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1.
野蚜蝇Syrphus torvus(Osten-Sacken)成虫具访花习性,是重要的传粉昆虫;幼虫捕食蚜虫,是蚜虫重要天敌之一.本研究通过高通量测序、组装拼接获得了完整的野蚜蝇线粒体基因组全序列(GenBank登录号:MW074962),其序列全长为16 444 bp,包含13个蛋白编码基因(PCGs)、22个tRNAs、2个rRNAs和D-loop区.野蚜蝇线粒体全序列A+T含量为80.6%,G+C含量为19.4%,表现出明显的A+T偏斜.除了 COXI、ATP8、ATP6和ND1的起始密码子为TTG,其它9个PCGs以ATN为起始密码子;COXI的终止密码子为不完整的T--,ATP6为TAG,其余11个PCGs的终止子为TAA.22个tRNAs的二级结构均为典型的三叶草结构,并预测了野蚜蝇rRNAs的二级结构.野蚜蝇D-loop区存在重复序列和茎环结构,22种蚜蝇科基因间隔区与重叠区具有6个保守区域.基于24个物种(22个蚜蝇科和2个缟蝇科)的PCGs序列,通过贝叶斯法(BI)和最大似然法(ML)构建系统发育树,结果显示,野蚜蝇和黑足蚜蝇Syrphus vitripennis互为姊妹种,支持了蚜蝇亚科Syrphinae的单系性,两种拓扑结构中管蚜蝇亚科Eristalinae均没有聚为一支.该研究结果丰富了蚜蝇科线粒体基因组学基本数据,为进一步深化蚜蝇科系统发育关系讨论提供了参考.  相似文献   

2.
【目的】线粒体基因组分析是研究昆虫系统发育的重要手段。本研究通过测定麻竖毛天牛Thyestilla gebleri(Faldermann,1835)线粒体基因组,比较分析天牛科Cerambycidae线粒体基因组的特征,进而初步探讨麻竖毛天牛系统发育地位和天牛科部分类群之间的系统进化关系。【方法】采用引物步移法测定麻竖毛天牛线粒体基因组全序列。参照Gen Bank收录的16种天牛线粒体基因组序列进行基因注释;采用在线软件t RNAscan-SE Search Server对转运RNA(t RNA)的二级结构进行了预测。通过对16种天牛的线粒体基因组进行重新注释,结合本研究获得的麻竖毛天牛线粒体基因组进行序列特征比较分析。基于11个蛋白编码基因的核苷酸序列,利用最大似然法构建了天牛科17种天牛的系统发育树。【结果】麻竖毛天牛线粒体基因组全长15 505 bp,A+T含量为74.07%,包含13个蛋白编码基因(PCGs),2个核糖体RNA(r RNA)基因,22个t RNA基因和一个长度为872 bp的控制区,未发现基因重排。通过比对17种天牛的线粒体基因组,发现长翅暗天牛Vesperus conicicollis一个t RNA(trn P)基因的移位。17种天牛的t RNA中,trn S1(AGN)的D臂均缺失,其余t RNA都具有典型的三叶草结构。大部分种类的蛋白编码基因起始密码子为典型的ATN(ATA、ATT、ATC、ATG),只有部分种类的Nad1、COI、ATP8基因存在特殊的起始密码子(TTG、AAC、AAT、GTG),终止密码子均为常见的TAR(TAA、TAG)或不完全的T和TA。系统发育树中,6个亚科分别单独分支,其中,麻竖毛天牛与云斑白条天牛Batocera lineolata聚为一支。【结论】麻竖毛天牛线粒体基因组符合天牛线粒体基因组的一般特征;除少数t RNA基因存在重排外,天牛科线粒体基因排列相对稳定;基于线粒体基因组的系统发育分析支持天牛科6个亚科的单系性,麻竖毛天牛和云斑白条天牛亲缘关系较近。  相似文献   

