984 resultados para phylogenetic relationship


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Repeats are two or more contiguous segments of amino acid residues that are believed to have arisen as a result of intragenic duplication, recombination and mutation events. These repeats can be utilized for protein structure prediction and can provide insights into the protein evolution and phylogenetic relationship. Therefore, to aid structural biologists and phylogeneticists in their research, a computing resource (a web server and a database), Repeats in Protein Sequences (RPS), has been created. Using RPS, users can obtain useful information regarding identical, similar and distant repeats (of varying lengths) in protein sequences. In addition, users can check the frequency of occurrence of the repeats in sequence databases such as the Genome Database, PIR and SWISS-PROT and among the protein sequences available in the Protein Data Bank archive. Furthermore, users can view the three-dimensional structure of the repeats using the Java visualization plug-in Jmol. The proposed computing resource can be accessed over the World Wide Web at http://bioserver1.physics.iisc.ernet.in/rps/.

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A família Zingiberaceae é a mais representativa da ordem Zingiberales, contendo mais de 1.000 espécies divididas em quatro subfamílias e seis tribos, amplamente distribuídas por todos os continentes. Nas últimas décadas houve um incremento nos estudos relativos à distribuição, o grau de especialização e a funcionalidade dos elementos de vaso em diversas famílias de monocotiledôneas. Entretanto, ainda existem poucos estudos que contribuam para o delineamento dos aspectos evolutivos e ecológicos das tribos de Zingiberaceae. Os objetivos desse trabalho são os de comparar a anatomia dos órgãos subterrâneos e aéreos de oito espécies de Zingiberaceae e estabelecer a distribuição dos elementos traqueais, bem como, o de determinar a especialização dos elementos de vaso de vinte e oito espécies pertencentes a três tribos Alpineae, Zingibereae e Globbeae. As espécies foram coletadas em áreas naturais protegidas e em áreas de cultivos particulares no estado do Rio de Janeiro. Os órgãos subterrâneos e aéreos foram processados de acordo com as técnicas usuais de microscopia óptica e eletrônica de varredura. A análise estrutural do eixo vegetativo das oito espécies pertencentes aos gêneros Alpinia, Renealmia, Curcuma, Hedychium e Zingiber indicam uma similaridade e mostram que os elementos de vaso estão restritos às raízes. Alguns caracteres estruturais dos elementos de vaso, como o tipo da placa de perfuração, o número de barras e o tipo de espessamento parietal se mostraram importantes para o estabelecimento da relação entre as subfamílias e tribos. Zingibereae e Globbeae reúnem estados de caracteres mais basais, como placa de perfuração escalariforme e espessamento parietal espiralado, e os mais derivados são encontrados na tribo Alpinieae, incluindo placa de perfuração simples e espessamento parietal parcialmente pontoado

