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白三叶草(Trifolium repens L.)营养组织发育过程中1-氨基环丙烷-1-羧酸(ACC)氧化酶基因的表达受本体线索调控。

Expression of 1-aminocyclopropane-1-carboxylate (ACC) oxidase genes during the development of vegetative tissues in white clover (Trifolium repens L.) is regulated by ontological cues.

作者信息

Chen Balance C-M, McManus Michael T

机构信息

Institute of Molecular BioSciences, Massey University, Private Bag 11222, Palmerston North, New Zealand.

出版信息

Plant Mol Biol. 2006 Feb;60(3):451-67. doi: 10.1007/s11103-005-4813-3.

Abstract

Four 5' flanking sequences, comprising the 5'-UTR and upstream promoter region, have been isolated and cloned from the 1-aminocyclopropane-1-carboxylate (ACC) oxidase gene family of white clover (Trifolium repens L.), and designated TR-ACO1p, TR-ACO2p, TR-ACO3p and TR-ACO4p. Southern analysis confirmed that these sequences correspond to four distinct genes. The four corresponding genomic sequences have also been isolated and each shown to be comprised of four exons interspersed by three introns. The expression pattern, in vivo, directed by all four 5' flanking sequences during leaf development has been examined using GUS fusions and transformation into white clover. Here, the TR-ACO1 5' flanking sequence directs highest expression in the apical tissues, axillary buds, and leaf petiolules in younger tissues and then declines in the ageing tissues, while the TR-ACO2 5' flanking sequence directs expression in both younger, mature green and in ontologically ageing tissue. The TR-ACO3 and TR-ACO4 5' flanking sequences direct more expression in the ontological older tissues, including the axillary buds and leaf petiolules. The TR-ACO1 5' flanking sequence directed expression in the ground meristem and newly emerged leaf tissue at the apical bud of the stolon, but all four 5' flanking sequences directed expression in the ground meristem tissue of axillary buds, vascular tissue, pith and cortex of the internode and node, and the cortex and vascular tissue of the leaf petiolule, with the primacy of each promoter determined by the ontological age of the tissues. These data suggest that in vegetative tissue development of white clover, the primary cues for the transcriptional regulation of the ACO gene family are ontological in nature.

摘要

已从白三叶草(Trifolium repens L.)的1-氨基环丙烷-1-羧酸(ACC)氧化酶基因家族中分离并克隆了四个5'侧翼序列,包括5'-UTR和上游启动子区域,并将其命名为TR-ACO1p、TR-ACO2p、TR-ACO3p和TR-ACO4p。Southern分析证实这些序列对应于四个不同的基因。还分离出了四个相应的基因组序列,每个序列都由四个外显子和三个内含子相间组成。使用GUS融合并转化到白三叶草中,研究了这四个5'侧翼序列在叶片发育过程中体内的表达模式。在此,TR-ACO1 5'侧翼序列在较年轻组织的顶端组织、腋芽和叶柄中指导最高表达,然后在衰老组织中下降,而TR-ACO2 5'侧翼序列在较年轻、成熟的绿色组织和本体衰老组织中都指导表达。TR-ACO3和TR-ACO4 5'侧翼序列在本体较老的组织中指导更多表达,包括腋芽和叶柄。TR-ACO1 5'侧翼序列在匍匐茎顶端芽的基本分生组织和新出现的叶片组织中指导表达,但所有四个5'侧翼序列都在腋芽的基本分生组织、节间和节的维管组织、髓和皮层以及叶柄的皮层和维管组织中指导表达,每个启动子的优势由组织的本体年龄决定。这些数据表明,在白三叶草的营养组织发育中,ACO基因家族转录调控的主要线索本质上是本体性的。

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