U.P. Council of Sugarcane Research, Shahjahanpur, India.
Plant Biol (Stuttg). 2011 Mar;13(2):325-32. doi: 10.1111/j.1438-8677.2010.00379.x. Epub 2010 Aug 26.
Sucrose phosphate synthase (SPS; EC 2.4.1.14) and sucrose synthase (SS; EC 2.4.1.13) are key enzymes in the synthesis and breakdown of sucrose in sugarcane. The activities of internodal SPS and SS, as well as transcript expression were determined using semi-quantitative RT-PCR at different developmental stages of high and low sucrose accumulating sugarcane cultivars. SPS activity and transcript expression was higher in mature internodes compared with immature internodes in all the studied cultivars. However, high sugar cultivars showed increased transcript expression and enzyme activity of SPS compared to low sugar cultivars at all developmental stages. SS activity was higher in immature internodes than in mature internodes in all cultivars; SS transcript expression showed a similar pattern. Our studies demonstrate that SPS activity was positively correlated with sucrose and negatively correlated with hexose sugars. However, SS activity was negatively correlated with sucrose and positively correlated with hexose sugars. The present study opens the possibility for improvement of sugarcane cultivars by increasing expression of the respective enzymes using transgene technology.
蔗糖磷酸合酶(SPS;EC 2.4.1.14)和蔗糖合酶(SS;EC 2.4.1.13)是甘蔗中蔗糖合成和分解的关键酶。在高、低糖积累甘蔗品种的不同发育阶段,采用半定量 RT-PCR 法测定节间 SPS 和 SS 的活性以及转录表达。在所有研究的品种中,成熟节间的 SPS 活性和转录表达均高于未成熟节间。然而,与低糖品种相比,高糖品种在所有发育阶段的 SPS 转录表达和酶活性均增加。在所有品种中,未成熟节间的 SS 活性均高于成熟节间;SS 转录表达也呈现出相似的模式。本研究表明,SPS 活性与蔗糖呈正相关,与己糖呈负相关。然而,SS 活性与蔗糖呈负相关,与己糖呈正相关。本研究为通过转基因技术增加相关酶的表达来改良甘蔗品种提供了可能性。