3.
【目的】蚜虫是杂食性农业害虫。本研究旨在通过线粒体基因组分析更好地了解蚜科昆虫的系统发育关系。【方法】结合第二代测序和PCR扩增技术获得了烟蚜Myzus persicae线粒体基因组全序列,与蚜科其他昆虫进行了对比分析;以贝叶斯法和最大似然法基于13个蛋白编码基因对蚜科进行了系统发育分析。【结果】烟蚜线粒体基因组(Gen Bank登录号:KU_236024)序列全长17 832 bp,A+T含量84.1%,AT偏斜为0.094,GC偏斜为-0.296。包含13个蛋白编码基因(cox1-3,nad1-6,nad4L,atp6,atp8和cytb),22个tRNA,2个rRNA基因(rrn L和rrn S)和2个长的非编码区,其基因排列顺序与已知的蚜科昆虫相似,除了nad4以单独的T结尾,所有的蛋白编码基因均以ATN作为起始密码子,TAA作为终止密码子。在烟蚜线粒体基因组中,tRNAGlu和tRNAPhe中间有一段307 bp的非编码区,该编码区包含2个重复单元,烟蚜的控制区长2 531 bp,是所有测序蚜虫线粒体基因组中最长的。rrn L的二级结构包含6个结构域,44个茎环结构;rrn S的二级结构有3个结构域,24个茎环结构。基于烟粉虱和其他20种昆虫的13个蛋白编码基因重建的BI和ML系统发育树,与传统形态学分类结果一致。【结论】蚜亚科和长管蚜亚科的单系性得到了很好的支持;在长管蚜亚科的分支中,M.persicae与D.noxia聚成一支,并且C.salicicola位于进化枝的底部。本研究结果为蚜科系统发生关系重建积累了有价值的数据资料。  相似文献   

4.
唐秀娟  姜立云  陈静  乔格侠 《昆虫学报》2015,58(11):1262-1272
【目的】粉毛蚜亚科昆虫是重要的林业害虫,但是由于蚜虫体型较小,形态特征趋于简化,可用于物种鉴定的有效特征非常有限,因此一般基于外部形态特征难以对蚜虫物种实现快速准确的鉴定。本研究获取该亚科2属10种的DNA条形码标准序列,解决部分物种的分类问题,同时比较了3种标记对粉毛蚜亚科(Pterocommatinae)物种快速鉴定的效率。【方法】基于蚜虫的线粒体细胞色素氧化酶C亚基I(cytochrome oxidase subunit I, COI)基因、细胞色素b(cytochrome b, Cytb)基因和蚜虫初级内共生菌Buchnera 6-磷酸葡萄糖酸脱氢酶(gluconate-6-phosphate dehydrogenase, gnd)基因,对2属10种共197号样品进行NJ分析、遗传距离的计算以及基于相似性的物种鉴定分析。【结果】与K-2P模型相比,基于p-distance模型计算得到的遗传距离更小,序列差异频次图上种内距离与种间距离的重叠区域也小于前者;COI序列的物种鉴定成功率最高。获取了粉毛蚜亚科近200条DNA条形码标准序列,并建立了基于3个标记的该亚科物种DNA条形码序列库。【结论】在粉毛蚜亚科DNA条形码研究中,p-distance模型要优于K-2P模型;COI序列具有最高的条形码分析效率;增毛卷粉毛蚜Plocamaphis assetacea可能为蜡卷粉毛蚜Plocamaphis flocculosa的同物异名。  相似文献   

