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Effect Of Organic Manures And Planting Time On Growth, Yield, Quality And Economics Of Squash Under Medium High Land Condition Of Dinajpur Region

Author

Listed:
  • M.M. Khanum

    (Scientific Officer, Agricultural Research Station, BARI, Rajbari, Dinajpur-5200)

  • M. Nuruzzaman

    (Scientific Officer, Agricultural Research Station, BARI, Rajbari, Dinajpur-5200.)

  • M.S Huda

    (Senior Scientific Officer, Agricultural Research Station, BARI, Rajbari, Dinajpur-5200.)

  • M.A.A.A Muzahid

    (Department of Horticulture, Bangladesh Agricultural University, Mymensingh-2202)

Abstract

The experiment was conducted at the research field of Agricultural Research Station, Rajbari, Dinajpur during rabi season of 2018-19 and 2019-20 to develop a profitable and economic fertilizer dose and optimum planting time for Squash and to increase the productivity and yield. Two different dates of planting viz. 15 November and 30 November considered as factor A and different organic manures viz., vermicompost, poultry manure and cowdung considered as factor B. The experiment was laid out in randomized complete block (RCB) design (Factorial) with three replications. Organic manures and planting time showed significant effects on most of the parameters. In case of organic manures, highest individual fruit weight (1707.50 g) and fruit yield (32.43 tha-1) was recorded from vermicompost whereas the lowest fruit weight (1233.17 g) and fruit yield (23.52 tha-1) was recorded from cowdung application. In case of planting time, the highest individual fruit weight (1747.11 g) and fruit yield (29.61 tha-1) was recorded from 15 November planting date whereas the lowest fruit weight (1196.44 g) and fruit yield (25.86 tha-1) was recorded from 30 November planting date. For combination, highest individual fruit weight (2153.66g) and fruit yield (34.06 tha-1) were recorded from vermicompost with 15 November planting date while the lowest individual fruit weight (1105.33g) and fruit yield (20.56 tha-1) were recorded from cowdung with 30 November planting date. Vermicompost with 15 November planting date was found suitable for total productivity and economic return of the system.

Suggested Citation

  • M.M. Khanum & M. Nuruzzaman & M.S Huda & M.A.A.A Muzahid, 2021. "Effect Of Organic Manures And Planting Time On Growth, Yield, Quality And Economics Of Squash Under Medium High Land Condition Of Dinajpur Region," Sustainability in Food and Agriculture (SFNA), Zibeline International Publishing, vol. 2(1), pages 40-43, January.
  • Handle: RePEc:zib:zbsfna:v:2:y:2021:i:1:p:40-43
    DOI: 10.26480/sfna.01.2021.40.43
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    References listed on IDEAS

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    1. Arora, V.K. & Singh, C.B. & Sidhu, A.S. & Thind, S.S., 2011. "Irrigation, tillage and mulching effects on soybean yield and water productivity in relation to soil texture," Agricultural Water Management, Elsevier, vol. 98(4), pages 563-568, February.
    2. Wopereis, Marco, 2018. "Tapping the nutritional power of vegetables," 2018: Reshaping Agriculture for Better Nutrition-The Agriculture, Food, Nutrition, Health Nexus, 13-14 August 2018 283198, Crawford Fund.
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