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1.
通过对凤蝶亚科Papilioninae11属27种的线粒体细胞色素c氧化酶Ⅰ基因(COⅠ)序列测定,以阿波罗绢蝶Parnassius apollo为外群,分别采用邻接法(NJ)、最大简约法(MP)和最大似然法(ML)构建凤蝶亚科的系统发育树,初步探讨了其系统发育关系。结果显示,凤蝶亚科11属27个物种分为4个主要的分支,分别是裳凤蝶族Troidini、凤蝶族Papilionini、燕凤蝶族Lampropterini和喙凤蝶族Teinopalpini,与传统分类学观点一致。其中,燕凤蝶族构成凤蝶亚科系统发育树基部的一个独立分支,且为单系发生。凤蝶属Papilio中美凤蝶亚属Menelaides和翠凤蝶亚属Princeps首先相聚,华凤蝶亚属Sinoprinceps和凤蝶亚属Papilio亲缘关系较近,随后两分支再聚为一支,构成凤蝶属。本研究结果从分子水平验证了凤蝶亚科传统的形态分类地位,并为澄清凤蝶亚科物种间系统发育关系提供了基础资料。  相似文献   

2.
对中国12科共32种代表蝶类的ND1基因和16S rRNA 基因进行了序列测定(包括新测30种ND1基因和9种16S rRNA基因)和比较分析, 同时采用邻接法、最大似然法和贝叶斯法构建了12科蝶类的系统发育树, 探讨了其高级分类群的系统发育关系。序列分析的结果显示: 经比对处理后的两个基因总长度为869 bp, 其中保守位点373个, 可变位点496个, 简约信息位点375个; A+T的平均含量为80.2%, 明显高于C+G的平均含量19.8%。分子系统树表明: 蛱蝶科不是单系群; 珍蝶类、斑蝶类和喙蝶类位于蛱蝶科内; 粉蝶科和凤蝶科具有共同祖先。据此建议: 绢蝶科应归入凤蝶科; 蚬蝶科归入灰蝶科; 珍蝶类、斑蝶类和喙蝶类作为蛱蝶科中的亚科, 眼蝶类从蛱蝶科中分离出来独立成科。另外, 环蝶类的系统分类地位还有待于进一步研究。  相似文献   

3.
锯凤蝶族Zerynthiini的分类地位一直受到国内外学者的关注.本文对锯凤蝶族Zerynthiini、绢蝶族Parnassiini及凤蝶亚科Papilioninae中相关族的幼虫形态、翅脉、翅面斑纹、鳞片、雌性交配栓、雄性外生殖器、地理分布与历史变迁,进行了比较研究,对这些类群的亲缘关系进行了初步探讨.结果表明:锯凤蝶族可能是由绢蝶亚科某一古老或已灭绝的族中演化而来,应作为绢蝶亚科下的一个族,不应作为亚科对待;锯凤蝶族和绢蝶族同属绢蝶亚科,绢蝶亚科和凤蝶亚科同属凤蝶科.  相似文献   

4.
秦峰  付文博  周善义 《昆虫学报》2011,54(3):339-351
对凤蝶科6属25种的COⅠ基因和20种Cyt b基因的部分序列进行测定和分析, 探讨它们之间的系统发育关系; 以茶小卷叶蛾Adoxophyes honmai为外群, 用邻接法(neighbor-joining, NJ)、 最大简约法(maximum parsimony, MP)和贝叶斯法(Bayesian inference, BI)重建了凤蝶科6属的分子系统树。结果表明: COⅠ基因部分序列长度为661 bp, 其中保守位点417个, 可变位点244个, 简约信息位点191个; A+T的平均含量为70.3%, 明显高于C+G的平均含量29.6%。Cyt b基因部分序列长度为433 bp, 其中保守位点239个, 可变位点194个, 简约信息位点135个; A+T的平均含量为74.2%, 明显高于C+G的平均含量25.7%。分子系统树表明, 凤蝶属Papilio、 斑凤蝶属Chilasa、 尾凤蝶属Bhutanitis、 珠凤蝶属Pachliopta和喙凤蝶属Teinopalpus为单系性, 与传统形态分类结果相一致。但青凤蝶属Graphium单系性不够明确, 需要进一步探讨。研究结果为我国凤蝶科分子系统学研究积累了资料。  相似文献   

