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Organic fertilization for optimizing dryland rice production

机译:优化旱地稻米生产的有机施肥

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Productivity of local upland rice varieties are usually low, making farmers refrain to cultivate upland rice. This resulted in the low contribution of upland rice in production. However, farmers are still planting upland varieties of rice because of their desirability and adaptation to the environment. Therefore, we always need to develop new varieties that have high production and flavors that suit the tastes of society. The key to increase production of variety is providing sufficient nutrients during the growing period. This study aims to accelerate the availability of nutrients of organic fertilizer for the production of new upland varieties with high productivity. The study carried out in two phases and three different locations. All stages of research was setup in the field using Grid Design Divided (split plot design). In the phase-1, we determined the dose, 5, 10, and 15 tons/ha of organic fertilizer, as well as the adaptability of new varieties (genotype JT-DR-G-416 and parental varieties Jati Luhur and Dayang Rindu). The results of phase-1 showed that best dose was 15 tons/ha. Then we proceeded to the phase-2, which aimed to determine the best management practice to provide organic fertilizers such as: C1= organic fertilizer spread directly on planting plots, C2 = organic fertilizer spread over the terraced planting, then sprayed EM-4, C3 = composted organic fertilizer spread on the plots before planting. The variables measured for the study at phase-1 and phase-2 included plant height (cm), number of productive tillers/hill, the number of grains/panicle, 1000 grain weight (g), percent grain hollow/panicle (%), and grain yield per clump (g). The results showed that the new variety/genotype JT-DR-G-416 can adapt better than both parents at upland field conditions. The production of JT-DR-G-416 was increased by 7.75%, when 15 tonnes/ha of organic fertilizers was applied. Application of composted organic fertilizer could increase production by 33.22%, compared to without compost. Application of organic fertilizers followed by giving a solution of microorganisms (EM-4) could improve upland rice production by 30.56 to 32.06%.
机译:当地旱稻品种的生产力通常是低的,使农民避免耕种旱稻。这导致旱稻生产的低贡献。然而,由于它们的渴望和适应环境,农民仍然种植山地品种。因此,我们总是需要开发具有高生产和口味的新品种,以适应社会的口味。增加各种产量的关键是在生长期间提供足够的营养素。本研究旨在加速有机肥营养成分的可用性,以高生产率的高于新品种的生产。该研究在两个阶段和三个不同的位置进行。所有研究阶段都使用网格设计分开(分裂绘图设计)设置。在第1期中,我们确定了有机肥的剂量,5,10和15吨/公顷,以及新品种的适应性(基因型JT-DR-G-416和父母品种Jati Luhur和Dayang RINDU) 。相1的结果显示最佳剂量为15吨/小时。然后我们前往第2阶段,旨在确定提供有机肥料的最佳管理实践,例如:C1 =有机肥料直接在种植图上展开,C2 =有机肥料在露台种植,然后喷涂EM-4, C3 =堆肥有机肥料在种植前涂抹在地块上。用于在第1期和第2期的研究中测量的变量包括植物高度(cm),生产性分蘖/山的数量,晶粒/穗数,1000粒重(g),谷粒空心/穗(%) ,每丛(g)籽粒产量。结果表明,新品种/基因型JT-DR-G-416可以比高地现场条件的父母更好地适应。当施加15吨的有机肥时,JT-DR-G-416的生产增加了7.75%。与没有堆肥相比,堆肥有机肥可以将产量增加33.22%。有机肥料的应用随后给予微生物溶液(EM-4)可以将旱稻产量提高30.56至32.06%。

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