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  1. KRISHI Publication and Data Inventory Repository
  2. Natural Resource Management A8
  3. ICAR-Indian Institute of Soil and Water Conservation M4
  4. NRM-IISWC-Publication
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Please use this identifier to cite or link to this item: http://krishi.icar.gov.in/jspui/handle/123456789/33591
Title: Biomass and biomass water use efficiency in oilseed crop (Brassica juncea L.) under semi-arid microenvironments
Other Titles: Not Available
Authors: Tarun Adak,
Gopal Kumar
N.V.K. Chakravarty
R.K. Katiyar
P.S. Deshmukh
H.C. Joshi
ICAR Data Use Licennce: http://krishi.icar.gov.in/PDF/ICAR_Data_Use_Licence.pdf
Author's Affiliated institute: ICAR::Indian Institute of Soil and Water Conservation
Published/ Complete Date: 2013-01-20
Project Code: Not Available
Keywords: Brassica juncea Biomass partitioning Biomass water use efficiency Yield water use efficiency Semi-arid microenvironments
Publisher: Not Available
Citation: Not Available
Series/Report no.: Not Available;
Abstract/Description: Biomass production in arid and semi-arid regions requires a special attention owing to spatiotemporal scarcity of irrigation water wherein improved water use efficiency (WUE) of the crop is targeted. Under field conditions, the crop undergoes dynamic changes in near ground or within-canopy microenvironments. This changed microclimatic condition may have an impact on phenological response of the oilseed crop which in turn would affect biomass productivity, economic seed yield and water use efficiency of the crop. Henceforth, quantification of biomass production and its WUE of oilseed Brassica crop is essentially required owing to have better understanding of the crop water requirement under the era of climate change. Following a 2 years field experiment, it was revealed that the changes in leaf area index were explained by about 68e74%. The best fit polynomial third order regression analysis indicated >93% prediction in biomass production as a function of time factor. Improved biomass partitioning into economic sinks was also observed. Small scale change in near ground microenvironment may reduce the prediction of biomass variability to the extent of 3%. The mean ET variations were observed as 2.4, 1.5 and 3.2 mm day_1 during the critical phenological stages. Mean seed yield, biomass WUE and seed yield WUE ranged between 2.71 and 2.87 Mg ha_1, 11.4 and 13.1 g m_2 mm_1 and 19.3 and 22.9 kg ha_1 mm_1 respectively. Variations in both biomass and seed yield water use efficiencies due to small scale change in near ground microclimates were revealed.
Description: Not Available
ISSN: Not Available
Type(s) of content: Research Paper
Sponsors: Not Available
Language: English
Name of Journal: Biomass and Bioenergy
NAAS Rating: 9.55
Volume No.: 51
Page Number: 154-162
Name of the Division/Regional Station: Not Available
URI: http://krishi.icar.gov.in/jspui/handle/123456789/33591
Appears in Collections:NRM-IISWC-Publication

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