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本文研究了茄科天仙子族7属以及有亲缘关系的颠茄属、茄参属和枸杞属的形态学、解剖学、孢粉学、种子形态学、胚胎学、花器官发生、分子系统学和分支系统学;论述了它们的结构、分化和系统关系。主要内容包括: 1.解剖学 在光学显微镜和扫描电镜下,观察了茄科天仙子族(Hyoscyameae)7属21种及邻近4属4种共25种植物的叶表皮特征,结果表明:气孔器在各种植物的上、下的表皮均有分布,多为无规则型,也有不等细胞型;叶表皮细胞形状有不规则形、十字形、近长圆形和不规则多边形,垂周壁较平直或各种波状。叶表皮气孔器外拱盖内缘近平滑、浅波状或波状;角质膜多为具条纹,也有同时具条纹和颗粒或鳞片,偶尔仅具颗粒和鳞片或光滑。气孔器类型可以作为区分部分属的依据之一。颠茄叶表皮细胞形状和垂周壁式样在一些属和种中有一定的规律性,并与外部形态、孢粉学性状或地理分布相关;叶片表面角质膜的特征对属和种的划分也有一定意义。 2.种子形态学 在扫描电子显微镜下首次全面研究了天仙子族及颠茄属和茄参属等共10属25种植物的种子形态学特征,结果表明: 该族植物种子表面纹饰有脑纹状或近脑纹状和网状两大类,除了山莨菪属Anisodus和Hyoscyamus.pusillus 外,其余类群均为网状。外种皮细胞形状和周壁式样有两大类,一类为多边形至近圆形,等径,周壁近平直,另一类为形状不规则,常不等径,周壁为各式波状;外种皮细胞周壁内侧有皱波状、瘤状、小颗粒、片状或小刺等各式附属物。各属植物的种子大小、形状及种脐着生位置的系统学意义不大。但是,种脐突出与否、种子外种皮细胞形状和周壁式样,尤其是周壁内侧附属物等性状具有较大的分类学意义。 3.孢粉学 在扫描电镜下研究了该族7属及其它3属共10属23种植物的花粉形态学特征。结果表明:天仙子族的花粉粒形状为球形、近球形、扁球形和长球形;萌发孔类型有无萌发孔、不规则的拟孔、3沟、4 沟、3- 4沟、散沟和3孔沟;外壁纹饰为小刺状、瘤状、各式条纹状、条纹-穴状、条纹-网状、皱波状、细网状和网状。沟膜近光滑、具小颗粒、具小刺状突起或具瘤状突起。各属植物的花粉形态在萌发孔的有无、萌发孔的类型和外壁纹饰等方面有较大的差异,可以作为探讨属间分类和系统关系的重要依据。天仙子族植物花粉萌发孔的演化趋势为:无萌发孔→ 3、4沟→3孔沟。无萌发孔的山莨菪属是原始类群,三孔沟的马尿泡和天仙子等属是进化类群。 4.胚胎学 本论文首次研究了天仙子族山莨菪Anisodus tanguticus的胚胎学特征,结果表明:山莨菪的小孢子形成为同时型,腺质绒毡层;胚珠半倒生,单珠被,薄珠心;蓼型胚囊;其胚胎发生类型可能为茄型;胚乳形成为细胞型。山莨菪的胚胎学性状与马尿泡十分相似。胚胎学证据支持山莨菪属与马尿泡属关系密切的观点。 5.花器官发生 首次全面研究了天仙子族的山莨菪属(山莨菪)、马尿泡属(马尿泡)、天仙子属(天仙子)及其邻近2属共5种植物的花器官发生特征,结果表明:山莨菪和天仙子的5个花萼裂片原基突起最早发生,且几乎是近同时环状发生,其排列方式从花发育早期直至花成熟后始终为轮状排列。而马尿泡和颠茄首先是5个花萼裂片原基突起依次螺旋状发生,但在其5个花萼裂片原基都出现后,其排列方式仍为轮状排列。不同之处是:马尿泡的花萼裂片原基在其花冠裂片原基刚刚不明显地发生时,就已经在基部联合并形成了一个环,而颠茄的花萼裂片原基直到雄蕊原基突起开始发生并较明显时,花萼裂片原基仍然是分离的,当花顶的中央开始出现很不明显的雌蕊原基的凹陷时,花萼裂片原基才开始联合。青海茄参与其它4种植物的不同之处在于柱头2裂或3裂,而后4者的柱头均为2裂。花器官发生的特征表明马尿泡与天仙子和山莨菪的关系较近。 6.基于叶绿体DNA trnL-F序列和核糖体DNA ITS序列的初步分析 以宁夏枸杞作为外类群,对代表天仙子族及其邻近3属的10种植物的ITS区和trnL-F序列进行了测定,将这两个序列结合构建系统树。将gaps作为fifth base处理时,马尿泡属和茄参属构成最基部的一支,赛莨菪属和天仙子属构成一支然后与泡囊草属构成姐妹群,另外一支由天蓬子属、颠茄属和山莨菪属组成,其中天蓬子属与颠茄属构成一支后与山莨菪属构成姐妹群。分子证据只是一个尝试,还不足以说明天仙子族各属的系统关系。 7.分支分析 以枸杞属为外类群,基于形态学、叶表皮、种子形态学、孢粉学等特征对天仙子族7属及颠茄属和茄参属进行了分支分析。结果表明:目前公认的天仙子族7属构成一个单系类群,而颠茄属和茄参属并没有包括在内,它们两者构成一支,并与天仙子族形成姐妹群的关系。这与该族传统的分类结果相一致。 8.天仙子族的分化和系统关系 基于上述研究结果,结合天仙子族各属的现代地理分布,讨论了各属的分化和系统关系。认为根据传统分类包括有7个属的天仙子族是一个自然的单系类群,目前还没有足够的证据说明是否应该将颠茄属和茄参属放在天仙子族中。

