Effect of biofertilizers on growth and yield of china aster (callistephus chinensis L.)
Effect of biofertilizers on growth and yield of china aster (callistephus chinensis L.)
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生物肥料对紫菀(callistephus chinensis L.)生长及产量的影响
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发表时间:
2018
期刊:
影响因子:
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通讯作者:
Harshal Pagar
中科院分区:
文献类型:
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作者:
Harshal Pagar
EFFECT OF BIOFERTILIZERS ON GROWTH AND YIELD OF CHINA ASTER (Callistephus chinensis L.) By Mr. Pagar Harshal Pratap A Candidate For the degree of MASTER OF SCIENCE In HORTICULTURE (FLORICULTURE AND LANDSCAPING) DEPARTMENT OF HORTICULTURE, VASANTRAO NAIK MARATHWADA KRISHI VIDYAPEETH PARBHANI – 431 402 (M.S) INDIA Research Guide: Dr. S. S. Yadlod Department: Horticulture The present investigation entitled “Effect of Biofertilizers on growth and yield of China Aster (Callistephus chinensisL.)” was conducted at research farm of Department of Horticulture, Parbhani during Rabbi season of 2017. The climatic conditions during experimental period was favourable. The experiment was laid out in Factorial Randomized Block Design (FRBD) with three replications. The experiment consist of Factor A–Varieties (V)V1(Phule Ganesh White) V2 –Phule Ganesh Pink, and Factor B – Biofertilizers (T)T1(60% RDF +Azotobactor+PSB), T2-(80%RDF +Azotobactor+PSB), T3-(100%RDF + Azotobactor + PSB), T4-(120% RDF +Azotobactor+PSB), T5-(Control RDF). Biofertilizers were found to be effective increase in growth and yield of China Aster. The Biofertilizers at 30,60 and 90days after transplanting (DAT) which reducing the height and increases number of branches, number of leaves, flower diameter, number of flowers per plant, flower yield per plant, flower yield per plot, flower yield per hector and vase life of flower, plant spread. Treatments superior results with respect to the treatment areV2T3 it was found effective with respect to plant height, number of branches, Number of leaves, number of flowers per plant, weight of single flower V1T3 shows effective results with respect to yield per plant, yield per plot, yield per hector etc. However V1T3exhibited vase life, plant spread of flower. VITAE Mr. PAGAR HARSHAL PRATAP (A CANDIDATE OF THE DEGREE) Of MASTER OF SCIENCE IN HORTICULTURE (FLORICULTURE AND LANDSCAPING) 2018 Title of Thesis : EFFECT OF BIOFERTILIZERS ON GROWTH AND YIELD OF CHINA ASTER( Callistephus chinensis L.) Major field : Horticulture (Floriculture and Landscaping) Biographical Information Personal data :At. Post UtraneTq. SatanaDist. Nashik Date of birth :26 st