APPLICATION OF TURIMAN JALE AS AN INNOVATION TO IMPROVE CROP PRODUCTIVITY AND DRYLAND FARMERS’ INCOME IN GUNUNG KIDUL YOGYAKARTA

E. Srihartanto, A. Anshori
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Abstract

Maize and soybean have been widely cultivated in dryland. However, their productivity is relatively low. Turiman Jale cropping system was then established as an innovation to increase productivity by intercropping maize and soybean with proper arrangement of population and cultivars used. This study aimed to determine the best Turiman Jale cropping system model for increasing crop productivity, thereby improving the income of dryland farmers. The research was conducted during the second planting season 2019/2020 at the dryland of the Sadar Karya II Farmers Group, Sumberwojo, Sidorejo, Ponjong, Gunungkidul. It was arranged in a Randomized Complete Block Design (RCBD) consisting of 10 cropping systems, namely Jale 2:3 (cv. P36-Dega1)(40x20cm), Jale 2:3 (cv. P36-Dega1)(40x30cm), Jale 2:3 (cv. P36 -Dega1)(40x40cm), Jale 2:4 (cv. Bisi2-Dega1)(40x30cm), Jale 3:3 (cv. Bisi2-dega1)(40x30cm), Jale 2:6 (cv. NK212-Dega1)(40x30cm), maize monoculture (cv. Bisi2) (80x40x30cm), maize monoculture (cv. NK212) (80x40x30cm), maize monoculture (cv. Pioner36) (80x40x30cm), and soybean monoculture (cv. Dega1)(30x15cm). Observation was made on plant growth and yield variables. Land Equivalent Ratio (LER), Area Time Equivalent ratio (ATER), R/C ratio, B/C ratio, and Marginal Benefit Cost Ratio (MBCR) were also measured. The data were analyzed using ANOVA then further tested for orthogonal contrast and Tukey’s test with 5% significance level. The results showed that Jale 3:3 (Bisi2-Dega1)(40x30cm) resulted in the highest productivity, which was 5.890 ton ha-1 for maize and 2.209 ton ha-1 for soybean, with high LER of 1.79, high ATER of 1.90, R/C ratio of 2.33, B/C ratio of 2.39 and MBCR of 1.23, making it profitable and feasible.
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土豆浆作为一种提高作物生产力和旱地农民收入的创新应用
玉米和大豆已在旱地广泛种植。然而,他们的生产力相对较低。随后建立了Turiman Jale种植制度,通过合理安排人口和品种,通过玉米和大豆的间作来提高生产力。本研究旨在确定提高作物生产力的最佳Turiman - Jale种植制度模型,从而提高旱地农民的收入。该研究是在2019/2020年第二个种植季节在Sadar Karya II农民小组的旱地进行的,该小组位于Sumberwojo, Sidorejo, Ponjong, Gunungkidul。采用随机完全区组设计(RCBD),包括10个种植系统,即Jale 2:3 (cv。P36-Dega1)(40x20cm), Jale 2:3 (cv。P36-Dega1)(40x30cm), Jale 2:3 (cv。P36 -Dega1)(40x40cm), Jale 2:4 (cv。Bisi2-Dega1)(40x30cm), Jale 3:3 (cv。Bisi2-dega1)(40x30cm), Jale 2:6 (cv。NK212-Dega1)(40x30cm),玉米单一栽培(cv;Bisi2) (80x40x30cm),玉米单作(cv;NK212) (80x40x30cm),玉米单作(cv;pioneer 36) (80x40x30cm)和大豆单作(cv。Dega1) (30 x15cm)。对植株生长和产量变量进行了观察。土地当量比(LER)、面积时间当量比(ATER)、R/C比、B/C比和边际效益成本比(MBCR)也进行了测量。数据采用方差分析,再进行正交对比和5%显著性水平的Tukey检验。结果表明:Jale 3:3 (Bisi2-Dega1)(40x30cm)组合的产量最高,玉米为5.890 t ha-1,大豆为2.209 t ha-1, LER为1.79,ATER为1.90,R/C为2.33,B/C为2.39,MBCR为1.23,具有较高的效益和可行性。
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