首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 171 毫秒
1.
张琦  焦翔  刘香健  张月  张素芳  赵宗保 《菌物学报》2018,37(11):1454-1465
运用CodonW等软件,分析了圆红冬孢酵母Rhodosporidium toruloides基因组中191个蛋白质编码基因的密码子使用模式,包括密码子3个位置上的GC含量、有效密码子数和密码子使用频率。圆红冬孢酵母有效密码子数ENc值为38.9,密码子GC含量为63%,密码子第三位GC含量为78.3%,且偏好使用G或C结尾的密码子,确定了圆红冬孢酵母R. toruloides的21个高表达优越密码子。研究发现,圆红冬孢酵母与毕赤酵母、酿酒酵母、大肠杆菌和拟南芥在密码子使用频率上有较大差异,而与解脂耶氏酵母和果蝇差异相对较小。研究结果对提高外源基因在圆红冬孢酵母中表达效率及相关代谢工程和合成生物学研究有一定意义。  相似文献   

2.
草菇(V olvariella volvacea),又名中国蘑菇,是一种生长于中国和东南亚的重要经济食用菌。本文基于本实验室的草菇基因组测序结果,分析了草菇基因组中的tRNA情况。草菇基因组的302个框架中,共发现了177个tRNA基因,其中有7个可能的假基因,有2个携带硒代半胱氨酸,一个抑制性tRNA基因和一个未知的异型结构tRNA。除了上述11个特殊的tRNA基因外,166个tRNA可按反密码子类型分成47类。与其它5种担子菌的基因组tRNA比较,草菇的tRNA数量处于第4位,少于鬼伞、裂褶菌、灵芝,多于双孢蘑菇和平菇。通过比较分析草菇及这5种大型真菌的基因组tRNA编码情况,首次报道了几种食用菌tRNA遵守修正的摆动假说的情况。另外,草菇的同功受体tRNA非编码子序列也具有差异性,对tRNA的分析将有助于进一步研究草菇的进化。  相似文献   

3.
双孢蘑菇Agaricus bisporus是世界上最广泛栽培的食用菌之一.本研究通过分析双孢蘑菇基因组密码子使用偏性,探讨密码子偏性的影响因素及其对基因表达的影响.以双孢蘑菇基因组和转录组数据为依据,分析了双孢蘑菇基因组基因、高表达基因(high expression gene,HEG)和低表达基因(low expre...  相似文献   

4.
为了解3种侧耳属真菌基因组密码子的使用偏性及影响因素,本研究以糙皮侧耳、刺芹侧耳和白灵侧耳基因组CDS序列为研究对象,通过生物信息学方法对3种侧耳密码子使用偏性进行了分析。结果表明,3种侧耳基因组总碱基组成差异小,GC含量高。RSCU、RFSC分析表明糙皮侧耳G/C结尾的偏好密码子的比例最高(82.14%),并且有3个特有偏好密码子。3种侧耳共有偏好密码子25个,以G/C结尾的占80%;共有高频密码子3个,均以G/C结尾。密码子相似性分析表明3种侧耳密码子使用模式比较相似(相似性指数均小于0.001),其中刺芹侧耳与白灵侧耳的相似性最高(相似性指数为0.000259014);且3种侧耳密码子的使用频率与灰盖鬼伞和金针菇较为接近。PR2-plot、ENc-GC3和中性绘图分析表明3种侧耳密码子偏好性使用主要受自然选择影响,在一定程度上也受碱基突变压力和其他因素影响。上述结论为分析侧耳真菌的进化规律及选择最佳异源表达受体系统提供了依据。  相似文献   

