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 46 毫秒
1.
完整基因结构的预测是当前生命科学研究的一个重要基础课题,其中一个关键环节是剪接位点和各种可变剪接事件的精确识别.基于转录组测序(RNA-seq)数据,识别剪接位点和可变剪接事件是近几年随着新一代测序技术发展起来的新技术策略和方法.本工作基于黑腹果蝇睾丸RNA-seq数据,使用TopHat软件成功识别出39718个果蝇剪接位点,其中有10584个新剪接位点.同时,基于剪接位点的不同组合,针对各类型可变剪接特征开发出计算识别算法,成功识别了8477个可变剪接事件(其中新识别的可变剪接事件3922个),包括可变供体位点、可变受体位点、内含子保留和外显子缺失4种类型.RT-PCR实验验证了2个果蝇基因上新识别的可变剪接事件,发现了全新的剪接异构体.进一步表明,RNA-seq数据可有效应用于识别剪接位点和可变剪接事件,为深入揭示剪接机制及可变剪接生物学功能提供新思路和新手段.  相似文献   

2.
果蝇内含子3'剪接位点的选择机制   总被引:5,自引:1,他引:4  
从722个果蝇基因中,选出了324个内含子作为分析3'剪接位点的选择机制的研究对象,结果表明Smith的扫描选择机制表述为''3'剪接位点是一致新闻记者基架上分支点和多嘧啶区下游的优势AG''更合理,对于ORF约束在生物学操作上的含义作了必要的讨论。  相似文献   

3.
为提高非翻译区剪接位点识别的精度,提出一种统计概率与支持向量机相结合的识别方法 .该方法主要分为两个阶段,第一阶段应用统计学方法对非翻译区(UTR)序列进行描述,将序列中各碱基之间的相关性、位置特异性、保守性等特征用概率形式描述,以概率参数作为第二阶段支持向量机的输入向量,第二阶段应用带有多项式核函数的支持向量机(SVM)对剪接位点进行识别.通过对人类5′UTR剪接位点数据集进行测试,结果表明:该方法对非翻译区剪接位点的识别取得了很好的效果.  相似文献   

4.
从722个果蝇基因中,选出了324个内含子作为分析3'剪接位点的选择机制的研究对象。结果表明Smith的扫描选择机制表述为″3′剪接位点是一致阅读基架(ORF)上分支点和多嘧啶区下游的优势AG″更合理。对于ORF约束在生物学操作上的含义作了必要的讨论。  相似文献   

5.
采用基于贝叶斯网络的建模方法,预测真核生物DNA序列中的剪接位点.分别建立了供体位点和受体位点模型,并根据两种位点的生物学特性,对模型的拓扑结构和上下游节点的选择进行了优化.通过贝叶斯网络的最大似然学习算法求出模型参数后,利用10分组交互验证方法对测试数据进行剪接位点预测。结果显示,受体位点的平均预测准确率为92.5%,伪受体位点的平均预测准确率为94.0%,供体位点的平均预测准确率为92.3%,伪供体位点的平均预测准确率为93.5%,整体效果要好于基于使用独立和条件概率矩阵、以及隐Markov模型的预测方法.表明利用贝叶斯网络对剪接位点建模是预测剪接位点的一种有效手段.  相似文献   

6.
高盐摄入不仅会带来高血压、糖尿病、自身免疫病等风险,而且会对大脑产生负面影响。可变剪接(Alternative Splicing,AS)作为基因表达调控的重要方式,其导致单个基因编码多种蛋白质,大大增加基因组编码的蛋白质的多样性,参与几乎所有的生物学过程。但是,关于高盐摄入是否改变神经系统中基因的可变剪接事件目前还未报道。本文以黑腹果蝇作为材料,利用RNA测序分析其头部响应高盐摄入的基因可变剪接变化。结果发现高盐摄入改变黑腹果蝇头部信号转导、离子稳态、离子通道活性、离子转运和钙调蛋白结合等重要信号相关基因的可变剪接。进一步分析具体发生变化的基因的功能,发现它们在多个层面对神经系统功能的调控起着重要的作用。该研究证明高盐摄入改变神经系统重要基因的可变剪接,为理解高盐摄入对神经系统的影响提供更多的依据和线索。  相似文献   

