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天竺葵品种雪堆叶片中编码乙烯生物合成酶的cDNA的鉴定与表征

Identification and characterization of cDNAs encoding ethylene biosynthetic enzymes from Pelargonium x hortorum cv Snow Mass leaves.

作者信息

Wang T W, Arteca R N

机构信息

Department of Horticulture, Pennsylvania State University, University Park 16802, USA.

出版信息

Plant Physiol. 1995 Oct;109(2):627-36. doi: 10.1104/pp.109.2.627.

Abstract

Two Pelargonium 1-aminocyclopropane-1-carboxylate (ACC) synthase cDNAs (GAC-1 and GAC-2) were identified and characterized. GAC-1 is 1934 bp long with a 1446-bp open reading frame encoding a 54.1-kD polypeptide. GAC-2 is a 1170-bp-long ACC synthase polymerase chain reaction fragment encoding 390 amino acids. Expression of GAC-1 and GAC-2 together with a previously identified ACC oxidase (GEFE-1) was examined in different Pelargonium plant parts, and leaves were subjected to osmotic stress (sorbitol), metal ion stress (CuCl2), auxin (2,4-dichlorophenoxyacetic acid [2,4-D]), and ethylene. GAC-1 expression was not detectable in any of the plant parts tested, whereas high levels of GAC-2 were expressed in the leaf bud, young leaf, young floret, fully open floret, and senescing floret. GAC-2 was expressed to a lesser degree in fully expanded leaves or roots and was undetectable in old leaves and floret buds. GEFE-1 was detectable at all leaf ages tested, in young and fully open florets, and in the roots; however, the highest degree of expression was in the senescing florets. GAC-1 was induced by sorbitol. Both GAC-1 and GAC-2 were only slightly affected by CuCl2 and induced indirectly by 2,4-D. GEFE-1 was highly induced by sorbitol, CuCl2, and 2,4-D. GAC-1, GAC-2, and GEFE-1 were unaffected by ethylene treatment. These results suggest that GAC-1 is only induced by stress and that GAC-2 may be developmentally regulated, whereas GEFE-1 is influenced by both stress and development.

摘要

鉴定并表征了两个天竺葵1-氨基环丙烷-1-羧酸(ACC)合酶cDNA(GAC-1和GAC-2)。GAC-1长1934 bp,具有一个1446 bp的开放阅读框,编码一个54.1 kD的多肽。GAC-2是一个1170 bp长的ACC合酶聚合酶链反应片段,编码390个氨基酸。检测了GAC-1和GAC-2与先前鉴定的ACC氧化酶(GEFE-1)在不同天竺葵植物部位的表达情况,并对叶片施加渗透胁迫(山梨醇)、金属离子胁迫(CuCl2)、生长素(2,4-二氯苯氧乙酸[2,4-D])和乙烯处理。在所测试的任何植物部位均未检测到GAC-1的表达,而在叶芽、幼叶、幼小花、完全开放的小花和衰老的小花中高水平表达GAC-2。GAC-2在完全展开的叶片或根中的表达程度较低,在老叶和小花蕾中未检测到。在所有测试的叶龄、幼小花和完全开放的小花以及根中均可检测到GEFE-1;然而,最高表达程度出现在衰老的小花中。GAC-1受山梨醇诱导。GAC-1和GAC-2均仅受CuCl2轻微影响,并受2,4-D间接诱导。GEFE-1受山梨醇、CuCl2和2,4-D高度诱导。GAC-1、GAC-2和GEFE-1不受乙烯处理的影响。这些结果表明,GAC-1仅受胁迫诱导,GAC-2可能受发育调控,而GEFE-1受胁迫和发育两者的影响。

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