5.
鲍大鹏 《菌物学报》2019,38(12):2061-2077
大多数可栽培的食用菌是属于担子菌的大型真菌,具有复杂的交配型系统,通常涉及到两类交配型基因,即编码同源域转录因子的A交配型基因以及编码脂肽信息素和信息素受体的B交配型基因。对担子菌交配型系统的研究已经有上百年的历史,近年来随着高通量测序技术的发展,很多常见食用菌的基因组获得测序,使得我们对不同类型交配型位点的分子遗传学结构能够进行更加细致的解析。本文在概述了担子菌有性生殖系统和交配型基因分子特点的基础上,对常见食用菌中的香菇、金针菇、灵芝、糙皮侧耳、刺芹侧耳、白灵侧耳、裂褶菌、双孢蘑菇、草菇和虎皮香菇以及模式生物灰盖鬼伞等物种的交配型位点的结构进行了总结和分析。从已有的研究结果来看,常见食用菌的交配型位点的分子遗传学结构存在多样性,不同物种的交配型位点具有不同的结构特点。从物种内不同菌株之间的交配型结构比较来看,交配型基因的位置和数量也具有丰富的多样性。在分子遗传学层面对常见食用菌交配型位点结构的认识将有助于深入阐明交配型基因对子实体发育的调控以及解决食用菌生产实际中的科学问题,但是目前对食用菌交配型位点和基因的研究仍旧存在很多空白,有待于进一步深入和拓展。  相似文献   

6.
草菇是我国土特产出口的主要种类之一,而采后易开伞问题限制了草菇的贮藏及运输。MADS-box转录因子对植物的成熟衰老和真菌的子实体发育起到重要的调控作用。目前尚未见草菇MADS-box转录因子的相关报道。本研究通过生物信息方法及分子生物学的手段对草菇的基因组、转录组数据进行分析,获得了草菇MADS-box转录因子基因Vvrin1。该基因全长1 392bp,含2个内含子,编码419个氨基酸残基。该转录因子含有一个MADS-box结构域,序列与双孢蘑菇Agaricus bisporus、斑玉蕈Hypsizygus marmoreus和灰盖鬼伞Coprinopsis cinerea的MADS-box转录因子相似性分别为71%、67%和61%。通过表达谱数据及荧光定量PCR分析表明Vvrin1基因在草菇子实体伸长期菌柄的表达量出现高峰,具有极显著性差异(P<0.01),推测该转录因子参与调控草菇菌柄的伸长,菌盖的开伞。这些结果为草菇成熟衰老(特别是开伞)的调控研究提供数据支持。  相似文献   

7.
为重建喉毛花属下系统发育关系,明晰属下皱边喉毛花及其近缘种之间的物种关系。本研究利用Illumina高通量测序平台对12 个叶绿体基因组进行双末端测序,获得大量高质量的Clean reads用于后续生物信息学分析。结果表明:(1)喉毛花属下物种的基因组差异较小,均在150 kb左右,基因总数为131 个,其中编码基因81 个。IR区核苷酸多态性比SC低,编码区比非编码区更保守。(2)进化分析结果显示,几乎所有的编码基因受到纯化选择的作用。(3)密码子偏好性分析表明有35 个密码子的RSCU值均大于1,说明使用这些密码子的频率较高,各项密码子偏好性衡量指标说明喉毛花属物种的密码子偏好性较弱。(4)系统发育分析表明CDS、密码子位置与基因间隔区数据集构建的系统发育树具有高度一致的拓扑结构,大部分分支的支持率高。这些结果表明皱边喉毛花及其近缘种的叶绿体基因组无明显差异,在系统发育树上无法按物种聚类,也为后续展开喉毛花属下群体遗传学研究提供科学依据。  相似文献   

