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›› 2013, Vol. 35 ›› Issue (6): 415-422.

• 论文与报告 •    下一篇

太空搭载小球藻(Chlorella vulgaris)子代群体新品系的筛选、培养及其营养组成分析

刘波,郑雅友,曾志南   

  1. 福建省水产研究所
  • 收稿日期:2013-11-18 修回日期:2013-11-19 出版日期:2013-12-25 发布日期:2013-12-23
  • 通讯作者: 刘波
  • 基金资助:
    福建省省属公益类科研院所基本科研专项

The research on screening, cultivation and nutrient compositions of Space-induced Chlorella vulgaris

bo liu <sup>2</sup>, <sup>2</sup>   

  • Received:2013-11-18 Revised:2013-11-19 Online:2013-12-25 Published:2013-12-23
  • Contact: bo liu

摘要: 本文以经过太空搭载返回地面后保存的小球藻(Chlorella vulgaris)藻种T0为实验材料,从提高小球藻生长速度和促进小球藻油脂富集两个方面考虑,对小球藻生长的环境因子和培养基成分进行探讨和研究,最终经过两次筛选获得速长-油脂高产株系TY31。实验结果表明,小球藻在140 mol.m-2.s-1光照强度、23℃培养温度、以3.75 mmol/L的NH2CONH2为氮源、以0.12 mmol/L 的K2HPO4为磷源的最佳培养条件下,细胞生长速度加快,生长期变长,蛋白、脂肪及脂肪酸含量增加。研究发现,以第一次筛选的小球藻藻株T9为出发株,采用改良的BG-11培养基进一步选育的速长-油脂高产株系TY31最终细胞密度增加11.06×106 mL-1,脂肪含量增加6.50%,脂肪酸含量增加3.76%,具有应用于生物能源研究的潜力,为海洋微藻的开发利用奠定了基础。

关键词: 小球藻, 藻株, 筛选, 营养组成, Chlorella vulgaris, strains, screening, nutrient compositions

Abstract: We used the Space-induced Chlorella vulgaris T0 for the research of environmental factors and medium component on growth in this paper. Both the growth rate and oil production were considered, we obtained the strain TY31 of Chlorella vulgaris which grew faster and produced more oil after two screening. The results of our experiment showed that on the best condition of 140?mol?m-2?s-1 light intensity, 23℃ temperature, 3.75mmol/L NH2CONH2 and 0.12mmol/L K2HPO4, the cell density, the period of growth, the protein content, lipid content and fatty acid content were all increased. In our study we improved BG-11 medium for a further screening with the selected strain T9 of Chlorella vulgaris. The strain TY31 which grew faster and produced more oil was selected in the secondary screening. Compared to the strain T9 of Chlorella vulgaris, the final cell density of strain TY31 was increased by 11.06×106 mL-1, the lipid content and fatty acid content of strain TY31were increased by 6.50% and 3.76% respectively. Our research indicated that the strain TY31 of Chlorella vulgaris had a good potential application in bio-energy and could be the basis of development and utilization of marine microalgae.

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