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旌节花科是东亚特有科,仅有旌节花属1属。本文研究了该科植物的生活习性、外部形态、花粉形态和外壁超微结构以及花器官发生,并根据多个DNA区段的序列探讨了科的系统位置和属下关系。在此基础上,综合各方面的证据,对旌节花科进行了全面的分类学修订,完善了该科的分类系统。主要内容包括:   1、习性和外部形态学   结合室内标本和野外考察,对旌节花科植物的生活习性、叶、花序、花和果实各个性状的变异式样、变异幅度、变异规律及其相关性进行了深入研究,并讨论了它们的分类学价值。结果表明:叶片形状、叶缘齿、花序下的叶片是否宿存以及花序是否具花序梗等性状在种间变异非常大,单个性状对旌节花属属下分类意义不大;而叶片毛被、脉序和结构,花序长度,花的大小和颜色以及果实大小等性状通常较稳定,可作为旌节花属划分种和变种的重要依据。   2、花粉形态学和外壁超微结构   在透射电镜下研究了旌节花属5个代表种和1个外类群(Crossosoma californicum)的花粉外壁超微结构,并在扫描电镜下研究了外类群Crossosomataceae 1个代表种(Crossosoma californicum)的花粉形态学特征,结合前人的研究,探讨了上述性状的分类学意义。结果表明:旌节花属植物花粉形态的共同特征是:花粉粒球形或近球形,三孔沟;外壁具穴状纹饰,穴较细小;外壁内壁分层明显,容易区分(柳叶旌节花除外),覆盖层光滑,几无附属物,柱状层明显,穿孔较少,不形成半覆盖层。各种植物花粉外壁超微结构的特征在旌节花属两个组中较一致,但其差异可作为探讨属下种的分类和系统学关系的依据。此外,对旌节花科和Crossosomataceae花粉表面纹饰和外壁超微结构的研究结果提示:这两个科与省沽油科和山茶科厚皮香亚科有较近缘的关系,而不支持这两个科的姐妹群关系。   3、花器官发生   首次对旌节花属常绿组和落叶组共2个代表种的花器官发生进行了研究,结果表明:该科植物花为功能性单性花,雌雄异株,花发育过程长达10个月,其中2-3个月是冬季休眠期。在花发育早期,雄花和雌花的发育没有差异,花性别的分化发生在花发育后期,即每年春天花开前后的2-3天,雌花中雌蕊的子房开始膨大,柱头伸长,胚珠多数,能育,而雄蕊逐渐干瘪收缩直至最后花粉不育;此时雄花的雄蕊发育良好,花丝粗壮发达,花药饱满,花粉能育,而雌蕊发育逐渐停滞直至败育。花器官发生方式为向心式,发生顺序为:苞片—外轮萼片—内轮萼片—花瓣—外轮雄蕊—内轮雄蕊—雌蕊。花萼4枚,两轮,交互对生,花瓣和雄蕊均4枚一轮几乎同时发生,花瓣覆瓦状排列。旌节花属常绿组和落叶组植物的花器官发生发育过程没有差别。   4、基于多个DNA区段序列的系统发育分析   首次选取进化速率较快的5个DNA区段:核核糖体ITS区和叶绿体rps16, ndhF,trnL-F及trnS-G-G区段,对旌节花属分别代表常绿组和落叶组的10种2变种及外类群Crossosomataceae和省沽油科3种植物的相关序列进行测定,并将上述序列合并构建系统树。研究结果表明:旌节花科作为一个单系群得到很好的支持。旌节花属落叶组和常绿组的划分在基于ITS、叶绿体4个区段单独分析及联合分析得到的系统树中没有得到支持,表现在该联合分析得到的树的两个分支与该属植物的习性和外部形态特征无关,而与它们的地理分布密切相关:其中一支主要分布在东亚的偏北部,另一支主要分布在东亚的南部地区,常绿和落叶的种类则混合在这两支中。此外,分子序列分析的结果对该属植物的分类、系统关系、起源和该科的系统位置均有重要意义。系统树显示出分布于台湾的S. sigeyosii与分布于日本的早春旌节花聚成稳定的一支,说明前者与后者,而不是与西域旌节花关系密切。叶绿体基因树与核基因树存在冲突,表明该属经历过网状进化。推测变种披针叶旌节花与云南旌节花可能是杂交起源。根据叶绿体rbcL序列得出的系统树显示旌节花科与产北美的Crossosomataceae的姊妹群关系支持率低于50%。基于最大似然树,运用罚分似然法推算出这两个科分化时间为68.25 ± 10.36 MYA,这两者共同与省沽油科近缘。   5、分类学研究   综合上述研究结果,对旌节花属进行了分类学修订。属下不设立组;确认该属植物有6种6变种,其中中国特有种3个,变种3个。5种5变种被作为新异名,新组合3个,其中2个改级新组合。对西域旌节花、云南旌节花和滇缅旌节花等进行了模式指定。本文还给出了分种和变种检索表、各类群的形态学描述、地理分布图、标本引证和讨论等。   