7.
用神经网络法预测mRNA的剪接位点   总被引:3,自引:2,他引:3  
用神经网络预测了mRNA的剪接位点,比较了在各种不同的情况下,神经网络的学习与预测的情况,讨论了能反映真实剪接位点预测情况的有效预测成功率,指出它可达64%,而且总的预测成功率可达98%.预测的相关系数为0.66.  相似文献   

8.
周蕾  顾建新 《生命科学》2011,(6):605-611
蛋白质的N-糖基化修饰是生物体调控蛋白质在组织和细胞中的定位、功能、活性、寿命和多样性的一种普遍的翻译后方式。N-糖基化位点是理解糖链功能的重要前提之一。应用新的糖蛋白、糖肽富集技术和质谱技术,科学家们在不同组织中完成了对N-糖基化位点的鉴定。此外,不同于经典三联子的N-糖基化序列的发现使人们对N-糖基化过程的认识向纵深发展。  相似文献   

9.
黑腹果蝇黑条体突变型的基因定位研究   总被引:2,自引:0,他引:2  
张菁  曾庆韬  薛小桥  金珊  杨勇 《遗传学报》2001,28(6):527-534
黑腹果的体色突变类型常见的有黄体(yellow,y)、黑体(black,b)和黑檀体(ebony,e),分别位于X染色体,第二染色体和第三染色体上,.黑条体突变型是本实验室1991年9月从野外采集的黑腹果蝇野生型单雌系后代中发现的自发突变品系,为了探明黑条体突变型是原有黑体突变类型的再现还是新的突变,采用常规杂交方法和互补7实验技术对黑腹果蝇黑条体突变型的定位进行了探讨,互补测验的结果表明,黑条体与黑檀体杂交的子一代为反式排列的杂合体无互补,表现为突变型,子二代中,由于交换而产生重组类型的顺式排列的杂合体表现为野生型。因此确定黑条体突变基因(bsr)与黑檀体突变基因(e)是等位的,位于第三染色体的93D2区,但分别位于不同的位点上,属于同一顺反子的新的点突变,同时对于各体色间的相互作用及遗传传递方式的进行了讨论。  相似文献   

10.
金鹰 《激光生物学报》2008,17(2):283-286
可变剪接作为真核生物转录后加工机制普遍存在于不同组织、不同发育时期或不同病理状态下的基因表达调控过程中。对同一基因不同剪接变体的研究可使我们更深入的了解发育、进化、疾病发生机理等基本的生物学问题。讨论了一些基于序列比对而建立的可变剪接的理论预测方法,尚存不足之处,有待于进一步完善。  相似文献   

11.
黑腹果蝇的性别控制   总被引:4,自引:0,他引:4  
王慧超  朱勇  夏庆友 《遗传》2003,25(1):97-101
性别的形成包括两个过程,即性别决定和性别分化。果蝇的性别控制研究包括性别决定、性别分化、性别鉴定、性别诱导和性别控制5个方面。性别决定是在两种不同发育途径之间的选择,它提供了一个研究基因调控的模式系统。果蝇的性别决定问题已经研究得相当详细[1]。性别分化是使胚胎向着雌性或雄性发育的过程,决定了性别表型。果蝇的性别分化也取得了不少研究成果。近年来,许多重要的性别调控基因已被克隆和鉴定。随着果蝇基因组全序列测定的完成,果蝇的性别控制研究将会更为深入而完善。本文对与黑腹果蝇性别决定和性别分化相关的一些问题进行综述。  相似文献   

