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1.
鸟类羽色多态现象:概念及其进化机制假说   总被引:1,自引:0,他引:1  
多态现象对了解物种的遗传、变异和进化有着重要意义,鸟类羽色多态现象的进化机制,是多态现象研究中非常重要的内容。鸟类羽色多态现象的进化机制假说主要有:分化选择假说、异类选择假说和非随机性交配假说等。本文对鸟类羽色多态现象的概念和以上进化机制假说进行了综述,并针对鸟类羽色多态现象进化机制研究中存在争议的问题及研究的不足提出了自己的看法。  相似文献   

2.
鸟类羽色多态现象:概念及其进化制假说   总被引:1,自引:0,他引:1  
多态现象对了解物种的遗传、变异和进化有着重要意义,鸟类羽色多态现象的进化机制,是多态现象研究中非常重要的内容.鸟类羽色多态现象的进化机制假说主要有分化选择假说、异类选择假说和非随机性交配假说等.本文对鸟类羽色多态现象的概念和以上进化机制假说进行了综述,并针对鸟类羽色多态现象进化机制研究中存在争议的问题及研究的不足提出了自己的看法.  相似文献   

3.
生物磁学在鸟类定向研究中的进展   总被引:5,自引:0,他引:5  
地球上广泛存在的地磁场能够为导航提供可靠的信息,因此很多鸟类在迁徙和归巢过程中都使用地磁信息来保证航行方向的正确,在迁徙的鸟类中已经发现有18种是利用地磁罗盘进行定向和导航的。本文从鸟类使用的磁罗盘、航行地图以及磁感应机制等几方面阐述了目前在鸟类生物磁学方面的研究进展。  相似文献   

4.
本文的意图是让研究者审视研究方法,并在研究设计中充分使用假说检验,并在选择模式物种时充分理解其自然史.我们的总前提是,按照"强推论"(指假定拒绝某一假说而不是支持某一偏爱假说)的逻辑,科学能够进展得更快、更可观、更有确定性.我们强调并提供了符合逻辑的一系列步骤,即确定科学问题或确定具有未知生物学意义的问题;列出所有可靠的、能解释所观察现象的假说,每个假说列出其可检验的、可证明其无根据的预测;然后是符合预测检验的实验或研究设计.我们也强调,模式物种对于解决科学的理论问题以及得出推论是很重要的.本文所展示的不是新思想,只是提醒研究者要注意遵循的基本研究途径.  相似文献   

5.
物种多样性地理格局的能量假说   总被引:6,自引:1,他引:5  
物种多样性地理分布格局及其成因是生物地理学和宏观生态学研究的核心问题之一。为了解释物种多样性的分布格局, 人们提出了多种假说, 其中讨论最多的是能量假说。该假说认为, 物种多样性的变化受能量控制。根据能量的不同形式及其对物种多样性的影响机制, 能量假说包括以下几种形式: 生产力假说(productivity hypothesis)、水分—能量动态假说(water–energy dynamic hypothesis)、环境能量假说(ambient energy hypothesis)、寒冷忍耐假说(freezing tolerance hypothesis)以及生态学代谢假说(metabolic theory of ecology, MTE)。本文系统介绍了每种能量假说的含义、所使用的能量形式及表征变量, 以及对物种多样性的影响机制, 并对不同形式的能量假说进行了比较, 在此基础上, 分析了每种能量假说的优点和缺点以及各自面临的问题。  相似文献   

6.
 毛竹(Phyllostachys heterocycla ‘Pubescens’)凭借其独特的生长特性极易扩张进入周边的常绿或针阔混交森林群落并取而代之。菌根减弱假说对毛竹林扩张导致周边林分枯亡并抑制林下幼苗更新的机制进行了解释, 即毛竹林的成功扩张是由于毛竹蔓延引起森林群落的菌根系统紊乱, 使宿主植物与菌根真菌的共生关系受到干扰, 进而影响了宿主植物的分布与更新。该研究以浙江省西天目山国家自然保护区为研究区域, 对菌根减弱假说进行了检验。通过在毛竹-针阔混交林交接区沿毛竹扩张方向设置毛竹纯林、竹-林过渡带、针阔混交林3种类型的样带, 选取在针阔混交林、竹-林过渡带同时存在的6种优势乔灌树种——杉木(Cunninghamia lanceolata)、枫香树(Liquidambar formosana)、青冈(Cyclobalanopsis glauca)、柳杉(Cryptomeria fortunei)、江浙山胡椒(Lindera chienii)、毛柄连蕊茶(Camellia fraterna), 测定这6个树种在两样带中的菌根侵染频率和强度, 检测在毛竹林扩张中周边森林群落菌根的响应, 同时对比了毛竹在毛竹纯林和竹-林过渡带菌根感染率和强度的变化, 检验该假设。实验结果表明: 1)针阔混交林和竹-林过渡带的主要树种菌根都具有较高的菌根侵染频率(> 95%), 且不同林分间林木的侵染频率无显著差异(p > 0.1); 2)在竹-林过渡带杉木和江浙山胡椒的丛枝菌根侵染强度较针阔混交林明显增加(p < 0.1); 3)毛竹的丛枝菌根侵染频率和强度远低于其他针阔树种, 且在扩张前后没有显著变化(p > 0.1)。实验结果否定菌根减弱假说。  相似文献   