8.
目的:明确2种兰科小红门兰属植物叶绿体基因组中密码子的使用偏好性,并探索其影响因素。方法:采用CodonW、CUSP、SPSS等软件,对2种兰科小红门兰属药用植物叶绿体基因组中的密码子进行选择分析。结果:通过对2种小红门兰属药用植物分析,发现2个物种叶绿体基因组密码子中的GC含量为35.8%~37.3%,有效密码子数目为47.10%~47.79%,表明其密码子偏好性较弱。中性绘图、ENC-plot、PR2-plot等研究结果显示,选择和突变是影响2种小红门兰属药用植物叶绿体基因组密码子使用偏好性的主要因素。通过比较相对同义密码子使用度RSCU值和ENC值,获得了65个最优密码子。2种小红门兰属药用植物密码子偏好使用A/T结尾,表明其密码子使用偏好性在很大程度上是由自然选择决定的。对其叶绿体基因组密码子的使用偏好性进行分析,并通过外类群聚类法进行验证,最终确定影响小红门兰属植物基因组密码子偏好的关键因子有9种:GUU、UCA、CCA、ACA、UAA、GAU、UGU、AGA、AGG。结论:本研究可为小红门兰属植物叶绿体基因组异源蛋白表达载体的构建与优化提供理论依据。  相似文献   

9.
摘要:【目的】旨在用毕赤酵母高效表达灰盖鬼伞过氧化物酶。【方法】借助DNAworks 3.1软件设计、优化引物,用自己构建的基因合成、定点突变平台合成了毕赤酵母密码子偏好性的灰盖鬼伞过氧化物酶基因,测序后构建在表达载体pPICZαA上,整合于巴斯德毕赤酵母GS115染色体,来自酿酒酵母的α因子作为信号肽序列指导重组蛋白的分泌表达。从82个PCR检测为阳性的酵母转化子中筛选出6株高Zeocin抗性的菌进行表达,选表达酶活性最高的作为实验菌株命名为CIP/GS115。【结果】以ABTS为底物时,CIP/GS115 在甲醇诱导第4天酶活最高达到487.5 U/mL,是目前摇瓶培养诱导表达灰盖鬼伞过氧化物酶活性最高报道。纯化后的酶最适反应温度为25℃,45℃酶反应速度是最适温度时的61.5%,在低于40℃时比较稳定,超过45℃稳定性迅速下降。最适反应pH 为5.0,在pH 4.5-6.5之间比较稳定。以不同的底物研究纯酶底物特异性发现最适底物的顺序是:ABTS > 愈创木酚> 2,6-二甲氧苯酚> 2,4-二氯苯酚> 苯酚。【结论】灰盖鬼伞过氧化物酶在毕赤酵母中的高效分泌表达和高的特殊活性为该酶在废水处理、染料脱色等方面的工业化应用奠定了一定基础。  相似文献   

10.
糜子叶绿体基因组密码子使用偏性的分析   总被引:2,自引:0,他引:2       下载免费PDF全文
密码子使用偏性(CUB)是生物体重要的进化特征,对研究物种进化、基因功能以及外源基因表达等具有重要科学意义。本研究利用糜子(Panicum miliaceum L.)叶绿体基因组中筛选出的53条蛋白编码序列,对其密码子使用模式及偏性进行了分析。结果表明,糜子叶绿体基因的有效密码子数(ENC)在37.14~61之间,多数密码子的偏性较弱。相对同义密码子使用度(RSCU)分析发现,RSCU > 1的密码子有32个,其中28个以A、U结尾,表明第3位密码子偏好使用A和U碱基。中性分析发现,GC3与GC12的相关性不显著,回归曲线斜率为0.2129,表明密码子偏性主要受到自然选择的影响;而ENC-plot分析发现大部分基因落在曲线的上方及周围,表明突变也影响了密码子偏性的形成。进一步的对应性分析发现,第1轴为主要影响因素,解释了17.92%的差异,其与ENC、GC3S值的相关性均达到显著水平,但与CBI、GCall不相关。最后,9个密码子被鉴定为糜子叶绿体基因组的最优密码子,糜子叶绿体基因组的密码子使用偏性可能受选择和突变共同作用。  相似文献   

