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Differential transcriptional regulation of banana sucrose phosphate synthase gene in response to ethylene, auxin, wounding, low temperature and different photoperiods during fruit ripening and functional analysis of banana SPS gene promoter

机译:香蕉蔗糖磷酸合酶基因响应乙烯,生长素,创伤,低温和果实成熟期间不同光周期的差异转录调控和香蕉SPS基因启动子的功能分析

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Sucrose phosphate synthase (SPS) (EC 2.3.1.14) is the key regulatory component in sucrose formation in banana (Musa acuminata subgroup Cavendish, cv Giant governor) fruit during ripening. This report illustrates differential transcriptional responses of banana SPS gene following ethylene, auxin, wounding, low temperature and different photoperiods during ripening in banana fruit. Whereas ethylene strongly stimulated SPS transcript accumulation, auxin and cold treatment only marginally increased the abundance of SPS mRNA level, while wounding negatively regulated SPS gene expression. Conversely, SPS transcript level was distinctly increased by constant exposure to white light. Protein level, enzymatic activity of SPS and sucrose synthesis were substantially increased by ethylene and increased exposure to white light conditions as compared to other treatments. To further study the transcriptional regulation of SPS in banana fruit, the promoter region of SPS gene was cloned and some cis-acting regulatory elements such as a reverse GCC-box ERE, two ARE motifs (TGTCTC), one LTRE (CCGAA), a GAGA-box (GAGA…) and a GATA-box LRE (GATAAG) were identified along with the TATA and CAAT-box. DNA–protein interaction studies using these cis-elements indicated a highly specific cis–trans interaction in the banana nuclear extract. Furthermore, we specifically studied the light responsive characteristics of GATA-box containing synthetic as well as native banana SPS promoter. Transient expression assays using banana SPS promoter have also indicated the functional importance of the SPS promoter in regulating gene expression. Together, these results provide insights into the transcriptional regulation of banana SPS gene in response to phytohormones and other environmental factors during fruit ripening.
机译:蔗糖磷酸合酶(SPS)(EC 2.3.1.14)是成熟过程中香蕉(Musa acuminata亚群Cavendish,cv Giant Governor)水果中蔗糖形成的关键调控成分。该报告说明了香蕉SPS基因在乙烯,生长素,创伤,低温和成熟期间在不同的光周期后的转录差异。乙烯强烈刺激SPS转录物的积累,而生长素和冷处理仅略微增加了SPS mRNA水平的丰度,同时使负调节的SPS基因表达受到伤害。相反,通过不断暴露于白光,SPS转录水平明显增加。与其他处理相比,乙烯显着提高了蛋白质水平,SPS的酶促活性和蔗糖合成,并增加了在白光条件下的暴露。为了进一步研究香蕉果实中SPS的转录调控,克隆了SPS基因的启动子区域,并克隆了一些顺式调控元件,例如反向GCC-box ERE,两个ARE主题(TGTCTC),一个LTRE(CCGAA),确定了GAGA-box(GAGA…)和GATA-box LRE(GATAAG)以及TATA和CAAT-box。使用这些顺式元素的DNA-蛋白质相互作用研究表明,香蕉核提取物中具有高度特异性的顺式-反式相互作用。此外,我们专门研究了包含合成的和天然的香蕉SPS启动子的GATA-box的光响应特性。使用香蕉SPS启动子的瞬时表达测定也表明了SPS启动子在调节基因表达中的功能重要性。在一起,这些结果提供了对香蕉SPS基因在果实成熟期间响应植物激素和其他环境因素的转录调控的见解。

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