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1.
狭额绒螯蟹的幼体发育   总被引:1,自引:0,他引:1  
在水温18—20℃、盐度18‰—20‰、光照度200~600Ix的条件下,狭颚绒鳌蟹幼体发育经5个溞状幼体和1个大眼幼体期。从幼体出膜到大眼幼体出现历时15d、到仔蟹出现需23d。狭颚绒鳌蟹和中华绒鳌蟹的第一期溞状幼体可从第2触角的外肢、腹部侧刺数加以区别;两大眼幼体可从额角形状、第2—4胸足指节、腹肢外肢刚毛数及尾节刚毛着生情况进行区分。  相似文献   

2.
利用RAPD技术对三种绒螯蟹亲缘关系的研究   总被引:28,自引:0,他引:28  
采用RAPD技术结合一定的形态学研究手段,对中华绒螯蟹,日本绒螯蟹及其合浦亚种进行亲缘关系的研究,为三种绒螯蟹的种及亚种分析重要资料,三种绒螯蟹的第四步足前节长宽比值,与其分类标本吻合或基本吻合,用一组引物,对每种各10个个体的基因组DNA进行扩增,得到一批特异,可重复的扩增图谱,扩增区带的相似率分析表明,中华绒螯蟹与日本绒螯蟹的亲缘关系远,而日本绒螯蟹合浦亚种与日本绒螯蟹近,最后,对文中RAPD  相似文献   

3.
用显微及亚显微方法研究了中华绒螯蟹雌体不同生理阶段(幼蟹、未成熟蟹、成熟蟹、抱卵蟹和流产蟹)腹肢的体壁结构变化和粘液腺发育特征。体壁的上皮细胞层常与粘液腺相连,粘液腺分泌物经导管穿过各层角膜排出。不同生理状况下中华绒螯蟹的腹肢体壁各角膜层结构的比例及致密度有明显的差异,粘液腺细胞及导管的数量不同,粘液腺与上皮细胞的连接程度也不同。粘液腺是否正常分泌、刚毛囊的开闭均与中华绒螯蟹的胚胎附着有关。比较研究发现,太湖抱卵蟹腹肢体腔内腺体比温州本地抱卵蟹腹肢内腺体发达,分泌的粘液也特别多。分析认为中华绒螯蟹腹肢组织结构、粘液腺的发育和分泌状况与胚胎流产有密切的关系。  相似文献   

4.
Zhou L  Wang CH  Cheng QX  Wang ZQ 《动物学研究》2012,33(3):314-318
表型性状差异(differentiation in phenotypictraits,PST)和分子遗传差异(differentiation at neutral molecular markers,FST)是近期进化生物学的研究热点之一。闽江水系是我国中华绒螯蟹与合浦绒螯蟹的主要混杂地域,是研究绒螯蟹遗传与进化的理想地之一。为探讨闽江水系绒螯蟹的PST和FST,以2009和2010年度闽江水系的133个绒螯蟹样本为材料,进行了14个表型数量性状差异分析和6个微卫星标记的遗传差异分析。结果发现:除3个表型性状不存在显著差异外,其他表型性状在不同年份间均存在极显著差异(P<0.01);2009年绒螯蟹的平均期望杂合度极显著高于2010年绒螯蟹(P=0.008),而平均等位基因丰富度、观测杂合度和近交系数均不存在显著差异(P=0.136~0.675);年份间的平均FST为0.1429;通过对PST与FST的比较发现,除第二步足掌节长度(F2)性状外,其他表型数量性状的PST值均高于FST值,表明这些性状均受到了较明显的选择压力。该文研究结果为绒螯蟹的分子进化研究积累了资料,也为其他水产生物的PST和FST比较研究提供了参考。  相似文献   

