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1.
microRNA(miRNA)是一类重要的非编码小分子RNA,广泛参与植物生长发育和胁迫响应的调控。毛果杨MIR171基因家族是一个古老的miRNA基因家族,具有14个成员。本研究对毛果杨MIR171基因家族的基因倍增模式、表达方式、启动子结构及靶基因进行了分析。结果表明:毛果杨MIR171基因家族主要通过48~54百万年前的染色体大片段重复进行扩张,其表达方式和功能已经出现分化。MIR171基因家族可能主要通过调控GRAS转录因子和信号转导蛋白参与杨树生长发育、光信号转导和光形态建成的调控。  相似文献   

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GATA转录因子基因家族在植物生长发育、细胞分化以及响应环境变化中具有重要作用。然而,目前在木本植物中尚无该基因家族全基因组水平的分析报导。本项研究从基因组水平对毛果杨GATA家族成员的数量、基因结构、染色体定位、系统进化、编码蛋白的理化特征和保守基序等信息进行了系统分析,结果表明,毛果杨GATA家族包含39个基因,共分布于15条染色体上,其中5号染色体上含有6个基因,9号、13号和19号染色体含有基因数量为1,其余染色上无基因分布。该家族各基因的结构与编码蛋白的基本特性均存在一定异性,可分成4个亚族。qRT-PCR研究表明,GATA家族各基因在不同发育阶段的茎部表达量存在明显差异,且盐胁迫对各基因的表达特性影响显著。以上结果表明,毛果杨GATA家族基因在复制后,基因的结构与功能产生了明显分化,其中部分基因在毛果杨次生生长与盐胁迫响应中可能具有重要作用。本项研究为全面解析毛果杨GATA家族各成员在其生长发育与盐胁迫响应中的生物学功能奠定了基础。  相似文献   

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MADS-box基因家族基因重复及其功能的多样性   总被引:7,自引:0,他引:7  
基因的重复(duplication)及其功能的多样性(diversification)为生物体新的形态进化提供了原材料。MADS-box基因在植物(特别是被子植物)的进化过程中发生了大规模的基因重复事件而形成一个多基因家族。MADS-box基因家族的不同成员在植物生长发育过程中起着非常重要的作用,在调控开花时间、决定花分生组织和花器官特征以及调控根、叶、胚珠及果实的发育中起着广泛的作用。探讨MADS-box基因家族的进化历史有助于深入了解基因重复及随后其功能分化的过程和机制。本文综述了MADS-box基因家族基因重复及其功能分化式样的研究进展。  相似文献   

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吕山花  孟征 《植物学报》2007,24(1):60-70
基因的重复(duplication)及其功能的多样性(diversification)为生物体新的形态进化提供了原材料。MADS-box基因在植物(特别是被子植物)的进化过程中发生了大规模的基因重复事件而形成一个多基因家族。MADS-box基因家族的不同成员在植物生长发育过程中起着非常重要的作用, 在调控开花时间、决定花分生组织和花器官特征以及调控根、叶、胚珠及果实的发育中起着广泛的作用。探讨MADS-box基因家族的进化历史有助于深入了解基因重复及随后其功能分化的过程和机制。本文综述了MADS-box基因家族基因重复及其功能分化式样的研究进展。  相似文献   

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WUSCHEL-related homeobox(WOX)家族是植物特有的转录因子家族,参与分生组织细胞分裂分化、初生和次生物质代谢及植物激素信号转导等多个发育过程,目前尚未有从全基因组分析该基因家族参与杨树茎部发育的相关研究。本项研究旨在对杨树WOX基因家族进行鉴定,在杨树基因中发现18个WOX候选基因,将这些候选基因分为三组,同一分组的大多数WOX家族成员具有相似的基因结构和保守的基序。根据不同发育阶段茎部转录组数据,系统分析了WOX家族成员在茎部不同发育阶段的特异表达情况,并采用qRT-PCR对上述结果进行了验证。结果表明,杨树WOX基因家族在茎部不同发育阶段表现出不同的表达模式,为毛果杨WOX家族的功能研究与利用奠定基础。  相似文献   

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热激蛋白70家族(HSP70)是一类在植物中高度保守的分子伴侣蛋白,在细胞中协助蛋白质正确折叠。文章利用隐马可链夫模型(HMM)在雷蒙德氏棉(Gossypium raimondii L.)全基因组范围内进行HSP70基因家族成员进化分析,共得到30个HSP70家族成员。利用生物信息学对雷蒙德氏棉HSP70基因的结构、染色体分布、基因倍增模式以及系统进化进行分析,结果表明,HSP70基因家族根据亚细胞定位结果可分为不同的基因亚家族,各亚家族中HSP70基因具有相对保守的基因结构;染色体片段重复和串联重复是雷蒙德氏棉HSP70基因家族扩增的主要方式。通过对不同物种的HSP70基因家族进行系统进化分析可知,HSP70亚组的分化发生在单细胞植物形成前,且细胞质型HSP70成员大量扩增。比较陆地棉棉纤维发育不同时期的深度测序表达谱,发现HSP70基因可能参与棉纤维的生长发育。本研究结果有助于了解棉属植物HSP70基因家族的功能,以期为深入研究棉纤维发育过程中的分子调控机理提供基础。  相似文献   

