Effects of waterlogging on root respiration intensity and respiratory enzyme activities of sweet cherry

Taking Meizao/Dongbeishanyingtao (Prunus serrulata G. Don) and Meizao/Mahaleb (P. mahaleb L.) as test materials, the respiration intensity and respiratory enzyme activities of their growing roots and brown lignified roots were determined under waterlogging. The results showed that under waterlogging...

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Veröffentlicht in:Ying yong sheng tai xue bao 2008-07, Vol.19 (7), p.1462-1466
Hauptverfasser: Chen, Qiang, Guo, Xiu-Wu, Hu, Yan-Li, Mao, Zhi-Quan
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Guo, Xiu-Wu
Hu, Yan-Li
Mao, Zhi-Quan
description Taking Meizao/Dongbeishanyingtao (Prunus serrulata G. Don) and Meizao/Mahaleb (P. mahaleb L.) as test materials, the respiration intensity and respiratory enzyme activities of their growing roots and brown lignified roots were determined under waterlogging. The results showed that under waterlogging, the root respiration intensity of the two kind rootstocks had a decreasing trend, with more decrement for their growing roots. For P. serrulata, the decrement of the respiration intensity of its growing roots and brown lignified roots was 1.47 and 1.36 times as much as that of P. mahaleb, respectively. The pyruvate decarboxylase (PDC) and lactate dehydrogenase (LDH) activities of the two kind roots had a decrease after an initial increase. Alcohol dehydrogenase (ADH) activity in growing roots also had a decrease after an initial increase, but that in brown lignified roots had an increasing trend. The test three enzyme activities changed more in growing roots than in brown lignified roots. The increment of ADH and
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subjects Alcohol Dehydrogenase - metabolism
Cell Respiration
Floods
Malate Dehydrogenase - metabolism
Plant Roots - enzymology
Plant Roots - metabolism
Prunus - enzymology
Prunus - metabolism
Pyruvate Decarboxylase - metabolism
title Effects of waterlogging on root respiration intensity and respiratory enzyme activities of sweet cherry
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