Growth and Yield Responses of Various Nutrient Efficient Maize Lines to Application of Low Doses of Biological Fertilizers and Chemical Fertilizers in Different Growing Seasons

Yopie Moelyohadi, A. Haitami, Nariman Hadi
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Abstract

Through the use of low dosages of chemical fertilizers and effective nutrient-corn genotypes that respond to bio-fertilizer type assignments, this study intends to produce rather steady outcomes over the course of several growing seasons. Field tests for this study have been conducted at the ATP Ministry of Research and Technology in South Sumatra. The experiment was run across two growing seasons: the dry season (May through September 2011) and the rainy season (January–April 2012). The equal split-split plot design is used for the study's two growing seasons. The central conflict concerns the application of chemical fertilizer at the following rates: P1: 50% standard dose of ATP (200 kg urea, 50 kg SP36, and 25 kg KCl ha-1), and P2: 25% standard dose of ATP (100 kg urea, 25 kg SP36, and 12,5 kg KCl ha-1). Treatment of several biological fertilizer subplots: H0: no biological fertilizer (control); H1: mycorrhiza; H2: bacterial phosphate solvent. The treatment of children plot uses a variety of corn strains with effective nutrient selection outcomes, including strains B41 (G1), L164 (G2), S219 (G3), and variations BISI 816, as the genotype comparison (G4). Three times each was used for each combination of treatments. The results of the two investigations indicate that strain B41 can produce adaptive growth based on the growing season, is more resilient to drought stress, and may be able to produce more at lower doses of chemical fertilizer while being comparatively stable. A combination of chemical fertilizer at the 50% standard dose of ATP and mycorrhizal fertilizer, along with strain B41, has the best impact on the growth and yield of maize on marginal dryland. Mycorrhizae fertilizer at various levels of low doses of chemical fertilizer can increase the growth and yield of maize in two different cropping seasons. All of the examined maize lines generally showed the ability of the bacteria connected to mycorrhizal and phosphate solvents to enhance nutrient absorption
不同生长季节施用低剂量生物肥和化肥对不同营养高效玉米品系生长和产量的响应
通过使用低剂量的化肥和对生物肥料类型分配有反应的有效营养玉米基因型,本研究打算在几个生长季节的过程中产生相当稳定的结果。这项研究的实地试验已在南苏门答腊岛的ATP研究和技术部进行。实验跨越了两个生长季节:旱季(2011年5月至9月)和雨季(2012年1月至4月)。该研究的两个生长季节采用了等分-分块设计。主要冲突涉及按以下比率施用化肥:P1: 50%标准剂量的ATP(200公斤尿素、50公斤SP36和25公斤KCl ha-1), P2: 25%标准剂量的ATP(100公斤尿素、25公斤SP36和12.5公斤KCl ha-1)。若干生物肥料子小区处理:H0:不施生物肥料(对照);H1:菌根;H2:细菌磷酸盐溶剂。儿童小区的处理采用多种具有有效营养选择结果的玉米品系,包括品系B41 (G1)、L164 (G2)、S219 (G3)和变异BISI 816作为基因型比较(G4)。每种治疗组合使用三次。两项调查结果表明,菌株B41能够根据生长季节进行适应性生长,对干旱胁迫的适应能力更强,在相对稳定的情况下,较低的化肥用量可能会产生更多的产量。50%标准剂量的三磷酸腺苷和菌根肥配施B41菌株对边缘旱地玉米生长和产量的影响最好。不同水平的菌根肥和低剂量化肥对玉米生长和产量都有促进作用。所有被检测的玉米品系普遍表现出与菌根和磷酸盐溶剂连接的细菌增强营养吸收的能力
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