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111.
112.
Crystal spectra of a heme and some heme-protein complexes   总被引:3,自引:0,他引:3  
P Day  D W Smith  R J Williams 《Biochemistry》1967,6(5):1563-1566
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Iron and manganese relations in rice and barley   总被引:3,自引:2,他引:1  
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Donald H. Williams 《CMAJ》1964,91(14):755-756
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The metabolism of [2-14C]indole in the rat   总被引:3,自引:1,他引:2  
1. [2-14C]Indole has been synthesized from [14C]formate and o-toluidine via N[14C]-formyltoluidine. 2. When fed to rats, the 14C of [14C]indole (dose 70–80mg./kg. body wt.) is fairly rapidly excreted, and in 2 days an average of 81% appears in the urine, 11% in the faeces and 2·4% as carbon dioxide in the expired air. 3. Radioactivity is excreted in the urine as indoxyl sulphate (50% of the dose), indoxyl glucuronide (11%), oxindole (1·4%), isatin (5·8%), 5-hydroxyoxindole conjugates (3·1%), N-formylanthranilic acid (0·5%) and unchanged indole (0·07%). The faeces contain indoxyl sulphate (0·4% of the dose) and indole (0·2%), but the major metabolites have not been identified. 4. Fed to rats with biliary cannulae an average of 5·6% of a dose of [14C]indole (20–60mg./kg. body wt.) is excreted in the bile in 2 days. Radioactivity is present as indoxyl sulphate (0·8% dose) and 5-hydroxyoxindole conjugates (0·6%). 5. Rats further metabolize indoxyl into N-formylanthranilic acid and anthranilic acid, and oxindole into 5-hydroxyoxindole. 6. With rat-liver microsomes plus supernatant under aerobic conditions, indole gives indoxyl, oxindole, possibly isatin, N-formylanthranilic acid and anthranilic acid, but under anaerobic conditions gives only oxindole. Similarly, under aerobic conditions, oxindole gives 5-hydroxyoxindole, anthranilic acid and o-aminophenylacetic acid. 7. Indole is metabolized by two pathways, one via indoxyl to isatin, N-formylanthranilic acid and anthranilic acid, and the other via oxindole to 5-hydroxyoxindole and possibly to o-aminophenylacetic and anthranilic acid. 8. The following new compounds are described: 4-hydroxy-2-nitrophenylacetic acid, 3-, 4- and 5-benzyloxy-2-nitrophenylacetic acid, 5- and 7-hydroxyoxindole and 5-aminoacridine indoxyl sulphate.  相似文献   
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Summary Barley plants were grown, for periods of up to eleven weeks duration, in culture solutions in which the potassium concentrations were maintained at 0.01, 0.10, 1.0, and 50.0 ppm. Potassium added continuously during the day was augmented night and morning, as determined by solution analysis. The following observations were made:Plants grew equally well at pH levels of 5.5 and 7.0. Variations in root temperature between 15° and 25°C had no effect on K-content of tissue at either pH level. Yields were large as were the quantities of potassium absorbed from the solutions. No potassium-deficiency symptoms were observed at any of the concentrations used.Considerable variation in yield was observed between tanks and between plants growing in the same tank. The variation appeared to be due to a difference in the amount of tillering per plant.The results indicate that plants grow well in culture solutions at potassium concentrations approaching 0.01 ppm and this may have some implications on the mechanism of uptake of potassium by plant roots growing in a soil system.  相似文献   
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