In-vitro response of Vigna aconitifolia to drought stress induced by PEG - 6000

This investigation was aimed at investigating effect of low water potential generated by PEG on growth, sugar content and stress related enzymes (catalase, GPOX) at seedling level. Additionally gene expression was also studied using SDS-PAGE. A total of twelve moth bean genotypes comprising of elite...

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Main Authors: T. Mohapatra, Govind Singh, K.V. Bhatt, M. Rizwan, Priyanka Soni
Format: Article
Language:English
Published: "Vikol publishing" ST Kolesnichenko V.V. 2011-09-01
Series:Journal of Stress Physiology & Biochemistry
Subjects:
Online Access:http://www.jspb.ru/issues/2011/N3/JSPB_2011_3_108-121.pdf
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spelling doaj-908c1df1e30046e38592025d23af0eeb2020-11-24T21:12:46Zeng"Vikol publishing" ST Kolesnichenko V.V. Journal of Stress Physiology & Biochemistry1997-08382011-09-0173108121In-vitro response of Vigna aconitifolia to drought stress induced by PEG - 6000T. MohapatraGovind SinghK.V. BhattM. RizwanPriyanka SoniThis investigation was aimed at investigating effect of low water potential generated by PEG on growth, sugar content and stress related enzymes (catalase, GPOX) at seedling level. Additionally gene expression was also studied using SDS-PAGE. A total of twelve moth bean genotypes comprising of elite moth bean lines were evaluated for desiccation tolerance at germination and seedling stage. Germination was happened differentially at 8% PEG while 15% PEG induced wilting in 7d old seedlings. Longer roots and shoots, higher dry weight of root and shoots both in control and treated seedlings was observed with desiccation tolerance. Drought tolerant and sensitive varieties differed in their protein profiling with newer genes showing their expression in tolerant once. Two genes were found up regulated in all tolerant varieties during PEG induced stress. Higher basal activity of enzymes (GPOX and catalase) and total soluble sugar during water deficit in drought tolerant varieties was reported.http://www.jspb.ru/issues/2011/N3/JSPB_2011_3_108-121.pdfWater deficitVigna aconitifoliadrought tolerance
collection DOAJ
language English
format Article
sources DOAJ
author T. Mohapatra
Govind Singh
K.V. Bhatt
M. Rizwan
Priyanka Soni
spellingShingle T. Mohapatra
Govind Singh
K.V. Bhatt
M. Rizwan
Priyanka Soni
In-vitro response of Vigna aconitifolia to drought stress induced by PEG - 6000
Journal of Stress Physiology & Biochemistry
Water deficit
Vigna aconitifolia
drought tolerance
author_facet T. Mohapatra
Govind Singh
K.V. Bhatt
M. Rizwan
Priyanka Soni
author_sort T. Mohapatra
title In-vitro response of Vigna aconitifolia to drought stress induced by PEG - 6000
title_short In-vitro response of Vigna aconitifolia to drought stress induced by PEG - 6000
title_full In-vitro response of Vigna aconitifolia to drought stress induced by PEG - 6000
title_fullStr In-vitro response of Vigna aconitifolia to drought stress induced by PEG - 6000
title_full_unstemmed In-vitro response of Vigna aconitifolia to drought stress induced by PEG - 6000
title_sort in-vitro response of vigna aconitifolia to drought stress induced by peg - 6000
publisher "Vikol publishing" ST Kolesnichenko V.V.
series Journal of Stress Physiology & Biochemistry
issn 1997-0838
publishDate 2011-09-01
description This investigation was aimed at investigating effect of low water potential generated by PEG on growth, sugar content and stress related enzymes (catalase, GPOX) at seedling level. Additionally gene expression was also studied using SDS-PAGE. A total of twelve moth bean genotypes comprising of elite moth bean lines were evaluated for desiccation tolerance at germination and seedling stage. Germination was happened differentially at 8% PEG while 15% PEG induced wilting in 7d old seedlings. Longer roots and shoots, higher dry weight of root and shoots both in control and treated seedlings was observed with desiccation tolerance. Drought tolerant and sensitive varieties differed in their protein profiling with newer genes showing their expression in tolerant once. Two genes were found up regulated in all tolerant varieties during PEG induced stress. Higher basal activity of enzymes (GPOX and catalase) and total soluble sugar during water deficit in drought tolerant varieties was reported.
topic Water deficit
Vigna aconitifolia
drought tolerance
url http://www.jspb.ru/issues/2011/N3/JSPB_2011_3_108-121.pdf
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