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Predicting production in light-limited continuous cultures of algae.预测藻类在光照受限的连续培养中的产量。
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GAS EXCHANGE OF ALGAE. I. EFFECTS OF TIME, LIGHT INTENSITY, AND SPECTRAL-ENERGY DISTRIBUTION ON THE PHOTOSYNTHETIC QUOTIENT OF CHLORELLA PYRENOIDOSA.藻类的气体交换。一、时间、光照强度和光谱能量分布对小球藻光合商的影响
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The ratio of single-turnover to multiple-turnover fluorescence varies predictably with growth rate and cellular chlorophyll in the green alga Dunaliella tertiolecta.单细胞转化与多细胞转化荧光的比例与绿藻杜氏盐藻的生长速率和细胞叶绿素呈可预测的变化。
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CULTURE CONDITIONS AND THE DEVELOPMENT OF THE PHOTOSYNTHETIC MECHANISM : IV. INFLUENCE OF LIGHT INTENSITY ON PHOTOSYNTHETIC CHARACTERISTICS OF CHLORELLA.培养条件与光合作用机制的发展:IV. 光照强度对小球藻光合作用特性的影响。
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Simultaneous CAS9 editing of cp, , and in lowers chlorophyll levels and improves biomass productivity.在[具体植物名称未给出]中对cp、[此处可能有遗漏内容]和[此处可能有遗漏内容]同时进行CRISPR/Cas9编辑可降低叶绿素水平并提高生物量生产力。
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本文引用的文献

1
On the Mass Culture of Algae. II. Yield as a Function of Cell Concentration Under Continuous Sunlight Irradiance.论藻类的群体培养。II. 在持续阳光照射下产量与细胞浓度的函数关系。
Plant Physiol. 1959 May;34(3):345-52. doi: 10.1104/pp.34.3.345.
2
Light-limited growth of Chlorella in continuous cultures.小球藻在连续培养中的光限制生长。
Appl Microbiol. 1962 Jan;10(1):1-5. doi: 10.1128/am.10.1.1-5.1962.

预测藻类在光照受限的连续培养中的产量。

Predicting production in light-limited continuous cultures of algae.

作者信息

Eppley R W, Dyer D L

出版信息

Appl Microbiol. 1965 Nov;13(6):833-7. doi: 10.1128/am.13.6.833-837.1965.

DOI:10.1128/am.13.6.833-837.1965
PMID:5866033
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1058357/
Abstract

Equations relating productivity, growth rate, cell concentration, and light absorption lead to the prediction that, when incident light is below saturating intensity, maximal productivity will occur at half the maximal growth rate. The freshwater alga Chlorella pyrenoidosa TX71105 and the marine alga Dunaliella tertiolecta were grown in a small continuous culture apparatus with turbidostatic control. With both cultures, the cell concentration showed a linear decrease with dilution rate. Productivity was maximal at about one-half the maximal dilution rate. Average mass per cell increased near the maximal dilution rate, causing some asymmetry in the productivity versus dilution rate curve. The chlorophyll content per unit mass decreased in this region, but the chlorophyll content per cell remained constant. Best production rate in a light-limited algal culture was obtained when the growth rate at very low cell concentration was determined in the apparatus and the dilution rate was set at one-half that value.

摘要

将生产力、生长速率、细胞浓度和光吸收相关的方程式进行推导,得出如下预测:当入射光低于饱和强度时,最大生产力将在最大生长速率的一半时出现。淡水绿藻蛋白核小球藻TX71105和海洋绿藻盐生杜氏藻在具有恒浊控制的小型连续培养装置中培养。在这两种培养物中,细胞浓度随稀释率呈线性下降。生产力在最大稀释率的一半左右时最大。每个细胞的平均质量在最大稀释率附近增加,导致生产力与稀释率曲线出现一些不对称。该区域单位质量的叶绿素含量下降,但每个细胞的叶绿素含量保持不变。当在该装置中测定极低细胞浓度下的生长速率,并将稀释率设定为该值的一半时,可在光限制藻类培养中获得最佳生产率。