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白羽扇豆中四个编码1-氨基环丙烷-1-羧酸合酶的基因在萌发过程中以及对吲哚-3-乙酸和创伤的响应中的差异表达。

Differential expression of four genes encoding 1-aminocyclopropane-1-caroboxylate synthase in Lupinus albus during germination, and in response to indole-3-acetic acid and wounding.

作者信息

Bekman E P, Saibo N J, Di Cataldo A, Regalado A P, Ricardo C P, Rodrigues-Pousada C

机构信息

Instituto Gulbenkian de Ciência, Oeiras, Portugal.

出版信息

Planta. 2000 Oct;211(5):663-72. doi: 10.1007/s004250000328.

Abstract

1-Aminocyclopropane-1-carboxylate (ACC) synthase (ACS; EC 4.4.1.14) is the key regulatory enzyme of the ethylene biosynthetic pathway and is encoded by a multigene family in Arabidopsis thaliana, tomato, mung bean and other plants. Southern blot analysis revealed the existence of at least five ACS genes in white lupin (Lupinus albus L.) genome. Four complete and one partial sequences representing different ACS genes were cloned from the lupin genomic library. The levels of expression of two of the genes, LA-ACS1 and LA-ACS3, were found to increase after hypocotyl wounding. Apparently, these two genes were up-regulated by exogenous IAA treatment of seedlings. The LA-ACS3 mRNA levels were also elevated in the apical part of hypocotyl, which is reported to contain a high endogenous auxin concentration. This gene may be involved in the auxin- and ethylene-controlled apical hook formation. The expression of the LA-ACS4 gene was found to be almost undetectable. This gene may represent a "silent" twin of LA-ACS5 as these two genes share a considerable level of homology in coding and non-coding regions. The LA-ACS5 mRNA is strongly up-regulated in the embryonic axis of germinating seeds at the time of radicle emergence, and was also found in roots and hypocotyls of lupin seedlings.

摘要

1-氨基环丙烷-1-羧酸(ACC)合酶(ACS;EC 4.4.1.14)是乙烯生物合成途径中的关键调控酶,在拟南芥、番茄、绿豆和其他植物中由一个多基因家族编码。Southern杂交分析表明,白羽扇豆(Lupinus albus L.)基因组中至少存在5个ACS基因。从羽扇豆基因组文库中克隆到了代表不同ACS基因的4个完整序列和1个部分序列。发现其中两个基因LA-ACS1和LA-ACS3在胚轴受伤后表达水平增加。显然,这两个基因通过对外源IAA处理的幼苗上调表达。LA-ACS3的mRNA水平在胚轴顶端部分也有所升高,据报道该部位含有高浓度的内源生长素。该基因可能参与生长素和乙烯控制的顶端弯钩形成。发现LA-ACS4基因的表达几乎检测不到。该基因可能是LA-ACS5的“沉默”孪生基因,因为这两个基因在编码区和非编码区具有相当程度的同源性。LA-ACS5的mRNA在种子萌发胚轴中胚根出现时强烈上调表达,在羽扇豆幼苗的根和胚轴中也有发现。

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