Kirk D L, Kirk M M
Department of Biology, Washington University, St. Louis, Missouri 63130.
Plant Physiol. 1978 Apr;61(4):556-60. doi: 10.1104/pp.61.4.556.
Chlamydomonas reinhardtii possesses a high affinity, highly specific carrier involved in uptake of exogenous arginine. Carrier-mediated uptake of other amino acids cannot be detected, even in cultures maintained on amino acids as a nitrogen source or starved for nitrogen. This fact may contribute to the difficulty of isolating strains auxotrophic for amino acids other than arginine; conventional selection media may not supply adequate quantities of amino acids to permit growth of auxotrophs. A urea carrier is also present in C. reinhardtii but is readily distinguished from the arginine carrier on the basis of kinetic properties and sensitivity to a range of structural analogs. Ammonia appears to play a major role in regulating (depressing) activity of the arginine uptake system. Activity of the urea uptake system is elevated in nitrogen-starved cultures and elevated even further in the presence of urea or arginine. Extensive, independent fluctuations in the two uptake systems observed in semisynchronous cultures suggest that both are subject to modulation by a complex set of interacting endogenous and exogenous factors.
莱茵衣藻拥有一种参与摄取外源精氨酸的高亲和力、高特异性载体。即使在以氨基酸作为氮源维持生长或缺乏氮的培养物中,也检测不到载体介导的其他氨基酸的摄取。这一事实可能导致分离除精氨酸以外的氨基酸营养缺陷型菌株存在困难;传统的选择培养基可能无法提供足够数量的氨基酸以允许营养缺陷型菌株生长。莱茵衣藻中也存在尿素载体,但根据动力学特性和对一系列结构类似物的敏感性,它很容易与精氨酸载体区分开来。氨似乎在调节(抑制)精氨酸摄取系统的活性中起主要作用。在缺乏氮的培养物中,尿素摄取系统的活性升高,在存在尿素或精氨酸的情况下甚至进一步升高。在半同步培养物中观察到的这两种摄取系统广泛的、独立的波动表明,两者都受到一组复杂的内源性和外源性相互作用因素的调节。