Antonian A A, Abakumova I A, Meleshko G I, Vlasova T F
Kosm Biol Aviakosm Med. 1985 Jan-Feb;19(1):65-9.
The concentration, amino acid composition and biological value of proteins of unicellular algae belonging to various taxonomic groups (Chlorella, Chlamydomonas, Spirulina, Euglena) were investigated. With respect to their characteristics, these algae hold promise as components of biological life-support systems (BLSS). Indices characterizing the protein and biomass quality and biological value were calculated. Such indices as A/E (where A is an essential amino acid and E is the sum total of amino acids), E/T (where E is nitrogen of essential amino acids and T is its sum total), amino acid number, factor of digestibility in vitro were high enough and close to the respective parameters of the reference protein. Animal experiments showed high biological value of the algal biomass and the lack of its toxic or other adverse effects. The data on the quantity and quality of protein from the unicellular algae are indicative of its high biological value and applicability to BLSS. It is suggested that the differences in the protein composition associated with various algal forms and cultivation conditions can be used to produce balanced diets by varying the portion of each form of the photoautotrophic component of BLSS.
对属于不同分类群(小球藻、衣藻、螺旋藻、裸藻)的单细胞藻类蛋白质的浓度、氨基酸组成和生物学价值进行了研究。就其特性而言,这些藻类有望成为生物生命支持系统(BLSS)的组成部分。计算了表征蛋白质和生物质质量及生物学价值的指标。诸如A/E(其中A为必需氨基酸,E为氨基酸总量)、E/T(其中E为必需氨基酸的氮,T为其总量)、氨基酸数量、体外消化率等指标足够高,且接近参考蛋白质的相应参数。动物实验表明藻类生物质具有较高的生物学价值,且无毒性或其他不良影响。单细胞藻类蛋白质数量和质量的数据表明其具有较高的生物学价值,适用于BLSS。建议与各种藻类形式和培养条件相关的蛋白质组成差异可用于通过改变BLSS光合自养成分每种形式的比例来生产均衡饮食。