首页> 外文OA文献 >RNA Interference of LIN5 in Tomato Confirms Its Role in Controlling Brix Content, Uncovers the Influence of Sugars on the Levels of Fruit Hormones, and Demonstrates the Importance of Sucrose Cleavage for Normal Fruit Development and Fertility1[W][OA]
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RNA Interference of LIN5 in Tomato Confirms Its Role in Controlling Brix Content, Uncovers the Influence of Sugars on the Levels of Fruit Hormones, and Demonstrates the Importance of Sucrose Cleavage for Normal Fruit Development and Fertility1[W][OA]

机译:番茄中LIN5的RNA干扰证实了其在控制白利糖度中的作用,揭示了糖对水果激素水平的影响,并证明了蔗糖裂解对正常水果发育和育性的重要性1 [W] [OA]

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摘要

It has been previously demonstrated, utilizing intraspecific introgression lines, that Lycopersicum Invertase5 (LIN5), which encodes a cell wall invertase, controls total soluble solids content in tomato (Solanum lycopersicum). The physiological role of this protein, however, has not yet been directly studied, since evaluation of data obtained from the introgression lines is complicated by the fact that they additionally harbor many other wild species alleles. To allow a more precise comparison, we generated transgenic tomato in which we silenced the expression of LIN5 using the RNA interference approach. The transformants were characterized by an altered flower and fruit morphology, displaying increased numbers of petals and sepals per flower, an increased rate of fruit abortion, and a reduction in fruit size. Evaluation of the mature fruit revealed that the transformants were characterized by a reduction of seed number per plant. Furthermore, detailed physiological analysis revealed that the transformants displayed aberrant pollen morphology and a reduction in the rate of pollen tube elongation. Metabolite profiling of ovaries and green and red fruit revealed that metabolic changes in the transformants were largely confined to sugar metabolism, whereas transcript and hormone profiling revealed broad changes both in the hormones themselves and in transcripts encoding their biosynthetic enzymes and response elements. These results are discussed in the context of current understanding of the role of sugar during the development of tomato fruit, with particular focus given to its impact on hormone levels and organ morphology.
机译:以前已经证明了利用种内渗入系,编码细胞壁转化酶的番茄(Lycopersicum)转化酶5(LIN5)控制番茄(番茄)中的总可溶性固形物含量。然而,由于从渗入系获得的数据的评估因其还具有许多其他野生物种等位基因而变得复杂,因此尚未对该蛋白质的生理作用进行直接研究。为了进行更精确的比较,我们生成了转基因番茄,在其中使用RNA干扰方法沉默了LIN5的表达。转化体的特征是花朵和果实的形态发生了变化,每朵花的花瓣和萼片数量增加,果实流产率增加,果实大小减小。对成熟果实的评估表明,转化体的特征在于每株植物的种子数减少。此外,详细的生理学分析表明,转化体显示出异常的花粉形态,并且花粉管伸长率降低。卵巢,绿色和红色水果的代谢产物谱图表明,转化子的代谢变化主要限于糖代谢,而转录本和激素谱图揭示了激素本身以及编码其生物合成酶和反应元件的转录本的广泛变化。在当前对糖在番茄果实发育过程中的作用的当前理解的背景下讨论了这些结果,尤其着重于糖对激素水平和器官形态的影响。

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