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Partial sequences of cytochrome b (Cyt b) and 16S ribosomal RNA (16S rRNA) mitochondrial genes were used for species identification and estimating phylogenetic relationship among three commercially important Ompok species viz. O. Pabda, O. pabo and O. bimaculatus. The sequence analysis of Cyt b (1118bp) and 16S rRNA (569 & 570bp) genes revealed that O. pabda, O. pabo & 0. bimaculatus were genetically distinct species and they exhibited identical phylogenetic relationship. The present study discussed usefulness of mtDNA genes (Cyt b & 16S rRNA) in resolving taxonomic ambiguity and estimating phylogenetics relationship.

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Mitochondrial cytochrome b genes of about 450 bp fragments from 3 proturan species, 5 collembolan species and 2 dipluran species have been sequenced. The number of nucleotide substitutions and Kimura 2-parameter distances have also been calculated, and a series of molecular phylogenetic trees reconstructed by using parsimony and distance methods. The proturan, collembolan and dipluran species have evolved monophyletic groups. The results suggest that Protura and Collembola are sister groups, while Diplura is more or less demonstrating a closer phylogenetic relationship to the pterygotan insects. The phylogeny and their systematic position of protura and other groups are also discussed.

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In this study, the region corresponding to the Thr-Gly region of the period (per) gene in the Drosophila nasuta subgroup of species was sequenced. The results showed, that this region was highly conserved in the D. nasuta subgroup. There were only nine variable sites found in this 300-bp-long region, all located in two small regions highly variable among Drosophila species. No length variation was observed either within this subgroup or in the Yunnan (YN) population of D. albomicans. The deduced amino acid sequences were identical for all 14 taxa in the D. nasuta subgroup, and a stretch of alternating Thr-Gly pairs was not observed in this subgroup. A phylogenetic tree was constructed. The clustering of some species was in general agreement with previous works, but it also raised some question on the phylogenetic relationship between the nasuta species. The data did not implicate the Thr-Gly region playing a role in behavioral isolation in this subgroup of Drosophila.

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The mitochondrial cytochrome oxidase II (Co II) from four different apterygotens Cryptopygus nanjiensis (Collembola), Neanura latior (Collembola), Gracilentulus maijiawensis (Protura) and Lepidocampa weberi (Diplura) were sequenced. Their A+T content, number of nucleotide substitutions, TV/TV ratio; and Tamura-Nei's distance were calculated. A series of phylogenetic trees were constructed by parsimony and distance methods using a crustacean Artemia franciscana as outgroup, Finally the evolutionary trend A+T content of CO II genetic divergence and phylogenetic relationship of apterygotan groups were discussed.

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The phylogenetic relationship of Hexapoda has been debated for a long time, which will be resolved mainly depending on the settlement of monophyly, affinities and interrelationships among Protura, Collembola and Diplura. Mitochondrial 12sRNA gene about 35

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The phylogenetic relationship of several subspecies of Ovis ammon were analyzed by comparing DNA sequences within the entire mitochondrial D-loop region. Five putative subspecies of ammon (dalai-lamae, darwini, hodgsoni, sairensis and adamerzi) were sampled from four provinces in China [Xinjiang, Qinghai, Gansu and Xizang (Tibet)] and two (servertzovi and nigrimontana) from Uzbekistan. The argalis sampled represent most of the currently recognized putative Subspecies of argali. Analysis of mtDNA sequences revealed high variability within ammon (7.7%), ranging from 2.4 to 11.5%. MaxiMUM-Parsimony tree indicated that nigrimontana from Uzbekistan diverged First, followed by severtzovi from Uzbekistan. The dispersal of argalis into China gave rise to three clades, suggesting that the argali originated in Western Asia and then dispersed throughout the central Asian highlands on a southeastward course. Among the Chinese argalis, mtDNA analysis places dalailamae genetically closer to hodgsoni than to darwini. Severtzovi and.. nigrimontana are two separate subspecies and genetically distinct from the Chinese argali.

