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1.
枯草芽胞杆菌作为一种遗传背景清晰、基因编辑成熟的革兰氏阳性菌,是多种重要工业酶的生产宿主.随着转录组、蛋白质组、代谢组等多组学测序和分析技术的发展,通过合理设计简化枯草芽胞杆菌基因组,减少细胞内冗余的调控和代谢网络,使得细胞更精简且便于控制,展现出了枯草芽胞杆菌作为异源酶表达宿主细胞的应用潜力.本文简要综述了枯草芽胞杆...  相似文献   

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单细胞原核生物是原始的细胞生命形式,确定细菌必需基因和最小基因组对理解生命的本质、细胞生命的起源和进化有非常重要的意义。文中简要介绍近年来有关细菌的必需基因、最小基因组和合成细胞的研究方法、理论和进展。还特别介绍人工建立最小细菌基因组的策略以及应用前景。  相似文献   

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李金玉  杨姗  崔玉军  王涛  滕越 《遗传》2021,(2):142-159
具有最小基因组的细菌只包含维持自我生命复制所必需的基因,其作为一种潜在的工业生产平台具有诸多优势。由于高通量DNA测序和合成技术的发展,目前已经构建了多种缩减基因组的菌株。本文首先介绍了最小基因组的概念,其次总结了细菌必需基因的相关研究进展,然后梳理了人工缩减与合成微生物基因组的相关工作,最后探讨了在设计和组装基因组的过程中遇到的技术障碍和限制,以期为人工合成基因组的实验与应用提供理论参考。  相似文献   

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薛小莉  覃重军 《生命科学》2013,(10):978-982
大肠杆菌是基础研究最透彻、应用广泛的微生物,构建含减小甚至是最小基因组的大肠杆菌将为合成生物学的研究和应用提供理想的底盘生物。介绍了大肠杆菌最小基因组的生长与繁殖必需基因的生物信息学分析和实验鉴定,基因组敲除技术,以及删减基因组的大肠杆菌菌株的构建和应用等方面的研究进展。  相似文献   

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Plant pathogenic phytoplasmas can infect hundreds of plant species and lead to enormous economic loss. To understand the interactions between phytoplasmas and their hosts, genome sequencing plays an important role. To date, ten phytoplasma genomes from five phylogenetic groups have been released. A comparative genomics analysis showed 170 common conserved genes existing in these ten genomes. Genes involved in translation, ribosomal structure and biogenesis (75 genes) are the largest proportion. Interestingly, the predicted secreted proteins were not found in our core set, suggesting that these genes were diverse. In addition, a highly stringent strategy was taken to mine the group‐specific genes among the five groups. Although the largest part was the hypothetical proteins, some putative secreted proteins (potential effectors) were identified. TENGU was selected to be one of the 16SrI group‐specific genes. This may partly account for the diverse pathogenicity in different 16Sr groups. In addition, our results revealed that Amp and Imp had great potentials of being group specific. Above all, based on the conserved genes, our results provide new insights for the phytoplasma genome assembly, identification and functional genomics.  相似文献   

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随着许多生物体全基因组测序的完成,兴起了最小基因组的研究,即一个能营独立生活的生物体最少需要多少个基因。已知最小细胞支原体基因组是研究最小基因组的重要内容,还通过比较多种已测序基因组COG分析最小基因组,目前通过转座子插入基因突主为和同源重组删除基因的分析,进行最小基因组研究。  相似文献   

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Identifying all essential genomic components is critical for the assembly of minimal artificial life. In the genome-reduced bacterium Mycoplasma pneumoniae, we found that small ORFs (smORFs; < 100 residues), accounting for 10% of all ORFs, are the most frequently essential genomic components (53%), followed by conventional ORFs (49%). Essentiality of smORFs may be explained by their function as members of protein and/or DNA/RNA complexes. In larger proteins, essentiality applied to individual domains and not entire proteins, a notion we could confirm by expression of truncated domains. The fraction of essential non-coding RNAs (ncRNAs) non-overlapping with essential genes is 5% higher than of non-transcribed regions (0.9%), pointing to the important functions of the former. We found that the minimal essential genome is comprised of 33% (269,410 bp) of the M. pneumoniae genome. Our data highlight an unexpected hidden layer of smORFs with essential functions, as well as non-coding regions, thus changing the focus when aiming to define the minimal essential genome.  相似文献   

