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1.
李平  潘红春 《蛛形学报》2012,21(1):22-26
由于云斑蛛属Cyrtophora蜘蛛所织的网形态上较为特殊,所以该属分类地位长期以来有异议.为从分子水平探讨该属系统发生地位,本文对相关的11种蜘蛛线粒体12S rRNA基因和核18S rRNA基因部分序列进行了测定.基于12S rRNA和18S rRNA基因序列联合数据进行的分子系统发生分析结果表明云斑蛛属属于园蛛科,该结果提示在园蛛总科分类实践中以蛛网形态特征为分类依据时要慎重考虑其可靠性.  相似文献   

2.
圆网蛛类(妖面蛛总科 园蛛总科)是否为单系,圆网究竟经历一次进化还是多次进化,这是多年来有争论的、悬而未决的蛛形学难题之一。本文测定了包括妖面蛛总科、园蛛总科和非圆网蛛类等类群在内的9科10种蜘蛛线粒体12S rDNA、16S rDNA及核18S rDNA、28S rDNA等4个基因片段序列,并基于4个基因序列的整合数据,分别通过邻接(NJ)法、最大简约(MP)法、最大似然(ML)法和贝叶斯法(Bayesian)分析,对园蛛总科和妖面蛛总科蜘蛛之间的分子系统关系进行了探讨。系统发生结果表明:1)园蛛总科和妖面蛛总科蜘蛛不是姊妹群,从而支持这两个类群的圆网是平行演化而非同源演化的观点;2)筛器类蜘蛛并非单系发生而为多系发生。另外,依据编码大壶状腺丝蛋白-1(MaSp1)C末端非重复氨基酸序列区段的核酸序列重建的系统发生树也证实圆网蛛类并非单系发生。  相似文献   

3.
络新妇亚科曾归入园蛛科,后改为属于肖蛸科,目前又升格为科级阶元。为对络新妇亚科的分类地位作进一步研究,测定了9种蜘蛛线粒体12SrRNA基因的部分序列;另外还从GenBank检索到17种蜘蛛的12SrRNA基因的的相应序列。基于12SrRNA基因序列进行的分子系统发生分析结果表明络新妇亚科即不属于园蛛科、也不属于肖蛸科,而是与肖蛸科或园蛛科均无直接关联的独立支系,这个结果证实了将络新妇亚科升格为科级阶元的有效性。  相似文献   

4.
本文将12S rRNA基因序列分析应用于研究若干重要蜘蛛类群的系统关系,以对传统的分类研究结论进行验证和补充,并且探讨12S rRNA基因序列分析在蜘蛛系统发生研究中的适用性。根据12S rRNA基因第3结构域构建的分子系统树得出结论:1.圆网类(即妖面蛛总科与园蛛总科)并非单系;2.隙蛛与暗蛛较漏斗蛛具有更近的亲缘关系;3.壁钱和拟壁钱并不近缘;4.有筛器类蜘蛛为复系类群;5.12S rRNA基因第3结构域片段对推断近缘科属间的系统发生关系是有效的遗传标记。  相似文献   

5.
2种不同采样方法对麦田蜘蛛群落结构的比较研究   总被引:1,自引:0,他引:1  
分别于1998年11月到1999年5月和1999年11月到2000年5月间,在位于武汉市武昌区的沙湖边,使用样方和陷阱法系统采样,研究了裸粒大麦田的蜘蛛群落结构。研究结果显示,1998-1999年麦田蜘蛛群落由11科44种蜘蛛组成,1999-2000年麦田蜘蛛群落由14科59种蜘蛛组成;相同年份不同采样方法获得的蜘蛛群落优势种组成不同,陷阱法采样获得的优势种集中在皿蛛科、狼蛛科和平腹蛛科,而样方采样虽然也以皿蛛科和狼蛛科蜘蛛为主,但球蛛科、肖蛸科和园蛛科蜘蛛的比例明显上升;不同的年份使用相同的采样方法获得的蜘蛛优势种组成不同,显示了群落结构的年际变动。对2种采样方法获得的群落相似性分析显示,不同采样方法获得的群落结构相似性较小。  相似文献   

