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Down-regulation of pyrophosphate: fructose 6-phosphate 1-phosphotransferase (PFP) activity in sugarcane enhances sucrose accumulation in immature internodes

机译:焦磷酸的下调:甘蔗中的果糖6-磷酸1-磷酸转移酶(PFP)活性增强了未成熟节间蔗糖的积累

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摘要

Pyrophosphate: fructose 6-phosphate 1-phosphotransferase (PFP) activity was successfully down-regulated in sugarcane using constitutively expressed antisense and untranslatable forms of the sugarcane PFP- beta gene. In young internodal tissue activity was reduced by up to 70% while no residual activity could be detected in mature tissues. The transgenic plants showed no visible phenotype or significant differences in growth and development under greenhouse and field conditions. Sucrose concentrations were significantly increased in the immature internodes of the transgenic plants but not in the mature internodes. This contributed to an increase in the purity of the immature tissues, resembling an early ripening phenotype. Both the immature and mature internodes of the transgenic plants had significantly higher fibre contents. These findings suggest that PFP influences the ability of young, biosynthetically active sugarcane culm tissue to accumulate sucrose but that the equilibrium of the glycolytic intermediates, including the stored sucrose, is restored when ATP-dependent phosphofructokinase and the residual PFP activity is sufficient to sustain the required glycolytic flux as the tissue matures. Moreover, it suggests a role for PFP in glycolytic carbon flow, which could be rate limiting under conditions of high metabolic activity.
机译:焦磷酸:使用组成型表达的反义和不可翻译形式的甘蔗PFP-β基因,甘蔗中的果糖6-磷酸1-磷酸转移酶(PFP)活性被成功下调。在年轻的节间组织中,活性降低了多达70%,而在成熟的组织中则未检测到残留的活性。转基因植物在温室和田间条件下均没有可见的表型或生长发育中的显着差异。蔗糖浓度在转基因植物的未成熟节间显着增加,但在成熟节间却没有。这有助于增加未成熟组织的纯度,类似于早期成熟的表型。转基因植物的未成熟和成熟节间都具有明显更高的纤维含量。这些发现表明,PFP影响具有生物合成活性的年轻甘蔗茎组织年轻积累蔗糖的能力,但是当ATP依赖的磷酸果糖激酶和剩余的PFP活性足以维持糖酵解中间体时,包括储存的蔗糖在内的糖酵解中间体的平衡就会恢复。组织成熟时需要糖酵解通量。而且,它暗示了PFP在糖酵解碳流中的作用,这在高代谢活性的条件下可能是速率限制的。

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