5.
【目的】测序和分析黄侧异腹胡蜂Parapolybia crocea线粒体基因组,并在线粒体基因组水平探讨异腹胡蜂属Parapolybia在胡蜂科中的系统发育地位。【方法】用Illumina二代测序技术测定黄侧异腹胡蜂线粒体基因组全序列,分析其结构特点和碱基组成;使用最大似然法(maximum likelihood,ML)构建胡蜂科7个种线粒体基因组的系统发育树,分析其在胡蜂科中的系统发育关系。【结果】黄侧异腹胡蜂线粒体基因组全长16 619 bp(Gen Bank登录号:KY679828),包含13个蛋白质编码基因,22个t RNA基因,2个r RNA基因(rrn S和rrn L)和1个控制区,基因排列顺序与推测的昆虫祖先序列不完全一致;全部蛋白质编码基因的起始密码子均为ATN,终止密码子除CYTB和ND1为TAG外,其余均为TAA;除t RNASer(AGN)的DHU臂缺失外,其他t RNA均能折叠成典型的三叶草结构;控制区中存在一个18 bp的T-stretch结构和2段串联重复序列。胡蜂科7个种基于线粒体基因组的系统发育关系表现为蜾蠃亚科+(胡蜂亚科+马蜂亚科),异腹胡蜂属与马蜂属Polistes同属于马蜂亚科。【结论】黄侧异腹胡蜂线粒体基因组存在基因重排现象。基于线粒体基因组的胡蜂科系统发育关系与传统的形态分类学结果一致:异腹胡蜂属隶属于马蜂亚科,马蜂亚科与胡蜂亚科的亲缘关系较其与蜾蠃亚科更近。  相似文献   

6.
为探究玉米蚜(Rhopalosiphum maidis)线粒体基因组结构特征及蚜族(Aphidini)的系统发育关系,本研究利用高通量测序技术测定了玉米蚜线粒体基因组全序列。选择已知的蚜族18个物种线粒体基因组作为内群,选择长管蚜族(Macrosiphini)2个物种线粒体基因组作为外群,利用最大似然法(maximum likelihood method)和贝叶斯法(Bayesian inference method)重建蚜族的系统发育关系。玉米蚜的线粒体基因组全长为15 096 bp,呈环状,包括13个蛋白质编码基因(protein-coding genes)、 22个tRNA基因和2个rRNA基因,还有一段非编码控制区。13个蛋白质编码基因的起始密码子全为ATN; 3个蛋白质编码基因cox1、nad4和nad5具有不完整的终止密码子T或TA,其余10个蛋白质编码基因为完整的终止密码子TAA或TAG。本研究利用线粒体基因组数据重建了蚜族的系统发育关系,最大似然法和贝叶斯法构建的蚜族的系统发育关系是基本一致的。其中,色蚜属(Melanaphis)、桃粉蚜属(Hyalopterus)、蚜...  相似文献   

7.
张锋  洪波  王远征  李英梅  陈志杰 《昆虫学报》2019,62(11):1305-1314
【目的】从线粒体基因组水平上探讨枣食芽象甲Scythropus yasumatsui与近缘种的系统发育关系。【方法】利用Illumina MiSeq测序平台对枣食芽象甲线粒体基因组进行测序,对基因组序列进行拼装、注释和特征分析;利用贝叶斯法和最大似然法构建基于象甲科13个物种的线粒体基因组13个蛋白质编码基因核苷酸序列的系统发育树。【结果】结果表明,枣食芽象甲线粒体基因组全长为16 472 bp (GenBank登录号: MF807224),包含13个蛋白质编码基因、22个tRNA基因、2个rRNA基因和2个非编码控制区,37个基因的排列顺序与祖先昆虫的线粒体基因排列顺序一致。13个蛋白质编码基因的起始密码子为ATN,其中除了cob和nad1基因的完全终止密码子为TAG外,其余11个基因的完全终止密码子为TA(A)。22个tRNA基因中除了trnS1缺少DHU臂,反密码子由GCT变为TCT外,其余均能形成典型的三叶草结构。基于13个蛋白质编码基因序列构建的系统发育树结果显示,象甲科8个亚科系统发育关系为:(((隐喙象亚科(Cryptorhynchinae)+(象虫亚科(Curculioninae)+魔喙象亚科(Molytinae)))+长小蠹亚科(Platypodinae))+(粗喙象亚科(Entiminae)+Cyclominae亚科))+隐颏象亚科(Dryophthorinae)+小蠹亚科(Scolytinae))。【结论】在13种象甲科昆虫物种中,同属于粗喙象亚科的枣食芽象甲与南美果树象甲Naupactus xanthographus在系统发育树中聚为同一分支,表明基于线粒体基因组全序列的分子系统发育结果与传统的形态分类结果是一致的。  相似文献   

