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Changes in activities of acid invertase isoforms affect sugar accumulation and composition during ripening of tomato fruit

机译:番茄果实成熟过程中酸性转化酶同工酶活性的变化影响糖的积累和组成

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The observation that the wild, red fruited tomato Lycopersicon pimpinellifolium has higher soluble solids than the cultivated variety L. esculentum may be related to differential controls on fruit carbohydrate metabolism. We therefore investigated the role of acid invertase (AI) in determining fruit sugar composition in these two species. At all stages of fruit development, the majority of AI was localized in the vacuole with about 10% of the total activity in the extra-cellular space. Four forms of soluble AI activity were identified. Isoform 1 persisted throughout development. Isoform 2 showed a strong relationship to total fruit sugar content in both species, suggesting that this isoform is the tiv1 gene product located in the vacuole, and thatit plays a major role in determining fruit soluble solids. Isoform 3 was very high in L. pimpinellfolium but not in L. esculentum. We suggest that AI has a major role in determining fruit sugar accumulation in L. pimpinellifolium, but not in L. esculentum. Pulse-chase in vitro unloading experiments with [3h]-glucose showed that a substantial amount of [3h]-sucrose was present in the apoplast, suggesting an exchange of sugars between extra- and intra-cellular spaces. Hence "futile cycles" of sucrose synthesis and degradation involving apoplastic AI can occur during fruit development.
机译:野生的,红色的果实番茄番茄比栽培品种L. esculentum具有更高的可溶性固形物,这可能与对水果碳水化合物代谢的不同控制有关。因此,我们调查了酸性转化酶(AI)在确定这两个物种的水果糖成分中的作用。在果实发育的所有阶段,大多数AI位于液泡中,而总活性的约10%位于细胞外空间。确定了四种形式的可溶性AI活性。 Isoform 1在整个开发过程中一直存在。异构体2与两个物种中的总果糖含量都显示出很强的关系,这表明该异构体是位于液泡中的tiv1基因产物,并且在确定水果可溶性固形物中起主要作用。 Pimpinellfolium中的同工型3很高,但是在esculentum中却没有。我们建议AI在确定L. pimpinellifolium中的果糖积累中起主要作用,而在esculentum中不起作用。用[3h]-葡萄糖进行的脉冲追踪体外卸载实验表明,质外体中存在大量的[3h]-蔗糖,表明细胞外和细胞内空间之间存在糖交换。因此,在果实发育过程中,可能发生蔗糖合成和降解的“徒劳循环”,涉及到质外性AI。

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