首页> 外文OA文献 >Glycine-Glomus-Bradyrhizobium Symbiosis 1: X. Relationships between Leaf Gas Exchange and Plant and Soil Water Status in Nodulated, Mycorrhizal Soybean under Drought Stress
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Glycine-Glomus-Bradyrhizobium Symbiosis 1: X. Relationships between Leaf Gas Exchange and Plant and Soil Water Status in Nodulated, Mycorrhizal Soybean under Drought Stress

机译:甘氨酸-glomus-Bradyrhizobium共生1:X.干旱胁迫下结瘤菌根大豆叶片气体交换与植物和土壤水分状况之间的关系

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摘要

Soybean (Glycine max [L.] Merr.) plants were colonized by the vesicular-arbuscular mycorrhizal (VAM) fungus Glomus mosseae (Nicol. and Gerd.) Gerd. and Trappe (VAM plants) or fertilized with KH2PO4 (nonVAM plants) and grown for 50 days under controlled conditions. Plants were harvested over a 4-day period during which the soil was permitted to dry slowly. The harvest was terminated when leaf gas exchange was no longer measurable due to drought stress. Significantly different effects in shoot water content, but not in shoot water potential, were found in VAM and nonVAM plants in response to drought stress. Leaf conductances of the two treatments showed similar response patterns to changes in soil water and shoot water potential but were significantly different in magnitude and trend relative to shoot water content. The relationships between transpiration, CO2 exchange and water-use efficiency (WUE) were the same in VAM and nonVAM plants in response to decreasing soil water and shoot water potential. As a function of shoot water content, however, WUE showed different response patterns in VAM and nonVAM plants.
机译:大豆(Glycine max [L.] Merr。)植物被囊状丛枝菌根(VAM)真菌Glomus mosseae(Nicol。and Gerd。)Gerd定殖。和Trappe(VAM植物)或用KH2PO4(非VAM植物)施肥,并在受控条件下生长50天。在4天的时间内收获植物,在此期间允许土壤缓慢干燥。当由于干旱胁迫无法测量叶片气体交换时,终止收获。在VAM和nonVAM植物中,干旱胁迫对枝条含水量的影响显着不同,但对枝条水势的影响不明显。两种处理的叶片电导对土壤水分和枝条水势的变化表现出相似的响应模式,但相对于枝条水含量,其大小和趋势存在明显差异。在VAM和nonVAM植物中,随着土壤水和枝条水势的降低,蒸腾作用,CO2交换和水分利用效率(WUE)之间的关系相同。但是,作为枝条含水量的函数,WUE在VAM和非VAM植物中表现出不同的响应模式。

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