5.
四种绒螯蟹分子分类与系统发育   总被引:15,自引:0,他引:15  
利用PCR技术,扩增了中华绒螯解、狭额绒螯蟹线粒体16SrDNA片段,经测序,与GenBank数据库中的日本绒螯解16SrDNA同源序列进行比较。结果显示,在长为376bp的16SrDNA同源序列中有33个多态性核革酸位点(8.78%),其中种间多态性核苷酸位点28个(7.45%),种间差异远大于种内差异。引入方蟹科其它近缘种类厚纹蟹、相手蟹和张口蟹的16SrDNA同源序列与上述4种绒螯蟹比较分析,MP法和NJ法构建的分子系统树表明:中华绒螯蟹与日本绒螯蟹亲缘关系最近,首先聚在一起,然后与台湾绒螯蟹聚为一支,狭额绒螯蟹则为相对独立的一支,且进化速度大于前3种绒螯蟹,但最后与前者仍聚在同一组,狭额绒螯蟹只是绒螯蟹属系统进化中的一个侧支,故本研究结果不支持Sakai(1983)和Guo等(1997)把狭额绒螯蟹和台湾绒螯蟹各自立为新属的观点。  相似文献   

6.
绒螯蟹属支序分类学的初步分析(甲壳总纲:十足目)   总被引:8,自引:0,他引:8  
绒螯蟹属Eriocheir是方蟹科Grapsidae中的一个小属,与其近缘的11属同隶于弓蟹亚科Varuninaec该属包括4种:狭颚绒螯蟹E.leptoganthus,直额绒螯蟹E.rectus,日本绒螯蟹E.japonicus,和中华绒螯蟹E.sinensis。分布于我国沿海及台湾岛各省,均为可食种,尤以后两种个体较大为经济蟹类,特别是中华绒螯蟹为我国名贵的水产资源之一。  相似文献   

7.
关于三种绒螯蟹种名的厘正   总被引:6,自引:0,他引:6  
原称为绒螯蟹的种类 ,现隶属于甲壳纲、十足目、方蟹科绒螯蟹Eriocheir、新绒螯蟹Neoeriocheir和平绒螯蟹属Platyeriocheir 3个属。其中新绒螯蟹属由Sakai于 1983年以绒螯蟹属中的狭颚绒螯蟹为模式种而建立 ,平绒螯蟹属是Ng等 (1999)建立 ,所用模式种为台湾绒螯蟹Eriocheirformosa。有关平绒螯蟹属的有效性 ,作者持否定观点 ,另文详细讨论。到目前为止 ,所有绒螯蟹中有 3个种的学名拼写一直存在混乱 ,应予订正。1 日本绒螯蟹日本绒螯蟹 1835年被deHaan命名时归于方蟹属 ,…  相似文献   

8.
形态学和分子生物学的研究表明:直额绒螯蟹Eri- 物异名.本文为直额绒螯蟹指定了新模,并对此进行了描ocheir recta(Stimpson,1858)足一有效种名,应予恢复.台述.湾绒螯蟹Eriocheir formosa Chan,Hung et Yu,1995是它的同物异名.本文为直额绒螯蟹指定了新模,并对此进行了描述.  相似文献   

9.
从线粒体16S rDNA序列探讨绒螯蟹类的系统发生关系   总被引:20,自引:0,他引:20  
测定了绒螯蟹类各物种的线粒体16SrDNA部分片段的序列,构建了NJ树、ML树和MP树。序列歧异数据比较和各系统发生树都支持新绒螯蟹属(Neoeriocheir)为一个独立的属。在3种系统发生树中,直额绒螯蟹(Eriocheir recta)都是绒螯蟹属(Eriocheir)所有其它成员的姐妹群,并且广东珠江1只直额绒螯蟹标本的16SrDNA部分序列与台湾产台湾绒螯蟹(Eriocheir formasa)的相应序列相同。这些结果不支持平绒螯蟹属(Platyeriocheir)是一个有效的属,并表明E.formosa是E.recta的同物异名。绒螯蟹属(Eriocheir)所有其它成员聚为一个单系的分支,支持中华绒螯蟹、合浦绒螯蟹与日本绒螯蟹属于同一个物种Eriocheir japonica。16SrDNA部分序列的比对表明,产于台湾的日本绒螯蟹的此段序列与合浦绒螯蟹的相同,产于崇明岛的和产于美国旧金山海湾的中华绒螯蟹的此段序列与中华绒螯蟹单元型B的序列相同。  相似文献   

