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1.
Haematological and biochemical investigations were performed on 14 koalas with uncomplicated cystitis, 8 with complicated cystitis, 8 with conjunctivitis, 8 with lymphosarcoma, and 14 with miscellaneous diseases. Changes were limited and inconsistent in individual koalas with uncomplicated cystitis and conjunctivitis. In contrast, individual koalas with complicated cystitis were more likely to have anaemia, leukocytosis due to neutrophilia, hypoproteinaemia due to hypoalbuminaemia, and azotaemia due to elevated urea concentration. Although these changes were non-specific they did allow assessment of prognosis for survival and response to treatment. Koalas with lymphosarcoma were invariably anaemic, leukaemic, azotaemic and hypoalbuminaemic. Elevated enzymes (aspartate transaminase [AST]. lactate dehydrogenase [LD] and gamma glutamyl transferase [GGT]) were more common in koalas with lymphosarcoma. Koalas affected by miscellaneous conditions showed variable changes but once again anaemia, leukocytosis, azotaemia, elevated AST and LD, and hypoalbuminaemia were not uncommon. On the basis of these findings a minimal profile is suggested for the investigation of sick koalas and would include haematocrit, total and differential leukocyte counts, urea, total protein and albumin concentrations and AST, GGT and LD activities. 相似文献
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植物促生菌及其促生机理 (续) 总被引:10,自引:0,他引:10
3 植物促生菌的促生长机理 3.1 产生嗜铁素 铁是生命的基本物质.不论是动、植物还是微生物,均需含铁蛋白来参与呼吸等一系列生理活动.尽管地球表面矿物含铁丰富,但土壤中能够直接为植物和微生物利用的铁却不多.土壤中铁主要以三价铁(Fe3+)状态存在,在pH值为7.4时其溶解度为10-18mol/L,此浓度下的铁一般无法满足土壤微生物繁衍和植物生长发育的需要.然而,某些细菌和植物分泌一种专门结合铁的小分子蛋白(siderophores)可从土壤中收集铁,这种物质被称之为嗜铁素.铁一旦与嗜铁素相结合则形成可溶性铁-嗜铁素复合体,并可通过植物和微生物细胞膜的特殊通道进入生物体内.氧化铁在体内还原后被释放并参与生物代谢活动.产生嗜铁素被认为是植物促生菌最主要的直接和间接促进植物生长的有效途径之一.植物促生菌产生的嗜铁素一般都具有高度的铁亲合性和专一性,含有各种能鳌合铁的结构基团(如邻二苯酚结构、羧基结构和乙二胺结构等)来摄取土壤中的铁,这种嗜铁素具有极强的吸收铁的能力,可在铁有效性极低时收集土壤中微量的移动性铁,从而使土壤中可用的铁降低至更为缺乏的程度. 相似文献
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Greenberg DS 《Science (New York, N.Y.)》1969,164(3885):1261-1264
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Greenberg DS 《Science (New York, N.Y.)》1968,161(3844):871-872
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Simulation study of the competitive ability of erect, semi-erect and prostrate cowpea (Vigna unguiculata) genotypes 总被引:1,自引:1,他引:1
Ecophysiological simulation models provide a quantitative method to predict the effects of management practices, plant characteristics and environmental factors on crop and weed growth and competition. The INTERCOM interplant competition model was parameterised, calibrated by monoculture data for three cowpea (Vigna unguiculata) genotypes that differed in growth habit, common sunflower (Helianthus annuus) and common purslane (Portulaca oleracea), and used to simulate competition of cowpea cover crops with sunflower or purslane. The simulation results were compared with observations from field competition experiments in 2003 and 2004. INTERCOM more accurately simulated actual field data for the competition of cowpea genotypes and sunflower than companion field experiments for the competition of cowpea and purslane. The validated simulation model of cowpea and sunflower at two densities was used to study the effects of cowpea growth habit on final biomass production of cowpea and sunflower. The model suggested that erect growth habit was more competitive than semi‐erect and prostrate growth habit, when cowpea genotypes were grown with sunflower. Cowpea leaf area distribution was important to higher cowpea biomass production, while cowpea height growth was important to reduce sunflower biomass. Our simulation approach is suggested as a method for crop breeders to gauge the likely success of selection for competitive crops before undertaking expensive long‐term breeding experiments. 相似文献