7.
核小体定位研究进展   总被引:4,自引:0,他引:4  
核小体定位在诸如转录调控、DNA复制和修复等多种细胞过程中起着重要作用。基因组上核小体位置的确定涉及DNA、转录因子、组蛋白修饰酶和染色质重塑复合体之间的相互作用。核小体定位、组蛋白修饰、染色质重塑等问题已成为目前遗传学研究的热点——表观遗传学——的重要研究内容。文章从核小体定位基本概念、核小体定位与基因表达调控的关系、核小体定位实验研究和理论预测工作等几个方面总结了核小体定位的最新研究进展。  相似文献   

8.
小型哺乳动物种群周期性波动的外因调节假说   总被引:1,自引:0,他引:1  
张志强  王德华 《生态学报》2004,24(6):1279-1286
对小型哺乳动物种群数量周期性波动的外因调节假说进行介绍 ,概述了食物假说、捕食假说和复合因子假说的主要内容和研究进展。在少数生存环境严酷的小型哺乳动物种群中 ,食物假说能解释它们的周期性数量波动现象 ,可能作为调节因子起作用 ,但难以说明低数量期的确切机制 ,对于大多数小型哺乳动物而言 ,它更可能作为限制因子。捕食假说解释了北欧芬诺斯坎底亚地区某些种群的周期性波动 ,尤其是捕食的间接效应已引起许多学者的关注 ,但也有不支持该假说的证据。对于复合因子假说 ,近年颇受学者重视 ,其中验证食物和捕食交互及累加作用的实验证据较多 ,有的研究还包括气候、种间竞争、空间或社会行为等因素。有关复合因子的实验研究 ,尽管工作是困难和艰巨的 ,花费也是巨大的 ,但所得结果却极有价值 ,为深入理解种群动态调节理论提供了一个合理而有效的手段  相似文献   

9.
代谢途径的进化   总被引:1,自引:0,他引:1  
生物的新陈代谢是通过一系列的代谢途径来实现的.这些调节精妙、相瓦协作的代谢途径是如何进化形成的一直是一个引人入胜的重要问题.自1945年有关该问题的第一个假说--"逆向进化假说"提出以来,迄今已发展出七种假说,包括"逆向进化假说"、"半酶理论"、"向前发展模型"、"酶的招募假说"、"多功能酶特化假说"、"整个代谢途径的复制假说"和"从头创造假说".其中最受关注的是"逆向进化假说"和"酶的招募假说",而最近提出的"多功能酶特化假说"由于有较好的理论基础和实验证据支持,也逐渐引起人们的关注.本文对这些假说逐一作了概述,并结合作者的相关研究工作,对该领域的研究现状和发展趋势进行了分析讨论和展望.  相似文献   

10.
中国鸟类红色名录评估   总被引:1,自引:0,他引:1  
中国有1,372种鸟类, 其中77种为中国特有。由于资源过度利用、栖息地丧失和片断化、环境污染等原因, 中国的鸟类多样性保护面临严峻的挑战。为了全面评估当前中国野生鸟类的濒危状况, 国家环境保护部支持启动了“中国脊椎动物红色名录”的编制工作。依照IUCN的标准, 对中国鸟类的受胁状况进行了一次全面评估。通过确定评估对象、数据收集、初评、初核、复审、定稿等步骤, 集国内27位鸟类学家的力量, 完成了本次评估。结果表明: 区域灭绝(RE)3种, 分别是白鹳(Ciconia ciconia)、镰翅鸡(Falcipennis falcipennis)和赤颈鹤(Grus antigone), 极危(CR)15种, 濒危(EN)51种, 易危(VU)80种, 近危(NT)190种; 无危(LC)876种, 数据缺乏(DD)157种。列为极危、濒危和易危等级的受胁鸟类合计146种, 占中国鸟类种数的10.6%。受威胁程度最高的科是鹈鹕科和犀鸟科, 这两个科100%的物种都属于受胁种。。77种特有鸟类中有29种(37.7%)属于受胁种。陆禽和猛禽是受胁最严重的生态类群, 分别有25.2%和23.2%的种类处于受胁状态。不同行政区域受胁鸟类差异较大。本工作对于我国鸟类保护和履行国际公约等工作均有重要意义。  相似文献   

