Effect of Foliar Application of Plant Growth Regulators on Quality and Economics of Broccoli Production under Walk-In-Tunnel

Q4 Environmental Science
Susmitha Kottapu, Alka Minz, Annu Verma
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Abstract

An experiment was conducted at “Center of Excellence on Protected Cultivation, College of Agriculture, IGKV, Raipur (CG)” to find out the possible effect of foliar application of plant growth regulators with different concentration levels on yield of broccoli. The experiment was laid out in randomized block design (RBD) with three replications. It was consisted of ten treatments including T0: Control (without spray of PGRs), T1: GA3 @ 40 ppm, T2: GA3 @ 60 ppm, T3: GA3 @ 80 ppm, T4: NAA @ 60 ppm, T5: NAA @ 120 ppm, T6: NAA @ 180 ppm, T7: GA3 @ 40 ppm + NAA @ 60 ppm, T8: GA3 @ 60 ppm + NAA @ 120 ppm and T9: GA3 @ 80 ppm + NAA @ 180 ppm”. Two foliar applications were performed at 20 days after transplanting and 40 days after transplanting. The important parameters encompassed in the study were gurd diameter (cm), primary curd weight (g), secondary curd weight (g), curd yield per plant, curd yield per plot and curd yield per hectare. Data was recorded three times during investigation that is 30 DAT, 60 DAT and at the time of harvest. Although all treatments showed a positive effect on yield among all the treatments, T9 was showed better performance which may be due to the elongation of cells and cell division, increased dry matter accumulation in plants. Therefore, foliar application of GA3 80 ppm + NAA 180 was optimum among all treatments for getting higher yield in broccoli crop.
植物生长调节剂叶面施用对隧道下西兰花生产质量和经济的影响
在“赖布尔IGKV农学院设施栽培示范中心(CG)”进行了叶片施用不同浓度植物生长调节剂对西兰花产量可能产生的影响试验。试验采用随机区组设计(RBD),设3个重复。它由10个处理组成,包括T0:控制(不喷pgr), T1: GA3 @ 40 ppm, T2: GA3 @ 60 ppm, T3: GA3 @ 80 ppm, T4: NAA @ 60 ppm, T5: NAA @ 120 ppm, T6: NAA @ 180 ppm, T7: GA3 @ 40 ppm + NAA @ 60 ppm, T8: GA3 @ 60 ppm + NAA @ 120 ppm和T9: GA3 @ 80 ppm + NAA @ 180 ppm。分别在移栽后20天和40天进行叶面施药。研究中包含的重要参数包括凝乳直径(cm)、初级凝乳重量(g)、次级凝乳重量(g)、每株凝乳产量、每亩凝乳产量和每公顷凝乳产量。在调查期间记录了三次数据,即30dat, 60dat和收获时。虽然所有处理均对产量有正向影响,但T9表现更好,这可能是由于细胞伸长和细胞分裂,增加了植株的干物质积累。因此,花椰菜增产的最佳处理为叶面施用GA3 80 ppm + naa180。
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来源期刊
Environment and Ecology Research
Environment and Ecology Research Environmental Science-Pollution
CiteScore
1.30
自引率
0.00%
发文量
59
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