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1.
表观遗传学研究进展   总被引:1,自引:0,他引:1  
 概述了表观遗传调节模式、表观遗传调节的效应、植物表观遗传学的研究进展等。在每种细胞中,都会发生一部分特异基因激活、另一部分基因抑制的现象,形成多种基因表达模式。表观遗传指DNA序列不发生变化,而基因表达发生可遗传改变的现象。表观遗传学改变包括DNA甲基化、组蛋白修饰、非编码RNA作用等,产生基因组印记、母性影响、基因沉默、核仁显性、休眠转座子激活等效应。表观遗传变异是环境因素和细胞内遗传物质间交互作用的结果,其效应通过调节基因表达,控制生物学表型来实现。正是因为表观修饰对于维持生物体内环境和各器官系统功能的重要性,表观遗传的异常会引发疾病,这也成为药物和治疗方案设计的着眼点。  相似文献   

2.
父代肥胖会导致精子表观遗传修饰的改变,这种异常的表观遗传修饰会传递至后代,对后代健康产生严重影响.本文主要综述了由于父代肥胖所致的DNA甲基化、组蛋白修饰和非编码RNA等表观遗传修饰的异常及其跨代继承的机制,从表观遗传水平阐述父代肥胖对自身和后代健康的影响,可为后代相关疾病的预防和诊断提供参考资料.  相似文献   

3.
表观遗传包括通过DNA甲基化、组蛋白修饰、染色质重塑和RNA干扰等,通过这些机制干扰了正常基因的功能。越来越多的研究表明,DNA甲基化和组蛋白修饰异常,在多种肿瘤的发生中起重要作用。本文对表观遗传的分子机制,和同肿瘤发生的关系,以及肿瘤的表观治疗策略作了详细的综述。  相似文献   

4.
由发育和胁迫条件所导致的基因表达的变化通常依赖于DNA的甲基化修饰、组蛋白修饰、染色质结构以及小RNA等表观修饰。大量研究表明,这种表观修饰在胁迫条件下植物基因的表达中起非常重要的作用。大部分这种由胁迫诱导产生的修饰变化在胁迫条件被解除后能重新回到原来的水平,也有一些修饰的变化十分稳定,这些修饰变化作为"胁迫记忆"可以通过有丝分裂和减数分裂被遗传。表观遗传的应激记忆可能帮助植物更有效地应对以后的胁迫。  相似文献   

5.
染色质转座酶可及性测序 (assay for transposase-accessible chromatin with high-throughput sequencing, ATAC-seq)是2013年在人类免疫细胞中建立的用于研究表观遗传调控的重要技术。该技术已在人类及小鼠等模式动物的基因组调控元件鉴定、转录因子结合位点识别及转录调控机制的解析等研究领域发挥了重要作用。然而,ATAC-seq技术在植物领域中的研究应用还处于起步阶段,相关研究主要集中在拟南芥和水稻等模式植物中。笔者主要概述了ATAC-seq技术在植物中的应用,包括染色质可及性图谱绘制、抗逆机制解析、表观修饰鉴定及调控元件识别等领域的研究进展,并进一步阐述了ATAC-seq在木本植物中的应用潜力,以推动ATAC-seq技术在木本植物表观基因组学研究中的应用。  相似文献   

6.
提出化学表观筛选——分子遗传平台策略,利用表观遗传理论调控滇重楼内生真菌抗菌活性物质的合成。化学表观遗传筛选是对真菌进行高通量化学表观抑制剂的筛选,旨在经济快捷地获得抗菌活性物质合成受到表观调控的菌株;建立分子遗传平台是根据同源基因克隆真菌的相关表观遗传酶类基因,靶向改变表观遗传酶类的表达,旨在获得遗传稳定性高的改良菌株。  相似文献   

