1) for 12 weeks. Plants grown under elevated carbon dioxide displayed a significantly faster growth rate of their lateral stems (stolons) and increased shoot and root dry weight but a reduced specific leaf area compared to those plants at ambient carbon dioxide levels. Fast stolon growth is a highly desirable trait for turfgrass establishment and recovery from physical damage. The root length and surface area were also increased due to the elevated CO2, which may facilitate water uptake and serve critical drought-avoidance roles when irrigation water is limited. Elevated carbon dioxide caused an increase in the leaf net photosynthetic rate but a reduction in the stomatal conductance and transpiration rate, contributing to improved water use efficiency in creeping bentgrass. Efficient water use is especially important for turfgrass plant survival when irrigation water is limited. Our results suggested that cool-season turfgrass species may greatly benefit from increasingly elevated carbon dioxide concentrations via growth promotion and increasing water use efficiency.
机译:大气中的二氧化碳水平已经增加,预计会继续增加,这可能会影响植物生长的各个方面。这项研究的目的是研究使二氧化碳含量翻倍对广泛使用的冷季草皮草(爬草)的草皮草(Agrostis stolonifera L.“ Penncross”)的生长和生理活性的影响。 “ Penncross”植物是在多孔粘土介质中建立的,并在生长室中保持良好的灌溉和施肥条件。使植物暴露于环境二氧化碳浓度(400±10 µmol L -1 )或升高的二氧化碳浓度(800±10 µmol L -1 )12周。 。与在环境二氧化碳水平下的那些植物相比,在升高的二氧化碳下生长的植物显示出其侧茎(sto茎)的生长速度明显加快,并且茎和根的干重增加,但比叶面积减少。快速的lon茎生长是草皮草的建立和从物理损害中恢复的非常理想的特征。根部长度和表面积也由于二氧化碳含量的增加而增加,这可能会促进水分的吸收,并在灌溉用水受到限制时起到关键的避免干旱的作用。升高的二氧化碳导致叶片净光合速率增加,但气孔导度和蒸腾速率降低,从而有助于改善bent草的水分利用效率。当灌溉用水有限时,有效用水对草皮草植物的生存特别重要。我们的研究结果表明,凉爽季节的草皮草物种可能会通过促进生长和提高用水效率而从不断增加的二氧化碳浓度中大大受益。

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