10.
记述梭子蟹科Portunidae,短桨蟹属 Thalamita 2新种,即刺肢短桨蟹T.acanthophallus和西沙短桨蟹T.xishaensis。 刺肢短桨蟹,新种T.acanthophallus sp.nov.(图1~8) 在整体形态上,新种最相似于T.danae Stimpson,1858,T.multispinosa Stephcnson & Rees, 1967,and T. holthuisi Stephenson,1975。新种与后3种的区别在于:新种头胸甲只有4枚前侧缘,而后3种具5齿,而;雄性腹部第6节明显短于其它3种;雄性第1腹肢形态与后3种明显不同. 词源:新种种名acanthophallus来源于希腊文,意指繁殖器官雄性第1腹肢末部具众多刺。 西沙短桨蟹,新种T.xishaensis sp.nov.(图9—16) 新种最相似于T.nanshaensis Dai,Cai&Yang,1996,and T.wakensis Edmondson,1925。但新种与T.nanshaensis Dai,CaiZ(Yang,1996,在头胸甲上的颗粒分布,螯足、第3颚足、雄性腹部及雄性第1腹肢的形态等均有明显差异。新种与T.wakensis的区别主要在于额齿、头胸甲前侧齿的形态,以及游泳足前节后缘的齿数。 词源:新种种名意指模式标本产地。 模式标本采自南中国海西沙群岛,并保存在中国科学院海洋研究所。  相似文献   

11.
稻田网箱养殖辽河水系中华绒螯蟹幼蟹的个体生长   总被引:2,自引:0,他引:2  
本实验在室外网箱内监测辽河水系中华绒螯蟹(Eriocheir sinensis)幼蟹阶段个体生长发育的每一次蜕壳生长情况。2013年实验选取雄蟹和雌蟹各200只,记录了每个蜕壳阶段雌蟹和雄蟹的生长,包括壳长、壳宽、总重和蜕壳间隔时长(d),并且观察雌蟹和雄蟹形态特征的变化。实验共进行111 d,幼蟹共蜕壳11次。实验结束时,雄蟹剩余34只,雌蟹剩余42只;雄蟹的特定生长率为(7.176 5±0.168 4)%/d,雌蟹的特定生长率为(7.283 3±0.174 3)%/d;雌蟹生长蜕壳过程中腹部的形态变化大,腹部由三角形变成卵圆形;雄蟹在生长蜕壳过程中螯足的增长明显较雌蟹快,并且在本实验最后一次即第11次蜕壳后螯足腹面内侧出现1小撮绒毛,外侧也出现少量绒毛,但不易被发现。  相似文献   

12.
The Chinese mitten crab Eriocheir sinensis is a native of freshwater and estuarine habitats along the east coast of Asia. Invasive populations have existed in northern Europe since the early 20th century, and more recently a breeding population has become established in the San Francisco Bay system along the west coast of North America. Ballast water is the most probable vector for both invasions, although there is also potential for escape from ethnic markets and from the ornamental aquarium industry. Invasive populations of mitten crabs have caused millions of dollars in economic and ecological damage. Economic impacts center largely on the burrowing activity of the crabs, which damages stream banks and levees, and the annual spawning migration, which interferes with fishing activities and irrigation projects. Chinese mitten crabs have recently appeared in the Chesapeake and Delaware Bays on the east coast of the USA, and there are confirmed reports of breeding females in both estuaries. The potential for large populations of mitten crabs in these estuaries has not been determined. This paper presents a review of the biology and ecology of native and invasive populations of the species and provides recommendations for research relevant to the prediction of future mitten crab invasions.  相似文献   

