Plant Polyamine, Transgenic and RNAi Research Laboratory, Department of Genetics, University of Delhi South Campus, New Delhi, 110021, India.
Plant Mol Biol. 2015 Feb;87(3):249-60. doi: 10.1007/s11103-014-0273-y. Epub 2014 Dec 24.
Diamine putrescine (Put) and polyamines; spermidine (Spd) and spermine (Spm) are essential component of every cell because of their involvement in the regulation of cell division, growth and development. The aim of this study is to enhance the levels of Put during fruit development and see its implications in ripening and quality of tomato fruits. Transgenic tomato plants over-expressing mouse ornithine decarboxylase gene under the control of fruit-specific promoter (2A11) were developed. Transgenic fruits exhibited enhanced levels of Put, Spd and Spm, with a concomitant reduction in ethylene levels, rate of respiration and physiological loss of water. Consequently such fruits displayed significant delay of on-vine ripening and prolonged shelf life over untransformed fruits. The activation of Put biosynthetic pathway at the onset of ripening in transgenic fruits is also consistent with the improvement of qualitative traits such as total soluble solids, titratable acids and total sugars. Such changes were associated with alteration in expression pattern of ripening specific genes. Transgenic fruits were also fortified with important nutraceuticals like lycopene, ascorbate and antioxidants. Therefore, these transgenic tomatoes would be useful for the improvement of tomato cultivars through breeding approaches.
腐胺(Put)和多胺;亚精胺(Spd)和精胺(Spm)是所有细胞的基本组成部分,因为它们参与细胞分裂、生长和发育的调节。本研究旨在提高果实发育过程中 Put 的水平,并观察其对番茄果实成熟和品质的影响。通过果实特异性启动子(2A11)控制下的鼠鸟氨酸脱羧酶基因过表达,培育出转腐胺基因的番茄植株。转腐胺基因的果实表现出 Put、Spd 和 Spm 水平的提高,同时伴随着乙烯水平、呼吸速率和生理水分损失的降低。因此,与未转化的果实相比,这些果实表现出明显的延迟成熟和延长货架期。转腐胺基因果实中腐胺生物合成途径在成熟开始时的激活也与总可溶性固体、可滴定酸和总糖等定性特性的改善一致。这些变化与成熟特异性基因表达模式的改变有关。转腐胺基因的果实还富含重要的营养物质,如番茄红素、抗坏血酸和抗氧化剂。因此,这些转基因番茄可通过育种方法用于改善番茄品种。