7.
表观遗传学是指基因组DNA序列不发生改变的情况下,基因表达水平发生变化从而导致的可遗传表型变化的现象.表观遗传可通过与低氧诱导因子(HIF)家族协同作用,以促使细胞适应低氧环境,从而参与到低氧应答的调控过程中.现就表观遗传学通过以下四个方面与低氧应答进行综述:1)VHL与PDH3调控HIF稳定性;2)通过影响HIF-1α共激活复合物的活性、HRE位点的修饰、HIF结合位点或附近区域的染色质活性,阻止HIF与HRE位点结合;3)组蛋白脱甲基酶对低氧应答相关基因的转录调控;4)低氧环境引起细胞内整体的组蛋白修饰程度和DNA甲基化水平改变.  相似文献   

8.
人消化道肿瘤的表观遗传学研究   总被引:1,自引:0,他引:1  
肿瘤的发生机制中有遗传学说和表观遗传学说.后者研究的主要内容包括DNA甲基化修饰和组蛋白的各种修饰.消化道肿瘤的发生发展存在表观遗传修饰的异常,如癌基因的低甲基化和抑癌基因的高甲基化,也同时存在着组蛋白乙酰化等修饰的紊乱.通过干预表观遗传修饰防治消化道肿瘤具有广阔的应用前景.  相似文献   

9.
植物转基因沉默的原因及对策   总被引:3,自引:0,他引:3  
转基因植物中转基因沉默已成为植物基因工程的一大障碍,转基因沉默的原因是多方面的,可能是由于转录前外源基因和内源基因的结构特性、伴置效应以及宿主植物的遗传调控;也可能是因为转录时启动子、转录因子和终止子的作用;还可能是由于转录后的修饰作用、外源基因表达特异性和环境等因素。为了克服转基因植物中转基因沉默,可以采取下列对策:选择适宜的外源基因和调控元件、采用适当的转化方法、使用更加简便快捷的筛选策略等。  相似文献   

10.
 组蛋白甲基化修饰对遗传信息解读有着重要影响,是表观遗传调控的主要机制之一。组蛋白甲基化可以被一类称作"阅读器"的结构域所特异识别并介导下游生物学事件。本文综述了目前已知的组蛋白甲基化阅读器(包括"皇室家族"成员、PHD锌指及BAH 等结构域)的结构特征及其对于甲基化修饰位点和程度特异性识别的分子基础。另外,探讨了表观遗传修饰调控中的组合识别、修饰对话等概念与机制。  相似文献   

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12.
Bundock P  Hooykaas P 《Nature》2005,436(7048):282-284
A significant proportion of the genomes of higher plants and vertebrates consists of transposable elements and their derivatives. Autonomous DNA type transposons encode a transposase that enables them to mobilize to a new chromosomal position in the host genome by a cut-and-paste mechanism. As this is potentially mutagenic, the host limits transposition through epigenetic gene silencing and heterochromatin formation. Here we show that a transposase from Arabidopsis thaliana that we named DAYSLEEPER is essential for normal plant growth; it shares several characteristics with the hAT (hobo, Activator, Tam3) family of transposases. DAYSLEEPER was isolated as a factor binding to a motif (Kubox1) present in the upstream region of the Arabidopsis DNA repair gene Ku70. This motif is also present in the upstream regions of many other plant genes. Plants lacking DAYSLEEPER or strongly overexpressing this gene do not develop in a normal manner. Furthermore, DAYSLEEPER overexpression results in the altered expression of many genes. Our data indicate that transposase-like genes can be essential for plant development and can also regulate global gene expression. Thus, transposases can become domesticated by the host to fulfil important cellular functions.  相似文献   

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14.
Transposable elements (TEs)-mediated gene sequence movement is thought to play an important role in genome expansion and origin of genes with novel functions. In this study, a gene, HGGT, involved in vitamin E synthesis was used in a case study to discover and characterize transposons carrying gene fragments in maize. A total of 69 transposons that are distributed across the 10 chromosomes and have an average length of 3689 bp were identified from the maize sequence database by using the BLAST search algori...  相似文献   

