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首页> 外文期刊>Plant Physiology and Biochemistry >Cell wall composition of tomato fruit changes during development and inhibition of vesicle trafficking is associated with reduced pectin levels and reduced softening
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Cell wall composition of tomato fruit changes during development and inhibition of vesicle trafficking is associated with reduced pectin levels and reduced softening

机译:番茄果实在发育过程中的细胞壁组成变化和抑制小泡运输与果胶水平降低和软化降低有关

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Fruit development entails a multitude of biochemical changes leading up to the mature green stage. During this period the cell wall will undergo complex compositional and structural changes. Inhibition of genes encoding elements of the machinery involved in trafficking to the cell wall presents us with a useful tool to study these changes and their associated phenotypes. An antisense SlRab11a transgene has previously been shown to reduce ripening-associated fruit softening. SlRab11a is highly expressed during fruit development which is associated with a period of pectin influx into the wall. We have analysed the cell wall polysaccharides at different stages of growth and ripening of wild type and antisense SlRab11a transgenic tomato (Solanum lycopersicum cv, Ailsa Craig) fruit. Our results demonstrated intriguing changes in cell wall composition during the development and ripening of wild type Alisa Craig tomato fruit. Analysis of SlRab11a expression by TaqMan PCR showed it to be expressed most strongly during growth of the fruit, suggesting a possible role in cell wall deposition. The SlRab11a antisense fruit had a decreased proportion of pectin in the cell wall compared with the wild type. We suggest a new approach for modification of fruit shelf-life by changing cell wall deposition rather than cell wall hydrolytic enzymes.
机译:水果的发育需要大量的生化变化,直至成熟的绿色阶段。在此期间,细胞壁将经历复杂的成分和结构变化。抑制编码参与运输至细胞壁的机械元件的基因为我们提供了研究这些变化及其相关表型的有用工具。先前已显示出反义SlRab11a转基因可减少与成熟相关的果实软化。 S1Rab11a在果实发育期间高度表达,这与果胶流入壁的时期有关。我们已经分析了野生型和反义SlRab11a转基因番茄(Solanum lycopersicum cv,Ailsa Craig)果实生长和成熟的不同阶段的细胞壁多糖。我们的结果表明,在野生型Alisa Craig番茄果实发育和成熟过程中,细胞壁组成的变化十分有趣。通过TaqMan PCR对SlRab11a表达的分析表明,它在果实生长过程中表达最强,表明在细胞壁沉积中可能发挥了作用。与野生型相比,SlRab11a反义水果在细胞壁中果胶的比例降低。我们建议通过改变细胞壁沉积而不是细胞壁水解酶来改变水果货架寿命的新方法。

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