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RNAi-mediated silencing of spermidine synthase gene?results in reduced reproductive potential in tobacco

机译:RNAi介导的山形合成酶基因的沉默?导致烟草中的生殖潜力降低

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Spermidine belongs to a class of polycationic compounds known as polyamines. Polyamines are known to be involved in a wide range of biological processes but the exact role and contribution of different polyamines to these processes are still not clear. In the present study, we have tried to understand the contribution of triamine spermidine to the growth and development of tobacco by downregulating spermidine synthase gene ( SPDS ) using RNA interference. Down-regulatioin of SPDS gene resulted in decreased spermidine levels and a slight increase in the levels of its precursor, the diamine putrescine and the molecule downstream of Spd, the tetraamine spermine. While the vegetative growth of the transgenics remained largely unaffected, SPDS down-regulation resulted in smaller size of flowers, decreased pollen viability and seed setting, and a reduced and delayed seed germination. When subjected to abiotic stress, the transgenics showed an increased tolerance to salinity and drought conditions owing to a steady intracellular pool of putrescine and spermine. The results not only highlight the importance of spermidine in determining reproductive potential in plants but have also help delineate its function from that of putrescine and spermine.
机译:Femerminine属于一类称为多胺的一类聚酰胺化合物。已知多胺参与广泛的生物过程,但不同多胺对这些过程的确切作用和贡献仍然尚不清楚。在本研究中,我们试图通过使用RNA干扰下调亚胺合成酶基因(SPD)来了解三胺精胺对烟草的生长和发育的贡献。 SPDS基因的下降调节素导致亚精亚胺水平降低,其前体的水平略有增加,二胺PUTRESCINE和SPD下游的分子,四胺精胺。虽然转基因的植物生长仍然很大程度上不受影响,但是下调的SPD导致较小的花朵,降低花粉活力和种子设定,以及降低和延迟的种子萌发。当受到非生物胁迫时,由于普雷氏菌素和精霉素稳定的细胞内池,转基因显示出对盐度和干旱条件的耐受性增加。结果不仅突出了亚胺的重要性在植物中确定生殖潜力,而且还有助于描绘其功能从普雷切林和精牙的功能。

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