6.
为褐飞虱Nilaparvata lugens(Stal)的绿色防控提供理论参考依据,于2011年和2012年在调查了浙江富阳不同品种稻田褐飞虱和蜘蛛的发生密度后,利用荧光定量PCR分子探针技术分析了9科27种3 807头蜘蛛对褐飞虱的捕食作用。研究结果表明,在水稻Oryza sativa L.不同生育期,稻田总的褐飞虱和蜘蛛密度等参数值均随调查时间呈规律性变化,且在调查时间点间出现了显著性差异(P<0.05);各科蜘蛛对褐飞虱的捕食阳性率均随水稻生育期的发展呈增加趋势,整体上,狼蛛科Lycosidae、皿蛛科Linyphiidae、球腹蛛科Theridiidae、肖蛸科Tetragnathidae、跳蛛科Salticidae和园蛛科Araneidae捕食率在DAT21,DAT35和DAT77,DAT91之间有显著性差异(P<0.05);2012年两品种稻田的褐飞虱和蜘蛛密度等参数值均显著高于2011年的值,两年间汕优63(SY63)稻田的褐飞虱和蜘蛛密度均显著高于IR64的密度;2012年各科蜘蛛对褐飞虱的捕食阳性率显著高于2011年的值(P<0.05),且狼蛛科和球腹蛛科对褐飞虱的捕食阳性率在两品种间存在显著性差异(P<0.05);稻田4种蜘蛛优势种拟环纹豹蛛Pardosa pseudoannulata (Bosenberg & Strand)、八斑球腹蛛Theridion octomaculatum (Boes. et Str.)、食虫瘤胸蛛Oedothorax insecticeps (Boes. et str.)和锥腹肖蛸Tetragnatha maxillosa (Thoren)的捕食阳性率均随褐飞虱种群密度的增加而增加,该捕食功能反应曲线可用非线性模型P=aN/(1+bN)拟合;除锥腹肖蛸外,其它3种的捕食功能反应曲线均呈饱和状态;拟环纹豹蛛捕食褐飞虱的DNA残留量显著高于八斑球腹蛛、锥腹肖蛸和食虫瘤胸蛛的残留量(P<0.05)。本研究结果充分说明稻田各蜘蛛类群对不同生育期、不同品种水稻的褐飞虱均具有较强的捕食作用,是生物防治策略中的重要因素,应加强田间蜘蛛的保护工作和增强自然天敌的控害功能。  相似文献   

7.
花生田蜘蛛群落的研究   总被引:7,自引:1,他引:6  
在花生田共采集到蜘蛛41种,隶属于12科、27属。游猎型蜘蛛主要是狼蛛科、跳蛛科、猫蛛科和管巢蛛科的种类,所占比例较高,在春花生田为60.91%~86.21%,秋花生田为50.40%~90.36%。结网蜘蛛主要是皿蛛、球蛛、肖蛸和小型园蛛。在花生的不同生长季节有不同的优势科和优势种。春花生田的优势科是狼蛛科、皿蛛科和猫蛛科,优势种是类水狼蛛、拟环纹豹蛛、脉娲蛛、食虫沟瘤蛛和斜纹猫蛛;狼蛛科、猫蛛科和球蛛科是秋花生田的优势科、脉娲蛛、斜纹猫蛛和八斑鞘蛛为优势种。  相似文献   

8.
棉田蜘蛛群落结构及优势种分析   总被引:6,自引:0,他引:6  
董应才  竺锡武 《蛛形学报》1994,3(2):137-140
通过棉田定点调查,初步鉴定陕西大荔棉田计有蜘蛛8科17种,其中主要成分依次为狼蛛、皿蛛、球蛛、蟹蛛,园蛛和肖蛸等;蜘蛛群落结构在棉花苗期和蕾铃期有明显不同;Shannon-wiener多样性指数,simpson优势度和均匀度等分析,棉花苗期物种多样性明显小于蕾铃期,优势种为丁纹豹蛛和草间小黑蛛;分析了丁纹豹蛛种群消长动态。  相似文献   