5.
以线粒体细胞色素氧化酶I(COI)基因作分子标记,对线蛱蝶亚科蝴蝶进行序列测定.序列分析的结果表明.经比对和处理后的序列总长度是645bp,其中有199个变异位点,147个简约信息位点;所编码的氨基酸序列中有18个变异位点,7个信息位点.A+T平均含量为69.6%,G+C平均含量为30.4%,碱基组成出现AT偏斜.以蛱蝶亚科及秀蛱蝶亚科物种为外类群,用NJ、MP及贝叶斯法重建了该亚科的系统发生树,探讨了它们主要类群间的系统发生关系.分子系统树显示,线蛱蝶亚科由以下3大支系:环蛱蝶族+翠蛱蝶族、线蛱蝶族、丽蛱蝶族构成;其中,环蛱蝶族为单系群(NJ树也支持线蛱蝶族的单系性);翠蛱蝶族与环蛱蝶族亲缘关系较近:丽蛱蝶族可能是该亚科较早分化出的一支.  相似文献   

6.
为了探讨中国尾凤蝶属的系统发生关系,对中国产4种尾凤蝶属蝴蝶的细胞色素氧化酶Ⅰ(COⅠ)基因的部分序列进行了分析.在获得的636bp的序列中,有59个变异位点,47个简约信息位点;A、T、G、C碱基的平均含量分别为29.5%、40.8%、13.9%及15.8%;表现出明显的A T含量(70.3%)偏异.采用NJ、MP、ML法构建了分子系统树,结果表明尾凤蝶属二尾种组与多尾凤蝶亲缘关系较近,而三尾凤蝶较早分化出来.同时结果表明丽斑尾凤蝶和二尾凤蝶的COⅠ基因没有序列差异.对这2个物种3个个体的COⅡ基因进行了测序,结果也没有序列的差异,表明丽斑尾凤蝶和二尾凤蝶可能是同物异名.而三尾凤蝶的遗传多样性较为贫乏.  相似文献   

7.
测定了分布于中国的锯眼蝶亚科4族10属共20个种的线粒体ND1和COI基因的部分序列,结合从GenBank中获得的4个国外种类的同源序列,以凤蝶科的迪洛尔娟凤蝶(Allancatria deyrolle)、丝带凤蝶(Sericinus montela),以及娟蝶科的西猛娟蝶(Parnassius simonius)为外类群,通过邻接法、最大简约法、最大似然法和贝叶斯法重建了分子系统树,分析了该亚科内主要类群的系统发生关系。分析结果表明:帻眼蝶族和锯眼蝶族具有较近的亲缘关系;黛眼蝶族不是单系群,该族中的黛眼蝶属、荫眼蝶属与眉眼蝶族具有较近的亲缘关系,带眼蝶属、藏眼蝶属、毛眼蝶属和帕眼蝶属聚合为一个独立的支系,其中带眼蝶属和藏眼蝶属在所有的分析方法中均以100%的置信度(BP=100%,PP=1.00)相聚合,建议将它们合并为一属。  相似文献   

