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1.
Fuel oils from euphorbs and other plants   总被引:3,自引:0,他引:3  
Fuel oils from Euphorbs and other plants. The increasing energy costs of finding petroleum, together with the sure knowledge that its supply is finite, has prompted us to seek other sources of liquid hydrocarbon for both fuel and material. We have turned to annually renewable plant sources such as seed oils, an obvious source, with palm oil as the most productive. Sugar cane used to produce ethanol is another fuel source already in use.
We have examined non-food plants which can be grown on marginal soil for their productivity, particularly the genus Euphorbia. All species of this genus produce a latex which can be converted into useful fuel and other material, including precursors for what might be a valuable anti-tumor agent. Euphorbias and other similar plants require repeated planting and harvesting of the entire plant, which constitutes a drain on the soil. Trees can be long-term sources for hydrocarbon-like materials with a single planting. Examples are: the genus Copaifera which can be tapped for sesquiterpenes, the genus Pittosporum which bears fruits rich in terpenes and can be harvested annually. Finally, there are algae whose oil productivity is already of interest.
It seems possible to modify genetically the terpene biosynthetic pathways in plants to improve both the quality and quantity of the oils produced from them.  相似文献   
2.
The green alga Botryococcus braunii is widely recognized as a source of non-fossil oil. However, limitations in Botryococcus biomass production hamper its commercial exploitation. This study examines the effects of nutrients (nitrogen and iron) and environmental conditions (temperature, light intensity and photoperiod) on biomass and oil production in two B. braunii Race B strains, Kossou-4 and Overjuyo-3. The highest biomass and oil production were obtained at a nitrogen concentration of 750 mg l?1, iron concentration of 6 mg l?1, at 25°C and at 135 µmol photons m?2 s?1 with a photoperiod of 16 h light:8 h darkness. Culturing the strains in Blue-green (BG11) medium containing optimized nutrients under optimal conditions resulted in an up to ~10.6-fold increase in biomass. In Kossou-4 and Overjuyo-3 strains, biomass increased from 1.647 g 10 l?1 and 3.137 g 10 l?1 respectively in normal BG11 medium to 17.390 g 10 l?1 and 21.721 g 10 l?1 in optimized BG11 media and growth conditions. This was accompanied by ~8–10.5-fold increase in oil production compared with that in normal BG11 medium. Oil (0.324 g 10 l?1 and 0.211 g 10 l?1) was produced in normal BG11 medium in Kossou-4 and Overjuyo-3 strains respectively, compared with 2.642 g 10 l?1 (Kossou-4) and 2.206 g 10 l?1 (Overjuyo-3) in modified BG11 media under optimized conditions. Therefore, optimization of nutrients and environmental conditions can increase biomass and oil production in the two strains of B. braunii.  相似文献   
3.
Different samples of Botryococcus braunii Kütz., freshly collected from nature or laboratory-grown from culture collection strains, were studied by electron microscopy and their hydrocarbon content analyzed. Although the general internal structure of the cells was rather constant, the organization of the outer walls forming the hydrocarbon-rich matrix of the colonies differed greatly from one sample to another. In the majority of cultivated strains, the colonies were rather small, the different successive external walls remained distinct and all strains contained dienic or trienic hydrocarbons. In contrast, most of the collected samples possessed large colonies with a rather compact matrix formed by the hydrocarbon-rich part of the successive closely appressed external wall layers. These samples contained polyunsaturated hydrocarbons, i.e. botryococcenes. Well defined cell caps which sheared off the cells were observed only in those strains with a compact matrix. The Austin strain and some collected samples, however, were intermediate with rather small colonies, dense matrix, definite cell caps and dienic hydrocarbons. Thus, the hydrocarbon composition did not correlate directly with the variations in wall structure; however, the occurence of dienic and botryococcene-like hydrocarbons together in one strain was never observed, although analyzed at various stages of growth. Thus, the existence of distinct strains of Botryococcus braunii, some synthesizing dienes, others botryococcenes, appears highly probable.  相似文献   
4.
The work provides a simple method, based on a direct density equilibrium measurement, for the rapid in situ estimation of total lipid, hydrocarbon or biopolymer content in a variety of prokaryotic and eukaryotic samples. The method can be readily applied to live microalgae and photosynthetic bacteria, single‐celled or colonial microorganisms, as well as cellular fractions and isolated subcellular compartments or components. In this approach, the absolute lipid, hydrocarbon, or biopolymer content of the cells can be readily calculated. This method is especially useful for tracking the oil or polymer content of strains of microalgae and other microorganisms, whose lipid, hydrocarbon or biopolymer content may change with cultivation conditions and/or time, as the case would be in microorganism lipid‐induction industrial processes. The method is also useful for the direct in situ measurement of storage polymer accumulation in live cells, such as starch in microalgae and polyhydroxybutyrate, or other polyhydroxyalkanoates, in photosynthetic and non‐photosynthetic bacteria. Biotechnol. Bioeng. 2009;102: 1406–1415. © 2008 Wiley Periodicals, Inc.  相似文献   
5.