11.
A model for photoreceptor-based magnetoreception in birds   总被引:2,自引:0,他引:2       下载免费PDF全文
A large variety of animals has the ability to sense the geomagnetic field and utilize it as a source of directional (compass) information. It is not known by which biophysical mechanism this magnetoreception is achieved. We investigate the possibility that magnetoreception involves radical-pair processes that are governed by anisotropic hyperfine coupling between (unpaired) electron and nuclear spins. We will show theoretically that fields of geomagnetic field strength and weaker can produce significantly different reaction yields for different alignments of the radical pairs with the magnetic field. As a model for a magnetic sensory organ we propose a system of radical pairs being 1) orientationally ordered in a molecular substrate and 2) exhibiting changes in the reaction yields that affect the visual transduction pathway. We evaluate three-dimensional visual modulation patterns that can arise from the influence of the geomagnetic field on radical-pair systems. The variations of these patterns with orientation and field strength can furnish the magnetic compass ability of birds with the same characteristics as observed in behavioral experiments. We propose that the recently discovered photoreceptor cryptochrome is part of the magnetoreception system and suggest further studies to prove or disprove this hypothesis.  相似文献   

12.
Sensing the geomagnetic field, called magnetoreception, might be a helpful tool for an animal to orientate and navigate in its environment. Although several rodent species are known to be magnetosensitive, detailed insights into this sensory ability are rare and the underlying mechanism in mammals is still unknown. The magnetic sense of the Djungarian hamster (Phodopus sungorus) expresses a learned behavioural pattern. Here, we report evidence for magnetoreception based on learned cues as well as spontaneous magnetosensitive behaviour in a closely related species, the Roborovski hamster (Phodopus roborovskii), for the first time. The hamsters learned to build their nests in specific magnetic directions (nest‐building assay) and spent spontaneously more time exploring a magnet compared to a sham (magnetic object assay). Furthermore, an influence of weak radio frequency magnetic fields was observed and is discussed with respect to magnetoreception mechanisms.  相似文献   

13.
14.
地磁场影响着自然界的生命活动,候鸟、果蝇等就利用地磁场进行导航迁徙.研究表明,鸟类的视网膜中存在一种蛋白名为隐花色素,作为最可能的磁感应分子和光受体. 该蛋白能够在光照条件下,产生自由基对,进行光化学转换.人体内也含有隐花色素蛋白,该蛋白也具有磁感应潜能.本文从地磁感应现象入手,结合最新的研究进展,重点介绍了隐花色素的结构、分类、光反应机制,并且根据光依赖的自由基假说就鸟类感应地磁场这一现象进行了简要阐述,同时对隐花色素研究前景进行了探讨.  相似文献   

15.
Magnetoreception   总被引:6,自引:0,他引:6  
The vector of the geomagnetic field provides animals with directional information, while intensity and/or inclination provide them with positional information. For magnetoreception, two hypotheses are currently discussed: one proposing magnetite-based mechanisms, the other suggesting radical pair processes involving photopigments. Behavioral studies indicate that birds use both mechanisms: they responded to a short, strong magnetic pulse designed to change the magnetization of magnetite particles, while, at the same time, their orientation was found to be light-dependent and could be disrupted by high-frequency magnetic fields in the MHz range, which is diagnostic for radical pair processes. Details of these findings, together with electrophysiological and histological studies, suggest that, in birds, a radical pair mechanism located in the right eye provides directional information for a compass, while a magnetite-based mechanism located in the upper beak records magnetic intensity, thus providing positional information. The mechanisms of magnetoreception in other animals have not yet been analyzed in detail.  相似文献   