9.
在花生田共采集到蜘蛛41种,隶属于12科、27属。游猎型蜘蛛主要是狼蛛科、跳蛛科、猫蛛科和管巢蛛科的种类,所占比例较高,在春花生田为60.91~86.21%,秋药生田为50.40~90.36%。结网蜘蛛主要是皿蛛、珠蛛、肖蛸和小型园蛛。在花生的不同生长季节有不同的优势科和优势种。春花生男的优势科是狼蛛科、皿蛛科和猫蛛科,优势种是类水狼蛛、拟环纹豹蛛、脉蜗蛛、食虫沟瘤蛛和斜纹猫蛛;狼蛛科、猫蛛科和球  相似文献   

10.
吴芳  潘红春 《蛛形学报》2012,21(1):51-60
本文从妖面蛛总科和园蛛总科系统发生关系、园蛛总科网型不同的蜘蛛间的系统发生关系及蛛网构建行为等几个方面着重介绍了圆网蛛类系统发生及网型进化的研究进展.圆网蛛类系统发生与其网型进化有效地结合、进行综合研究将有助于圆网蛛类的起源及网型多样性的研究.  相似文献   

11.
Pan HC  Zhou KY  Song DX  Qiu Y 《Zoological science》2004,21(3):343-351
The family status of the genus Nephila, which belongs to Tetragnathidae currently but Araneidae formerly, was reexamined based on molecular phylogenetic analyses. In the present study, 12S and 18S rRNA gene fragments of eight species of spiders were amplified and sequenced. In addition, 3'-end partial cDNA of major ampullate spidroin-1 (MaSp1) gene of Argiope amoena was cloned and sequenced, and the 3'-end non-repetitive region's cDNA sequence of MaSp1 gene and the predicted amino acid sequence of C-terminal non-repetitive region of MaSp1 were aligned with some previously known sequences. The resulting phylogeny showed that Araneidae and Tetragnathidae are not a sister group in the superfamily Araneoidea, and the genus Nephila is closer to the genera of the family Araneidae rather than to those of Tetragnathidae. We suggest that the genus Nephila should be transferred back to Araneidae. Or the subfamily Nephilinae might be elevated to family level after it was redefined and redelimited. Furthermore, the study showed that 3'-end non-repetitive region's cDNA sequence of MaSp1 gene and C-terminal non-repetitive region's amino acid sequence of MaSp1 are useful molecular markers for phylogenetic analysis of spiders.  相似文献   

12.
The reconstruction of the phylogeny of spiders based on morphological and ethological characters is hampered by frequent homoplasies. Therefore, fragments of the 28S rRNA gene have been sequenced to elucidate some crucial points in the evolution of spiders. The following results were obtained. (1) The 28S rRNA gene data support the monophyly of the Entelegynae. Thus, the number of different subunits and the number of hexamers which form a haemocyanin complex must have been reduced at least twice within the spiders. The character state pattern within the spiders and within the Arachnida suggests that these reductions are due to a decrease in the selection on the oxygen binding properties of the haemocyanins as a result of the evolution of tracheae. (2) The semientelegyne spiders are not a transition stage between the Haplogynae and the Entelegynae. The lack of separate fertilization ducts in these species is probably due to secondary reduction. This reduction has decisive consequences for the flow of the sperm and for sperm competition. (3) Furthermore, the 28S rRNA gene data tentatively support the hypothesis that the orb web is either a plesiomorphy or has evolved at least twice.  相似文献   

