{"title":"不同灌氮水平及香蕉假茎液叶面施用量对滴灌甜玉米-绿革种植顺序的影响","authors":"P. Mistry, Soil","doi":"10.18782/2320-7051.7744","DOIUrl":null,"url":null,"abstract":"A field experiment was conducted during the rabi seasons of 2015-16 to 2017-18 at Soil and Water Management Research Unit farm, Navsari Agricultural University, Navsari to evaluate the effect of different levels of irrigation, nitrogen and foliar application of banana pseudostem sap on drip irrigated sweet corn and their residual effect on succeeding green gram under south Gujarat conditions. Significantly higher cob weight, no. of grains per cob and cob yield (16.6 t/ha) were recorded with I2 (0.8 PEF) while significantly higher cob length, cob girth, cob weight, no. of grains per cob and cob yield (15.9 t/ha) were recorded with N3 (140 kg N/ha). Application of banana pseudostem sap (S2) significantly affected on cob weight, no. of grains per cob and cob yield as well as fresh fodder yield of sweet corn. Significantly higher cob yield (16.4 t/ha) of sweet corn was recorded with interaction between 120 kg N/ha (N2) along with foliar application of banana pseudostem sap (S2) @ 1 %. In succeeding green gram crop, higher grain yield was recorded with I3N3 (1 PEF along with 140 kg N/ha) and I3S2 (1 PEF and application of 1% banana pseudostem sap) in interaction effect. Treatment I2 (0.8 PEF) recorded maximum sweet corn equivalent yield (18.55 t/ha), net returns ( 128440/ha) and B:C ratio (3.01), while an application of 140 kg N/ha (N3) noted highest sweet corn equivalent yield (17.74 t/ha), net returns ( 122898/ha) and B:C ratio (2.87). Moreover, foliar application of banana pseudostem sap recorded highest sweet corn equivalent yield (17.12 t/ha), net returns ( 116741/ha) and B:C ratio (2.68) over control.","PeriodicalId":14249,"journal":{"name":"International Journal of Pure & Applied Bioscience","volume":"120 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2019-10-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Effect of Different Levels of Irrigation, Nitrogen and Foliar Application of Banana Pseudostem Sap on Drip Irrigated Sweet Corn - Green Gram Cropping Sequence\",\"authors\":\"P. 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Significantly higher cob yield (16.4 t/ha) of sweet corn was recorded with interaction between 120 kg N/ha (N2) along with foliar application of banana pseudostem sap (S2) @ 1 %. In succeeding green gram crop, higher grain yield was recorded with I3N3 (1 PEF along with 140 kg N/ha) and I3S2 (1 PEF and application of 1% banana pseudostem sap) in interaction effect. Treatment I2 (0.8 PEF) recorded maximum sweet corn equivalent yield (18.55 t/ha), net returns ( 128440/ha) and B:C ratio (3.01), while an application of 140 kg N/ha (N3) noted highest sweet corn equivalent yield (17.74 t/ha), net returns ( 122898/ha) and B:C ratio (2.87). 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引用次数: 0
摘要
本研究于2015-16 ~ 2017-18年rabi季在印度南古吉拉特邦纳夫萨里农业大学土壤和水管理研究中心农场进行了田间试验,评估了不同灌溉水平、氮肥水平和香蕉假茎液叶面施用对滴灌甜玉米的影响及其对后续绿克的残留效应。穗轴重量显著增加,没有。I2 (0.8 PEF)处理可显著提高每芯粒数和产量(16.6 t/ hm2),同时显著提高了芯长、芯周长、芯重、籽粒数和籽粒数。施氮140 kg / hm2,每穗轴粒数和穗轴产量分别达到15.9 t/ hm2。施用香蕉假茎液(S2)对玉米穗轴重有显著影响。甜玉米的每穗粒数、穗产量和鲜饲料产量。在120 kg N/ha (N2)与叶面施用1%香蕉假茎液(S2)的交互作用下,甜玉米的穗轴产量显著提高(16.4 t/ha)。在随后的绿克作物中,I3N3 (1 PEF + 140 kg N/ hm2)和I3S2 (1 PEF + 1%香蕉假茎液)互作的籽粒产量较高。处理2 (0.8 PEF)最高的甜玉米当量产量(18.55 t/ha)、净收益(128440 t/ha)和B:C比(3.01),而处理140 kg N/ha (N3)最高的甜玉米当量产量(17.74 t/ha)、净收益(122898 t/ha)和B:C比(2.87)。此外,叶面施用香蕉假茎液的甜玉米当量产量(17.12 t/ha)、净收益(116741 t/ha)和B:C比(2.68)均高于对照。
Effect of Different Levels of Irrigation, Nitrogen and Foliar Application of Banana Pseudostem Sap on Drip Irrigated Sweet Corn - Green Gram Cropping Sequence
A field experiment was conducted during the rabi seasons of 2015-16 to 2017-18 at Soil and Water Management Research Unit farm, Navsari Agricultural University, Navsari to evaluate the effect of different levels of irrigation, nitrogen and foliar application of banana pseudostem sap on drip irrigated sweet corn and their residual effect on succeeding green gram under south Gujarat conditions. Significantly higher cob weight, no. of grains per cob and cob yield (16.6 t/ha) were recorded with I2 (0.8 PEF) while significantly higher cob length, cob girth, cob weight, no. of grains per cob and cob yield (15.9 t/ha) were recorded with N3 (140 kg N/ha). Application of banana pseudostem sap (S2) significantly affected on cob weight, no. of grains per cob and cob yield as well as fresh fodder yield of sweet corn. Significantly higher cob yield (16.4 t/ha) of sweet corn was recorded with interaction between 120 kg N/ha (N2) along with foliar application of banana pseudostem sap (S2) @ 1 %. In succeeding green gram crop, higher grain yield was recorded with I3N3 (1 PEF along with 140 kg N/ha) and I3S2 (1 PEF and application of 1% banana pseudostem sap) in interaction effect. Treatment I2 (0.8 PEF) recorded maximum sweet corn equivalent yield (18.55 t/ha), net returns ( 128440/ha) and B:C ratio (3.01), while an application of 140 kg N/ha (N3) noted highest sweet corn equivalent yield (17.74 t/ha), net returns ( 122898/ha) and B:C ratio (2.87). Moreover, foliar application of banana pseudostem sap recorded highest sweet corn equivalent yield (17.12 t/ha), net returns ( 116741/ha) and B:C ratio (2.68) over control.