11.
杨树派间不同种的遗传密码子使用频率分析   总被引:1,自引:0,他引:1  
周猛  童春发  施季森 《遗传学报》2007,34(6):555-561
遗传密码子的简并性特征造成了不同物种使用的密码子存在偏爱性。了解不同物种的密码子使用特点,可以为外源基因导入过程中的基因改造提供依据,从而实现外源基因的高效表达。杨树是世界上广泛栽培的重要造林树种之一,已经成为林木基因工程研究的模式植物。本研究采用高频密码子分析法,对美洲山杨P.tremuloides,毛白杨P.tomentosa,美洲黑杨P.deltoids和毛果杨P.trichocarpa 4种杨树的蛋白质编码基因序列(CDS)进行了分析,计算出了杨树同义密码子相对使用频率(RFSC),确定了4种杨树的高频率密码子,发现虽然不同种类的杨树密码子使用上有一些差别,但是偏爱密码子的差别却很小,共性的密码子占绝大多数。仅有Pro,Thr和Cys等少数几个氨基酸的偏爱密码子有差别。这种“共性”提示我们,用不同种的杨树中任何一种杨树的偏爱密码子所设计的外源基因在其他杨树中也可以使用。  相似文献   

12.
It has often been suggested that differential usage of codons recognized by rare tRNA species, i.e. "rare codons", represents an evolutionary strategy to modulate gene expression. In particular, regulatory genes are reported to have an extraordinarily high frequency of rare codons. From E. coli we have compiled codon usage data for highly expressed genes, moderately/lowly expressed genes, and regulatory genes. We have identified a clear and general trend in codon usage bias, from the very high bias seen in very highly expressed genes and attributed to selection, to a rather low bias in other genes which seems to be more influenced by mutation than by selection. There is no clear tendency for an increased frequency of rare codons in the regulatory genes, compared to a large group of other moderately/lowly expressed genes with low codon bias. From this, as well as a consideration of evolutionary rates of regulatory genes, and of experimental data on translation rates, we conclude that the pattern of synonymous codon usage in regulatory genes reflects primarily the relaxation of natural selection.  相似文献   

13.
The genetic code is degenerate; thus, protein evolution does not uniquely determine the coding sequence. One of the puzzles in evolutionary genetics is therefore to uncover evolutionary driving forces that result in specific codon choice. In many bacteria, the first 5–10 codons of protein‐coding genes are often codons that are less frequently used in the rest of the genome, an effect that has been argued to arise from selection for slowed early elongation to reduce ribosome traffic jams. However, genome analysis across many species has demonstrated that the region shows reduced mRNA folding consistent with pressure for efficient translation initiation. This raises the possibility that unusual codon usage is a side effect of selection for reduced mRNA structure. Here we discriminate between these two competing hypotheses, and show that in bacteria selection favours codons that reduce mRNA folding around the translation start, regardless of whether these codons are frequent or rare. Experiments confirm that primarily mRNA structure, and not codon usage, at the beginning of genes determines the translation rate.  相似文献   

14.
王艳  赵懿琛  赵德刚 《广西植物》2021,41(2):274-282
为了解杜仲基因密码子使用模式,该文以杜仲基因组密码子为研究对象,运用CodonW软件对杜仲的320个蛋白编码基因进行同义密码子相对使用频率(RSCU)分析、ENC-GC3s关联分析编码基因的密码子ENC值、PR2-plot偏倚分析编码基因的密码子碱基使用频率,并运用CUSP软件与Codon Usage Database...  相似文献   

15.
This study reports the analysis of codon usage in 35 complete Homo sapiens genes. Both codon frequency and inter-codon interference exhibit patterns of evolutionary interest. There is a significant positive correlation between the frequency with which a given codon is used and the frequency with which its complement is used. Since the frequency of appearance of the complementary codon on the coding strand is equal to the frequency of appearance of the original codon on the non-coding strand, in the same phase, the non-coding strand is found to resemble the coding strand in triplet composition. The same effect has been observed in Escherichia coli. This preference for the use of certain complementary triplets as codons suggests that the evolution of the use of the genetic code depended to some extent upon the double-stranded nature of the coding material. In addition, the effect of discrimination against the use of two dinucleotides, CpG and UpA, is observed in codon usage and also in adjacent codon interference. Codons beginning with G, or A, are unlikely to be preceded by codons ending in C, or U, respectively. Consideration of codon assignment in the genetic code together with the observed CpG infrequency suggests that the evolution of the code may have been influenced by conditions in which the use of CpG dinucleotides was unfavorable. The infrequent use of UpA dinucleotides can be explained as the result of frameshift mutation during gene evolution.  相似文献   

