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1.
Summary A stream-breeding race of small-mouthed salamanders (Ambystoma texanum) in central Kentucky produces ova that are twice as large as those of a pond-breeding race found nearby. Embryos of stream-breeders also hatch at a more advanced developmental stage than those of pond-breeders. Morphological evidence indicates that stream-breeders were derived from pond-breeding stock. Assuming that differences between stream and pond-breeders reflect evolutionary change, and that the ancestral pond stock that invaded streams was similar to extant pond-breeders, we examined three hypotheses that might explain changes in ovum size and stage at hatching following the invasion of streams. (1) Larger ovum size evolved indirectly as a consequence of selection for rapid development which minimizes mortality risk from stream drying. (2) Increased ovum (hatchling) size and stage at hatching of stream-breeders are adaptations to resist stream current. (3) Increased ovum (hatchling) size and stage at hatching are adaptations to reduce predation on hatchlings from stream invertebrates. The results of field and laboratory studies only support hypotheses (2) and (3). Hatchlings that were relatively large or at a more advanced developmental stage had slower drift rates and were less vulnerable to predation by Phagocata gracilis, a flatworm abundant in streams in central Kentucky. Developmental and growth parameters were not correlated significantly with ovum size in populations of either geographic race. Differences in degree of parental care among races also cannot explain variation in ovum size since both races abandon their eggs immediately after oviposition.  相似文献   
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This scanning-electron microscopic study demonstrates the convergent evolution of the mouthparts of various herbivorous stream animals (insects from different orders, an isopod, snails, fish, and a tadpole) feeding on epilithic algal pastures. This food source is rich but is often difficult to harvest. Nevertheless, a large number of species can live on it because they have evolved highly specialized mouthparts. There are four functional problems that an algae grazer has to solve: the algae must be removed from the stone, they have to be collected and crushed, and a current shield is needed to prevent the water flow sweeping away the food. Among the 30 algae grazers examined in this study, a limited number of morphological solutions have been found for each of these adaptational problems. There are multiple evolutionary pathways for mouthpart adaptation and even closely related species have often evolved different types of tools for the same function. This refects the existence of a certain amount of evolutionary scope. Such freedom of evolution is present, however, only at the beginning of the adaptiogenesis of an algae grazer. Once one of the evolutionary pathways is taken, further improvement of the mouthparts is possible only by the refinement of the ‘chosen’ type of tools. The consequence of this is that a large number of astonishing convergences have occurred in algae grazers that have independently trodden the same evolutionary pathway.  相似文献   
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Synopsis Campostoma spp., widespread and abundant herbivorous minnows of eastern North America, produce distinctive grazing scars when feeding on algae attached to natural substrates in streams. These scars are particularly prominent upon the low growth forms of blue-green algae that dominate the attached algal flora of many upland streams. In one stream pool in the Ozark uplands of Oklahoma, numbers and sizes of grazing scars coincided with numbers and sizes of individual Campostoma that occurred across a depth gradient, demonstrating that the information contained in the scars can provide quantification of microhabitat use and grazing intensity of these important herbivores. The results also support the hypothesis that in environments free of aquatic predators, larger fish use deeper parts of available stream habitats, particularly if threats from terrestrial or avian predators exist.  相似文献   
