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In parallel with the studies reported in the preceding paper(I), the modes of production of characteristic red pigmentsby Chlorella protothecoides cells were investigated under variousculture conditions, (i) During the course of "acetate-bleaching"of algal cells, excretion of red pigments in the medium proceededwith simultaneous disappearance of chlorophyll from algal cells.The total amount (weight) of the red pigments excreted intomedium was slightly less than that of the chlorophyll lost.No red pigment was detectable within the bleaching algal cells.Carotenoids were found to increase or remain nearly constantin their quantities per culture during the process of bleaching,(ii) In a later phase of "glucose-bleaching" some red pigmentswere found to be present inside as well as outside the algalcells, and the excreted pigments underwent further changes turningcolourless, (iii) Both the production of red pigments and disappearanceof chlorophyll were suppressed by light and this light effectwas insensitive to CMU. (iv) During the process of "regreening"of "glucose-bleached" algal cells, no production of red pigmentswas observed either in or outside the algal cells. Based on these results we concluded that the red pigments areproduced from chlorophyll during the bleaching process of algalcells induced by an organic carbon source. (Received July 23, 1968; )  相似文献   
2.
  1. 1. Subcellular fractions of Chlorella protothecoides were separatedby fractional centrifugation of the algal cell homogenate inmixtures of cyclohexane and CCl4. The base composition, meltingprofiles and IRC-50 column chromatographic patterns of DNA preparationsfrom the chloroplast and non-chloroplast fractions were examined.It was shown that the algal chloroplast contains at least oneDNA species which is different from the nuclear DNA.
  2. 2. RNApreparations from the subcellular fractions were subjectedtoMAK column chromatography, sucrose density gradient centrifugationand analysis for base composition. It was demonstrated thatthe chloroplast contains ribosomal RNA and soluble RNA. Twocomponents of the chloroplast ribosomal RNA were found to havethe same patterns as those of the E. coli ribosomal RNA in MAKcolumn chromatography and zone centrifugation. The major componentof the chloroplast ribosomal RNA was distinctly different fromthat of the non-chloroplastic (cytoplasmic) ribosomal RNA inall properties examined.
1This work was partly reported at the Symposium on Mitochondriaand Chloroplasts as Self-duplicating Units sponsored by theBotanical Society of Japan in August, 1966, and at the Symposiumon Biogenesis of Subcellular Particles, the 7th Internatl. Congressof Biochemistry, Tokyo, 1967.  相似文献   
3.
Maitotoxin, a presumed activator of the voltage-sensitive calcium channel, induced the acrosome reaction in the mussel, Mytilus edulis at physiological pH and in the starfish, Asterias amurensis at pH 9.5. The induction of acrosome reaction by maitotoxin depended upon external Ca2+ and was inhibited by two types of calcium channel blockers; verapamil and diltiazem. These results suggest that the activation of the voltage-sensitive calcium channel takes an important part in the initiation of acrosome reaction in Mytilus and other animals.  相似文献   
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During the process of bleaching of Chlorella protothecoidescells induced by the addition of glucose or acetate in a nitrogen-deficientmineral nutrient medium, at least four red pigments were foundto be excreted into the incubation medium. These pigments wereseparated by thin-layer chromatography on silica gel, and theirabsorption spectra in visible and infrared regions as well astheir NMR spectra were measured. Elementary composition andthe Gmelin colour reaction of the pigments were also examined.The results obtained suggest that the four pigments are certainacidic substances—containing a structure similar to thatof a bile pigment—which are most probably derived fromchlorophyll through oxidative rupture of the tetrapyrrole ringof the latter. (Received July 23, 1968; )  相似文献   
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