8.
菜粉蝶线粒体基因组的全序列测定和分析   总被引:2,自引:0,他引:2  
目前关于蝶类线粒体基因组全序列及其分子进化的研究还不多见。本研究通过长PCR和引物步移法对菜粉蝶Pieris rapae Linnaeus线粒体基因组全序列进行了测定和初步分析。结果表明:菜粉蝶线粒体基因组全长15 157 bp, 包含13个蛋白编码基因、22个tRNA和2个rRNA基因以及1个非编码的控制区域, 它们的长度分别是11 196 bp, 1 474 bp, 2 093 bp和393 bp。37个基因的位置与已报道的其他蝶类基本一致, 共有10对基因间存在总共59 bp的重叠, 重叠碱基数在1~35 bp之间; 基因间隔序列共计13处120 bp, 间隔长度1~46 bp不等, 最大的基因间隔46 bp, 位于tRNAIle和tRNAGln基因之间。另外, 基于13个蛋白质编码基因的氨基酸序列, 重建了基于蛋白质编码基因序列数据的11种代表性蝶类的NJ和MP系统树。结果表明:凤蝶类(包括凤蝶和绢蝶)为一大支系, 粉蝶类、 灰蝶类与蛱蝶类(包括蛱蝶、 珍蝶)构成另一大支系。结果不支持粉蝶科与凤蝶科(包括凤蝶类和绢蝶类)构成单系群, 却显示粉蝶科、 灰蝶科和蛱蝶科的组合为单系群。  相似文献   

9.
蝗科高级阶元的分子系统发育(英文)   总被引:2,自引:0,他引:2  
迄今,蝗科内各分类阶元之间的系统发生关系大部分是未知的。本文用来自中国24种蝗科昆虫的12SrDNA和16SrDNA2个基因的联合序列(共795bp)数据,以锥头蝗科的锥头蝗(Pyrgomorpha conica)为外群,重建了分子系统树。研究结果表明,在12SrDNA与16SrDNA组成的联合数据中,转换的替代速率明显比颠换的替代速率高得多,核酸的替代已经发生了饱和。分子系统树表明:斑翅蝗亚科是一单系群,该亚科是一个合法的亚科,但斑腿蝗亚科和蝗亚科都不是单系群;斑翅蝗亚科在蝗科内是一个相对原始的类群,而稻蝗亚科比斑翅蝗亚科相对进化,比蝗科的其他亚科的种类相对原始。  相似文献   

10.
王乃馨  封霞  蒋国芳  方宁  轩文娟 《昆虫学报》2008,51(11):1187-1195
本研究基于Cytb 基因和COI基因的部分序列来推断17种蝗虫之间的系统发育关系。这17种蝗虫均采自国内,代表了蝗科(Acrididae)5个亚科:黑蝗亚科(Melanoplinae)、斑腿蝗亚科(Catantopinae)、刺胸蝗亚科(Cyrtacanthacridinae)、斑翅蝗亚科(Oedipodinae)和大足蝗亚科(Gomphocerinae)。采用联合序列方法进行分析,结果显示:Cytb 和COI联合序列长度为1 998 bp,其中A和T总含量为72.13%,G和C总含量为27.87%。联合序列共包含了889个保守位点,1 109个变异位点,在这些变异位点中有838个简约信息位点。系统发生树采用邻接法(NJ)、最大简约法(MP)和最大似然法(ML)进行构建。使用蜢总科的变色乌蜢Erianthus versicolor 和 Erianthus sp. 两个种作为外群。结果表明:大足蝗亚科和斑腿蝗亚科的单系性没有得到支持。斑翅蝗亚科内部各种聚成一个大支,在本研究中该亚科的单系性得到支持,与前人的研究结论相同。大足蝗亚科、斑腿蝗亚科、刺胸蝗亚科和黑蝗亚科这4科关系非常近,可以考虑将其合并为一个亚科。同时,我们发现基于Cytb和COI基因联合序列推断蝗科内各亚科间的系统发生关系并不十分可靠。  相似文献   