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短角窗萤属是萤科第四大属,但未见有该属物种荧光酶基因的研究报道.通过对总基因组的PCR扩增,对该属的栉角雪萤荧光酶基因进行了测序分析.基因序列长1 958 bp.与已知荧光酶基因进行同源性比较后推断,栉角雪萤的荧光酶基因由7个外显子和6个内含子组成,编码547个氨基酸残基;由推导的氨基酸序列进行同源性比较后发现,栉角雪萤的荧光酶基因与同一亚科中Lampyrini族和Cratomorphini族分别具有93-94%和92%相似性,而与北美萤火虫Photinus pyralis(Photinini族)的相似性较低(83%).系统发育分析进一步表明栉角雪萤与Pyrocoelia、Lampyris、Cratomorphus和Photinus同属于萤亚科,且与前3个属的亲缘关系较近.这在一定程度上与形态(Branham & Wenzel,2003)及线粒体DNA(Li et al,2006)系统发育分析所得结果一致.

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The genetic structure of pikeperch (Sander lucioperca) and perch (Perca fluviatilis) populations was studied using microsatellite technique. A total of 207 specimens of adult pikeperch were collected from Aras dam (57 specimens), Anzali wetland (50 specimens), Talesh (50 specimens) and Chaboksar (50 specimens) coasts. Also a total of 158 specimens of adult perch were collected from Anzali (Abkenar (50 specimens)and Hendekhale(48 specimens)) and Amirkolaye(60 specimens) wetlands. About 2 g of each specimen's dorsal fin was removed, stored in 96% ethyl alcohol and transferred to the genetic laboratory of the International Sturgeon Research Institute. Genomic DNA was extracted using ammonium-acetate method. The quality and quantity of DNA was assessed using 1% agarose gel electrophoresis. Polymerase Chain Reaction (PCR) was conducted on the target DNA using 15 pairs of microsatellite primers. PCR products were electrophoresed on poly acryl amide gels (6%) that were stained that were stained using silver nitrate. DNA bands were analyzed with BioCapt software. Allele count and frequency, genetic diversity, expected and observed heterozygosity , allele number and the effective allele number, genetic similarity and genetic distance, Fst, Rst, Hardy Weinberg Equilibrium based on X2 and Analysis of Molecular Variance (AMOVA) at 10% confidence level was calculated using the Gene Alex software. Dendogram for genetic distances and identities were calculated using TFPGA program for any level of hierarchy. The results for P. fluviatilis showed that from 15 pair of primers that were examined 6 polymorphic and 7 monomorphic loci were produced, while 2 loci didn't produce any DNA bands. Mean allele number was 4.1±1.1 and mean observed and expected heterozygosity was 0.56±0.12 and 0.58±0.14 respectively. It was also seen that specimens from all regions were not in Hardy Weinberg Equilibrium in some of loci (P<0.001). Highest Fst (0.095) with Nm=2.37 was observed between Hendekhale and Amirkolaye and the lowest Fst (0.004) with Nm=59.31 was observed between Abkenar and Hendekhale. According to AMOVA Significant difference (P<0.05) was observed between recorded Rst in the studied regions in Anzali and Amirkolaye lagoons. In another words there are two distinct populations of this species in Anzali and Amirkolaye lagoons. The highest genetic distance (0.181) and lowest genetic resemblance (0.834) were observed between specimens from Hendekhale and Amirkolaye and the lowest genetic distance (0.099) and highest genetic 176 resemblance (0.981) were observed between specimens from Abkenar and Hendekhale. Based on the genetic dendogram tree derived by applying UPGMA algorithm, specimens from Anzali and Amirkolaye wetlands have the same ancestor. On the other hand there is no noticeable genetic distance between the specimens of these two regions. Also the results for S. lucioperca showed that from 15 pair of primers that were examined 6 polymorphic and 7 monomorphic loci were produced, while 2 loci didn't produce any DNA bands. Mean allele number was 3.0±0.6 and mean observed and expected heterozygosity was 0.52±0.21 and 0.50±0.14 respectively. It was also seen that specimens from all regions were not in Hardy Weinberg Equilibrium in some of loci (P<0.001). Highest Fst (0.093) with Nm=2.43 was observed between Aras dam and Anzali wetland and the lowest Fst (0.022) with Nm=11.27 was observed between Talesh and Chaboksar coasts. Significant differences (P<0.05) were observed between recorded Rst in the studied regions exept for Talesh and Chaboksar Coasts. In another words there are three distinct populations of this species in Caspian sea, Anzali wetland and Aras dam. Highest genetic distance (0.110) and lowest genetic resemblance (0.896) were observed between specimens from Aras dam and Anzali wetland and the lowest genetic distance (0.034) and highest genetic resemblance (0.966) were observed between specimens from Talesh and Chaboksar coasts. Based on the genetic dendogram tree derived by applying UPGMA algorithm, specimens from Talesh and Chaboksar coasts have the lowest genetic distance. On the other hand the main population of this species belongs to Anzali wetland. Phylogenetic relationship of these two species was inferred using mitochondrial cytochrome b gene sequencing. For this purpose 2 specimens of P. fluviatilis from Anzali wetland, 2 specimens of S. lucioperca from Aras dam and 2 specimens of S. lucioperca from Anzali wetland were sequenced and submitted in Gene Bank. These sequences were aligned with Clustal W. The phylogenic relationships were assessed with Mega 4. The results of evolutionary history studies of these species using Neighbor-Joining and Maximum Parsimony methods showed that the evolutionary origin of pikeperch in Aras Dam and Anzali wetland is common. On the other hand these two species had common ancestor in about 4 million years ago. Also different sequences of any region specimens are supposed as different haplotypes. 177 As a conclusion the results of this study showed that microsatellite and mtDNA sequencing methods respectively are effective in genetic structure and phylogenic studies of P. fluviatilis and S. lucioperca.

