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231.
Growth of Scenedesmus quadricauda (Turp.) Bréb. was significantly increased when the cultures were grown in Ethephon 68–241 (2-chloroethylphosphonic acid) at concentrations of 0.001–1.0 μg · ml?1. At 0.1 μg · ml?1, Ethephon caused a significant increase in RNA levels on a dry weight basis. Total protein and DNA levels increased but not significantly. These data indicate that ethylene, the decomposition product of Ethephon at physiological pH, has some effect on the metabolism of algae.  相似文献   
232.
Oleic acid is incorporated into an insoluble fraction left over after lipid extraction in Scenedesmus acutus. This incorporation is extremely sensitive to the chloroacetamide herbicide, metazachlor (I50= ca 20 nM). Therefore, factors influencing the incorporation of radioactivity from oleic acid into this non-lipid fraction were investigated. S. acutus cells were cultivated under various conditions with or without inhibitors and [14C]-oleic acid was supplied to the algae; the lipids were extracted and the radioactivity incorporated in the remaining fraction monitored. The inhibition seemed specific for chloroacetamides and related classes since it was also observed with alachlor, dimethenamid and mefenacet (an oxyacetamide). In contrast, it could not be found with diuron, oryzalin, nor could it be observed with a non-herbicidal metazachlor derivative or iodoacetamide. Incorporation of oleic acid into that fraction required meta-bolically active cells and was stimulated by light. Other fatty acids (16:0, 18:2, and 18:3) were also incorporated into the non-lipid fraction but their incorporation was not inhibited by metazachlor. Among other components, the fraction contains proteins. However, a possible specific effect of chloroacetamides on the binding of oleic acid to proteins or on the in vitro activity of lipid transfer proteins could not be detected. Not much is known yet about mechanism and chemistry of oleic acid incorporation but this finding opens a new path for investigations towards the primary target of these herbicides.  相似文献   
233.
Photosynthetic capacity and quantum requirement of photosynthesis were evaluated in three secondary mutants of Scenedesmus obliquus possessing specific blocks in carotenoid biosynthesis. These were derived from the mutant, C-2 A', a strain which develops chlorophyll only in the light. All strains were capable of a normal and rapid production of chlorophyll and the development of a functional photosynthetic apparatus when exposed to light. LHC-II levels in the mutants lacking the β,ε-carotenoids (strains C-2 A'-34,1 and C-2 A'-67, 3b) were considerably reduced in fully greened cells but normal in the β,β-epoxycarotenoid deficient-only strain (C-2 A'-67,1) (Bishop, 1996). The maximum photosynthetic capacity and the quantum efficiency (at λ=682nm) of photosynthesis of cells of C-2A'-34,1 and C-2 A'-67,1 showed no significant changes when compared to the original parent strain, C-2 A'. However, the quantum requirement of the strain lacking both types of carotenoids, C-2 A'-67,3b, was slightly increased. It is of particular interest that both strains lacking the β,ε-carotenoids also show a preferential loss of the oligomeric form of the LHC and its associated chlorophylls. The potential requirement of the different carotenoids in maintenance of photosynthetic efficiency in Scenedesmus is discussed.  相似文献   
234.
A number of microalgae species are efficient in removing toxicants from wastewater. Many of these potential species are a promising, eco-friendly, and sustainable option for tertiary wastewater treatment with a possible advantage of improving the economics of microalgae cultivation for biofuel production. The present study deals with the phycoremediation of tannery wastewater (TWW) using Scenedesmus sp. isolated from a local habitat. The test species was grown in TWW under laboratory conditions and harvested on the 12th day. The results revealed that the algal biomass during the growth period not only reduced the pollution load of heavy metals (Cr-81.2–96%, Cu-73.2–98%, Pb-75–98% and Zn-65–98%) but also the nutrients (NO3 >44.3% and PO4 >95%). Fourier Transform Infrared (FTIR) spectrums of Scenedesmus sp. biomass revealed the involvement of hydroxyl amino, carboxylic and carbonyl groups. The scanning electron micrograph (SEM) and Energy Dispersive X-ray Spectroscopic analysis (EDS) revealed the surface texture, morphology and element distribution of the biosorbent. Furthermore, the wastewater generated during wet-blue tanning process can support dense population of Scenedesmus sp., making it a potential growth medium for biomass production of the test alga for phycoremediation of toxicants in tannery wastewaters.  相似文献   
235.