8.
田天  袁缓  陈斌 《昆虫学报》1950,63(8):1016-1027
【目的】明确肉食亚目(Adephaga)水生类群线粒体基因组的基本特征,并基于线粒体基因组序列分析肉食亚目水生类群的系统发育关系。【方法】基于Illumina HiSeq X Ten测序技术测定了圆鞘隐盾豉甲Dineutus mellyi和齿缘龙虱Eretes sticticus的线粒体全基因组序列,对其进行了基因注释,并对其tRNA基因二级结构进行了预测分析。加上已公布的鞘翅目(Coleoptera)肉食亚目水生类群17个种的线粒体基因组序列,对该类群共19个种线粒体的蛋白质编码基因(protein-coding genes, PCGs)开展了比较基因组学分析,包括AT含量、密码子偏好性、选择压力等。基于13个PCGs的氨基酸序列和核苷酸序列,利用最大似然法(ML)和贝叶斯法(BI)分别构建鞘翅目肉食亚目水生类群的系统发育关系,并通过FcLM分析进一步评估伪龙虱科(Noteridae)和瀑甲科(Meruidae)的系统发育位置。【结果】圆鞘隐盾豉甲和齿缘龙虱的线粒体基因组全长分别为16 123 bp(GenBank登录号: MN781126)和16 196 bp(GenBank登录号: MN781132),都包含13个PCGs、22个tRNA基因、2个rRNA基因和1个D-loop区(控制区)。19个肉食亚目水生类群线粒体基因组PCGs的碱基组成都呈现A+T偏好性,在密码子使用上也都偏向于使用富含A+T的密码子;在进化过程中13个PCGs的进化模式相同,都受到纯化选择。基于线粒体基因组13个PCGs的氨基酸序列的肉食亚目水生类群的系统发育关系为(豉甲科Gyrinidae+(沼梭甲科Haliplidae+((壁甲科Aspidytidae+(两栖甲科Amphizoidae+龙虱科Dytiscidae))+(水甲科Hygrobiidae+(瀑甲科Meruidae+伪龙虱科Noteridae)))))。【结论】研究结果表明,豉甲科是肉食亚目水生类群的基部类群,接下来是沼梭甲科和龙虱总科;伪龙虱科和瀑甲科互为姐妹群,并一起作为龙虱总科内部的一个分支;两栖甲科与龙虱科具有更近的亲缘关系。  相似文献   

9.
李荣荣  李敏  孙珊珊  闫江  张虎芳  白明 《昆虫学报》2022,65(10):1343-1353
【目的】本研究对红角辉蝽Carbula crassiventris和紫翅果蝽Carpocoris purpureipennis完整线粒体基因组测序,以探究蝽亚科(Pentatominae)线粒体基因组特征并重建其系统发育关系。【方法】使用Illumina MiSeq测序平台测定红角辉蝽和紫翅果蝽线粒体基因组全序列,并进行组装和注释。基于这2个种和其他30个蝽亚科分类单元线粒体基因组的13个蛋白质编码基因的第1和2位密码子以及2个rRNA基因的核苷酸序列,利用贝叶斯和最大似然法重建蝽亚科系统发育树。【结果】红角辉蝽和紫翅果蝽的线粒体基因组全长分别为15 824 和16 575 bp, 包含13个蛋白质编码基因、2个rRNA基因、22个tRNA基因和1个控制区。蝽亚科内线粒体基因组基因排列顺序保守且没有发现基因重排。此外,蝽亚科内的碱基组成、密码子使用和RNA结构均较为保守; 控制区重复序列拥有不同的长度、类型和拷贝数。基于贝叶斯法和最大似然法重建的系统发育树显示二星蝽族(Eysarcorini)、果蝽族(Carpocorini)、稻绿蝽族(Nezarini)和Antestiini构成一个稳定分枝。【结论】系统发育分析支持辉蝽属Carbula应属于二星蝽族,而果蝽属Carpocoris、斑须蝽属Dolycoris和珠蝽属Rubiconia同属于果蝽族。  相似文献   

