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Evaluation of Tropical Legume Cover Crops for Copper Use Efficiency

机译:热带豆科作物对铜利用效率的评估

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Cover crops are important components of cropping systems due to their role in improving soil quality. Lack of adequate levels of soil micronutrients prevents the success of cover crops in highly weathered tropical soils. A greenhouse experiment was conducted with the objective to evaluate copper use efficiency of nine tropical legume cover crops. The copper levels used were 0, 5, 10 and 20 mg Cu kg-1 of soil. Shoot dry weight, maximum root length and root dry weight significantly increased in a quadratic fashion with increasing soil Cu levels in the range of 0 to 20 mg kg-1 soil. Cu x cover crops interactions for shoot dry weight, root dry weight, maximum root length and contribution of root to the total dry weight were significant, indicating different responses of cover crops with the variation in soil Cu levels. Overall, maximum shoot dry weight was obtained with the application of 13 mg Cu kg-1. Similarly, maximum root dry weight and maximum root length were obtained with the application of 12 and 14 mg Cu kg-1 of soil. Root dry weight and maximum root length were significantly and positively related to shoot dry weight, indicating that a vigorous root system is important for improving productivity of cover crops grown on Brazilian Oxisols, especially where deficiency of micronutrients such as Cu exists. The Cu concentration in the plant tissue decreased in a quadratic fashion whereas, Cu uptake increased with increasing Cu application rate from 0 to 20 mg kg-1 soil. There was a significant variation observed in Cu use efficiency among cover crop species. Increasing applied Cu levels significantly increased soil pH and Mehlich 1 extractable soil Cu, Zn, Mn and Fe concentrations in the soil solution.
机译:覆盖作物是作物系统的重要组成部分,因为它们在改善土壤质量方面具有重要作用。缺乏足够的土壤微量营养素会阻碍在高度风化的热带土壤中进行遮盖作物的成功。进行了温室实验,目的是评估九种热带豆科植物的铜利用效率。所使用的铜水平为土壤的0、5、10和20 mg Cu kg-1。随土壤Cu含量的增加,在0至20 mg kg-1土壤范围内,苗干重,最大根长和根干重以二次方数显着增加。 Cu x覆盖作物的枝干干重,根干重,最大根长和根对总干重的相互作用是显着的,表明了覆盖作物对土壤Cu水平变化的不同反应。总体而言,使用13 mg Cu kg-1可获得最大的茎干重。同样,施用12和14 mg Cu kg-1的土壤可获得最大的根干重和最大的根长。根干重和最大根长与苗干重显着正相关,表明旺盛的根系对于提高以巴西Oxisols种植的覆盖作物的生产力非常重要,尤其是在微量营养素(例如Cu)缺乏的情况下。植物组织中的铜浓度以二次方数下降,而铜的吸收随着铜施用量的增加(从0到20 mg kg-1土壤)而增加。覆盖农作物种间的铜利用效率存在显着差异。施用的铜含量的增加显着增加了土壤的pH值,Mehlich 1提取的土壤溶液中的铜,锌,锰和铁的浓度也增加了。

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