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Physiological Response of Miscanthus x giganteus to Plant Growth Regulators in Nutritionally Poor Soil

机译:营养不良土壤中芒草对植物生长调节剂的生理响应

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摘要

(Mxg) is a promising second-generation biofuel crop with high production of energetic biomass. Our aim was to determine the level of plant stress of Mxg grown in poor quality soils using non-invasive physiological parameters and to test whether the stress could be reduced by application of plant growth regulators (PGRs). Plant fitness was quantified by measuring of leaf fluorescence using 24 indexes to select the most suitable fluorescence indicators for quantification of this type of abiotic stress. Simultaneously, visible stress signs were observed on stems and leaves and differences in variants were revealed also by microscopy of leaf sections. Leaf fluorescence analysis, visual observation and changes of leaf anatomy revealed significant stress in all studied subjects compared to those cultivated in good quality soil. Besides commonly used / (potential photosynthetic efficiency) and P.I. (performance index), which showed very low sensitivity, we suggest other fluorescence parameters (like dissipation, / ) for revealing finer differences. We can conclude that measurement of leaf fluorescence is a suitable method for revealing stress affecting Mxg in poor soils. However, none of investigated parameters proved significant positive effect of PGRs on stress reduction. Therefore, direct improvement of soil quality by fertilization should be considered for stress reduction and improving the biomass quality in this type of soils.
机译:(Mxg)是高产高能生物质的有前途的第二代生物燃料作物。我们的目标是使用非侵入性生理参数确定在劣质土壤中生长的Mxg的植物胁迫水平,并测试是否可以通过应用植物生长调节剂(PGR)来减轻胁迫。通过使用24个指标测量叶片荧光来量化植物适应性,以选择最合适的荧光指示剂来量化此类非生物胁迫。同时,在茎和叶上观察到可见的胁迫迹象,并且通过叶切片的显微镜检查也揭示了变体的差异。叶片荧光分析,目测观察和叶片解剖结构变化显示,与在优质土壤中耕种相比,所有研究对象均承受显着压力。除了常用的/(潜在的光合作用效率)和P.I. (性能指标),它显示出非常低的灵敏度,我们建议使用其他荧光参数(例如耗散/)来揭示更精细的差异。我们可以得出结论,叶荧光的测量是揭示不良土壤中影响Mxg的合适方法。然而,没有研究的参数证明PGRs对减轻压力有明显的积极作用。因此,应考虑通过施肥直接改善土壤质量,以减轻应力并改善此类土壤的生物量质量。

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