Kolman María A, Nishi Carolina N, Perez-Cenci Macarena, Salerno Graciela L
Instituto de Investigaciones en Biodiversidad y Biotecnología (INBIOTEC-CONICET) and Fundación para Investigaciones Biológicas Aplicadas (FIBA), Mar del Plata B7600DHN, Argentina.
Life (Basel). 2015 Jan 6;5(1):102-26. doi: 10.3390/life5010102.
In the biosphere, sucrose is mainly synthesized in oxygenic photosynthetic organisms, such as cyanobacteria, green algae and land plants, as part of the carbon dioxide assimilation pathway. Even though its central position in the functional biology of plants is well documented, much less is known about the role of sucrose in cyanobacteria. In those prokaryotes, sucrose accumulation has been associated with salt acclimation, and considered as a compatible solute in low-salt tolerant strains. In the last years, functional characterizations of sucrose metabolizing enzymes, metabolic control analysis, cellular localization of gene expressions, and reverse genetic experiments have revealed that sucrose metabolism is crucial in the diazotrophic growth of heterocystic strains, and besides, that it can be connected to glycogen synthesis. This article briefly summarizes the current state of knowledge of sucrose physiological functions in modern cyanobacteria and how they might have evolved taking into account the phylogenetic analyses of sucrose enzymes.
在生物圈中,蔗糖主要在产氧光合生物中合成,如蓝细菌、绿藻和陆地植物,是二氧化碳同化途径的一部分。尽管其在植物功能生物学中的核心地位已有充分记载,但关于蔗糖在蓝细菌中的作用却知之甚少。在这些原核生物中,蔗糖积累与盐适应有关,并被认为是低盐耐受菌株中的一种相容性溶质。近年来,蔗糖代谢酶的功能表征、代谢控制分析、基因表达的细胞定位以及反向遗传学实验表明,蔗糖代谢在异形胞菌株的固氮生长中至关重要,此外,它还可能与糖原合成有关。本文简要总结了现代蓝细菌中蔗糖生理功能的当前知识状态,以及考虑到蔗糖酶的系统发育分析后它们可能是如何进化的。