13.
AIMS: To identify the dominant intestinal bacteria in the Chinese mitten crab, and to investigate the differences in the intestinal bacteria between pond-raised and wild crabs. METHODS AND RESULTS: The diversity of intestinal bacteria in the Chinese mitten crabs was investigated by denaturing gradient gel electrophoresis (DGGE) fingerprinting, 16S rRNA gene clone library analysis and real-time quantitative PCR. The principal component analysis of DGGE profiles indicated that substantial intersubject variations existed in intestinal bacteria in pond-raised crab. The sequencing of 16S rRNA genes revealed that 90-95% of the phylotypes in the clone libraries were affiliated with Proteobacteria and Bacteroidetes. Some genera were identified as unique in wild crabs and in pond-raised crabs, whereas Bacteroidetes was found to be common in all sampled crab groups. Real-time quantitative PCR indicated that the abundance of Bacteroides and the total bacterial load were approximately four-to-10 times higher in pond-raised crabs than in wild crabs. A significant portion of the phylotypes shared low similarity with previously sequenced organisms, indicating that the bacteria in the gut of Chinese mitten crabs are yet to be described. CONCLUSIONS: The intestinal bacteria of pond-raised crabs showed higher intersubject variation, total diversity and abundance than that observed in wild crabs. The high proportion of the clones of Proteobacteria and Bacteroidetes in the clone library is an indication that these bacteria may be the dominant population in the gut of the Chinese mitten crab. SIGNIFICANCE AND IMPACT OF THE STUDY: This study demonstrated obvious differences in the intestinal bacterial composition of pond-raised crabs and wild crabs. This knowledge will increase our understanding of the effects of aquaculture operations on bacterial community composition in the crab gut and provide necessary data for the development of probiotic products for crab cultivation.  相似文献   

14.
Ankylocythere sinuosa (Rioja, 1942), a symbiotic ostracod native to North America, was found from the Japanese mitten crab Eriocheir japonica (De Haan, 1835), a species native to Japan, collected from a pond in Shizuoka City, Shizuoka Prefecture, central Japan. Introduced North American crayfish Procambarus clarkii (Girard, 1852), which is a host of A. sinuosa in their native range, inhabits ponds sympatrically with Japanese mitten crabs, and it is thought that the ostracods transferred from the exotic crayfish to the native crabs. In recent years, along with the artificial transportation of crayfish around the world, their symbiotic ostracods also have been found on the body surfaces of exotic crayfish in Europe and Japan. However, no studies have confirmed the infestation of exotic ostracods on native crustaceans in the field. A wide range of developmental stages of A. sinuosa from juveniles to adults were found in Japanese mitten crabs, and mating individuals were also found. This strongly suggests that they can reproduce on the body surface of Japanese mitten crabs. In the future, it will be necessary to strengthen measures against alien species to prevent these exotic symbionts from infestating native ecosystems, and we also need to investigate the exact impact of this symbiont on Japanese mitten crabs.  相似文献   

15.
中华绒螯蟹窦腺的显微和超微结构   总被引:12,自引:0,他引:12  
孙金生  刘安西  杜育哲  顾景龄 《动物学报》2001,47(1):27-31,T003,T004
借助光学和电子显微镜观察了养殖河蟹 1龄蟹种、早熟蟹种和 2龄成蟹窦腺的形态结构和神经分泌物质释放方式。河蟹窦腺位于眼柄视神经节内髓与终髓交界处背侧 ,活体为乳白色 ,扁球状 ,大小约为 0 5 5mm×0 45mm× 0 2 3mm。窦腺呈囊状 ,腺体壁由膨大的神经分泌细胞末梢和胶质细胞组成 ,神经末梢内充满电子致密的分泌颗粒。根据颗粒的大小、形态和电子致密度等特征 ,区分出 6种不同类型的神经分泌末梢。河蟹窦腺中的神经分泌物质以胞吐作用方式释放 ,一些现象表明 ,神经胶质细胞参与神经分泌颗粒的释放。 1龄蟹种、早熟蟹种和 2龄成蟹窦腺的形态、结构无明显差异 ,但神经激素颗粒释放情况明显不同 ,从形态结构上证实了窦腺对养殖河蟹性腺发育的调控作用。  相似文献   