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毛果杨NLP基因家族生物信息学分析与鉴定   总被引:1,自引:0,他引:1  
NLP基因家族是一类特殊的转录因子,豆科植物根瘤的形成依赖于该基因家族的存在,在非豆科植物中具有调节植物硝酸盐吸收以及同化的功能。通过对毛果杨(Populus trichocarpa)基因组的生物信息学分析,共鉴定出14个毛果杨NLP基因家族成员,这些成员具有低亲水性的特点,基因结构保守,都含有RWP-RK以及PB1两个保守结构域。通过细胞定位预测,所有成员都定位在细胞核中。直系同源与旁系同源进化分析显示,NLP基因家族成员在漫长的进化过程中经历了严格的选择。染色体定位分析表明,毛果杨NLP基因家族成员坐落在毛果杨9条染色体之上,成员数量的扩增来自于杨柳科染色体自身的扩增事件。芯片数据分析结果显示,NLP基因家族成员在嫩叶,根和雄花中表达,部分基因在木质部以及种子萌发过程之中表达,但所有成员均不在成熟叶片中表达。  相似文献   

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全基因组重复与串联重复是发生基因重复的重要机制,也是基因组和遗传系统多样化的重要动力。LRR-RLK编码富含亮氨酸重复的类受体蛋白激酶,是被子植物进化史上发生大规模扩张而形成的多基因家族。拟南芥(Arabidopsis thaliana)AtLRR-RLK包含15个亚家族,AtLRRⅧ-2是其中发生串联重复比例最高的亚家族。通过分析拟南芥、杨树(Populustrichocarpa)、葡萄(Vitis vinifera)和番木瓜(Carica papaya) 4种模式植物中LRR Ⅷ-2亚家族基因的扩张及差异保留情况,结果显示, LRR Ⅷ-2在杨树中的扩张程度最高,在拟南芥和葡萄中的扩张程度居中,但在番木瓜中发生丢失。拟南芥、杨树和葡萄LRR Ⅷ-2亚家族具有旁系同源基因对,但在番木瓜中未发现旁系同源基因。除杨树中的1对旁系同源基因外, 4种模式植物中LRR Ⅷ-2亚家族的旁系和直系同源基因都受到较强的纯化选择作用。对LRR Ⅷ-2亚家族进化历史的深入分析有助于理解基因重复在植物进化中的作用和意义,可为预测同源基因功能及解析其它基因家族进化历史提供参考。  相似文献   

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MIR166基因家族在陆生植物中的进化模式分析   总被引:1,自引:0,他引:1  
MicroRNA(miRNA)是一类广泛存在于真核生物中的具有转录后水平调控功能的内源非编码小分子RNA。在植物中.miRNA通过对靶基因的剪切或沉默来实现对植物生命活动的调控,它是基因表达调控网络的重要组成部分。miR165/166(miR166)是陆生植物中最为古老的MIRNA家族之一,它通过对3型同源异域型-亮氨酸拉链(1id—ZIPⅢ)等靶标的调控,在植物的众多发育时期起着关键的调控作用。本文分析了MIR166基因在陆生植物中的进化关系,并对MIR166在基部陆生植物小立碗藓(Physcomitrella patens)中的复制及进化进行了研究。此外,HD—ZIPⅢ蛋白是植物中重要的一类转录因子,miR166对HD-ZIP Ⅲ基因的调控作用在陆地植物保守的存在,本文对HD—ZIP Ⅲ基因和miR166在进化中的相互作用进行了初步的探讨。  相似文献   

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Lei  Yi  Yang  Liandong  Jiang  Haifeng  Chen  Juan  Sun  Ning  Lv  Wenqi  He  Shunping 《中国科学:生命科学英文版》2021,64(7):1149-1164
Whole-genome duplications(WGDs) are an important contributor to phenotypic innovations in evolutionary history. The diversity of blood oxygen transport traits is the perfect reflection of physiological versatility for evolutionary success among vertebrates. In this study, the evolutionary changes of hemoglobin(Hb) repertoire driven by the recent genome duplications were detected in representative Cyprinidae fish, including eight diploid and four tetraploid species. Comparative genomic analysis revealed a substantial variation in both membership composition and intragenomic organization of Hb genes in these species.Phylogenetic reconstruction analyses were conducted to characterize the evolutionary history of these genes. Data were integrated with the expression profiles of the genes during ontogeny. Our results indicated that genome duplications facilitated the phenotypic diversity of the Hb gene family; each was associated with species-specific changes in gene content via gene loss and fusion after genome duplications. This led to repeated evolutionary transitions in the ontogenic regulation of Hb gene expression.Our results revealed that genome duplications helped to generate phenotypic changes in Cyprinidae Hb systems.  相似文献   

