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首页> 外文期刊>Trees. Structure and Function >Sucrose phosphate synthase in leaves of mistletoe: its regulation in relation to host (Abies alba) and season
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Sucrose phosphate synthase in leaves of mistletoe: its regulation in relation to host (Abies alba) and season

机译:槲寄生叶片中的蔗糖磷酸合酶:其对寄主(Abies alba)和季节的调节

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Sucrose-phosphate synthase (SPS; E.C. 2.4.1.14) was studied in 1-year-old leaves of the xylem-parasitic mistletoe (Viscum album L.), growing on Abies alba. Glucose-6-phosphate served as an allosteric activator of mistletoe SPS, increasing the affinity for both substrates, fructose-6-phosphate and UDP-glucose. The activation state of SPS, i.e. the ratio of substrate limited versus non-limited activity, showed two clear peaks between February and July which coincided with increased rates of net photosynthesis of the parasite. Periods of decreased SPS activity were accompanied by a transient accumulation of sucrose and starch. In samples exhibiting a high activation state, activity was decreased by incubation of the extract with ATP; however, ATP did not affect SPS activity in samples exhibiting a low activation state of SPS. In parallel to the first increase of the activation state in March, pool sizes of the positive effector glucose-6-phosphate were high, whereas pool sizes of fructose-2,6-bisphosphate, an inhibitor of sucroneogenesis, were low. The decline in the activation state in April occurred in parallel with increased rates of transpiration of the parasite. This could have increased the availability of host-derived sugars, although the xylem sap of A. alba showed rather consistent concentrations of total soluble sugars throughout the vegetation period (1.1-3.9 mM). We thus speculate that sugar availability in the host xylem controls carbohydrate metabolism in the parasite.
机译:在生长于Abies alba上的木质部寄生槲寄生(Viscum album L.)的1岁叶子中研究了蔗糖磷酸合酶(SPS; E.C. 2.4.1.14)。 6-磷酸葡萄糖用作槲寄生SPS的变构活化剂,增加了对两种底物-6-磷酸果糖和UDP-葡萄糖的亲和力。 SPS的活化状态,即底物受限活性与非受限活性之比,在2月至7月之间显示了两个清晰的峰值,这与寄生虫净光合作用的增加速率相吻合。 SPS活性下降的时期伴随着蔗糖和淀粉的短暂积累。在表现出高活化状态的样品中,通过将提取物与ATP孵育,活性降低。但是,ATP不会影响具有低活化SPS状态的样品中的SPS活性。与3月份激活状态的首次增加并行,阳性效应物6-磷酸葡萄糖的池大小较高,而果糖生成抑制剂2-2,6-二磷酸果糖的池大小较低。 4月份激活状态的下降与寄生虫的蒸腾速率增加同时发生。这可能增加了宿主来源的糖的利用率,尽管白僵菌的木质部汁液在整个植被时期的总可溶性糖浓度相当一致(1.1-3.9 mM)。因此,我们推测宿主木质部中糖的可用性控制了寄生虫中的碳水化合物代谢。

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