August 1992. Education : Passed S.S.C. (X) from JanataVidyalaya, Utrane Tal.Satana, Dist. Nashik in 2008. Passed H.S.C. (XII) from M.G. Junior College, Nampur Tal. Satana Dist. Nashik in2010. Received the degree of Bachelor of Science (Agriculture) at K.D.S.P. College of Agriculture, Nashik. Perusing Post graduation at College of Agriculture, VNMKV, Parbhani Admitted through MCAER entrance exam. Present Address :At. Po.Utrane Tal. SatanaDist.Nashik. 423204 (M.S) Mob-9011781811 E-Mail ID : pagarharshal@gmail.com APPENDIX-I Weekly weather data for the year 2017-18 at Parbhani WK Period Rf (mm) R.D. Temperature o C Humidity (%) EVP BSS (Hrs.) W. V. (Kmph) Max. Min. AM PM 22 28-03 June 0.0 0.0 42.8 26.9 50 17 14.3 8.6 7.9 23 04-10 June 27.0 2.0 39.0 25.5 69 33 9.5 7.1 6.3 24 11-17 June 61.1 3.0 34.2 23.1 88 54 5.3 6.5 6.6 25 18-24 June 37.5 2.0 31.6 23.5 86 64 4.5 2.5 5.8 26 25-01 July 0.0 0.0 35.1 24.3 75 43 7.3 7.5 6.6 27 02-08 July 5.0 1.0 35.8 23.8 76 38 8.1 9.4 9.4 28 09-15 July 0.0 0.0 36.2 25.8 69 37 6.0 9.4 9.4 29 16-22 July 0.6 0.0 35.8 24.8 76 45 5.5 8.9 8.9 30 23-29 July 8.0 1.0 34.0 24.0 75 47 4.9 8.5 8.5 31 30-05 Aug 19.8 1.0 33.0 23.1 80 59 6.0 8.4 8.4 32 06-12 Aug 28.8 4.0 29.9 23.0 87 68 2.4 5.5 5.5 33 13-19 Aug 23.4 2.0 31.3 23.0 85 57 4.1 5.7 5.7 34 20-26 Aug 11.2 1.0 32.9 23.0 81 49 9.5 6.0 6.0 35 27-02 Sept 0.0 0.0 32.2 23.3 79 50 7.0 6.3 6.3 36 03-09 Sep 88.1 4.0 32.9 22.2 87 60 7.0 4.8 4.8 37 10-16 Sep 38.4 4.0 31.8 22.7 90 63 6.2 3.6 3.9 38 17-23 Sep 57.4 1.0 31.4 22.0 81 59 4.1 5.9 4.7 39 24-30 Sep 0.0 0.0 33.5 20.9 74 44 6.7 7.5 3.6 40 01-07 Oct. 1.8 0.0 34.3 20.9 75 44 7.1 7.3 3.6 41 08-14 Oct. 0.0 0.0 35.1 19.4 73 32 7.8 9.0 2.2 42 15-21 Oct. 0.0 0.0 35.7 18.3 70 29 7.8 9.1 3.6 43 22-28 Oct. 0.0 0.0 35.1 19.5 70 31 5.9 8.2 3.0 44 29-04 Nov. 0.0 0.0 33.0 18.9 75 36 5.6 8.1 4.4 45 05-11 Nov. 0.0 0.0 34.0 16.9 68 25 6.1 7.5 4.6 46 12-18 Nov. 0.0 0.0 33.6 14.3 75 23 6.1 8.9 5.3 47 19-25 Nov. 0.0 0.0 32.1 18.4 78 36 6.6 6.4 6.2 48 26-02 Dec. 0.0 0.0 32.9 17.0 79 33 5.6 7.6 3.0 49 03-09 Dec. 0.0 0.0 32.6 13.8 71 26 5.3 9.3 3.1 50 10-16 Dec. 0.0 0.0 33.8 17.7 72 31 5.6 8.9 3.4 51 17-23 Dec. 0.0 0.0 32.9 16.1 71 31 5.8 8.5 4.7 52 24-31 Dec. 0.0 0.0 30.3 8.5 74 24 5.2 7.7 4.8 1 01-07 Jan. 0.0 0.0 27.0 15.1 89 52 3.1 5.3 3.7 2 08-14 Jan. 0.0 0.0 28.3 5.8 76 20 4.7 9.9 3.1 3 15-21 Jan 0.0 0.0 28.9 10.2 72 29 5.2 8.3 4.4 4 22-28 Jan 0.0 0.0 31.1 14.1 76 26 5.1 7.9 4.4 5 29-04 Feb. 0.0 0.0 30.8 13.0 71 27 5.9 9.1 4.3 6 05-11 Feb 0.0 0.0 32.2 14.1 65 27 6.5 8.4 5.7 7 12-18 Feb. 0.0 0.0 33.1 12.3 73 18 6.6 9.7 3.8 8 19-25 Feb. 0.0 0.0 34.0 14.6 66 18 7.7 9.7 3.9 9 26-04 Mar. 0.0 0.0 38.9 15.0 79 38 6.3 7.3 4.4 Introduction Chapter I