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首页> 外文期刊>Biological Agriculture & Horticulture >Use of Ginkgo biloba leaf compost for promoting soil properties and rooting of New Guinea impatiens cuttings
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Use of Ginkgo biloba leaf compost for promoting soil properties and rooting of New Guinea impatiens cuttings

机译:使用银杏叶片堆肥来促进土壤性质和新豚鼠的根源

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摘要

Production of compost is an environment-friendly method for managing the large biomass of fallen ginkgo leaves. The present study investigated the effect of ginkgo leaf compost (GLC) as a soil amendment for the rooting and growth of New Guinea impatiens (Impatiens hawkeri var. 'Java') cuttings. Chemical and physical properties of the amended soil were analysed together with various root growth parameters and antioxidant enzyme activities in plantlets grown in soils with different additions of GLC (0, 50, 100, or 200 g to 2 kg soil). Correlation analyses were used to explore the relationship between the various root growth parameters. The results showed that the electrical conductivity (EC) values of the amended soils were suitable for plant growth. Furthermore, nutrient concentrations, root growth parameters, and activity of antioxidant enzymes of the roots increased significantly with the addition of GLC. At 15 d post planting, root fractal dimensions and root abundance showed no significant differences, whereas at 65 d post planting, there was a significant difference in both parameters. Additionally, the results showed that root fractal dimensions and root abundance were significantly correlated with other root growth parameters and with the nutrient concentrations in the soils. It was concluded that GLC improved the chemical and physical properties of the soil and promoted root growth of New Guinea impatiens cuttings. Overall, it was found that 100 g GLC in 2 kg of soil was the optimal concentration for promoting root growth of New Guinea impatiens cuttings.
机译:堆肥的生产是管理落下银杏的大型生物量的环保方法。本研究调查了银杏叶堆肥(GLC)作为新豚鼠生根和生长的土壤修正(Impatens Hawkeri Var。'Java')切割。将修正的土壤的化学和物理性质与各种根生长参数和抗氧化剂酶活性分析,在土壤中生长的植物中,不同添加GLC(0,50,100或200g至2kg土壤)。相关分析用于探索各种根生长参数之间的关系。结果表明,修正的土壤的电导率(EC)值适用于植物生长。此外,随着GLC的添加,根部的抗氧化剂酶的营养浓度,根生长参数和活性显着增加。在15岁后,种植后,根部分形尺寸和根部丰度显示出没有显着差异,而在种植后65℃下,两个参数都有显着差异。另外,结果表明,根部分形尺寸和根部丰度与其他根生长参数显着相关,以及土壤中的营养浓度。得出结论,GLC改善了土壤的化学和物理性质,促进了新的豚鼠的根系生长。总体而言,发现200g Glc在2公斤的土壤中是促进新豚鼠的根生长的最佳浓度。

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