2016
DOI: 10.5958/0974-0112.2016.00017.7
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Effect of salinity on gas exchange parameters and ionic relations inbael(Aegle marmelosCorrea)

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Cited by 15 publications
(17 citation statements)
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“…2 A). This decrease in chlorophyll content might be due to reduced activity of ALA synthase enzyme responsible for chlorophyll synthesis or due to increased activity of chlorophyll degrading enzyme, chlorophyllase ( Garg and Singla, 2004 , Singh et al, 2016 ; Mann et al, 2018 ) or the excessive accumulation of Na + in the leaf tissues resulted in an alteration of the chlorophyll pigments, and/or a restriction of its biosynthesis which translates into a chlorosis of leaves ( Yadav et al, 2020 ).
Fig.
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Section: Resultsmentioning
confidence: 99%
“…2 A). This decrease in chlorophyll content might be due to reduced activity of ALA synthase enzyme responsible for chlorophyll synthesis or due to increased activity of chlorophyll degrading enzyme, chlorophyllase ( Garg and Singla, 2004 , Singh et al, 2016 ; Mann et al, 2018 ) or the excessive accumulation of Na + in the leaf tissues resulted in an alteration of the chlorophyll pigments, and/or a restriction of its biosynthesis which translates into a chlorosis of leaves ( Yadav et al, 2020 ).
Fig.
…”
Section: Resultsmentioning
confidence: 99%
“…Chlorophyll is an important molecule in photosynthesis, and plant bioregulators help to increase the quality of chlorophyll by maintaining cellular osmotic reactions ( Burman et al, 2004 ; Seckin et al, 2009 ). The decrease in chlorophyll content in wheat under pathogen and salt stress may be due to increased chlorophyll degradation or decreased activity of chlorophyll biosynthesis enzymes ( Singh et al, 2016 ; Mann et al, 2019 ). Larger decreases in chlorophyll concentration have also been associated with exacerbation of stress symptoms ( Kumar et al, 2018 ).…”
Section: Discussionmentioning
confidence: 99%
“…But the application of SA and TU maintained the hydration of cells up to an optimal level, under stress conditions, through accumulation of osmolytes, which sustained water uptake and increased RWC of tissues ( Pooja and Sharma, 2016 ). Decrease in chlorophyll content under water deficit and salinity stress either in pearl millet or in wheat could be attributed to the rate of degradation of chlorophyll or due to reduction in activity of chlorophyll biosynthesis enzymes ( Singh et al, 2016 , Mann et al, 2019 ). Further aggravated stress symptoms have also been observed with greater reductions in chlorophyll concentration ( Kumar et al, 2018 ).…”
Section: Discussionmentioning
confidence: 99%