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G蛋白偶联α2A-肾上腺素能受体激动剂通过影响ACC合成酶和ACC氧化酶的表达,差异性地改变柑橘叶片和果实的脱落。

G-protein-coupled alpha2A-adrenoreceptor agonists differentially alter citrus leaf and fruit abscission by affecting expression of ACC synthase and ACC oxidase.

作者信息

Yuan Rongcai, Wu Zhencai, Kostenyuk Igor A, Burns Jacqueline K

机构信息

University of Florida, Institute of Food and Agricultural Sciences, Citrus Research and Education Center, 700 Experiment Station Road, Lake Alfred, FL 33850-2299, USA.

出版信息

J Exp Bot. 2005 Jul;56(417):1867-75. doi: 10.1093/jxb/eri176. Epub 2005 May 31.

Abstract

Temporal and spatial expression patterns of genes encoding 1-aminocyclopropane-1-carboxylate (ACC) synthase (ACS1 and ACS2) and ACC oxidase (ACO), ACC concentration, and ethylene production in leaves and fruit of 'Valencia' orange (Citrus sinensis [L.] Osbeck) were examined in relation to differential abscission after treatment with 2-chloroethylphosphonic acid (ethephon) alone or in combination with guanfacine or clonidine, two G-protein-coupled alpha(2A)-adrenoreceptor selective agonists. Guanfacine and clonidine markedly reduced ethephon-enhanced leaf abscission, but had little effect on ethephon-enhanced fruit loosening. Ethephon-enhanced fruit and leaf ethylene production, and ACC concentration in fruit abscission zones, fruit peel, leaf abscission zones, and leaf blades were decreased by guanfacine. Guanfacine reduced ethephon-enhanced expression of ACS1 and ACO genes in leaf abscission zones and blades, but to a lesser extent in fruit abscission zones. The expression pattern of the ACS2 gene, however, was not associated with abscission. The results demonstrate that differential expression of ACS1 and ACO genes is associated with reduction of ethephon-enhanced leaf abscission by guanfacine, and suggest a link between G-protein-related signalling and abscission.

摘要

研究了‘伏令夏橙’(Citrus sinensis [L.] Osbeck)叶片和果实中编码1-氨基环丙烷-1-羧酸(ACC)合酶(ACS1和ACS2)和ACC氧化酶(ACO)的基因的时空表达模式、ACC浓度以及乙烯生成,并探讨了其与单独使用2-氯乙基膦酸(乙烯利)或与胍法辛或可乐定(两种G蛋白偶联α(2A)-肾上腺素能受体选择性激动剂)联合处理后的差异脱落的关系。胍法辛和可乐定显著降低了乙烯利增强的叶片脱落,但对乙烯利增强的果实松动影响不大。胍法辛降低了乙烯利增强的果实和叶片乙烯生成以及果实脱落区、果皮、叶片脱落区和叶片中的ACC浓度。胍法辛降低了乙烯利增强的叶片脱落区和叶片中ACS1和ACO基因的表达,但在果实脱落区降低的程度较小。然而,ACS2基因的表达模式与脱落无关。结果表明,ACS1和ACO基因的差异表达与胍法辛降低乙烯利增强的叶片脱落有关,并提示了G蛋白相关信号传导与脱落之间的联系。

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