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Epilithic bacterial and algal biomass were compared among a run, riffle, and pool along an open-canopy section of a third-order, temperate stream. Epilithic biofilms were sampled after 3, 7, 14, 21, 28, and 35 days colonization on unglazed ceramic tiles that were attached to plastic trays (n = 3) placed across each of the three habitats (i.e., run, riffle, pool). The diverse habitats and sampling regime were selected to provide a range in algal biomass so that potential covariation between epilithic bacterial and algal biomass could be assessed. There were significant differences among habitats and among trays within each habitat for both chlorophyll a and AFDM. Chlorophyll a and AFDM increased in the run and pool throughout the colonization period. In the riffle, chlorophyll a and AFDM increased rapidly early in colonization, then decreased. Epilithic bacterial biomass increased rapidly with no significant differences among the three habitats throughout colonization. Further, bacterial biomass did not correlate with either chlorophyll a or AFDM in any of the three habitats or on any of the sampling days. These results suggest that epilithic algal and bacterial biomass may be regulated by independent controls in some stream environments.  相似文献   
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The blood of two fresh water cobitids — Botia lohachata, an exclusive water breathing form and Lepidocephalus guntea a dual breather, — showed a comparatively higher range of Hb (16.0–19.0 g%), Hct (50.0–61.1%) and number of RBC (2.71–6.7 millions/mm3) than many other water and air breathing fishes. Significant sexual difference exists in these characteristics (P > 0.05).The impact of life in oxygen depleted water, also inhabited by L. guntea as a result of its air breathing habit, is well reflected in its greater RBC size (11.86 × 8.66 µm) and their larger surface area (83.96 µm2) compared to that of Botia (53.16 µm2). The smaller size (9.92 × 6.45 µm) and consequently greater number of erythrocytes (4.67 millions/mm3) in Botia, are related to its active mode of life in the swiftly flowing water of hilly rivers. Though the higher nucleo-cytoplasmic ratio of 1 : 5.2 in Botia and 1 : 6.9 in Lepidocephalus suggest a slower red cell metabolism, the greater number of erythrocytes seems to have compensated for their active mode of life.  相似文献   
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模拟浮游生物的季节变化   总被引:6,自引:0,他引:6  
本文讨论了海洋中光合作用过程和计算光合作用的速率方程。运用垂直平均值的浮游生物模型研究了在一个固定站和扩展湾流体系中,浮游植物、浮游动物和营养盐的季节变化。结果表明,夹卷过程将含营养盐丰富的中层水带入了混合层,从而导致浮游植物的生长;摸式较好地给出了扩展湾流体系中的水华季,基本上得到了浮游生物的生活周期。使用不同的参数值进行了若干实验,并对结果进行了讨论。  相似文献   
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胜利河连续系统中蜉蝣优势种的生产量动态和营养基础   总被引:1,自引:0,他引:1  
大型底栖动物在河流生态系统中发挥着重要作用, 2009 年3月至2010 年3月间对长江中游支流巴河流域的胜利河大型底栖动物群落优势种类的生产力进行为期1 周年的调查研究, 结果表明, 主要蜉蝣优势种扁蜉、等蜉和红斑蜉的生活史为3代/年、3代/年和 2代/年。现存量呈现出1-3级河流增加,而4级又较3级有所下降的趋势。采用龄期频率法( instar-frequency method) 测算的平均周年生产量分别为扁蜉, 200.13 g/(m2.a) , P/B 为23.69; 等蜉, 82.06 g/(m2.a), P/B 为18.12;红斑蜉, 12.30 g/(m2.a), P/B 为8.78。三种蜉蝣的生产量动态在时间上与现存量动态较一致,但彼此各不相同。扁蜉的日均产量于2009年3月在二级河流中达到最大(363.56 mg/m2.d),等蜉于2010年3月在三级河流中到达最大(282.76 mg/m2.d),而红斑蜉于2009年3月在一级河流中到达最大(33.36 mg/m2.d)。生产量的营养基础分析结果表明,扁蜉前肠内含物中无形态碎屑、动物组织、植物纤维、丝状藻类、硅藻所占平均比例为74.37%,4.19%,17.11%,4.29%,0.04%,对生产量的贡献率分别为77.15%,11.27%,6.57%,4.95% ,0.04%;等蜉前肠内含物中无形态碎屑、动物组织、植物纤维、真菌、丝状藻类和硅藻所占平均比例为65.64%,6.17%,23.04%,0.54%,4.53%,对生产量的贡献率分别为: 68.16%,16.61%,8.86%,1.03%,5.23%,0.09%,0.10%;红斑蜉前肠内含物中,无形态碎屑、动物组织、植物纤维、真菌、丝状藻类和硅藻所占平均比例为41.14%,5.96%,38.04%,1.34%,11.21%,2.31%,对生产量的贡献率分别为46.67%,17.52%,15.98%,2.81%,14.13%,2.91%。这与我们在黑竹冲和叹气沟的研究结果存在一定差异,可能与这些溪流自身环境和地区分布有关。  相似文献   
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山溪鲵卵黄发生的显微与超微结构   总被引:3,自引:0,他引:3  
张育辉  贾林芝 《动物学报》2002,48(4):534-542
用光镜和透射电镜观察了山溪鲵(Batrachuperus pinchonii)不同发育时期卵母细胞的显微与超微结构,特别注意了与卵黄发生相关的细胞器变化。结果表明,类核周体为线粒体、高尔基体、内质网等膜性细胞器聚集的场所;线粒体自身也可演变成卵黄前颗粒,参与构成卵黄小板的成分;吞饮泡和髓样小体是卵母细胞利用外源卵黄物质的中间媒介。经过与其他动物卵黄发生过程相比较,认为非哺乳脊椎动物卵黄发生是卵母细胞在多种细胞器参与下整体活动的结果,不是经由单一的模式或途径形成,因此呈现发生上的多元化;不同物种在卵黄发生中分别采取与各自相适应的模式或途径。  相似文献   
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