12.
Gu X 《Genetics》2004,167(1):531-542
Microarray technology has produced massive expression data that are invaluable for investigating the genome-wide evolutionary pattern of gene expression. To this end, phylogenetic expression analysis is highly desirable. On the basis of the Brownian process, we developed a statistical framework (called the E(0) model), assuming the independent expression of evolution between lineages. Several evolutionary mechanisms are integrated to characterize the pattern of expression diversity after gene duplications, including gradual drift and dramatic shift (punctuated equilibrium). When the phylogeny of a gene family is given, we show that the likelihood function follows a multivariate normal distribution; the variance-covariance matrix is determined by the phylogenetic topology and evolutionary parameters. Maximum-likelihood methods for multiple microarray experiments are developed, and likelihood-ratio tests are designed for testing the evolutionary pattern of gene expression. To reconstruct the evolutionary trace of expression diversity after gene (or genome) duplications, we developed a Bayesian-based method and use the posterior mean as predictors. Potential applications in evolutionary genomics are discussed.  相似文献   

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MicroRNAs (miRNAs) are a class of ∼22 nt long endogenous non-coding RNAs that play important regulatory roles in diverse organisms. Up to now, little is known about the evolutionary properties of these crucial regulators. Most miRNAs were thought to be phylogenetically conserved, but recently, a number of poorly-conserved miRNAs have been reported and miRNA innovation is shown to be an ongoing process. In this work, through the characterization of an miRNA super family, we studied the evolutionary patterns of miRNAs in vertebrates. Recently generated miRNAs seem to evolve rapidly during a certain period following their emergence. Multiple lineage-specific expansions were observed. Homolgous premiRNAs may produce mature products from the opposite stem arms following tandem duplications, which may have important contribution to miRNA innovation. Our observations of miRNAs’ complicated evolutionary patterns support the notion that these key regulatory molecules may play very active roles in evolution.  相似文献   

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MicroRNAs (miRNAs) are a class of ~22 nt long endogenous non-coding RNAs that play important regulatory roles in diverse organisms. Up to now, little is known about the evolutionary properties of these crucial regulators. Most miRNAs were thought to be phylogenetically conserved, but recently, a number of poorly-conserved miRNAs have been reported and miRNA innovation is shown to be an ongoing process. In this work, through the characterization of an miRNA super family, we studied the evolutionary patterns of miRNAs in vertebrates. Recently generated miRNAs seem to evolve rapidly during a certain period following their emergence. Multiple lineage-specific expansions were observed. Homolgous premiRNAs may produce mature products from the opposite stem arms following tandem duplications, which may have important contribution to miRNA innovation. Our observations of miRNAs' complicated evolutionary patterns support the notion that these key regulatory molecules may play very active roles in evolution.  相似文献   

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Members of the ankyrin repeats (ANK) gene family encode ANK domain that are common in diverse organisms and play important roles in cell growth and development, such as cell-cell signal transduction and cell cycle regulation. Recently, genome-wide identification and evolutionary analyses of the ANK gene family have been carried out in Arabidopsis and rice. However, little is known regarding the ANK genes in the entire maize genome. In this study, we described the identification and structural characterization of 71 ANK genes in maize (ZmANK). Then, comprehensive bioinformatics analyses of ZmANK genes family were performed including phylogenetic, domain and motif analysis, chromosomal localization, intron/exon structural patterns, gene duplications and expression profiling. Domain composition analyses showed that ZmANK genes formed ten subfamilies. Five tandem duplications and 14 segmental duplications were identified in ZmANK genes. Furthermore, we took comparative analysis of the total ANK gene family in Arabidopsis, rice and maize, ZmANKs were more closely paired with OsANKs than with AtANKs. At last, expression profile analyses were performed. Forty-one members of ZmANK genes held EST sequences records. Semi-quantitative expression and microarray data analysis of these 41 ZmANK genes demonstrated that ZmANK genes exhibit a various expression pattern, suggesting that functional diversification of ZmANK genes family. The results will present significant insights to explore ANK genes expression and function in future studies in maize.  相似文献   

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Most disease resistance genes in plants encode NBS-LRR proteins. However, in woody species, little is known about the evolutionary history of these genes. Here, we identified 459 and 330 respective NBS-LRRs in grapevine and poplar genomes. We subsequently investigated protein motif composition, phylogenetic relationships and physical locations. We found significant excesses of recent duplications in perennial species, compared with those of annuals, represented by rice and Arabidopsis. Consequently, we observed higher nucleotide identity among paralogs and a higher percentage of NBS-encoding genes positioned in numerous clusters in the grapevine and poplar. These results suggested that recent tandem duplication played a major role in NBS-encoding gene expansion in perennial species. These duplication events, together with a higher probability of recombination revealed in this study, could compensate for the longer generation time in woody perennial species e.g. duplication and recombination could serve to generate novel resistance specificities. In addition, we observed extensive species-specific expansion in TIR-NBS-encoding genes. Non-TIR-NBS-encoding genes were poly- or paraphyletic, i.e. genes from three or more plant species were nested in different clades, suggesting different evolutionary patterns between these two gene types.  相似文献   

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