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PMID: 12172848 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Abscisic acid and cytokinins in the root exudates and leaves and their relationship to senescence and remobilization of carbon reserves in rice subjected to water stress during grain filling.

Planta ·Vol. 215 ·No. 4 ·2002-08-00 ·Pages 645-52

Yang J, Zhang J, Wang Z, Zhu Q, Liu L

Abstract

The possible regulation of senescence-initiated remobilization of carbon reserves in rice (Oryza sativa L.) by abscisic acid (ABA) and cytokinins was studied using two rice cultivars with high lodging resistance and slow remobilization. The plants were grown in pots and either well-watered (WW, soil water potential = 0 MPa) or water-stressed (WS, soil water potential = -0.05 MPa) from 9 days after anthesis until they reached maturity. Leaf water potentials of both cultivars markedly decreased at midday as a result of water stress but completely recovered by early morning. Chlorophyll (Chl) and photosynthetic rate (Pr) of the flag leaves declined faster in WS plants than in WW plants, indicating that the water deficit enhanced senescence. Water stress accelerated starch remobilization in the stems, promoted the re-allocation of pre-fixed (14)C from the stems to grains, shortened the grain-filling period and increased the grain-filling rate. Sucrose phosphate synthase (SPS, EC 2.4.1.14) activity was enhanced by water stress and positively correlated with sucrose accumulation in both the stem and leaves. Water stress substantially increased ABA but reduced zeatin (Z) + zeatin riboside (ZR) concentrations in the root exudates and leaves. ABA significantly and negatively, while Z+ZR positively, correlated with Pr and Chl of the flag leaves. ABA, not Z+ZR, was positively and significantly correlated with SPS activity and remobilization of pre-stored carbon. Spraying ABA reduced Chl in the flag leaves, and enhanced SPS activity and remobilization of carbon reserves. Spraying kinetin had the opposite effect. The results suggest that both ABA and cytokinins are involved in controlling plant senescence, and an enhanced carbon remobilization is attributed to an elevated ABA level in rice plants subjected to water stress.

MeSH Terms
Abscisic Acid/metabolism,pharmacology Adenosine/analogs & derivatives,metabolism Biological Transport, Active/physiology Carbon/metabolism Carbon Radioisotopes Chlorophyll/metabolism Cytokinins/metabolism,pharmacology Glucosyltransferases/metabolism Isopentenyladenosine/analogs & derivatives,metabolism Oryza/drug effects,growth & development,metabolism Osmotic Pressure Photosynthesis/physiology Plant Growth Regulators/metabolism,pharmacology Plant Leaves/metabolism Plant Roots/metabolism Plant Structures/drug effects,growth & development,metabolism Reproduction Seeds/enzymology,growth & development Starch/metabolism Sucrose/metabolism Water/metabolism,pharmacology Zeatin/metabolism
Chemicals
Carbon Radioisotopes Cytokinins Plant Growth Regulators Water Chlorophyll Sucrose Abscisic Acid Carbon Isopentenyladenosine Zeatin zeatin riboside Starch Glucosyltransferases sucrose-phosphate synthase Adenosine
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Yang Jianchang
College of Agriculture, Yangzhou University, Yangzhou, Jiangsu, China.
Zhang Jianhua
Wang Zhiqing
Zhu Qingsen
Liu Lijun
Article Info
Journal
Planta
Abbr.
Planta
ISSN
0032-0935
Published
2002-08-00
Epub
2002-00-20
Pages
645-52
Language
English
Region
Germany
NLM ID
1250576
Subset
IM
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