11.
Phylogenetic relationships among the Japanese papilionid butterflies were analyzed by comparing 783 nucleotide sequences of the mitochondrial gene encoding NADH dehydrogenase subunit 5 (ND5). Phylogenetic trees of the representative species from each family in the superfamily Papilionoidea revealed that the species of the family Papilionidae and those of all other families formed distinct clusters, with a few species of the family Hesperiidae (Hesperioidea) as an outgroup. In the phylogenetic trees of most Japanese species of the family Papilionidae with Nymphalis xanthomelas (Nymphalidae) as an outgroup, the tribe Parnassiini (Parnassiinae) formed a cluster, and the rest formed the other cluster in which the tribe Zerynthiini (Parnassiinae) and the subfamily Papilioninae formed different subclusters. In the Papilioninae cluster, the tribes Troidini and Graphiini formed a subcluster, and the tribe Papilionini formed the other subcluster. These results generally agree with the traditional classification of the papilionid butterflies based on their morphological characteristics and support the proposed evolutionary genealogy of the butterflies based on their morphology, behavior, and larval host plants, except that the tribes Parnasiini and Zerynthiini (both Parnassiinae) are not in the same cluster. Received: 16 March 1998 / Accepted: 28 April 1998  相似文献   

12.
Abstract. 1. The larvae of four swallowtail butterfly species, Papilio polyxenes Fabr. in the Papilionini, Parides bunichus (Hübner) and Battus polydamas (L.) in the Troidini, and Eurytides marcellus (Cramer) in the Graphiini, were grown on host leaves to which test compounds had been added.
2. The test chemicals are biosynthetically related. Berberine, a 1-benzyl-tetrahydroisoquinoline-related (1-BTIQ) alkaloid, is found in many rutaceous hosts of the Papilionini; laudanosine, a simpler 1-BTIQ alkaloid, is found in the Papaveraceae, plants on which no papilionids feed; aristolochic acids are found only in the Aristolochiaceae, hosts of the Troidini.
3. Swallowtail larvae can tolerate the compounds characteristic of their host plants, but not chemicals found in the hosts of other papilionid groups. Diets with laudanosine did not affect the test species.
4. Our results support the contention that plant secondary chemicals, such as berberine and aristolochic acids, are important feeding barriers, and are partially responsible for host specificity in swallowtails.  相似文献   

13.
从细胞色素b基因序列变异分析中国鲇形目鱼类的系统发育   总被引:18,自引:0,他引:18  
采用PCR技术获得中国鲇形目鱼类11科24属27个代表种类细胞色素b基因1138bp全序列,比较分析了来自北美洲、非洲的部分鲇形目鱼类同一基因序列,并选取脂鲤目、鲤形目和鲱形目鱼类作外类群,采用Bayesian方法和最大简约法(MP)构建分子系统树。结果表明:(1)鲇形目鱼类细胞色素b基因序列中,与脂鲤目、鲤形目以及鲱形目鱼类相比存在3bp的缺失;(2)鲇形目鱼类各科代表种类形成一单系群;(3)两种建树方法均支持铫科、粒鲇科和钝头鮠科形成一单系群;而胡子鲇科、刀鲇科、海鲇科、鮰科、长臀鮠科、鲢科、鲇科、棘脂鲿科、鲿科形成一大的单系群;但鳗鲇科的系统位置两种建树方法没有取得一致结果;而其中长臀鲍科与北美的鮰科形成姐妹群,胡子鲇、鮰科、鲇科、鲿科和鮡科是较明显的单系群。  相似文献   

14.
The Botiinae have traditionally represented a subfamily of the Cobitidae. At present, the classification and phylogenetic relationships of the Botiinae are controversial. To address systematic and phylogenetic questions concerning this group, we sequenced the complete cytochrome b gene from 34 samples, of which 24 represented 13 species of the East Asian botiine fishes, while the other 10 were non-botiine loach species. For the 1140 bp sequences determined, 494 sites were variable ones, of which 424 were parsimony informative. With Myxocyprinus asiaticus as an outgroup, molecular phylogenetic trees were constructed using the neighbor-joining, maximum parsimony, maximum likelihood and Bayesian methods. All molecular phylogenetic trees revealed that botiine fishes form a monophyletic group and are distantly related to other loaches, suggesting that the Botiinae should be placed in their own family. Within the Botiinae, there are three genera; Botia, Parabotia, andLeptobotia, each genus forming a monophyletic group, with the genus Botia as the most ancestral split. Our molecular results are in agreement with morphological analyses of botiines, suggesting that Botia is the ancestral genus, while Leptobotia and Parabotia were resolved as more derived sister groups.  相似文献   