12.
The use of Drosophila as an organism in which to study aging has been limited by the fact that few biomarkers of aging exist in the adult. In this paper we examine behavior loss relative to longevity in wild-type populations maintained at 22°C and 29°C to determine whether behavior loss—that is, loss of ability to perform certain innate behavioral responses within a defined test interval—can be used as biomarkers of aging. We find that under controlled conditions behavior loss can be used as a landmark of aging in populations maintained at either 22°C or 29°C. The ability to perform normal geotactic and phototactic responses is lost during the reproductive phase of the adult populations, whereas motor activity is not lost until well into the death phase. We feel that the use of behavior loss, together with other parameters of longevity in Drosophila, will allow comparisons to be made between different strains or between different environmental conditions to test their effect on aging. In the companion paper we demonstrate the use of behavior loss to identify a mutation which may accelerate the aging process.  相似文献   

13.
Gene pyramiding has been successfully practiced in plant breeding for developing new breeds or lines in which favorable genes from several different lines were integrated.But it has not been used in animal breeding,and some theoretical investigation and simulation analysis with respect to its strategies,feasibility and efficiency are needed before it can be implemented in animals.In this study,we used four different pure fines of Drosophila melanogaster,each of which is homozygous at a specific mutant gene with a visible effect on phenotype,to simulate the gene pyramiding process and analyze the duration and population size required in different pyramiding strategies.We finally got the ideal individuals,which are homozygous at the four target genes simultaneously.This study demonstrates that gene pyramiding is feasible in animal breeding and the interaction between genes may affect the final results.  相似文献   

14.
Gene pyramiding has been successfully practiced in plant breeding for developing new breeds or lines in which favorable genes from several different lines were integrated.But it has not been used in animal breeding,and some theoretical investigation and simulation analysis with respect to its strategies,feasibility and efficiency are needed before it can be implemented in animals.In this study,we used four different pure lines of Drosophila melanogaster,each of which is homozygous at a specific mutant gene ...  相似文献   

15.
中国黑腹果蝇种组40种果蝇的核型多样性研究   总被引:1,自引:0,他引:1  
通过传统的敲片、Giemsa染色的方法制片对中国黑腹果蝇种组(Drosophilamelanogasterspeciesgroup)8个种亚组40种果蝇的染色体进行了分析,共发现18种核型,即A、A′′、C、C′、C′′、C′′′、C′′′′、D、D′、D′′、E、E′、E′′、F、F′、G、H和I,其中A、A′′、C′′′、C′′′′、D′′和F′为新发现的核型。8个种亚组的基本核型分别是:嗜凤梨果蝇种亚组(D.ananassaesubgroup)的核型为F、F′、G和H型;牵牛花果蝇种亚组(D.eleganssubgroup)的核型为A和A′′型;细针果蝇种亚组(D.eugracilissubgroup)的核型为C型;嗜榕果蝇种亚组(D.ficusphilasubgroup)的核型为C′型;黑腹果蝇种亚组(D.melanogastersubgroup)的核型为C和C′型;山果蝇种亚组(D.montiumsubgroup)的核型为C、C′、C′′、D、D′、D′′、E、E′、E′′和I型;铃木氏果蝇种亚组(D.suzukiisubgroup)的核型为C′′′和C′′′′型;高桥氏果蝇种亚组(D.takahashiisubgroup)的核型为C、C′′′和C′′′′型。透明翅果蝇(D.lucipennis)雌性核型2n=8,雄性核型2n=7,雄性Ⅳ号染色体为染色体单体。此外还发现,吉川氏果蝇(D.kikkawai)、林氏果蝇(D.lini)、奥尼氏果蝇(D.ogumai)、拟嗜凤梨果蝇(D.pseudoananassae)和叔白颜果蝇(D.triauraria)5种果蝇有B染色体。本文确定了D.sp.likeelegans、D.sp.likenyinyii、D.sp.liketrapezifrons1、D.sp.liketakahashii、D.sp.liketrapezifrons2和D.sp.likeauraria等6个未描述种的核型和1个新记录种吉里果蝇(D.giriensis)的核型。本研究证明了在黑腹果蝇种组内、亚组内、种内和单雌系内的核型多样性,为果蝇遗传和进化提供了进一步的细胞学证据。  相似文献   