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Staphylococcus aureus is a versatile pathogen that shows high levels of inter-strain genetic variability and positive evolution in certain pathogenesis-related genes. Apart from gene content differences, variability in shared genes may affect pathogenicity. Studying such variability requires that the common minimal genome (CMG) be identified. In this study, we have surveyed the CMG of S. aureus with respect to variability amongst orthologous family members, and determined that genes involved in pathogenesis preferentially accumulate variations. A negative correlation between variability of genes and their evolution was found, suggesting a preservation of host-specific function while exhibiting sequence diversity. Variation in key pathogenesis genes in S. aureus might predispose them to functional modulation, thereby playing an important role in evasion of host immunity.  相似文献   

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Soil organisms can strongly affect competitive interactions and successional replacements of grassland plant species. However, introduction of whole soil communities as management strategy in grassland restoration has received little experimental testing. In a 5-year field experiment at a topsoil-removed ex-arable site ( receptor site ), we tested effects of (1) spreading hay and soil, independently or combined, and (2) transplanting intact turfs on plant and soil nematode community development. Material for the treatments was obtained from later successional, species-rich grassland ( donor site ). Spreading hay affected plant community composition, whereas spreading soil did not have additional effects. Plant species composition of transplanted turfs became less similar to that in the donor site. Moreover, most plants did not expand into the receiving plots. Soil spreading and turf transplantation did not affect soil nematode community composition. Unfavorable soil conditions (e.g., low organic matter content and seasonal fluctuations in water level) at the receptor site may have limited plant and nematode survival in the turfs and may have precluded successful establishment outside the turfs. We conclude that introduction of later successional soil organisms into a topsoil-removed soil did not facilitate the establishment of later successional plants, probably because of the "mismatch" in abiotic soil conditions between the donor and the receptor site. Further research should focus on the required conditions for establishment of soil organisms at restoration sites in order to make use of their contribution to grassland restoration. We propose that introduction of organisms from "intermediate" stages will be more effective as management strategy than introduction of organisms from "target" stages.  相似文献   

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长寿和衰老基因及相关基因研究进展   总被引:5,自引:0,他引:5  
张建刚  贺林 《生命科学》1999,11(2):84-86
简要介绍了长寿和衰老基因及相关基因在酵母、线虫、果蝇和哺乳动物中的最新遗传学研究进展;概述了“生物钟”、端粒和端粒酶在人类长寿和衰老进程中的重要作用。相信随着人类遗传学和分子生物学研究的深入,将有更多的长寿和衰老基因及相关基因被发现,为揭示衰老机制和延年益寿提供依据。  相似文献   

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Recent technical and conceptual advances in the biological sciences opened the possibility of the construction of newly designed cells. In this paper we review the state of the art of cell engineering in the context of genome research, paying particular attention to what we can learn on naturally reduced genomes from either symbiotic or free living bacteria. Different minimal hypothetically viable cells can be defined on the basis of several computational and experimental approaches. Projects aiming at simplifying living cells converge with efforts to make synthetic genomes for minimal cells. The panorama of this particular view of synthetic biology lead us to consider the use of defined minimal cells to be applied in biomedical, bioremediation, or bioenergy application by taking advantage of existing naturally minimized cells.  相似文献   

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微生物基因组精简优化是构建合成生物学底盘细胞的重要策略.文中从基因组精简的整体设计出发,归纳了微生物的必需基因及其确定方法,重点介绍了各种微生物基因组精简策略,分析了多种基因组精简菌株的特点,充分展示了基因组精简优化在构建合成生物学底盘细胞中的重要作用.  相似文献   

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The vast majority of surface ocean bacteria are uncultivated. Compared with their cultured relatives, they frequently exhibit a streamlined genome, reduced G+C content and distinct gene repertoire. These genomic traits are relevant to environmental adaptation, and have generally been thought to become fixed in marine bacterial populations through selection. Using single-cell genomics, we sequenced four uncultivated cells affiliated with the ecologically relevant Roseobacter clade and used a composition-heterogeneous Bayesian phylogenomic model to resolve these single-cell genomes into a new clade. This lineage has no representatives in culture, yet accounts for ∼35% of Roseobacters in some surface ocean waters. Analyses of multiple genomic traits, including genome size, G+C content and percentage of noncoding DNA, suggest that these single cells are representative of oceanic Roseobacters but divergent from isolates. Population genetic analyses showed that substitution of physicochemically dissimilar amino acids and replacement of G+C-rich to G+C-poor codons are accelerated in the uncultivated clade, processes that are explained equally well by genetic drift as by the more frequently invoked explanation of natural selection. The relative importance of drift vs selection in this clade, and perhaps in other marine bacterial clades with streamlined G+C-poor genomes, remains unresolved until more evidence is accumulated.  相似文献   

