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91.
王力  郭广  胡爱军  马明亮 《青海草业》2004,13(3):20-23,35
荒漠化发生发展的过程实际上是指在自然和人为因素的作用下,生态系统结构遭受破坏、功能过程受阻和演变发生异化的过程,其防治的根本措施是恢复和重建健康的生态系统。所以,景观生态学理念在荒漠化的研究和防治中有着重要的意义。本文从荒漠化与生态系统结构、功能变化、荒漠化与生物多样性、荒漠化生态系统的物质循环和能量流动以及荒漠化生态系统的稳定性等方面论述了景观生态学理念在荒漠化研究中应用的可行性,并重点分析了景观生态学关于景观格局变化的评价指标与荒漠化土地动态变化之间的关系。  相似文献   
92.
谷氨酰胺对肉仔鸡脾组织结构发育的影响   总被引:2,自引:1,他引:2  
160只 1日龄艾维茵肉仔鸡随机分成 4组 ,分别饲喂添加 0 % ,0 2 % ,0 4%和 0 8%谷氨酰胺的饲粮 2 8d。每周末每组取 6只鸡 ,颈静脉放血致死 ,取脾脏 ,Bouin液固定 ,制作石蜡切片 ,HE染色 ,光镜观察 ,显微摄影 ,研究基础日粮中添加谷氨酰胺对肉仔鸡脾组织结构的影响。结果显示 :添加谷氨酰胺的各试验组脾小结增多、增大 ;动脉周围淋巴鞘增厚 ;椭球增多、增大 ,细胞排列疏松 ,鞘毛细血管内皮细胞增高、增多 ;红髓比例降低 ,脾索内浆细胞和巨噬细胞增多。添加 0 8%谷氨酰胺的脾小结变化明显 ,添加 0 4%谷氨酰胺的动脉周围淋巴鞘和椭球变化明显。说明日粮中适量添加谷氨酰胺可促进脾内淋巴细胞的增殖与分化 ,从组织学角度证明 ,谷氨酰胺可促进脾的免疫应答能力 ,提高机体的免疫功能  相似文献   
93.
研究了以不同比例十六烷基三甲基溴化铵(CTMAB)单一修饰和十六烷基三甲基溴化铵 十二烷基磺酸钠(CTMAB SDS)混合修饰土娄土耕层对重金属镉离子吸附的影响,结果表明:吸附量顺序为耕层原土>50%CTMAB>100%CTMAB 20%SDS>100%CTMAB,温度升高,吸附量上升;最佳吸附等温线模型可以用BET模型描述,热力学参数的研究表明,吸附自发性与吸附量具有相同的变化规律,反应的焓变与熵变共同决定了反应的自发性。从热力学角度对修饰改性土娄土对Cd2 吸附的机理进行了探讨。  相似文献   
94.
梨果实发育过程中石细胞团及几种相关酶活性变化的研究   总被引:11,自引:1,他引:11  
以梨品种西子绿、菊水及砀山酥梨为试材,对不同发育时期梨果实石细胞团的密度、大小及几种相关酶的活性变化进行了研究。结果表明石细胞团的分布密度在幼果期较高,以后随着果实的发育和膨大,密度逐渐减小,接近成熟前1个月左右基本稳定;石细胞团的直径随果实的生长而逐渐变大;苯丙氨酸解氨酶在果实发育初期表现出较高的活性,随着果实的生长逐渐降低,花后75d后保持低水平不变;过氧化物酶活性高峰出现稍迟于苯丙氨酸解氨酶,高峰后呈现出下降的趋势;多酚氧化酶活性波动较大,总的变化趋势逐渐下降。品种间苯丙氨酸解氨酶、过氧化物酶活性与石细胞团的形成之间表现为正相关。  相似文献   
95.
