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Transcriptome and metabolome profiling provide insights into molecular mechanism of pseudostem elongation in banana

机译:转录组和代谢物分析提供了在香蕉中伪杆伸长率的分子机制的见解

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Banana plant height is an important trait for horticultural practices and semi-dwarf cultivars show better resistance to damages by wind and rain. However, the molecular mechanisms controlling the pseudostem height remain poorly understood. Herein, we studied the molecular changes in the pseudostem of a semi-dwarf banana mutant Aifen No. 1 (Musa spp. Pisang Awak sub-group ABB) as compared to its wild-type dwarf cultivar using a combined transcriptome and metabolome approach. A total of 127 differentially expressed genes and 48 differentially accumulated metabolites were detected between the mutant and its wild type. Metabolites belonging to amino acid and its derivatives, flavonoids, lignans, coumarins, organic acids, and phenolic acids were up-regulated in the mutant. The transcriptome analysis showed the differential regulation of genes related to the gibberellin pathway, auxin transport, cell elongation, and cell wall modification. Based on the regulation of gibberellin and associated pathway-related genes, we discussed the involvement of gibberellins in pseudostem elongation in the mutant banana. Genes and metabolites associated with cell wall were explored and their involvement in cell extension is discussed. The results suggest that gibberellins and associated pathways are possibly developing the observed semi-dwarf pseudostem phenotype together with cell elongation and cell wall modification. The findings increase the understanding of the mechanisms underlying banana stem height and provide new clues for further dissection of specific gene functions.
机译:香蕉植物高度是园艺实践的重要特征,半矮种品种表现出风雨和雨水的损害较好。然而,控制伪尖端高度的分子机制仍然明白很差。在此,我们研究了使用组合的转录组和代谢物种的野生型矮种品种相比,研究了半矮小香蕉突变体AIFEN No.Ifen No.1(MUSA SPP的Pisang Awak Sub-Group ABB)的分子变化。在突变体和野生型之间检测总共127个差异表达的基因和48个差异累积的代谢物。属于氨基酸及其衍生物,类黄酮,木质素,香豆素,有机酸和酚酸的代谢物在突变体中调节。转录组分析表明,与嗜酸甘油蛋白途径,生长素转运,细胞伸长和细胞壁改性有关的基因的差异调节。基于对嗜酸盐素和相关的途径相关基因的调节,我们讨论了甘草蛋白在突变香蕉中的假刀髓伸长中的参与。探讨了与细胞壁相关的基因和代谢物,并讨论了它们对细胞延伸的参与。结果表明,胃纤维素和相关途径可能与细胞伸长和细胞壁改性一起开发观察到的半矮化假索型表型。结果增加了对香蕉茎高度的机制的理解,并为进一步解剖特异性基因功能提供新的线索。

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