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17.
The genome of the flowering plant Arabidopsis thaliana has five chromosomes. Here we report the sequence of the largest, chromosome 1, in two contigs of around 14.2 and 14.6 megabases. The contigs extend from the telomeres to the centromeric borders, regions rich in transposons, retrotransposons and repetitive elements such as the 180-base-pair repeat. The chromosome represents 25% of the genome and contains about 6,850 open reading frames, 236 transfer RNAs (tRNAs) and 12 small nuclear RNAs. There are two clusters of tRNA genes at different places on the chromosome. One consists of 27 tRNA(Pro) genes and the other contains 27 tandem repeats of tRNA(Tyr)-tRNA(Tyr)-tRNA(Ser) genes. Chromosome 1 contains about 300 gene families with clustered duplications. There are also many repeat elements, representing 8% of the sequence.  相似文献   

18.
关于转座子的属性及其起源问题现在还没有解决,在这篇论文中,作者经过分析提出了转座子由病毒或逆转录病毒退化而来的观点,并且阐述了转座子与物种进化之间的关系,主要从转座子影响物种适应性和引起基因突变,染色体畸变两个方面进行了说明。  相似文献   

19.
The genome of Laccaria bicolor provides insights into mycorrhizal symbiosis   总被引:4,自引:0,他引:4  
Mycorrhizal symbioses--the union of roots and soil fungi--are universal in terrestrial ecosystems and may have been fundamental to land colonization by plants. Boreal, temperate and montane forests all depend on ectomycorrhizae. Identification of the primary factors that regulate symbiotic development and metabolic activity will therefore open the door to understanding the role of ectomycorrhizae in plant development and physiology, allowing the full ecological significance of this symbiosis to be explored. Here we report the genome sequence of the ectomycorrhizal basidiomycete Laccaria bicolor (Fig. 1) and highlight gene sets involved in rhizosphere colonization and symbiosis. This 65-megabase genome assembly contains approximately 20,000 predicted protein-encoding genes and a very large number of transposons and repeated sequences. We detected unexpected genomic features, most notably a battery of effector-type small secreted proteins (SSPs) with unknown function, several of which are only expressed in symbiotic tissues. The most highly expressed SSP accumulates in the proliferating hyphae colonizing the host root. The ectomycorrhizae-specific SSPs probably have a decisive role in the establishment of the symbiosis. The unexpected observation that the genome of L. bicolor lacks carbohydrate-active enzymes involved in degradation of plant cell walls, but maintains the ability to degrade non-plant cell wall polysaccharides, reveals the dual saprotrophic and biotrophic lifestyle of the mycorrhizal fungus that enables it to grow within both soil and living plant roots. The predicted gene inventory of the L. bicolor genome, therefore, points to previously unknown mechanisms of symbiosis operating in biotrophic mycorrhizal fungi. The availability of this genome provides an unparalleled opportunity to develop a deeper understanding of the processes by which symbionts interact with plants within their ecosystem to perform vital functions in the carbon and nitrogen cycles that are fundamental to sustainable plant productivity.  相似文献   

20.
Ketting RF  Plasterk RH 《Nature》2000,404(6775):296-298
Originally discovered in plants, the phenomenon of co-suppression by transgenic DNA has since been observed in many organisms from fungi to animals: introduction of transgenic copies of a gene results in reduced expression of the transgene as well as the endogenous gene. The effect depends on sequence identity between transgene and endogenous gene. Some cases of co-suppression resemble RNA interference (the experimental silencing of genes by the introduction of double-stranded RNA), as RNA seems to be both an important initiator and a target in these processes. Here we show that co-suppression in Caenorhabditis elegans is also probably mediated by RNA molecules. Both RNA interference and co-suppression have been implicated in the silencing of transposons. We now report that mutants of C. elegans that are defective in transposon silencing and RNA interference (mut-2, mut-7, mut-8 and mut-9) are in addition resistant to co-suppression. This indicates that RNA interference and co-suppression in C. elegans may be mediated at least in part by the same molecular machinery, possibly through RNA-guided degradation of messenger RNA molecules.  相似文献   

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