10.
【目的】了解小红珠绢蝶Parnassius nomion线粒体基因组的特征,并从线粒体基因组水平探究蝶类高级阶元的系统发育关系。【方法】采用PCR扩增技术及Sequencher 4.8拼接软件获得小红珠绢蝶线粒体基因组全序列。参考鳞翅目昆虫已知线粒体基因组全序列并使用MEGA6.0软件对小红珠绢蝶线粒体基因组中各基因进行定位和注释。采用tRNA Scan-SE 1.21在线预测小红珠绢蝶线粒体基因组tRNA基因的二级结构。基于线粒体基因组13个蛋白质编码基因的核苷酸序列重建了包含凤蝶总科中凤蝶科(Papilionidae)、绢蝶科(Parnassiidae)、粉蝶科(Pieridae)、眼蝶科(Satyridae)、蛱蝶科(Nymphalidae)、灰蝶科(Lycaenidae)、斑蝶科(Danaidae)、珍蝶科(Acraeidae)、喙蝶科(Libyheidae)和蚬蝶科(Riodinidae)10个科28种蝴蝶的系统发育关系。【结果】结果表明,小红珠绢蝶线粒体基因组全序列总长度为15 362 bp(Gen Bank登录号:MF496134),包含13个蛋白质编码基因、22个tRNA基因、2个rRNA基因和1个A+T富含区。小红珠绢蝶线粒体基因组中存在较高的A+T含量(79.6%)。小红珠绢蝶线粒体基因组13个蛋白质编码基因中UUA的相对同义密码子使用频率(RSCU)最高(5.08),而AGG和CCG相对同义密码子使用频率(RSCU)均较低(0),这与大紫蛱蝶Sasakia charonda coreana的分析结果一致。在所测得的22个tRNA基因中,除tRNASer(AGN)缺少DHU臂外,其余tRNA基因均能形成典型的三叶草结构,这与鳞翅目中目前已得到的其他昆虫线粒体基因组中tRNA基因的二级结构一致。系统发育分析结果显示,凤蝶总科内蚬蝶科与灰蝶科的亲缘关系最近;粉蝶科与蛱蝶科、珍蝶科、眼蝶科、斑蝶科、喙蝶科、蚬蝶科和灰蝶科的系统发育关系更近;绢蝶科与凤蝶科锯凤蝶亚科亲缘关系最近,随后二者与凤蝶亚科物种聚为一支。在绢蝶科中,小红珠绢蝶与依帕绢蝶Parnassius epaphus的亲缘关系最近。【结论】本研究支持绢蝶科物种归为绢蝶亚科,绢蝶亚科、锯凤蝶亚科和凤蝶亚科归入凤蝶科,且绢蝶亚科与锯凤蝶亚科为姐妹群。  相似文献   

11.
Aphidinae is the most diverse major lineage of aphids (Aphididae). Aphidinae currently dominate the temperate, northern-hemisphere fauna, but only since the late Tertiary, and few species are native to the southern hemisphere. The success of Aphidinae may be linked to the evolution of an unusual life cycle, host alternation. The classification and phylogeny of Aphidinae have been controversial; schemes based on morphology have been confounded by widespread homoplasy. Here we present the first phylogenetic study of higher-level Aphidinae relationships based on molecular data (elongation factor-1alpha, leucine tRNA, and cytochrome oxidase II sequences). Analyses supported the monophyly of Aphidini and its subtribes, Aphidina and Ropalosiphina, but revealed novel relationships concerning Pterocommatini and Macrosiphini, with the former nested within the latter tribe as the sister to Cavariella. Several relationships within Pterocommatini + Macrosiphini corresponded better with host-plant affiliations than with aphid classification. Overall, relationships found here challenge several traditional views of Aphidinae evolution: they suggest more than one origin of host alternation in the family, and they question the assumption that Aphidinae originated in the northern hemisphere.  相似文献   

