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The effect of application of copper fungicides on photosynthesis parameters and level of elementary copper in hops

机译:施用铜杀真菌剂对啤酒花光合作用参数和元素铜含量的影响

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Photosynthesis and transpiration rates in the interval of 30 min before and 30 min after copper fungicide application show an increase from the level of 5.0 to 7.0 mu mol CO2/m(2)/s and 0.75 to 1.00 mmol H2O/m(2)/s. Long-term measurements show that the increase of photosynthesis rate after copper application is temporal and fades away after 10-14 days. No stress response was induced after the application of copper fungicides. Contents of copper in hop cones are up to 500 mg/kg if total amount of applied copper does not exceed 15 kg/ha. Contents of copper on leaves are 2-5 times higher at the same application dose. Application of 5 kg copper per one hectare of vigorous growth of Agnus variety increases content of copper on hop leaves by 1000 mg/kg at least. The same amount of copper increases its content in hop cones by 300 mg/kg at the ripening period. Tight correlation between the amount of copper applied and its content in hops does not exist. Elementary copper from leaves is brought into harvested hops in the form of biological admixtures. Copper content in hop cones shows a decreasing trend, which is given by gradual increase of cones size at the ripening period. Similar trend on hop leaves shows that washing off and dissolving of copper compounds by atmospheric water can participate in this process as well. Common content of copper in untreated hop cones and leaves is up to 20-25 mg/kg.
机译:在施用铜杀真菌剂之前和之后的30分钟之间的光合作用和蒸腾速率显示从5.0到7.0μmol CO2 / m(2)/ s和0.75到1.00 mmol H2O / m(2)/的水平增加s。长期测量表明,施用铜后光合作用的增加是暂时的,在10-14天后逐渐消失。施用铜杀真菌剂后未引起胁迫反应。如果施用的铜总量不超过15千克/公顷,则啤酒花球果中的铜含量最高为500毫克/千克。在相同的施用剂量下,叶子上的铜含量高出2-5倍。每一公顷大力生长的Agnus品种施用5 kg铜,可使酒花叶上的铜含量至少增加1000 mg / kg。在成熟期,相同量的铜会使啤酒花球果中的铜含量增加300 mg / kg。所施加的铜量与啤酒花中的铜含量之间不存在紧密的相关性。来自叶片的基本铜以生物混合物的形式被带入收获的啤酒花。啤酒花球果中的铜含量呈下降趋势,这是由于成熟期球果大小逐渐增加所致。啤酒花叶子上的类似趋势表明,大气水冲洗并溶解铜化合物也可以参与此过程。未经处理的啤酒花球果和叶片中铜的常见含量高达20-25 mg / kg。

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