16.
A comparative morphological research was done based on the morphological characters of 21 species from Leptura in this paper. The results indicated that 18 morphological characters, such as the ratio of the lower eye lobe to genae, the relative length of antennae segments, the shape of maxillary palpi apex, prothorax, elytra apex and elytral maculae can be used to identify species in the genus. Meanwhile, the color of elytra and the size of elytral maculae could not be used to identify species from Leptura. In addition, the shape of 7th abdominally sternal apex, the length of antennae and the ratio of the first hind tarsal segment to the second can be used to distinguish the male and the female.  相似文献   

17.
在面积为2700hm2的东湖水库,以散养的方式养殖河蟹。在放养密度不同的情况下,研究放养河蟹对水库中底栖动物和水生植物的影响。2001年规格为220只/kg河蟹放养量为1500kg、密度为122只/hm2时,对摇蚊幼虫和寡毛类影响显著,而对其他软体动物和水生植物无显著影响。2002年同样规格的河蟹放养量增加至3500kg、密度为285只/hm2时,对底栖动物和部分沉水植物影响显著。本文对河蟹养殖容量作了讨论,认为东湖水库散养河蟹的放养量不应超过1500kg。    相似文献   

18.
We describe a microsporidian parasite infecting non-native Chinese mitten crabs (Eriochier sinensis) from Europe. Electron microscopy revealed merogonic and sporogonic life stages bound within a plasmalemma. The crab parasite develops polar tube precursors at the sporont stage but does not complete formation of the intact spore extrusion apparatus at the stage of the sporogonial plasmodium like Enterocytozoon bienuesi and other representatives of the Enterocytozoonidae. Its presence within an aquatic crustacean host, and a distinct molecular phylogeny based on partial small subunit ribosomal RNA (SSU rRNA) gene sequences also place it relatively close, though distinct to, existing genera within the Enterocytozoonidae. Consideration of morphological and phylogenetic characteristics of other hepatopancreas-infecting microsporidia from crustaceans suggests that certain ones (e.g. Enterospora canceri) are retained within the clade corresponding to the existing family Enterocytozoonidae, while others, including the parasite described here, may eventually be grouped in a sister taxon potentially of family rank. Based upon morphological and host similarity, it is likely that the parasite described here is the same as Endoreticulatus eriocheir (Wang and Chen, 2007), previously described from Chinese mitten crabs in Asia. However, using a combined taxonomic approach based upon morphological and phylogenetic data, we propose the formation of a new genus (Hepatospora) to replace the previous generic classification of the Asian parasite as Endoreticulatus. The microsporidian from the hepatopancreas of E. sinensis is named Hepatospora eriocheir (Wang and Chen, 2007) gen. et comb. nov. It is assumed that the parasite was introduced during initial invasions of this crab to Europe during the early 20th Century.  相似文献   

19.
研究通过利用自动化的电子穿梭系统研究长江野生中华绒螯蟹幼蟹的行为参数对温度变化的响应, 进行了Ⅰ组8℃和14℃实验组、Ⅱ组14℃和21℃实验组、Ⅲ组21℃和28℃实验组、Ⅳ组28℃和35℃实验组共4个实验组。实验表明中华绒螯蟹幼蟹的最佳偏好温度在28℃。幼蟹会加速逃离不适温度区域, 且偏离温度越高游泳速率越高, 温度和游泳速率拟合方程: y=0.0027x2–0.1045x+1.5875, R2=0.8615, 昼夜(P>0.05)和雌雄性别(P>0.05)差异对温度的偏好选择未见明显影响。研究为中华绒螯蟹养殖、利用及野外环境下种群保护与调控管理提供科学依据。  相似文献   

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