12.
Many aphids display a remarkably complex life cycle of host alternation, in which cyclical parthenogenesis is combined with the obligate use of two unrelated host plants. We used mitochondrial ribosomal DNA (partial 12S and 16S) sequences to reconstruct the phylogeny of aphids, to determine how many origins of host alternation and correlated major host-plant shifts have occurred. Our results agreed with previous morphological studies in that species clustered with good support at the level of tribes. There was little well-supported phylogenetic structure at levels deeper than tribes, however, except for the monophyly of two subfamilies, Aphidinae and Lachninae. We argue that aphids experienced a rapid radiation at the tribal level, after host shifting from gymnosperms to angiosperms. A rapid radiation is consistent with aphid fossils, which record the presence of few subfamilies in the late Cretaceous, but most extant tribes by the early Tertiary. Plant fossils also record host plants of aphid tribes diversifying during this time. A hypothesized mechanism by which host alternation has evolved (fundatrix specialization), coupled with the rapid radiation, implies that this life cycle may have originated as often as in the ancestor of each tribe that displays it. We also consider, however, an alternative hypothesis of fewer origins. The basal radiation of Aphididae was dated from molecular sequences to have occurred at approximately 80–150 Mya.  相似文献   

13.
Over the past dozen years, considerable effort has been devoted to unravelling the higher‐level phylogenetic relationships of viviparous aphids (Aphididae). However, to date, there is still no commonly accepted phylogenetic hypothesis. In this study, we establish a robust phylogenetic framework for the Aphididae based on mitochondrial genome sequences of 35 aphid species, 22 of which are newly reported. Phylogenetic inferences are performed using multiple data sets, alternative partitioning schemes and different model‐based methods. Our analyses result in well‐supported backbone relationships for the major lineages of aphids, suggesting the feasibility of mitogenome data for resolving phylogenetic questions in aphids. Mindarinae is strongly supported as the earliest branching lineage within Aphididae. A monophyletic clade comprising Calaphidinae, Phyllaphidinae and Saltusaphidinae is corroborated to be the sister group to the species‐richest subfamily Aphidinae. In addition, the morphologically defined subfamily Eriosomatinae is uncovered to be non‐monophyletic.  相似文献   

14.
Viviparous aphids (Aphididae) constitute a monophyletic group within the Homoptera with more than 4000 extant species worldwide but higher diversity in temperate regions. Several aspects of their biology account for attention paid to this group of insects. Their plant-sap-sucking way of feeding with many species transmitting viruses to crop plants has important implications on crop management strategies. Cyclical parthenogenesis associated in many groups to host alternation and elaborate polyphenisms is of special interests for evolutionists. Finally, the ancient association of most aphid species with intracellular endosymbiotic bacteria (Buchnera sp.) has also received much attention from evolutionists interested in mechanisms involved in the symbiotic process. Knowing the phylogenetic relationships among major aphid taxa is of special interest to evolutionists interested in the above issues. However, until recently, molecular approaches to aphid phylogeny were absent and discussions on the evolution of aphid life-cycles and on evolutionary aspects of their symbiotic association with Buchnera were framed by morphology-based phylogenies. Recently, two reports using molecular approaches attempted to address the yet unresolved phylogeny of Aphididae with limited although somehow different conclusions. In the present report we study the utility of the long-wave opsin gene in resolving phylogenetic relationships among seven subfamilies within the Aphididae. Our results corroborate some previously proposed relationships and suggest a revision of some others. In particular, our data support grouping the analysed aphid species into three main clades, being the subfamily Lachninae one of them, which contradicts its generally accepted sistership relationship with the subfamily Aphidinae. Moreover, our data also suggest a basal position of Lachninae which has implications on current discussions about the ancestrality of conifer-feeding in modern aphids.  相似文献   

