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[细胞代谢对纤细裸藻衰老培养物中色素组成的影响]

[Influence of the cell metabolism on the pigment composition in ageing cultures of Euglena gracilis].

作者信息

Schwenker U

机构信息

Gesellschaft für Molekularbiologische Forschung mbH, Stöckheim über Braunschweig.

出版信息

Planta. 1971 Jun;101(2):101-16. doi: 10.1007/BF00387621.

Abstract

The qualitative and quantitative composition of the carotenoids of young cells of Euglena gracilis strain 1224-5/9 corresponded to that of the "Z"-strain.The frequently observed yellow-reddish discolouration of ageing cells was found to be caused by a heavy breakdown of the chlorophylls and not by an increased synthesis of the carotenoids.Furthermore there could be observed a remarkable decrease in the concentration of diadinoxanthin together with an increase in the amount of zeaxanthin in the course of the stationary growth phase. This phenomenon was attributed to a direct deepoxidation of diadinoxanthin on the basis of experiments with (14)C-diadinoxanthin showing a transformation of the pigment into zeaxanthin and some other Euglena carotenoids, e.g. neoxanthin and β-carotene.Because of their interconvertibility diadinoxanthin and neoxanthin are regarded as auxiliary pigments for the photosynthetic O2-evolution.The transformation of diadinoxanthin into zeaxanthin in the ageing cells coincides in time with the switch from an aerobic to an anerobic cell metabolism. The latter is characterized by a decrease in the O2-incorporation together with a simultaneous increase in the NADH-concentration and by a heavy excretion of glycolytic end products such as pyruvate and lactate after cell respiration has stopped completely. The transformation of diadinoxanthin into zeaxanthin is therefore attributed to a reduction of diadinoxanthin by the cytoplasmic NADH.As the same pigment transformation could be observed in cells kept in darkness and under conditions of artificially stopped respiration, it is likely that this transformation takes place independently of photosynthetic processes.The origin of the commutation of the cell metabolism and the cessation of respiration is still unknown. As the respiration of ageing cells can be revived in the darkness it is certainly linked to photosynthesis under light conditions.

摘要

纤细裸藻1224 - 5/9品系幼细胞中类胡萝卜素的定性和定量组成与“Z”品系的一致。老化细胞中经常观察到的黄红色变色被发现是由叶绿素的大量分解引起的,而不是类胡萝卜素合成增加所致。此外,在稳定生长期可以观察到二磷酸脱氧黄质浓度显著降低,同时玉米黄质含量增加。基于用(14)C - 二磷酸脱氧黄质进行的实验,该现象归因于二磷酸脱氧黄质的直接脱环氧化作用,实验表明该色素转化为玉米黄质和其他一些裸藻类胡萝卜素,如新黄质和β - 胡萝卜素。由于二磷酸脱氧黄质和新黄质的相互转化性,它们被视为光合放氧的辅助色素。老化细胞中二磷酸脱氧黄质向玉米黄质的转化在时间上与细胞代谢从需氧向厌氧的转变相吻合。后者的特征是氧气摄入减少,同时NADH浓度增加,并且在细胞呼吸完全停止后糖酵解终产物如丙酮酸和乳酸大量排泄。因此,二磷酸脱氧黄质向玉米黄质的转化归因于细胞质NADH对二磷酸脱氧黄质的还原作用。由于在黑暗中保存的细胞以及人工停止呼吸的条件下也能观察到相同的色素转化,所以这种转化很可能独立于光合过程发生。细胞代谢转换和呼吸停止的起源仍然未知。由于老化细胞的呼吸在黑暗中可以恢复,所以它肯定与光照条件下的光合作用有关。

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