Dark-grown cells of mutant C-2A' of Scenedesmus obliquus accumulate monovinyl-and mainly divinyl-protochlorophyllide (PChlide). Both PChlide-forms are equally well photoconverted in vitro by the NADPH-protochlorophyllide oxidoreductase of the light-dependent greening mutant C-2A'of Scenedesmus obliquus. The chlorophyllide (Chlide) resulting from this photoconversion in vivo has a predominantly monovinyl character. Only small traces of a transient Chlide-form with divinyl fluorescence could be detected.  相似文献   
236.
237.
It is demonstrated that chlorophyll b does not only derive from chlorophyll a , but is also formed separately from an in vivo-occurring chlorophyllide b . The branching point for the latter synthesis is at the level of chlorophyllide, since no protochlorophyllide b was detectable. We have indications that the enzyme oxidizing chlorophyll a to chlorophyll b accepts also non-phytylated 17,18 dihydroporphyrins and is not restricted to chlorophylls. Preparations of chlorophyllide a and chlorophyll a could both be transferred with the same enzyme fraction to chlorophyllide b and chlorophyll b , respectively. Preliminary experiments show this enzyme to be membrane bound and light independent. An updated scheme for chlorophyll b biosynthesis is presented.  相似文献   
238.
Two green algal species, Chlamydomonas reinhardtii and Scenedesmus obliquus, exhibited a relative maximum during the decay of luminescence, when adapted to low CO2 conditions that was not observed in high CO2 adapted cells.From the kinetics of transient changes in the level of dark fluorescence, after illumination and parallel to the luminescence maxima, it was concluded that the maximum in Scenedesmus was mainly related to a decrease in nonphotochemical quenching, whereas in Chlamydomonas the maximum was mainly related to a dark reduction of the primary PS II acceptor QA.ATP/ADP ratios from low CO2 adapted Scenedesmus showed transient high levels after a dark/light transition that was not observed in high CO2 adapted cells. After 30 s of illumination the ATP/ADP ratios however stabilized at the same steady state level as in high CO2 adapted cells.Dark addition of HCO3 - to low CO2 adapted cells of Chlamydomonas resulted in a rapid transient quenching of luminescence that was not observed in low CO2 adapted cells of neither species.It is concluded that the luminescence maxima present in both low CO2 adapted Scenedesmus and Chlamydomonas reflect adaptation of the cells to low CO2 conditions. It is further suggested that the difference in mechanistic origin of luminescence maxima in the two species reflects differences in adaptation.Abbreviations ADP adenosine-diphosphate - ATP adenosine-triphosphate - Ci inorganic carbon - FD dark fluorescence recorded under dark adapted conditions - F0 fluorescence with all reaction centers open - FV variable fluorescence - PS I photosystem I - PS II photosystem II - QA the first quinone acceptor of PS II  相似文献   
239.
The effect of food concentration on the life history of three types of Brachionus calyciflorus females (amictic, unfertilized mictic and fertilized mictic female) was studied with replicated individual cultures at 25 ° and at four food concentrations (1.5, 3.0, 6.0 and 9.0 × 106 cells mL—1) of Scenedesmus obliquus. There were highly significant effects of both food concentration and female type, independently and in interaction on the duration of juvenile period of the rotifer, but neither were the effects on the duration of post‐reproductive period and mean life‐span. The duration of juvenile period of unfertilized mictic female at the food concentration of 9.0 × 106 cells mL—1 was the longest among all the food concentration‐female type combinations. Both food concentration and female type influenced significantly the duration of reproductive period and the number of eggs produced by each type of female per life cycle, respectively. There was, however, no significant interaction between food level and female type. Among the three types of females, the number of eggs produced by an unfertilized mictic female was the largest, and that of a fertilized mictic female was the smallest.  相似文献   
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