首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Transgenic banana plants overexpressing MusabZIP53 display severe growth retardation with enhanced sucrose and polyphenol oxidase activity
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Transgenic banana plants overexpressing MusabZIP53 display severe growth retardation with enhanced sucrose and polyphenol oxidase activity

机译:过表达MusabZIP53的转基因香蕉植株显示出严重的生长迟缓,蔗糖和多酚氧化酶活性增强

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摘要

bZIP transcription factors are involved in diverse cellular processes including stress response pathways in plants. In the present study, we identified a bZIP gene, MusabZIP53, from banana EST database and subsequently characterized it by overexpression in transgenic banana plants. Expression profiling in native banana plants proved that MusabZIP53 was strongly up-regulated by cold and drought stress and by ABA treatment in both leaf and root tissues. Transgenic banana plants constitutively overexpressing MusabZIP53 displayed growth retardation from early stages of transformation/regeneration protocol and mature greenhouse hardened transgenic plants displayed a distinct dwarf phenotype. Genes belonging to several families known to be involved in abiotic stress perception and mitigation were found to be differentially regulated in these transgenic plants. These included genes coding for dehydration response element binding proteins, late embryogenesis abundant proteins, anti-oxidant enzymes, aquaporins, polyphenol oxidases, Aux/IAA proteins and proteins involved in amino acid metabolism. Presence of a conserved untranslated ORF in the 5' UTR region of MusabZIP53 gene and detection of enhanced levels of sucrose in the leaves of transgenic MusabZIP53 overexpressing banana plants indicated an important role for this bZIP gene in sucrose homeostasis in banana plants. Further, strong up-regulation of four polyphenol oxidase coding transcripts in MusabZIP53 overexpressing plants coupled with induction of these transcripts in banana leaves by cold and ABA treatments pointed towards possible involvement of MusabZIP53 in the control of total polyphenol oxidase activity in banana plants.
机译:bZIP转录因子参与多种细胞过程,包括植物中的应激反应途径。在本研究中,我们从香蕉EST数据库中鉴定了bZIP基因MusabZIP53,随后通过在转基因香蕉植物中过表达来表征其特征。在天然香蕉植物中的表达谱证明,MusabZIP53在寒冷和干旱胁迫下以及叶和根组织中的ABA处理下均被上调。组成型过表达MusabZIP53的转基因香蕉植物从转化/再生方案的早期阶段就显示出生长迟缓,成熟的温室硬化转基因植物显示出明显的矮表型。在这些转基因植物中发现属于已知参与非生物胁迫感知和缓解的几个家族的基因受到差异调节。这些包括编码脱水反应元件结合蛋白,晚期胚胎发生丰富蛋白,抗氧化酶,水通道蛋白,多酚氧化酶,Aux / IAA蛋白和氨基酸代谢相关蛋白的基因。 MusabZIP53基因5'UTR区中存在一个保守的未翻译ORF,并且检测到过表达MusabZIP53的香蕉植物叶片中蔗糖水平的升高表明该bZIP基因在香蕉植物蔗糖体内稳态中具有重要作用。此外,在过表达MusabZIP53的植物中四种多酚氧化酶编码转录物的强烈上调,再加上通过冷和ABA处理在香蕉叶中诱导这些转录物,表明MusabZIP53可能参与香蕉植物总多酚氧化酶活性的控制。

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