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Objective To confirm the genetic relation between Giardia lamblia (G. lamblia) isolates from different geographic regions of China and other countries. Methods Genomic DNA were extracted from the trophozoites or cysts of Giardia lamblia. The triose phosphate isomerase (tim) gene was amplified using polymerase chain reaction (PCR) technique. PCR products were digested with endonuclease and sequenced. The data of sequencing were analyzed with the DNAstar software and compared with that of the isolates acquired from GenBank. Results Of nine isolates of Giardia lamblia from China (C1, C2, CH2 and CH3), Cambodia (CAM), Australia (A1 and A2) and America (BP and CDC), respectively, 3 (A1, A2 and CAM) fit into Group 1 (WB), 2 (CH2 and CH3) into Group 2, and 4 (C1, C2, BP and CDC) into Group 3 (GS). The results confirmed the genetic relatedness of G. lamblia isolates from all over the world. Conclusion Genotyping isolates of G. Lamblia provides important information for establishing the phylogenetic relationship or for the epidemiological evaluation of the spreading of this organism.

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Background: China, with around 30 unique breeds, has a diverse duck genetic pool. Currently, there is no systematic report which investigates the genetic diversity, phylogenetic relationship, and matrilineal genetic structure of these domestic breeds and

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Background: The DExD/H domain containing RNA helicases such as retinoic acid-inducible gene I (RIG-I) and melanoma differentiation-associated gene 5 (MDA5) are key cytosolic pattern recognition receptors (PRRs) for detecting nucleotide pathogen associated molecular patterns (PAMPs) of invading viruses. The RIG-I and MDA5 proteins differentially recognise conserved PAMPs in double stranded or single stranded viral RNA molecules, leading to activation of the interferon system in vertebrates. They share three core protein domains including a RNA helicase domain near the C terminus (HELICc), one or more caspase activation and recruitment domains (CARDs) and an ATP dependent DExD/H domain. The RIG-I/MDA5 directed interferon response is negatively regulated by laboratory of genetics and physiology 2 (LGP2) and is believed to be controlled by the mitochondria antiviral signalling protein (MAVS), a CARD containing protein associated with mitochondria. Results: The DExD/H containing RNA helicases including RIG-I, MDA5 and LGP2 were analysed in silico in a wide spectrum of invertebrate and vertebrate genomes. The gene synteny of MDA5 and LGP2 is well conserved among vertebrates whilst conservation of the gene synteny of RIG-I is less apparent. Invertebrate homologues had a closer phylogenetic relationship with the vertebrate RIG-Is than the MDA5/LGP2 molecules, suggesting the RIG-I homologues may have emerged earlier in evolution, possibly prior to the appearance of vertebrates. Our data suggest that the RIG-I like helicases possibly originated from three distinct genes coding for the core domains including the HELICc, CARD and ATP dependent DExD/H domains through gene fusion and gene/domain duplication. Furthermore, presence of domains similar to a prokaryotic DNA restriction enzyme III domain (Res III), and a zinc finger domain of transcription factor (TF) IIS have been detected by bioinformatic analysis. Conclusion: The RIG-I/MDA5 viral surveillance system is conserved in vertebrates. The RIG-I like helicase family appears to have evolved from a common ancestor that originated from genes encoding different core functional domains. Diversification of core functional domains might be fundamental to their functional divergence in terms of recognition of different viral PAMPs.