有机生物肥料和不同生长调节剂对芥菜生长特性、产量和产量特性的影响

Q4 Environmental Science
Lipi Rina, J. Dawson, Liyir Rina, M. Kumar, M. Meshram
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引用次数: 0

摘要

2019 - 20年和2020-21年期间,在印度北方邦Prayagraj SamHigginbottom农业科技大学作物研究农场进行了一项田间试验。16个处理分别为生物肥料、固氮菌(B1)、增磷菌+固氮菌(B2)、泡状丛枝菌根+固氮菌(B3)、磷酸酯增磷菌根+泡状丛枝菌根+固氮菌(B4)、生长调节剂、水喷雾(G0)、赤霉素50 ppm (0.05 g/l) (G1)、水杨酸100 ppm (0.01 g/l) (G2)和吲哚乙酸50 ppm (0.05 g/l) (G3),采用裂图设计重复试验3次。(B4)增磷菌+泡状丛枝菌+固氮菌处理下的叶面积(2019-20年80 DAS时为269.172和266.250)、收获期为267.213和266.496)和叶面积指数(LAI)(2019-20年80 DAS时为0.897和0.888)和收获期为0.891和0.888)。B4 (PSB + VAM +固氮菌)处理在2019-20年和2020-21年分别显著提高了作物产量,即种子产量(1.943和2.034 t/ha)和秸秆产量(6.747和6.964)。生长调节剂在G1(赤霉素酸50 ppm (0.05 g/l))处理下,2019-20年和2020-21年的种子产量分别为1.842和1.978 t/ha,秸秆产量分别为6.768和6.954 t/ha。在G1[赤霉素酸50 ppm(0.05 g/l)]处理下,叶面积(2019-20年80 DAS时为257.589和256.500)和叶面积(2020-21年收获时为258.991和256.922)、叶面积指数(2019-20年80 DAS时为0.859和0.855)和叶面积指数(2020-21年收获时为0.863和0.856)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GROWTH ATTRIBUTES, YIELD AND YIELD ATTRIBUTES AFFECTED BY ORGANIC BIOFERTILIZERS AND DIFFERENT GROWTH REGULATORS OF INDIAN MUSTARD (BRASSICA JUNCEA L.) FOR SUSTAINABLE AGRICULTURE
A field experiment was conducted during 2019–20 and 2020-21 at Crop Research Farm at SamHigginbottom University of Agriculture Technology and Sciences, Prayagraj, Uttar Pradesh, India.Sixteen treatments, comprising biofertilizer viz., Azotobacter (B1) Phosphate Solubilizing Bacteria+ Azotobacter (B2), Vesicular Arbuscular Mycorrhiza + Azotobacter (B3) and PhosphateSolubilizing Bacteria + Vesicular Arbuscular Mycorrhiza + Azotobacter (B4), growth regulators viz.,Water Spray(G0), Gibberellic acid 50 ppm (0.05 g/l) (G1), Salicyclic acid 100 ppm (0.01 g/l) (G2) andIndole acetic acid 50 ppm (0.05 g/l) (G3) and were replicated 3 times in split plot design. Growthattributes viz., leaf area (269.172 and 266.250 at 80 DAS during 2019-20) and (267.213 and 266.496 atharvest during 2020-21) and Leaf Area Index (LAI)(0.897 and 0.888 at 80 DAS during 2019-20) and(0.891 and 0.888 at harvest during 2020-21) under the treatment (B4) Phosphate Solubilizing Bacteria+ Vesicular Arbuscular Mycorrhiza + Azotobacter, respectively. Crop yield viz., seed yield (1.943and 2.034 t/ha) and stover yield (6.747 and 6.964) significantly higher were recorded during theyears 2019-20 and 2020-21 in treatment combination B4 (PSB + VAM +Azotobacter), respectively.Growth regulators recorded the higher seed yield (1.842 and 1.978 t/ha) and stover yield (6.768 and6.954 t/ha) during the years 2019-20 and 2020-21, respectively in the treatment G1 [Gibberellic acid50 ppm (0.05 g/l)]. Growth attributes viz., leaf area (257.589 and 256.500 at 80 DAS during 2019-20)and (258.991 and 256.922 at harvest during 2020-21) and LAI (0.859 and 0.855 at 80 DAS during 2019-20) and (0.863 and 0.856 at harvest during 2020-21) under the treatment G1 [Gibberellic acid 50 ppm(0.05 g/l)], respectively.
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来源期刊
Pollution Research
Pollution Research Environmental Science-Water Science and Technology
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期刊介绍: POLLUTION RESEARCH is one of the leading enviromental journals in world and is widely subscribed in India and abroad by Institutions and Individuals in Industry, Research and Govt. Departments.
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