Sucrose is the feedstock for more than half of the world's fuel ethanol production and a major human food. It is harvested primarily from sugarcane and beet. Despite attempts through conventional and molecular breeding, the stored sugar concentration in elite sugarcane cultivars has not been increased for several decades. Recently, genes have been cloned for bacterial isomerase enzymes that convert sucrose into sugars which are not metabolized by plants, but which are digested by humans, with health benefits over sucrose. We hypothesized that an appropriate sucrose isomerase (SI) expression pattern might simultaneously provide a valuable source of beneficial sugars and overcome the sugar yield ceiling in plants. The introduction of an SI gene tailored for vacuolar compartmentation resulted in sugarcane lines with remarkable increases in total stored sugar levels. The high-value sugar isomaltulose was accumulated in storage tissues without any decrease in stored sucrose concentration, resulting in up to doubled total sugar concentrations in harvested juice. The lines with enhanced sugar accumulation also showed increased photosynthesis, sucrose transport and sink strength. This remarkable step above the former ceiling in stored sugar concentration provides a new perspective into plant source-sink relationships, and has substantial potential for enhanced food and biofuel production.

译文

蔗糖是世界一半以上燃料乙醇生产的原料,也是人类的主要食品。主要从甘蔗和甜菜中收获。尽管通过常规育种和分子育种进行了尝试,但几十年来,优质甘蔗品种中的储存糖浓度一直没有增加。最近,已经克隆了细菌异构酶的基因,该酶将蔗糖转化为糖,这些糖不会被植物代谢,但会被人类消化,比蔗糖具有健康益处。我们假设适当的蔗糖异构酶 (SI) 表达模式可能同时提供有益糖的有价值来源,并克服植物的糖产量上限。引入专门用于液泡区隔的SI基因导致甘蔗品系的总储存糖水平显着增加。高值糖异麦芽酮糖在储存组织中积累,而储存的蔗糖浓度没有任何降低,导致收获果汁中的总糖浓度增加了一倍。糖积累增强的品系也显示出光合作用,蔗糖运输和下沉强度的增加。高于先前储存糖浓度上限的这一显着步骤为植物源汇关系提供了新的视角,并且具有增强食品和生物燃料生产的巨大潜力。

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