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EIN3类基因在卡文迪什香蕉(Musa acuminata cv. Grande naine)果实成熟过程中的表达

EIN3-like gene expression during fruit ripening of Cavendish banana (Musa acuminata cv. Grande naine).

作者信息

Mbéguié-A-Mbéguié Didier, Hubert Olivier, Fils-Lycaon Bernard, Chillet Marc, Baurens Franc-Christophe

机构信息

CIRAD, UMR 94 QUALITROP, Capesterre-Belle-Eau, Guadeloupe, F-97130, France.

出版信息

Physiol Plant. 2008 Jun;133(2):435-48. doi: 10.1111/j.1399-3054.2008.01083.x. Epub 2008 Mar 11.

Abstract

Ethylene signal transduction initiates with ethylene binding at receptor proteins and terminates in a transcription cascade involving the EIN3/EIL transcription factors. Here, we have isolated four cDNAs homologs of the Arabidopsis EIN3/EIN3-like gene, MA-EILs (Musa acuminata ethylene insensitive 3-like) from banana fruit. Sequence comparison with other banana EIL gene already registered in the database led us to conclude that, at this day, at least five different genes namely MA-EIL1, MA-EIL2/AB266318, MA-EIL3/AB266319, MA-EIL4/AB266320 and AB266321 exist in banana. Phylogenetic analyses included all banana EIL genes within a same cluster consisting of rice OsEILs, a monocotyledonous plant as banana. However, MA-EIL1, MA-EIL2/AB266318, MA-EIL4/AB266320 and AB266321 on one side, and MA-EIL3/AB266319 on the other side, belong to two distant subclusters. MA-EIL mRNAs were detected in all examined banana tissues but at lower level in peel than in pulp. According to tissues, MA-EIL genes were differentially regulated by ripening and ethylene in mature green fruit and wounding in old and young leaves. MA-EIL2/AB266318 was the unique ripening- and ethylene-induced gene; MA-EIL1, MA-EIL4/Ab266320 and AB266321 genes were downregulated, while MA-EIL3/AB266319 presented an unusual pattern of expression. Interestingly, a marked change was observed mainly in MA-EIL1 and MA-EIL3/Ab266319 mRNA accumulation concomitantly with changes in ethylene responsiveness of fruit. Upon wounding, the main effect was observed in MA-EIL4/AB266320 and AB266321 mRNA levels, which presented a markedly increase in both young and old leaves, respectively. Data presented in this study suggest the importance of a transcriptionally step control in the regulation of EIL genes during banana fruit ripening.

摘要

乙烯信号转导始于乙烯与受体蛋白结合,并终止于涉及EIN3/EIL转录因子的转录级联反应。在此,我们从香蕉果实中分离出了4个拟南芥EIN3/EIN3-like基因的cDNA同源物,即MA-EILs(尖叶蕉乙烯不敏感3-like)。与数据库中已登记的其他香蕉EIL基因进行序列比较后,我们得出结论,目前香蕉中至少存在5个不同的基因,即MA-EIL1、MA-EIL2/AB266318、MA-EIL3/AB266319、MA-EIL4/AB266320和AB266321。系统发育分析将所有香蕉EIL基因归入一个由水稻OsEILs组成的同一聚类中,水稻是与香蕉一样的单子叶植物。然而,MA-EIL1、MA-EIL2/AB266318、MA-EIL4/AB266320和AB266321在一侧,MA-EIL3/AB266319在另一侧,它们属于两个较远的亚聚类。在所有检测的香蕉组织中均检测到MA-EIL mRNA,但果皮中的水平低于果肉。根据组织不同,MA-EIL基因在成熟绿色果实成熟和乙烯处理以及老叶和幼叶受伤时受到不同的调控。MA-EIL2/AB266318是唯一受成熟和乙烯诱导的基因;MA-EIL1、MA-EIL4/Ab266320和AB266321基因表达下调,而MA-EIL3/AB266319呈现出异常的表达模式。有趣的是,主要在MA-EIL1和MA-EIL3/Ab266319 mRNA积累中观察到明显变化,同时果实的乙烯反应性也发生了变化。受伤后,主要在MA-EIL4/AB266320和AB266321 mRNA水平上观察到影响,它们分别在幼叶和老叶中显著增加。本研究提供的数据表明,转录步骤控制在香蕉果实成熟过程中EIL基因调控中具有重要作用。

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