15.
采用分子系统学方法对鹟亚科(Muscicapinae)6属31种鸟类的cytb基因序列992bp进行系统发生分析。以荒漠伯劳(Lanius isabellinus)和发冠卷尾(Dicrurus hottentottus)为外群,采用贝叶斯法(Bayesian,BI)、最大似然法(Maximum-likelihood,ML)和最大简约法(Maximumparsimony,MP)分别构建鹟亚科的系统发育树。结果支持:寿带属(Terpsiphone)、扇尾鹟属(Rhipidura)与方尾鹟属(Culicicapa)可从鹟亚科中移出,其中寿带属归入王鹟科(Monarchidae),扇尾鹟属与方尾属归入扇尾鹟科(Rhipiduridae);鹟属(Muscicapa)、仙鹟属(Niltava)为单系发生,并聚为姐妹群,亲缘关系较近;姬鹟属(Ficedula)并非单系发生,白眉姬鹟(Ficedulazanthopygia)在3种系统发生树中的位置差别较大,研究结果未能确定其分类地位;铜蓝(Muscicapa thalassina)与白腹蓝(Cyanoptila cyanomelana)亲缘关系较近,前者应从属中移出,后者应从姬属移出,共同归入仙属或列为仙属的姐妹属。上述结论解决了亚科部分有争议属、种间的进化关系,为亚科分类系统提供了DNA水平证据。  相似文献   

16.
&#  &#  &#  &#  &#  &#  &#  &#  &#  &#  &#  &#  &#  &#  &#  &#  &# 《水生生物学报》2015,39(4):766-773
为探讨COⅠ基因作为条形码在胡椒鲷亚科鱼类物种鉴定的可行性, 研究测定了胡椒鲷亚科8种鱼类51个个体线粒体COⅠ基因长度为651 bp的序列, 利用MEGA 5.0计算胡椒鲷亚科种内与种间的遗传距离, 基于最大似然法与贝叶斯法构建了系统进化树。结果显示: 胡椒鲷亚科鱼类种间平均遗传距离(0.142)显著大于种内平均遗传距离(0.003), 物种间遗传距离均大于Hebert推荐的物种鉴定最小种间遗传距离0.020(2%)。系统进化树上, 同一物种不同个体间均能形成独立的单系分支, 表明COⅠ基因可作为胡椒鲷亚科物种鉴定的有效条形码基因。研究同时揭示, 在形态分类上被认为是同种异名的两种胡椒鲷(条纹胡椒鲷与东方胡椒鲷)的COⅠ基因序列差异达到0.070, 有可能是两个独立的物种。此外, 在属级水平, 少棘胡椒鲷属与胡椒鲷属种类之间的平均遗传距离小于胡椒鲷属内部种间的遗传距离, 支持少棘胡椒鲷归属于胡椒鲷属的观点。    相似文献   

17.
To infer the monophyletic origin and phylogenetic relationships of the order Desmoscolecida, a unique and puzzling group of mainly free-living marine nematodes, we newly determined nearly complete 18S rDNA sequences for six marine desmoscolecid nematodes belonging to four genera (Desmoscolex, Greeffiella, Tricoma and Paratricoma). Based on the present data and those of 72 nematode species previously reported, the first molecular phylogenetic analysis focusing on Desmoscolecida was done by using neighbor joining (NJ), maximum parsimony (MP), maximum likelihood (ML) and Bayesian inference (BI) methods. All four resultant trees consistently and strongly supported that the family Desmoscolecidae forms a monophyletic group with very high node confidence values. The monophyletic clade of desmocolecid nematodes was placed as a sister group of the clade including some members of Monhysterida and Araeolaimida, Cyartonema elegans (Cyartonematidae) and Terschellingia longicaudata (Linhomoeidae) in all the analyses. However, the present phylogenetic trees do not show any direct attraction between the families Desmoscolecidae and Cyartonematidae. Within the monophyletic clade of the family Desmoscolecidae in all of the present phylogenetic trees, there were consistently observed two distinct sub-groups which correspond to the subfamilies Desmoscolecinae [Greeffiella sp. + Desmoscolex sp.] and Tricominae [Paratricoma sp. + Tricoma sp].  相似文献   