15.
The complete nucleotide sequence (14,472 bp) of the mitochondrial genome of the nudibranch Roboastra europaea (Gastropoda: Opisthobranchia) was determined. This highly compact mitochondrial genome is nearly identical in gene organization to that found in opisthobranchs and pulmonates (Euthyneura) but not to that in prosobranchs (a paraphyletic group including the most basal lineages of gastropods). The newly determined mitochondrial genome differs only in the relative position of the trnC gene when compared with the mitochondrial genome of Pupa strigosa, the only opisthobranch mitochondrial genome sequenced so far. Pupa and Roboastra represent the most basal and derived lineages of opisthobranchs, respectively, and their mitochondrial genomes are more similar in sequence when compared with those of pulmonates. All phylogenetic analyses (maximum parsimony, minimum evolution, maximum likelihood, and Bayesian) based on the deduced amino acid sequences of all mitochondrial protein-coding genes supported the monophyly of opisthobranchs. These results are in agreement with the classical view that recognizes Opisthobranchia as a natural group and contradict recent phylogenetic studies of the group based on shorter sequence data sets. The monophyly of opisthobranchs was further confirmed when a fragment of 2,500 nucleotides including the mitochondrial cox1, rrnL, nad6, and nad5 genes was analyzed in several species representing five different orders of opisthobranchs with all common methods of phylogenetic inference. Within opisthobranchs, the polyphyly of cephalaspideans and the monophyly of nudibranchs were recovered. The evolution of mitochondrial tRNA rearrangements was analyzed using the cox1+rrnL+nad6+nad5 gene phylogeny. The relative position of the trnP gene between the trnA and nad6 genes was found to be a synapomorphy of opisthobranchs that supports their monophyly.  相似文献   

16.
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18.
【目的】测定绿眼赛茧蜂Zele chlorophthalmus线粒体基因组全序列,分析其基因组结构及茧蜂科(Braconidae)部分类群的系统发育关系。【方法】利用Illumina MiSeq二代测序技术对绿眼赛茧蜂的线粒体基因组进行测序,对基因组序列进行拼装、注释,分析其结构特点和碱基组成;基于22种茧蜂科昆虫的COX1蛋白编码基因序列,应用最大似然法(ML)和邻接法(NJ)构建系统发育树,分析绿眼赛茧蜂与茧蜂科其他昆虫的系统发育关系。【结果】绿眼赛茧蜂线粒体基因组全长16 661 bp(GenBank登录号: MG822749),包含13个蛋白质编码基因、22个tRNA基因和2个rRNA基因,共37个基因,以及1个控制区。线粒体基因组有明显的核苷酸组成的偏倚,AT偏正,GC偏负,其A+T含量为82.83%。基因排列顺序与推测的昆虫祖先的序列不完全一致,tRNA基因7处发生重排。13个蛋白质编码基因均以ATN为起始密码子,以TAA为终止密码子。在22个tRNA基因二级结构中,除tRNAHis(H)缺失TΨC环和tRNACys(C)仅剩二氢尿嘧啶(DHU)臂和反密码子臂外,其余tRNA基因均能形成典型的三叶草结构。基于COX1蛋白编码序列的系统发育分析结果显示,与绿眼赛茧蜂亲缘关系最近的是同属于赛茧蜂属的雪跗赛茧蜂Z. niveitarsis。【结论】本研究首次获得绿眼赛茧蜂线粒体基因组全序列。结果表明绿眼赛茧蜂隶属于优茧蜂亚科(Euphorinae)赛茧蜂属,并支持赛茧蜂属的单系性。  相似文献   

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