16.
In the last decades, it has been demonstrated that many animal species orient in the Earth magnetic field. One of the best-studied examples is the use of the geomagnetic field by migratory birds for orientation and navigation. However, the biophysical mechanism underlying animal magnetoreception is still not understood. One theory for magnetoreception in birds invokes the so-called radical-pair model. This mechanism involves a pair of reactive radicals, whose chemical fate can be influenced by the orientation with respect to the magnetic field of the Earth through Zeeman and hyperfine interactions. The fact that the geomagnetic field is weak, i.e., ∼0.5 G, puts a severe constraint on the radical pair that can establish the magnetic compass sense. For a noticeable change of the reaction yield in a redirected geomagnetic field, the hyperfine interaction has to be as weak as the Earth field Zeeman interaction, i.e., unusually weak for an organic compound. Such weak hyperfine interaction can be achieved if one of the radicals is completely devoid of this interaction as realized in a radical pair containing an oxygen molecule as one of the radicals. Accordingly, we investigate here a possible radical pair-based reaction in the photoreceptor cryptochrome that reduces the protein's flavin group from its signaling state FADH to the inactive state FADH- (which reacts to the likewise inactive FAD) by means of the superoxide radical, O2•-. We argue that the spin dynamics in the suggested reaction can act as a geomagnetic compass and that the very low physiological concentration (nM-μM) of otherwise toxic O2•- is sufficient, even favorable, for the biological function.  相似文献   

17.
Our previous experiments indicated an age- and sex-dependent functional lateralization of a high-affinity choline uptake system in hippocampi of Wistar rats. The system is connected with acetylcholine synthesis and also plays a role in spatial navigation. The current study demonstrates that a single in vivo exposure of 7- or 14-day-old males to a static magnetic field of 0.14 T for 60–120 min evokes asymmetric alterations in the activity of carriers in adulthood. Namely, the negative field (antiparallel orientation with a vertical component of the geomagnetic field) mediated a more marked decrease in the right hippocampus. The positive field (parallel orientation) was ineffective. Moreover, differences between the carriers from the right and the left hippocampi were observed on synaptosomes pretreated with superparamagnetic nanoparticles and exposed for 30 min in vitro. The positive field enhanced more markedly the activity of carriers from the right hippocampus, the negative that from the left hippocampus, on the contrary. Our results demonstrate functionally teratogenic risks of the alterations in the orientation of the strong static magnetic field for postnatal brain development and suggest functional specialization of both hippocampi in rats. Choline carriers could be involved as secondary receptors in magnetoreception through direct effects of geomagnetic field on intracellular magnetite crystals and nanoparticles applied in vivo should be a useful tool to evaluate magnetoreception in future research.  相似文献   

18.
Experiments on the effect of radio‐frequency (RF) magnetic fields on the magnetic compass orientation of migratory birds are analyzed using the theory of magnetic resonance. The results of these experiments were earlier interpreted within the radical‐pair model of magnetoreception. However, the consistent analysis shows that the amplitudes of the RF fields used are far too small to noticeably influence electron spins in organic radicals. Other possible agents that could mediate the birds' response to the RF fields are discussed, but apparently no known physical system can be responsible for this effect. Bioelectromagnetics 30:402–410, 2009. © 2009 Wiley‐Liss, Inc.  相似文献   

19.
The geomagnetic field is typically about 50 μT (range 20-90 μT). Geomagnetic activity generally decreases by about 4% for the seven days leading up to a full moon, and increases by about 4% after the full moon, lasting for seven days. Animals can clearly detect the changes in magnetic field intensity that occur at full moon, as it has been shown that variations of just a few tens of nT are adequate to form a useful magnetic ‘map’. We think that moonlight increases the sensitivity of animals' magnetoreception because the radical pair model predicts that magnetoreception is light dependent. In fact, there have been some reports of changes in the sensitivity of magnetoreception with lunar phase. We propose a hypothesis that animals respond to the full moon because of changes in geomagnetic fields, and that the sensitivity of animals' magnetoreception increases at this time.  相似文献   

20.
Magnetic alignment (MA) results from the preference of animals to align themselves along the field lines of the geomagnetic field, a behavioural expression of a magnetic sense. MA is well documented for ruminants and might demonstrate a general magnetic sensory ability among artiodactyls. We measured body‐axis alignment in 1614 foraging or resting wild boars Sus scrofa, 1849 wild boar beds, and 1347 warthogs Phacochoerus africanus, and found a highly significant north–south preference. The magnetic field was the only common denominator of all observations. Thus, we provide the first data suggesting a magnetic sense in the Suidae.  相似文献   

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