16.
In Drosophila melanogaster, synonymous codons corresponding to the most abundant cognate tRNAs are used more frequently, especially in highly expressed genes. Increased use of such "optimal" codons is considered an adaptation for translational efficiency. Need it always be the case that selection should favor the use of a translationally optimal codon? Here, we investigate one possible confounding factor, namely, the need to specify information in exons necessary to enable correct splicing. As expected from such a model, in Drosophila many codons show different usage near intron-exon boundaries versus exon core regions. However, this finding is in principle also consistent with Hill-Robertson effects modulating usage of translationally optimal codons. However, several results support the splice model over the translational selection model: 1) the trends in codon usage are strikingly similar to those in mammals in which codon usage near boundaries correlates with abundance in exonic splice enhancers (ESEs), 2) codons preferred near boundaries tend to be enriched for A and avoid C (conversely those avoided near boundaries prefer C rather than A), as expected were ESEs involved, and 3) codons preferred near boundaries are typically not translationally optimal. We conclude that usage of translationally optimal codons usage is compromised in the vicinity of splice junctions in intron-containing genes, to the effect that we observe higher levels of usage of translationally optimal codons at the center of exons. On the gene level, however, controlling for known correlates of codon bias, the impact on codon usage patterns is quantitatively small. These results have implications for inferring aspects of the mechanism of splicing given nothing more than a well-annotated genome.  相似文献   

17.
紫外线对黑尾果蝇的生物学效应   总被引:8,自引:0,他引:8  
张建民 《昆虫知识》1994,31(4):242-244
野生型黑尾果蝇经紫外线连续处理3代,随着照射时间延长,每代均表现显著的生物学效应。这些生物学效应主要是子代数量减少,羽化延续时间缩短,体重减轻,而且有致略效应和间接的诱变效应。但处理后的子代性别比例变化不大。  相似文献   

18.
Poly(ADP-ribose) polymerase (PARP) is conserved in eukaryotes. To analyze the function of PARP, we isolated and characterized the gene for PARP in Drosophila melanogaster. The PARP gene consisted of six translatable exons and spanned more than 50 kb. The DNA binding domain is encoded by exons 1-4. Although the consensus cleavage site of CED-3 like protease during apoptosis is conserved from human to Xenopus laevis PARPs, it is neither conserved in the corresponding region of Drosophila nor Sarcophaga peregrina. There are two cDNAs species in Drosophila. One cDNA could encode the full length PARP protein (PARP I), while the other is a truncated cDNA which could encode a partial-length PARP protein (PARP II), which lacks the automodification domain and is possibly produced by alternative splicing. The expression of these two forms of PARP in E. coli demonstrated that while PARP II has the catalytic NAD-binding domain and DNA-binding domain it is enzymatically inactive. On the other hand PARP I is active. A deletion mutant of PARP gene could grow to the end of embryogenesis but did not grow to the adult fly. These results suggest that the PARP gene plays an important function during the development of Drosophila.  相似文献   

19.
黑腹果蝇杂交实验的教学改革   总被引:10,自引:1,他引:10  
周玉萍  田长恩  周伯春  王正询 《遗传》2002,24(3):345-348
本文介绍关于黑腹果蝇杂交实验的一次教学改革尝试。讨论遗传学实验教学中,如何由常规的“验证性”教学改变为启发式的“发现式”教学,在本实验教学中,学生处于主导地位,自己选择实验组合,提出实验设计方案,独立完成实验内容;教师只是协助学生完成其实验内容。这种教学方法,充分发挥学生学习的主动性,培养学生独立思考和实际操作能力,激发学生的学习兴趣。 Abstract:The paper is concerned about a teaching and learning reform of hybridization experiment of Drosophila melanogaster.In the teaching of genetic experiment,we have adopted a new teaching and learning method which was a discovering way instead of tranditional method .In this way,students themselves selected the combination subject,put forward and carried out the whole experiment scheme.By the reform,we couldd find out that it was helpful not only to improve students' thinking and operating abilities but also to encourage their interests in genetics.  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