首页> 外文期刊>Plant Biotechnology Journal >The codA transgene for glycinebetaine synthesis increases the size of flowers and fruits in tomato.
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The codA transgene for glycinebetaine synthesis increases the size of flowers and fruits in tomato.

机译:甘氨酸合成的CODA转基因增加了番茄中花和水果的尺寸。

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摘要

The tolerance of various species of plant to abiotic stress has been enhanced by genetic engineering with certain genes. However, the use of such transgenes is often associated with negative effects on growth and productivity under non-stress conditions. The codA gene from Arthrobacter globiformis is of particular interest with respect to the engineering of desirable productive traits in crop plants. The expression of this gene in tomato plants resulted in significantly enlarged flowers and fruits under non-stress conditions. The enlargement of flowers and fruits was associated with high levels of glycinebetaine that accumulated in reproductive organs, such as flower buds and fruits. The enlargement of flowers was related to an increase in the size and number of cells, and reflected the pleiotropic effect of the codA transgene on the expression of genes involved in the regulation of cell division..
机译:通过具有某些基因的基因工程,通过基因工程提高了各种植物对非生物胁迫的耐受性。 然而,这种转基因的使用通常与非应激条件下对生长和生产率的负面影响有关。 来自关节杆菌Globificis的CoDa基因对于作物植物中所需生产性状的工程特别感兴趣。 在番茄植物中该基因的表达导致在非应激条件下显着扩大的花朵和水果。 鲜花和水果的增大与高水平的甘氨酸碱相关,含有在生殖器官中的生殖器官,如花蕾和水果。 花的扩大与细胞的大小和数量的增加有关,并反映了CoDa转基因对参与细胞分裂调控的基因的脂肪效应。

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