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五个天然香蕉品种果实中与乙烯生物合成相关的差异成熟模式的表征及GCC盒特异性DNA结合蛋白的检测

Characterization of differential ripening pattern in association with ethylene biosynthesis in the fruits of five naturally occurring banana cultivars and detection of a GCC-box-specific DNA-binding protein.

作者信息

Choudhury Swarup Roy, Roy Sujit, Saha Progya Paramita, Singh Sanjay Kumar, Sengupta Dibyendu N

机构信息

Department of Botany, Bose Institute, 93/1, Acharya Prafulla Chandra Road, Kolkata, 700 009 West Bengal, India.

出版信息

Plant Cell Rep. 2008 Jul;27(7):1235-49. doi: 10.1007/s00299-008-0547-4. Epub 2008 May 1.

Abstract

MA-ACS1 and MA-ACO1 are the two major ripening genes in banana and play crucial role in the regulation of ethylene production during ripening. Here, we report a comparative ripening pattern in five different naturally occurring banana cultivars namely Cavendish (AAA), Rasthali (AAB), Kanthali (AB), Poovan (AAB) and Monthan (ABB), which have distinct genome composition. We found a distinct variation in the climacteric ethylene production and in-vivo ACC oxidase activity level during the ripening stages in the five cultivars. We identified the cDNAs for MA-ACS1 and MA-ACO1 from the five cultivars and studied the transcript accumulation patterns of the two genes, which correlated well with the differential timing in the expression of these two genes during ripening. The GCC-box is one of the ethylene-responsive elements (EREs) found in the promoters of many ethylene-inducible genes. We have identified a GCC-box motif (putative ERE) in the promoters of MA-ACS1 and MA-ACO1 in banana cultivars. DNA-protein interaction studies revealed the presence of a GCC-box-specific DNA-binding activity in the fruit nuclear extract and such DNA-binding activity was enhanced following ethylene treatment. South-Western blotting revealed a 25-kDa nuclear protein that binds specifically to GCC-box DNA in the climacteric banana fruit. Together, these results indicate the probable involvement of the GCC-box motif as the cis-acting ERE in the regulation of MA-ACS1 and MA-ACO1 during ripening in banana fruits via binding of specific ERE-binding protein.

摘要

MA - ACS1和MA - ACO1是香蕉中两个主要的成熟基因,在果实成熟过程中乙烯生成的调控方面发挥着关键作用。在此,我们报告了五个不同天然香蕉品种,即卡文迪什(AAA)、拉斯塔利(AAB)、坎塔利(AB)、普万(AAB)和蒙丹(ABB)的比较成熟模式,这些品种具有不同的基因组组成。我们发现这五个品种在成熟阶段的跃变型乙烯生成和体内ACC氧化酶活性水平存在明显差异。我们从这五个品种中鉴定出MA - ACS1和MA - ACO1的cDNA,并研究了这两个基因的转录积累模式,其与这两个基因在成熟过程中表达的不同时间密切相关。GCC - box是在许多乙烯诱导基因启动子中发现的乙烯响应元件(ERE)之一。我们在香蕉品种MA - ACS1和MA - ACO1的启动子中鉴定出一个GCC - box基序(假定的ERE)。DNA - 蛋白质相互作用研究表明,果实核提取物中存在GCC - box特异性DNA结合活性,乙烯处理后这种DNA结合活性增强。South - Western印迹显示,跃变型香蕉果实中有一个25 kDa的核蛋白特异性结合GCC - box DNA。这些结果共同表明,GCC - box基序可能作为顺式作用的ERE,通过特定ERE结合蛋白的结合,参与香蕉果实成熟过程中MA - ACS1和MA - ACO1的调控。

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