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Maximal Efficiency of PSII as a Marker of Sorghum Development Fertilized With Waste From a Biomass Biodigestion to Methane

机译:PSII的最大效率是高粱发育的标志物该废弃物是从生物质生物消化到甲烷的废物中受精的

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摘要

The aim of experiments was to investigate a maximal efficiency of PSII, as a marker indicating growth, vigor, energetic value and physiological activity of sorghum fertilized with wastes from a biomass biodigestion to methane in a distillery integrated with a biogas plant using corn grains as substrate. The sorghum plants grown outdoor in different climate and in pots and in field were fertilized with different doses of the waste or Apol-humus – a soil improver and Stymjod – a nano-organic-mineral fertilizer. The maximal efficiency of PSII, in comparison with plant growth and health, chlorophyll content, gas exchange, activity of selected enzymes, element content in leaves and energetic value were studied. The wastes applied to soil resulted in increased maximal efficiency of PSII and the doses of 30 m3 ha-1 and 40–50 m3 ha-1 of the non-centrifuged and centrifuged ones, respectively, were most efficient. This enhancement was associated with the increased kinetics of plant growth, their health, fresh and dry biomass and physiological activity of plants as evidenced by activity of acid and alkaline phosphatase, RNase and dehydrogenase, as well as by gas exchange: net photosynthesis, transpiration, stomatal conductance, intercellular CO2 concentration and index of chlorophyll content in leaves. The fertilization with Apol-humus and Stymjod additionally increased maximal photochemical efficiency of PSII and plant development, biomass yield and physiological activity. The results indicate that waste from a biomass biodigestion to methane can be used as a natural fertilizer in sorghum crops and this ensures their recycling and environmental protection. The measurement values of maximal efficiency of PSII were proportionally to the vigor, growth and physiological activity of the plants. The obtained results indicate that the maximal efficiency of PSII in sorghum plants is a non-destructive method for defining the degree of growth and may be used as a marker of plant vigor and health, development and physiological activity expressed by gas exchange and activity of selected enzymes.
机译:实验的目的是研究PSII的最大效率,该指标可指示在以玉米籽粒为底物的沼气厂中,从生物质消化产生的废物中施肥的高粱的生长,活力,能量价值和生理活性,这些废物是由生物质消化产生的甲烷。在不同气候,盆栽和田间户外生长的高粱植物,要用不同剂量的废物或Apol-humus(一种土壤改良剂)和Stymjod(一种纳米有机矿物肥料)施肥。研究了PSII的最大效率,并与植物生长和健康状况进行了比较,研究了叶绿素含量,气体交换,所选酶的活性,叶片中的元素含量和能量价值。施用到土壤中的废物导致PSII的最大效率提高,剂量为30 m 3 ha -1 和40–50 m 3 ha非离心和离心分离的 -1 效率最高。这种增强与植物生长动力学,其健康状况,新鲜和干燥生物量以及植物生理活性的增加有关,这通过酸和碱性磷酸酶,RNase和脱氢酶的活性以及气体交换来证明:净光合作用,蒸腾作用,叶片气孔导度,细胞间CO2浓度和叶绿素含量指数施以Apol-humus和Stymjod的施肥还增加了PSII的最大光化学效率和植物发育,生物量产量和生理活性。结果表明,将生物质消化产生的甲烷转化为高粱作物的天然肥料,可以确保其回收利用和环境保护。 PSII的最大效率的测量值与植物的活力,生长和生理活性成正比。获得的结果表明,PSII在高粱植物中的最大效率是确定生长程度的一种非破坏性方法,可以用作通过交换气体和选择的活性表达的植物活力和健康,发育和生理活性的标志物酶。

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