Growth and Yield Performance of Chili (Capsicum annuum L.) on Rooftop of Different Height of Buildings

Md. Ujjal Husen, Nazmun Naher, Zannatul Firdaus Binte Habib, Hapsa Rahaman, Abdul Halim
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Abstract

In urban agriculture, rooftop gardening is a remarkable part which is practiced to overcome the food crisis and climate change; if it is not economically viable on the basis of productivity, then rooftop garden will not enhance and sustain. So, a pot experiment was conducted during November 2021 to April 2022 on the rooftop of different height of buildings and Agroforestry research field at Sher-e-Bangla Agricultural University, Dhaka-1207 to study the productivity of chili (BARI Morich 3). The experiment was laid out in a Completely Randomized Design with four replications. The treatments of this experiment were T1= Control (Ground, 0.0 m), T2= Rooftop of three storied building (11.28 m), T3 = Rooftop of six storied building (21.34 m) and T4 = Rooftop of ten storied building (34.75 m). Results indicated that soil moisture content, plant height, stem diameter, number of (leaf, branch and fruit), fresh and dry weight of plant, single fruit (weight, length and diameter), fresh and dry weight of yield per plant were significantly decreased with the increased of building height (T1>T2>T3>T4) and air temperature, soil temperature and light intensity were significantly increased with the increased of building height (T4> T3> T2> T1). As gradually increased the height of building rooftop, sequentially decreased the growth, yield and yield contributing characteristics of chili plant. Although ground performed the best productivity, up to rooftop of three storied building can be selected as an appropriate height for chili (BARI Morich-3) cultivation to increase the rooftop gardening.
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不同建筑高度屋顶辣椒生长及产量表现
在都市农业中,屋顶园艺是克服粮食危机和气候变化的重要组成部分;如果在生产力的基础上它在经济上不可行,那么屋顶花园就不会得到加强和维持。因此,研究人员于2021年11月至2022年4月在达卡Sher-e-Bangla农业大学不同建筑高度的屋顶和农林业研究场地进行了盆栽试验,以研究辣椒的生产力(BARI Morich 3)。试验采用完全随机设计,有4个重复。试验处理分别为T1=对照(地面,0.0 m)、T2=三层楼顶(11.28 m)、T3 =六层楼顶(21.34 m)和T4 =十层楼顶(34.75 m)。结果表明:土壤含水量、株高、茎粗、叶、枝、果数、植株鲜干重、单果(重量、长度和直径)、单株产量鲜重和干重随建筑高度的增加而显著降低(T1>T2>T3>T4),气温、土壤温度和光照强度随建筑高度的增加而显著升高(T4>T3>T2>T1)。随着建筑屋顶高度的逐渐增加,辣椒植株的生长、产量和产量贡献特性也随之降低。虽然地面的生产力最好,但可以选择三层楼的屋顶作为辣椒(BARI Morich-3)种植的适当高度,以增加屋顶园艺。
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