...
首页> 外文期刊>Journal of Applied Phycology >A high-throughput method for measuring growth and loss rates in microalgal cultures
【24h】

A high-throughput method for measuring growth and loss rates in microalgal cultures

机译:一种用于测量微藻培养物中生长和损失速率的高通量方法

获取原文
获取原文并翻译 | 示例

摘要

A miniaturized and low-cost assay for algal growth and loss rates, and estimation of compensation light was developed and optimized. Microalgal cultures were grown in white 96-well microplates to estimate specific growth rates at six temperatures, five salinities and eight light levels. Data from black 24-well microplates at six temperatures, five salinities and five light conditions were used in addition to estimate loss rates and compensation light. Absorption and reflection of light were different in the white and black microplates. Growth rates were estimated from daily in vivo fluorescence (IVF) measurements using a microplate reader fitted with a fluorometer. To validate the microplate algal growth assay, IVF was compared with cell counting by flow cytometry. Maximal growth rate for the test alga Pseudochattonella farcimen (Heterokonta) was estimated to 0.52±0.05 day1 at optimal temperatures ranging from 9 to 14°C and salinities 18–26 psu. Lowest value of compensation light as photosynthetic photon flux density (PPFD) was 4.2±1.2 μmol photons m2 s1, and lowest saturation light, 34.1±3.7 μmol photons m2 s1, was observed in the temperature range 5–11°C and salinity range 23–28 psu. Minimum loss rate was obtained at temperatures 5–8°C and salinities 26–31 psu. Blooms of P. farcimen have been recorded in nature under conditions similar to those minimizing loss rates rather than maximizing growth rates in this study. The microalgal assay described here allows for a large number of conditions to be tested, and accurate optimal conditions for growth and loss rates to be obtained.
机译:开发并优化了一种用于藻类生长和损失率的微型化低成本测定方法,以及补偿光的估算方法。微藻培养物在白色96孔微孔板中生长,以估计在六个温度,五个盐度和八个光照水平下的比生长速率。除了估计损失率和补偿光之外,还使用了来自六个温度,五个盐度和五个光照条件下的黑色24孔微孔板的数据。白色和黑色微孔板的光吸收和反射不同。使用配备荧光计的酶标仪,通过每日体内荧光(IVF)测量估算生长速率。为了验证微孔板藻生长测定,将IVF与流式细胞仪进行的细胞计数进行了比较。在9至14°C和盐度18至26 psu的最佳温度下,测试藻粉虱(Heterokonta)的最大生长率估计为0.52±0.05天1。补偿光的最低值是光合光子通量密度(PPFD)为4.2±1.2μmol光子m2 s1,在5-11°C的温度范围和盐度范围内观察到最低的饱和光为34.1±3.7μmol光子m2 s1。 –28 psu。在5–8°C的温度和26–31 psu的盐度下获得的最小损失率。在本研究中,自然界中已经记录了P. farcimen的花开,其条件类似于使损失率最小化而不是使增长率最大化的条件。本文所述的微藻测定法允许测试大量条件,并获得生长和损失速率的准确最佳条件。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号