巨型芒草(Miscanthus×giganteus)根系与真菌和细菌共生下生产力的形成

Serhii Dymytrov, Vasil Sabluk, Mykhailo Humentyk
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摘要

研究课题的相关性是利用真菌和细菌培养技术提高巨型芒草植物的干生物量产量。本研究的目的是确定真菌对该作物根系的菌根化和与细菌的共生对植物生长发育和生产力形成的影响。2017-2019年,在乌克兰国家农业科学院生物能源作物和甜菜研究所Veselopodilska实验育种站(波尔塔瓦地区)对盐碱地和微盐碱地黑土进行了实地研究。实验变量之间偏差的显著性由根据学生测试计算的p水平决定。利用真菌和细菌与巨型芒草根系的共生关系,在促进植物生长发育和干生物量产量方面取得了积极成果。生物制品Mycofriend、Mikovital和Florobacillin (Glomus VS.、Trichoderma harzianum Rifa、Tuber melanosporum vitta和Bacillus subtilis Cohn)的使用显著增加了叶片器官面积(6.9-19.0%)、根系重量(4.1-16.3%)、株高(3.7-13.6%)和茎数(5.7-15.1%)。与此同时,土壤的保湿能力提高了10.3 ~ 23.7%,土壤的结构和团聚状态(粒径0.25 ~ 10.0 mm的土块比例比对照提高了3.2 ~ 5.7%)。与对照相比,菌根真菌和固氮细菌的使用使干植物生物量的产量增加了1.82-6.11吨/公顷,这对增加生物燃料生产的原料具有实际意义
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formation of productivity of giant miscanthus (Miscanthus×giganteus) under symbiosis of its root system with fungi and bacteria
The relevance of the subject under study is to increase the yield of dry biomass of giant miscanthus plants by using fungi and bacteria in its cultivation technology. The purpose of this study was to determine the effect of mycorrhization of the root system of this crop by fungi and symbiosis with bacteria on the growth and development of plants and the formation of their productivity. Field studies were conducted at the Veselopodilska Experimental Breeding Station of the Institute of Bioenergy Crops and Sugar Beet of the National Academy of Agrarian Sciences of Ukraine (Poltava region) during 2017-2019 on saline and slightly saline black soil. The significance of the deviation between the experimental variants was determined by the P-level calculated according to the Student’s test. The use of symbiosis of fungi and bacteria with the root system of giant miscanthus contributed to positive results in improving plant growth, development and dry biomass yield. The use of biological products Mycofriend, Mikovital, and Florobacillin (fungi Glomus VS. and Trichoderma harzianum Rifa, Tuber melanosporum Vittad and bacteria Bacillus subtilis Cohn) significantly increased the area of the leaf apparatus (by 6.9-19.0%), the weight of the root system (by 4.1-16.3%), increased plant height (by 3.7-13.6%), and the number of stems (by 5.7-15.1%) compared to the control. At the same time, there was an improvement in the soil’s moisture-holding capacity by 10.3-23.7% and its structural and aggregate state – the proportion of clods 0.25-10.0 mm in size was 3.2-5.7% higher than in the control. The use of mycorrhizal fungi and nitrogen-fixing bacteria contributes to an increase in the yield of dry plant biomass by 1.82-6.11 t/ha compared to the control, which is of practical importance in increasing the raw materials for biofuel production
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