18.
本研究选取优茧蜂亚科Euphorinae(膜翅目Hymenoptera:茧蜂科Braconidae)的8族19属23种作为内群,茧蜂其它6个亚科的8属8种作外群,首次结合同源核糖体28S rDNA D2基因序列片段和41个形态学特征对该亚科进行了系统发育学研究。利用"圆口类"的内茧蜂亚科Rogadinae、茧蜂亚科Braconinae、矛茧蜂亚科Doryctinae的3个亚科为根,以PAUP*4.0和MrBayes3.0B4软件分别应用最大简约法(MP)和贝叶斯法对优茧蜂亚科的分子数据和分子数据与非分子数据的结合体进行了分析;并以PAUP*4.0对优茧蜂亚科的28S rDNA D2基因序列的片段的碱基组成与碱基替代情况进行了分析。结果表明:优茧蜂亚科的28S rDNA D2基因序列片段的GC%含量在40.00%~49.25%之间变动,而对于碱基替代情况来讲,优茧蜂亚科各个成员间序列变异位点上颠换(transversion)大于转换(transition);不同的分析和算法所产生的系统发育树都表明目前根据形态定义出的优茧蜂亚科Euphorinae不是一个单系群,而是一个与蚁茧蜂亚科Neoneurinae和高腹茧蜂亚科Cenocoelinae混杂在一起的并系群;在优茧蜂亚科内部,悬茧蜂族Meterorini和食甲茧蜂族Microctonini(排除猎户茧蜂属Orionis)为单系群,而宽鞘茧蜂族Centistini、大颚茧蜂族Cosmophorini、优茧蜂族Euphorini、瓢虫茧蜂族Dinocampini为并系群;悬茧蜂族Meterorini在优茧蜂亚科Euphorinae内位于基部位置的观点得到部分的支持,同时食甲茧蜂族Microctonini被判定为相对进化的类群。此外对于优茧蜂亚科内各属之间的相互亲缘关系,不同算法所得到的系统发育属的结果不完全一致,这表明优茧蜂亚科内(属及族)的系统发育关系还有待于进一步研究。  相似文献   

19.
In the present study, we investigated the intrageneric and intergeneric phylogenetic relationships of the heterotrophic marine dinoflagellate genus Protoperidinium. Using single‐cell polymerase chain reaction methods, we determined small subunit ribosomal RNA gene sequences for 10 Protoperidinium species belonging to four sections and two subgenera. Phylogenetic trees were constructed using maximum parsimony, neighbor joining and maximum likelihood methods. We found intraspecific variability of small subunit rDNA sequences in Protoperidinium conicum (Gran) Balech, Protoperidinium crassipes (Kofoid) Balech and Protoperidinium denticulatum (Gran et Braarud) Balech, but not in other species. The small subunit rDNA phylogeny revealed that the genus is monophyletic, but its phylogenetic position within the Dinophyceae could not be determined because of ambiguous basal topologies. Within the genus Protoperidinium, species of the subgenus Archaeperidinium with two anterior intercalary plates (2a) were shown to be monophyletic, but species of the subgenus Protoperidinium with three anterior intercalary plates (3a) were resolved as paraphyletic. The sections Avellana, Divergentia and Protoperidinium were shown to be monophyletic, while the section Conica was paraphyletic. Based on the trees obtained in the present study, most of the traditionally defined sections are supported by molecular phylogeny. It was also indicated that the section Avellana evolved from one of the Conica‐type dinoflagellates.  相似文献   

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