Budd K
Department of Biology, Queen's University, Kingston, Ontario, Canada.
Plant Physiol. 1976 Aug;58(2):193-8. doi: 10.1104/pp.58.2.193.
Freshly harvested, nongrowing mycelium of Neocosmospora vasinfecta E. F. Smith rapidly absorbed exogenous glucose but converted a greater proportion to trehalose and glucan than to respiratory CO(2). This effect was accentuated in mycelium preincubated for 3.5 hours in water before exposure to glucose. Glucose was absorbed via two uptake systems, both apparently constitutive, with apparent Km values for glucose of 0.02 mm (high affinity) and 2 mm (low affinity). The glucose derivative 3-O-methylglucose (3-O-MG) was also absorbed by two apparently constitutive systems with apparent Km values for 3-O-MG of 0.065 mm and 1.9 mm. Absorption of 3-O-MG by both freshly harvested and preincubated mycelium led to its accumulation. Freshly harvested mycelium lost accumulated 3-O-MG rapidly to water, whereas preincubated mycelium showed reduced or no leakage. The reduction in leakage due to preincubation was prevented by 5 mug/ml cycloheximide in the preincubation medium. Glucose competitively inhibited 3-O-MG uptake via the high affinity system and induced loss of previously accumulated 3-O-MG from preincubated mycelium. The uptake of both glucose and 3-O-MG was associated with a transient alkalinization of the uptake medium. It is concluded that uptake of both glucose and 3-O-MG by at least the high affinity system is energy-linked and probably mediated by proton cotransport.
新鲜收获的、处于非生长状态的大豆新壳梭孢菌(Neocosmospora vasinfecta E. F. Smith)菌丝体能迅速吸收外源葡萄糖,但相比于呼吸作用产生的二氧化碳,转化为海藻糖和葡聚糖的比例更高。在接触葡萄糖之前,将菌丝体在水中预培养3.5小时,这种效果会更加明显。葡萄糖通过两种吸收系统被吸收,这两种系统显然都是组成型的,葡萄糖的表观Km值分别为0.02 mM(高亲和力)和2 mM(低亲和力)。葡萄糖衍生物3 - O - 甲基葡萄糖(3 - O - MG)也通过两种明显的组成型系统被吸收,3 - O - MG的表观Km值分别为0.065 mM和1.9 mM。新鲜收获的和预培养的菌丝体对3 - O - MG的吸收都会导致其积累。新鲜收获的菌丝体中积累的3 - O - MG会迅速向水中流失,而预培养的菌丝体则显示出减少或没有泄漏。预培养培养基中5 μg/ml的环己酰亚胺可阻止因预培养导致的泄漏减少。葡萄糖通过高亲和力系统竞争性抑制3 - O - MG的吸收,并诱导预培养菌丝体中先前积累的3 - O - MG流失。葡萄糖和3 - O - MG的吸收都与吸收培养基的短暂碱化有关。得出的结论是,至少高亲和力系统对葡萄糖和3 - O - MG的吸收是能量相关的,可能由质子协同转运介导。