首页> 外文期刊>Agrivita: journal of agricultural science >THE APPLICATION OF PEATY MINERAL SOIL WATER IN IMPROVING THE ADAPTABILITY OF BLACK SOYBEAN TOWARD ALUMINIUM STRESS ON TIDAL MINERAL SOIL WITH SATURATED WATER CULTURE
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THE APPLICATION OF PEATY MINERAL SOIL WATER IN IMPROVING THE ADAPTABILITY OF BLACK SOYBEAN TOWARD ALUMINIUM STRESS ON TIDAL MINERAL SOIL WITH SATURATED WATER CULTURE

机译:稻田矿质土壤水在饱和水分培养下潮土上黑大豆对铝胁迫的适应性。

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Soybean development in mineral soils of tidal land is hindered by aluminum toxicity. Modification of growing environment and the use of tolerant variety are feasible alternatives. Experiment was conducted with several objectives (1) to identify growth and yield of black soybean at depths of water table, (2) to identify growth and yield of black soybean as effected by application of ameliorants, (3) to identify growth and yield of black soybean, (4) to identify interaction between depth of water table, type of ameliorant, and black soybean variety. The experiment was mineral soils with watershed B type of tidal land in South Sumatera on May to August 2014. Factors investigated were depth of water table (10 and 20 cm), (Tanggamus ?as control, Cikuray, Ceneng) and ameliorant type (river water, peaty mineral soil water, and high-tide water). These factors were arranged in a Split-plot Design.The results demonstrated that, for growing black soybean, soils with water table depth of 20 cm was better than those of 10 cm, peaty mineral soil water ameliorant was better than river water or high-tide water ameliorant, Ceneng produced higher yield, but not to those of Cikuray. There was no interaction between surface water depth, ameliorant and variety.
机译:铝的毒性阻碍了潮汐地区矿质土壤中大豆的发育。改变生长环境和使用耐性品种是可行的选择。进行了多个目的的实验(1)在地下水位深处确定黑大豆的生长和产量,(2)确定在施用改良剂的作用下黑大豆的生长和产量,(3)确定黑豆的生长和产量黑大豆,(4)确定地下水位,改良剂类型和黑大豆品种之间的相互作用。该实验为2014年5月至2014年8月在南苏门答腊的分水带B型潮汐矿床的矿物土壤。调查的因素包括地下水位深度(10和20 cm),(作为控制的唐加木斯,Cikuray,Ceneng)和改良剂类型(河流)。水,豌豆矿物质土壤水和高潮水)。将这些因素安排在分割图设计中。结果表明,对于种植黑大豆,地下水位深度为20 cm的土壤要优于10 cm的土壤,而豌豆矿物质土壤水改良剂的质量要比河水或高地下水位的土壤好。潮水改良剂时,Ceneng的产量更高,但不及Cikuray。地表水深度,改良剂和变化之间没有相互作用。

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