13.
利用多对引物,扩增并测定出大黄鱼16SrRNA基因和18SrRNA基因的部分序列,其长度分别为1202bp和1275bp,16SrRNA基因序列的GC含量为46.12%,18SrRNA基因的Gc含量为53.oo%。将大黄鱼16SrRNA基因序列与GenBank中15种硬骨鱼类的同源序列结合,同时将其18SrRNA基因序列与GenBank中9种脊索动物的同源序列相结合,运用软件获得各自序列间差异百分比,转换和颠换数值等信息。基于这两种基因序列,利用NJ法和BI法,分别构建16种硬骨鱼类和10种脊索动物的分子系统树。18SrRNA构建的系统树包括三大支,一支为哺乳类、鸟类和爬行类共6个物种,一支为两栖类的1个物种,另一支为2种硬骨鱼类。16SrRNA构建的系统树显示大黄鱼所在的石首鱼科与鲈科和盖刺鱼科亲缘关系较近。此外还讨论了这两个基因的序列特征。  相似文献   

14.
Almost all spiders building vertical orb webs face downwards when sitting on the hubs of their webs, and their webs exhibit an up–down size asymmetry, with the lower part of the capture area being larger than the upper. However, spiders of the genus Cyclosa, which all build vertical orb webs, exhibit inter- and intraspecific variation in orientation. In particular, Cyclosa ginnaga and C. argenteoalba always face upwards, and C. octotuberculata always face downwards, whereas some C. confusa face upwards and others face downwards or even sideways. These spiders provide a unique opportunity to examine why most spiders face downwards and have asymmetrical webs. We found that upward-facing spiders had upside-down webs with larger upper parts, downward-facing spiders had normal webs with larger lower parts and sideways-facing spiders had more symmetrical webs. Downward-facing C. confusa spiders were larger than upward- and sideways-facing individuals. We also found that during prey attacks, downward-facing spiders ran significantly faster downwards than upwards, which was not the case in upward-facing spiders. These results suggest that the spider''s orientation at the hub and web asymmetry enhance its foraging efficiency by minimizing the time to reach prey trapped in the web.  相似文献   

15.
In northeastern North America, Zygiella atrica often build their orb webs near the ocean. We analyzed individual field‐built Z. atrica webs to determine if organic low‐molecular‐mass solutes (LMM) in their sticky droplets showed any unusual features not previously seen in orb webs of other species living in less salty environments. While two of the three most abundant organic LMM (putrescine (butane‐1,4‐diamine) and GABamide (4‐aminobutanamide)) are already well‐known from webs of inland spiders, the third major LMM, β‐alaninamide (3‐aminopropanamide), a homolog of GABamide, has not been detected in sticky droplets from any other araneoid spiders (27 species). It remains to be established, however, whether or not use of β‐alaninamide is related to proximity to saltwater. We observed variability in organic LMM composition in Z. atrica webs that appeared to be influenced more by an undetermined factor associated with different collecting locations and/or collection dates than by different genders or instars. Shifts in composition when adult females were transferred from the field to the laboratory were also observed. Structural similarities and inverse correlations among β‐alaninamide, GABamide, and N‐acetylputrescine suggest that they may form a series of LMM fulfilling essentially the same, as yet unknown, role in the webs of those species in which they occur.  相似文献   

16.
Linyphiid spiders, as part of the community of natural enemies that frequent agroecosystems, can exert significant pressure on prey populations. Many aspects of linyphiid feeding ecology remain understudied, including temporal and seasonal patterns of prey utilization. To quantify the diversity, quantity, and spatial pattern of availability over diel and seasonal gradients, we monitored prey in an alfalfa crop, using web-site specific sticky traps. Although there were no differences in total number of prey between the day and night, significantly more Collembola were intercepted nocturnally rather than diurnally. Conversely, Diptera and Aphididae were significantly more abundant diurnally. Overall there were more prey at web-sites than in the general crop environment, indicating that spiders were selectively constructing webs where prey was relatively more abundant. However, spiders still may have experienced a high degree of prey limitation because the abundance of Collembola, an important detrital prey, was low over much of the season and below levels calculated as being required to sustain growth and reproductive output in linyphiid spiders. In conclusion, our data suggests that linyphiid spiders, in order to avoid food limitation, may benefit by foraging throughout the diel cycle, consuming herbivorous prey in addition to their core diet of detrital prey. This link between above and below ground food webs indicates the importance of understanding the trophic interactions between epigean spiders and their prey if they are to be integrated into future biological control programs.  相似文献   

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