16.
Codon usage bias refers to the phenomenon where specific codons are used more often than other synonymous codons during translation of genes, the extent of which varies within and among species. Molecular evolutionary investigations suggest that codon bias is manifested as a result of balance between mutational and translational selection of such genes and that this phenomenon is widespread across species and may contribute to genome evolution in a significant manner. With the advent of whole‐genome sequencing of numerous species, both prokaryotes and eukaryotes, genome‐wide patterns of codon bias are emerging in different organisms. Various factors such as expression level, GC content, recombination rates, RNA stability, codon position, gene length and others (including environmental stress and population size) can influence codon usage bias within and among species. Moreover, there has been a continuous quest towards developing new concepts and tools to measure the extent of codon usage bias of genes. In this review, we outline the fundamental concepts of evolution of the genetic code, discuss various factors that may influence biased usage of synonymous codons and then outline different principles and methods of measurement of codon usage bias. Finally, we discuss selected studies performed using whole‐genome sequences of different insect species to show how codon bias patterns vary within and among genomes. We conclude with generalized remarks on specific emerging aspects of codon bias studies and highlight the recent explosion of genome‐sequencing efforts on arthropods (such as twelve Drosophila species, species of ants, honeybee, Nasonia and Anopheles mosquitoes as well as the recent launch of a genome‐sequencing project involving 5000 insects and other arthropods) that may help us to understand better the evolution of codon bias and its biological significance.  相似文献   

17.
18.
Chronic obstructive pulmonary disease (COPD), a lung disease, affects a large number of people worldwide, leading to death. Here, we analyzed the compositional features and trends of codon usage of the genes influencing COPD to understand molecular biology, genetics, and evolutionary relationships of these genes as no work was reported yet. Coding sequences of COPD genes were found to be rich in guanine-cytosine (GC) content. A high value (34-60) of the effective number of codons of the genes indicated low codon usage bias (CUB). Correspondence analysis suggested that the COPD genes were distinct in their codon usage patterns. Relative synonymous codon usage values of codons differed between the more preferred codons and the less-preferred ones. Correlation analysis between overall nucleotides and those at third codon position revealed that mutation pressure might influence the CUB of the genes. The high correlation between GC12 and GC3 signified that directional mutation pressure might have operated at all the three codon positions in COPD genes.  相似文献   

19.
The genetic code is degenerate, but alternative synonymous codons are generally not used with equal frequency. Since the pioneering work of Grantham's group it has been apparent that genes from one species often share similarities in codon frequency; under the "genome hypothesis" there is a species-specific pattern to codon usage. However, it has become clear that in most species there are also considerable differences among genes. Multivariate analyses have revealed that in each species so far examined there is a single major trend in codon usage among genes, usually from highly biased to more nearly even usage of synonymous codons. Thus, to represent the codon usage pattern of an organism it is not sufficient to sum over all genes as this conceals the underlying heterogeneity. Rather, it is necessary to describe the trend among genes seen in that species. We illustrate these trends for six species where codon usage has been examined in detail, by presenting the pooled codon usage for the 10% of genes at either end of the major trend. Closely-related organisms have similar patterns of codon usage, and so the six species in Table 1 are representative of wider groups. For example, with respect to codon usage, Salmonella typhimurium closely resembles E. coli, while all mammalian species so far examined (principally mouse, rat and cow) largely resemble humans.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号