Large mammalian herbivores are notorious for their propensity towards population irruptions and crashes, yet many herbivore populations remain relatively stable. I explore how resource heterogeneity within landscapes dampens population instability, using a metaphysiological modelling approach considering patch state distributions. Resource heterogeneity is functionally stabilizing through spreading consumption away from preferred resources before these become critically depleted. Lower-quality resources act as a buffer against starvation during critical periods of the seasonal cycle. Enriching resource quality is destabilizing, even if patch diversity is maintained, because food quantity then becomes the limitation. The potential consequences of landscape fragmentation are explored using the Serengeti ecosystem, characterised by broadscale resource gradients, as a hypothetical example. Further insights provided by the model are illustrated with specific examples concerning the effects of patch scales and waterpoint distribution. A metaphysiological modelling approach enables the basic consequences of landscape heterogeneity to be distinguished from further effects that may arise from specific patch scales and configurations, without the distracting detail of spatially explicit models.  相似文献   
96.
Traffic has a considerable effect on population and community dynamics through the disruption and fragmentation of habitat and traffic mortality. This paper deals with a systematic way to acquire knowledge about the probabilities of successful road crossing by mammals and what characteristics affect this traversability. We derive a model from traffic flow theory to estimate traffic mortality in mammals related to relevant road, traffic and species characteristics. The probability of successful road crossing is determined by the pavement width of the road, traffic volume, traversing speed of the mammals and their body length. We include the traversability model in a simple two-patch population model to explore the effects of these road, traffic and species characteristics on population dynamics. Analysis of the models show that, for our parameter ranges, traffic volume and traversing speed have the largest effect on traffic mortality. The population size is especially negatively affected when roads have to be crossed during the daily movements. These predictions could be useful to determine the expected effectiveness of mitigating measures relative to the current situation. Mitigating measures might alter the road and traffic characteristics. The effects of these changes on traffic mortality and population dynamics could be analysed by calculating the number of traffic victims before and after the mitigating measures. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   
97.
3周龄断奶仔猪胰酶发育规律的研究   总被引:3,自引:0,他引:3  
以 3周龄断奶仔猪为试验材料 ,研究了断奶对仔猪胰酶活性的影响。试验表明 ,3周龄断奶可以显著降低仔猪胰脏中胰淀粉酶、胰蛋白酶、胰糜蛋白酶和胰脂肪酶的活性 ,且在断奶后 2周继续维持断奶时水平。断奶降低了小肠内容物中胰淀粉酶和胰脂肪酶的活性 ,但空肠和回肠胰蛋白酶、胰糜蛋白酶的活性在断奶后并未下降。  相似文献   
98.
The invasive ability of Cynodon dactylon is dependent on self dispersal and on cultivation practices. Tillage can seriously change patch biomass and spatial structure, spreading vegetative propagules of the weed. The objectives of this study were: (i) to quantify the effect on non‐inversion tillage on dispersal, establishment and colonization of C. dactylon and (ii) to propose a simple model considering soil cultivation effects and light availability on spatial growth of weed patches. Two experiments were carried out, exploring different soils and environmental conditions. Spatial distribution of vegetative units differed when tillage was conducted with different non‐inversion implements and could be described by simple functions. A minimum patch biomass seems necessary before vegetative structures are vulnerable to movement by cultivation. Only a small proportion of the biomass dispersed from original patches was able to establish. However, simulation showed that the area colonized by C. dactylon mostly increased by means of tillage dispersal, both with and without crop competition, in one growing cycle. It appears sensible to consider changing cultivation practices to reduce weed dispersal and to use crop competition for light to create unsuitable habitats limiting weed colonization.  相似文献   
99.
Summary:This study was conducted to develop a suitable model for describing the growth pattern of the yak. The data used consisted of body weight records of 76 growing yak aged between 5 to 37 months. Three mathematical models were applied to describe the growth curves during this development period:①Y1=20.105 + 11. 250x-0. 526x2 ;used for describing the growth curve of yak aged 5 to 13 months;②Y2 = -359.687 + 49. 977x - 1. 249x2 ;used for animals aged 13 to 25 months;and ③Y3 = -833. 339 + 63. 772x - 1. 019x2 ;used for animals aged 25 to 37 months.  相似文献   
100.
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