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Banana Ripening: Implications of Changes in Internal Ethylene and CO2 Concentrations Pulp Fructose 26-Bisphosphate Concentration and Activity of Some Glycolytic Enzymes

机译:香蕉成熟:内部乙烯和CO2浓度果糖26-二磷酸果糖浓度和某些糖酵解酶活性变化的影响

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摘要

In ripening banana (Musa acuminata L. [AAA group, Cavandish subgroup] cv. Valery) fruit, the steady state concentration of the glycolytic regulator fructose 2,6-bisphosphate (Fru 2,6-P2) underwent a transient increase 2 to 3 hours before the respiratory rise, but coincident with the increase in ethylene synthesis. Fru 2,6-P2 concentration subsequently decreased, but increased again approximately one day after initiation of the respiratory climacteric. This second rise in Fru 2,6-P2 continued as ripening proceeded, reaching approximately five times preclimacteric concentration. Pyrophosphate-dependent phosphofructokinase glycolytic activity exhibited a transitory rise during the early stages of the respiratory climacteric, then declined slightly with further ripening. Cytosolic fructose 1,6-bisphosphatase activity did not change appreciably during ripening. The activity of ATP-dependent phosphofructokinase increased approximately 1.6-fold concurrent with the respiratory rise. A balance in the simultaneous glycolytic and gluconeogenic carbon flow in ripening banana fruit appears to be maintained through changes in substrate levels, relative activities of glycolytic enzymes and steady state levels of Fru 2,6-P2.
机译:在成熟的香蕉(Musa acuminata L. [AAA组,Cavandish亚组] cv。Valery)果实中,糖酵解调节剂果糖2,6-二磷酸果糖(Fru 2,6-P2)的稳态浓度经历了2到3的瞬时增加呼吸上升前数小时,但与乙烯合成增加同时发生。 Fru 2,6-P2浓度随后降低,但在开始呼吸更年期后约一天又升高。随着成熟的进行,Fru 2,6-P2的第二次上升继续,达到了更年期前浓度的五倍。焦磷酸依赖性磷酸果糖激酶糖酵解活性在呼吸更年期的早期阶段表现出短暂的上升,然后随着进一步成熟而略微下降。胞浆中的果糖1,6-双磷酸酶活性在成熟过程中没有明显变化。 ATP依赖性磷酸果糖激酶的活性与呼吸上升同时增加约1.6倍。通过改变底物水平,糖酵解酶的相对活性和Fru 2,6-P2的稳态水平,可以保持成熟香蕉果实中同时发生的糖酵解和糖异生碳平衡。

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