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In recent years, the zebrafish has become one of the most prominent vertebrate model organisms used to study the genetics underlying development, normal body function, and disease. The growing interest in zebrafish research was paralleled by an increase in tools and methods available to study zebrafish. While zebrafish research initially centered on mutagenesis screens (forward genetics), recent years saw the establishment of reverse genetic methods (morpholino knock-down, TILLING). In addition, increasingly sophisticated protocols for generating transgenic zebrafish have been developed and microarrays are now available to characterize gene expression on a near genome-wide scale. The identification of loci underlying specific traits is aided by genetic, physical, and radiation hybrid maps of the zebrafish genome and the zebrafish genome project. As genomic resources for aquacultural species are increasingly being generated, a meaningful interaction between zebrafish and aquacultural research now appears to be possible and beneficial for both sides. In particular, research on nutrition and growth, stress, and disease resistance in the zebrafish can be expected to produce results applicable to aquacultural fish, for example, by improving husbandry and formulated feeds. Forward and reverse genetics approaches in the zebrafish, together with the known conservation of synteny between the species, offer the potential to identify and verify candidate genes for quantitative trait loci (QTLs) to be used in marker-assisted breeding. Moreover, some technologies from the zebrafish field such as TILLING may be directly transferable to aquacultural research and production.  相似文献   

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目的:对获得的3株肠道病毒71(EV71)型毒株进行全基因组序列测定,并对其进化特点及分型进行初步分析。方法:提取病毒RNA,反转录得到eDNA,PCR分段扩增覆盖病毒全长序列的6个重叠片段(不包括多聚腺苷酸尾);用软件将3株EV71的备片段序列进行拼接、编辑和校正,随后进行氨基酸翻译及序列比较;用MEGA4.1软件构建系统进化树。结果:获得了3株EV71的全长序列:GDV103株基因组全长7404 nt,包括741bp的5’端非编码区(UTR)、6582bp的病毒基因组编码区(ORF)及81bp的3’UTR;安徽株(Anhui2007)基因组全长7405nt,包括742bp的5'UTR、6582bp的ORF及81bp的3'UTR;VR1432株基因组全长7408nt,包括743bp的5’UTR、6582bp的ORF及83bp的3’UTR长。经同源性比对和进化树分析,证实GDV103和安徽株EV71属于C基因型的C4基因亚型。而VR1432株则属于C基因型的C2基因亚型。结论:获得了3株EV71的全长基因组序列,并进一步探讨了其型别,为下一步的干扰素保护宴,哈重定了基础.  相似文献   

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Cryptomonads are ubiquitous aquatic unicellular eukaryotes that acquired photosynthesis through the uptake and retention of a red algal endosymbiont. The nuclear genome of the red alga persists in a highly reduced form termed a nucleomorph. The nucleomorph genome of the model cryptomonad Guillardia theta has been completely sequenced and is a mere 551 kilobases (kb) in size, spread over three chromosomes. The presence of three chromosomes appears to be a universal characteristic of nucleomorph genomes in cryptomonad algae as well as in the chlorarachniophytes, an unrelated algal lineage with a nucleomorph and plastid genome derived from a green algal endosymbiont. Another feature of nucleomorph genomes in all cryptomonads and chlorarachniophytes examined thus far is the presence of subtelomeric ribosomal DNA (rDNA) repeats at the ends of each chromosome. Here we describe the first exception to this canonical nucleomorph genome architecture in the cryptomonad Hemiselmis rufescens CCMP644. Using pulsed-field gel electrophoresis (PFGE), we estimate the size of the H. rufescens nucleomorph genome to be approximately 580 kb, slightly larger than the G. theta genome. Unlike the situation in G. theta and all other known cryptomonads, sub-telomeric repeats of the rDNA cistron appear to be absent on both ends of the second largest chromosome in H. rufescens and two other members of this genus. Southern hybridizations using a variety of nucleomorph protein gene probes against PFGE-separated H. rufescens chromosomes indicate that recombination has been a major factor in shaping the karyotype and genomic structure of cryptomonad nucleomorphs.  相似文献   

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