菌根生物肥对旱地土壤中两个品种的长茄(Solanum melongena L.)的应用

Iin Siti Aminah, Neni Marlina, R. Karneta, Wuriesyliane Wuriesyliane, Kurnia Susanti, Diah Eka Puspita
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摘要

旱地土壤是发展农作物(包括蔬菜作物)的极具潜力的土地,但面临的障碍是土壤肥力低,因此,可以利用菌根生物肥料和使用高产茄子品种来努力提高产量。菌根生物肥料的菌丝伸长有望增加绿茄对氮、磷、钾养分的吸收、生长和产量,而且绿茄品种能很好地适应不太适宜的环境。本研究于 2022 年 3 月至 6 月在南苏门答腊省 Alang-alang Lebar 区 Talang Kelapa 的 Klp Raya 路的农民土地上进行。研究采用田间试验。 试验设计采用 RAK 因式,6 个处理组合重复 4 次:米兰(V1)、Ratih-Hijau-1(V2)。 因素 2:菌根生物肥料(M):每株 5 克(M1)、10 克(M2)、15 克(M3)。与使用菌根生物肥 5 克/株的 Ratih Hijau-1 品种相比,使用菌根生物肥 10 克/株的 Milano 品种茄子产量最高,达到 10.14 公斤/地,相当于 27.04 吨/公顷,增产 93.88%。
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The Usage of Mycorrhizal Biofertilizer on 2 Varieties of Long Green Eggplant (Solanum melongena L.) in Dryland Soils
Dryland soils a very high potential land for the development of agricultural crops, including vegetable crops, although the obstacles faced are due to low soil fertility, therefore efforts that can be made to increase production can use mycorrhizal biofertilizers and the use of high-yielding eggplant varieties. Hyphal elongation by mycorrhizal biofertilizer is expected to increase N, P, and K nutrient uptake, growth, and yield of green eggplant and green eggplant varieties can adapt well to less suitable environments. This research was conducted on a farmer's land on Klp Raya Road, Talang Kelapa, Alang-alang Lebar District, South Sumatra Province from March to June 2022. The research used field experiments.  The experimental design used RAK Factorial with 6 treatment combinations that were repeated 4 x.  Factor 1: Variety (V): Milano (V1), Ratih-Hijau-1 (V2).  Factor 2: Mycorrhizal Biofertiliser (M): 5 g (M1), 10 g (M2), 15 g (M3) per plant. The highest eggplant yield was achieved by the Milano variety with mycorrhizal biofertilizer 10 g/plant produce 10.14 kg/plot or equivalent to 27.04 tonnes/ha and increased 93.88% when compared to Ratih Hijau-1 variety with mycorrhizal biofertilizer 5 g/plant.
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