Many of the genes that control photosynthesis are carried in the chloroplast. These genes differ among species. However, evidence has yet to be reported revealing the involvement of organelle genes in the initial stages of plant speciation. To elucidate the molecular basis of aquatic plant speciation, we focused on the unique plant species Chara braunii C. C. Gmel. that inhabits both shallow and deep freshwater habitats and exhibits habitat‐based dimorphism of chloroplast DNA (cpDNA). Here, we examined the “shallow” and “deep” subpopulations of C. braunii using two nuclear DNA (nDNA) markers and cpDNA. Genetic differentiation between the two subpopulations was measured in both nDNA and cpDNA regions, although phylogenetic analyses suggested nuclear gene flow between subpopulations. Neutrality tests based on Tajima’s D demonstrated diversifying selection acting on organelle DNA regions. Furthermore, both “shallow” and “deep” haplotypes of cpDNA detected in cultures originating from bottom soils of three deep environments suggested that migration of oospores (dormant zygotes) between the two habitats occurs irrespective of the complete habitat‐based dimorphism of cpDNA from field‐collected vegetative thalli. Therefore, the two subpopulations are highly selected by their different aquatic habitats and show prezygotic isolation, which represents an initial process of speciation affected by ecologically based divergent selection of organelle genes.  相似文献   
6.
6 种无机絮凝剂对布朗葡萄藻的絮凝效应   总被引:1,自引:0,他引:1  
探讨了6种无机絮凝剂对布朗葡萄藻的絮凝效应。采用光密度法测定布朗葡萄藻的生物量,分别研究了硫酸铝、硫酸铝铵、硫酸铝钾、硫酸镁、硫酸铁、氯化铁对布朗葡萄藻的絮凝效应。结果表明,光密度法可应用于布朗葡萄藻生物量的测定,可间接测定絮凝效应,且最佳测定波长为680nm;6种无机絮凝刺的絮凝时间为60min,同时6种无机试剂对布朗葡萄藻均有明显的絮凝效应,硫酸铝、硫酸铝钾、氯化铁对布朗葡萄藻的絮凝效应较硫酸铝铵、硫酸镁、硫酸铁明显(P〈0.05)。硫酸铝浓度控制在1.1g/L,硫酸铝钾浓度控制在0.45g/L以内,氯化铁浓度控制在0.9g/L。  相似文献   
7.
布朗葡萄藻是一种含脂量高、开发潜力大的能源微藻,但因其细胞呈集落态且胞壁较坚厚,应用传统的尼罗红荧光光谱法测定其脂质含量时,通常因灵敏度低、重复性差而难以获得可靠结果.本研究通过超声波分散集落、二甲基亚砜辅助尼罗红进入细胞、优化染色条件,有效地解决了上述问题.具体方法为:藻液先经频率为20 kHz、发射功率为100 W的超声波按1 s/1 s(开/关)间歇处理20 s使细胞分散,而后依次加入与藻液等体积的15%二甲基亚砜溶液和3μg/mL尼罗红溶液,充分混匀后于黑暗中40℃染色10min,再于490nm激发光下进行荧光光谱检测.上述改进方法与传统方法相比,检测灵敏度提高了196.6%,反映检测重复性的相对标准偏差(RSD)由10.91%降至1.84%.该方法为布朗葡萄藻育种与培养等研究提供了快速、灵敏的脂质含量检测技术.  相似文献   
8.
ABSTRACT:?

Botryococcus braunii, a green colonial microalga, is an unusually rich renewable source of hydrocarbons and other chemicals. Hydrocarbons can constitute up to 75% of the dry mass of B. braunii. This review details the various facets of biotechnology of B. braunii, including its microbiology and physiology; production of hydrocarbons and other compounds by the alga; methods of culture; downstream recovery and processing of algal hydrocarbons; and cloning of the algal genes into other microorganisms. B. braunii converts simple inorganic compounds and sunlight to potential hydrocarbon fuels and feedstocks for the chemical industry. Microorganisms such as B. braunii can, in the long run, reduce our dependence on fossil fuels and because of this B. braunii continues to attract much attention.  相似文献   
9.
A small subunit ribosomal RNA (16S-like rRNA) in the hydrocarbon-rich microalga Botryococcus braunii Kützing (Chlorophyceae) was amplified using RNA polymerase chain reaction, and its sequence was determined. The sequence data of B. braunii were analyzed with those of several other algae in order to determine phylogenetic relationships among these algae. Phylogenetic analysis indicated B. braunii to be a member of the Chlorophyta and possibly related to Characium vacuolatum and Dunaliella parva.  相似文献   
10.
 The three-dimensional structure in solution of the reduced form of cytochrome c 6 from the green alga Monoraphidium braunii has been solved through NMR data. Cytochrome c 6 acts as a small mono-heme electron carrier protein between the two membrane-embedded complexes cytochrome f and photosystem I. The structure was determined using 1278 relevant interproton NOEs out of 1776 assigned NOEs with distance geometry (DG) calculations which included 36 stereospecific assignments and 20 experimentally found angle constraints. The family of structures obtained from the DG calculations was subjected to energy minimization and molecular dynamics simulation using previously defined force field parameters for the heme and its ligands. In all stages of the calculations, the solution structure is well defined and similar to the now available X-ray structure. Received: 18 January 1996 / Accepted: 19 April 1996  相似文献   
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