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      Effect of Short-Term Cold Treatment on Carbohydrate Metabolism in Potato Leaves

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          Abstract

          Plants are often challenged by an array of unfavorable environmental conditions. During cold exposure, many changes occur that include, for example, the stabilization of cell membranes, alterations in gene expression and enzyme activities, as well as the accumulation of metabolites. In the presented study, the carbohydrate metabolism was analyzed in the very early response of plants to a low temperature (2 °C) in the leaves of 5-week-old potato plants of the Russet Burbank cultivar during the first 12 h of cold treatment (2 h dark and 10 h light). First, some plant stress indicators were examined and it was shown that short-term cold exposure did not significantly affect the relative water content and chlorophyll content (only after 12 h), but caused an increase in malondialdehyde concentration and a decrease in the expression of NDA1, a homolog of the NADH dehydrogenase gene. In addition, it was shown that the content of transitory starch increased transiently in the very early phase of the plant response (3–6 h) to cold treatment, and then its decrease was observed after 12 h. In contrast, soluble sugars such as glucose and fructose were significantly increased only at the end of the light period, where a decrease in sucrose content was observed. The availability of the monosaccharides at constitutively high levels, regardless of the temperature, may delay the response to cold, involving amylolytic starch degradation in chloroplasts. The decrease in starch content, observed in leaves after 12 h of cold exposure, was preceded by a dramatic increase in the transcript levels of the key enzymes of starch degradation initiation, the α-glucan, water dikinase (GWD-EC 2.7.9.4) and the phosphoglucan, water dikinase (PWD-EC 2.7.9.5). The gene expression of both dikinases peaked at 9 h of cold exposure, as analyzed by real-time PCR. Moreover, enhanced activities of the acid invertase as well as of both glucan phosphorylases during exposure to a chilling temperature were observed. However, it was also noticed that during the light phase, there was a general increase in glucan phosphorylase activities for both control and cold-stressed plants irrespective of the temperature. In conclusion, a short-term cold treatment alters the carbohydrate metabolism in the leaves of potato, which leads to an increase in the content of soluble sugars.

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                Author and article information

                Contributors
                Role: Academic Editor
                Role: Academic Editor
                Role: Academic Editor
                Role: Academic Editor
                Journal
                Int J Mol Sci
                Int J Mol Sci
                ijms
                International Journal of Molecular Sciences
                MDPI
                1422-0067
                04 July 2021
                July 2021
                : 22
                : 13
                : 7203
                Affiliations
                [1 ]Department of Biochemistry and Microbiology, Institute of Biology, Warsaw University of Life Sciences-SGGW, 02-776 Warsaw, Poland; dorota.sitnicka@ 123456wp.pl (D.S.); agnieszka_grabowska@ 123456sggw.edu.pl (A.G.); edyta_zdunek_zastocka@ 123456sggw.edu.pl (E.Z.-Z.)
                [2 ]Biopolymer Analytics, Institute of Biochemistry and Biology, University of Potsdam, Karl-Liebknecht-Str. 24-25 Building 20, 14476 Potsdam-Golm, Germany; compart@ 123456uni-potsdam.de (J.C.); fettke@ 123456uni-potsdam.de (J.F.)
                Author notes
                [* ]Correspondence: slawomir_orzechowski@ 123456sggw.edu.pl ; Tel.: +48-225-932-560; Fax: +48-225-932-561
                Author information
                https://orcid.org/0000-0002-3370-6910
                https://orcid.org/0000-0001-6435-9037
                https://orcid.org/0000-0003-0137-7611
                Article
                ijms-22-07203
                10.3390/ijms22137203
                8268532
                34281256
                1a312f5c-001c-494e-9ce3-abe3d7cc4fed
                © 2021 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( https://creativecommons.org/licenses/by/4.0/).

                History
                : 18 March 2021
                : 01 July 2021
                Categories
                Article

                Molecular biology
                cold stress,α-glucan,water dikinase,phosphoglucan water dikinase,chloroplast isolation,glucan phosphorylase,acid invertase

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