Phytochrome- and Gibberellin-Mediated Regulation of Abscisic Acid Metabolism during Germination of Photoblastic Lettuce Seeds
- 9 January 2008
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 146 (3) , 1386-1396
- https://doi.org/10.1104/pp.107.115162
Abstract
Germination of lettuce (Lactuca sativa) 'Grand Rapids' seeds is regulated by phytochrome. The action of phytochrome includes alterations in the levels of gibberellin (GA) and abscisic acid (ABA). To determine the molecular mechanism of phytochrome regulation of ABA metabolism, we isolated four lettuce cDNAs encoding 9-cis-epoxycarotenoid dioxygenase (biosynthesis; LsNCED1-LsNCED4) and four cDNAs for ABA 8'-hydroxylase (catabolism; LsABA8ox1-LsABA8ox4). Measurements of ABA and its catabolites showed that a decrease in ABA level coincided with a slight increase in the level of the ABA catabolite phaseic acid after red light treatment. Quantitative reverse transcription-polymerase chain reaction analysis indicated that ABA levels are controlled by phytochrome through down-regulation of LsNCED2 and LsNCED4 expression and up-regulation of LsABA8ox4 expression in lettuce seeds. Furthermore, the expression levels of LsNCED4 decreased after GA(1) treatment, whereas the levels of expression of the other two genes were unaffected. The LsNCED4 expression was also down-regulated by red light in lettuce seeds in which GA biosynthesis was suppressed by AMO-1618, a specific GA biosynthesis inhibitor. These results indicate that phytochrome regulation of ABA metabolism is mediated by both GA-dependent and -independent mechanisms. Spatial analysis showed that after red light treatment, the ABA decrease on the hypocotyl side was greater than that on the cotyledon side of lettuce seeds. Moreover, phytochrome-regulated expression of ABA and GA biosynthesis genes was observed on the hypocotyl side, rather than the cotyledon side, suggesting that this regulation occurs near the photoperceptive site.Keywords
This publication has 43 references indexed in Scilit:
- Field studies on the regulation of abscisic acid content and germinability during grain development of barley: molecular and chemical analysis of pre-harvest sproutingJournal of Experimental Botany, 2006
- CYP707A1 and CYP707A2, Which Encode Abscisic Acid 8′-Hydroxylases, Are Indispensable for Proper Control of Seed Dormancy and Germination in ArabidopsisPlant Physiology, 2006
- Distinct Isoprenoid Origins of cis- and trans-Zeatin Biosyntheses in ArabidopsisJournal of Biological Chemistry, 2004
- Floral dip: a simplified method forAgrobacterium‐mediated transformation ofArabidopsis thalianaThe Plant Journal, 1998
- Specific Oxidative Cleavage of Carotenoids by VP14 of MaizeScience, 1997
- Phytochrome-mediated activation of the gene for cytosolic glutamine-synthetase (GS1) during imbibition of photosensitive lettuce seedsPlant Molecular Biology, 1990
- Accumulation of free amino acids in the tips of non-thermodormant embryonic axes accounts for the increase in the growth potential of New York lettuce seedsPlant and Cell Physiology, 1980
- Inhibition of Gibberellic Acid-induced Germination by Abscisic Acid and Reversal by CytokininsPlant Physiology, 1968
- Action of Gibberellic Acid on Lettuce Seed GerminationPlant Physiology, 1960
- DETECTION, ASSAY, AND PRELIMINARY PURIFICATION OF THE PIGMENT CONTROLLING PHOTORESPONSIVE DEVELOPMENT OF PLANTSProceedings of the National Academy of Sciences, 1959