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1.
意大利蜜蜂工蜂中肠的环状RNA及其调控网络分析   总被引:1,自引:0,他引:1  
【目的】环状RNA(circRNA)在可变剪接、转录调控和来源基因的表达调控等方面具有重要功能。本研究旨在分析意大利蜜蜂Apis mellifera ligustica工蜂中肠circRNA的数量、种类、结构特征和作用,并通过构建和分析circRNA的调控网络探索circRNA的调控功能。【方法】在实验室条件下人工饲养意大利蜜蜂工蜂,利用circRNA-seq技术对意大利蜜蜂7和10日龄成年工蜂中肠样品进行深度测序。利用find_circ软件从质控后的数据中预测circRNA。通过BLAST比对GO和KEGG数据库,对circRNA的来源基因进行功能和代谢通路注释。利用TargetFinder软件预测circRNA靶向结合的miRNA及miRNA靶向结合的mRNA,通过Cytoscape v.3.2.1软件对circRNA-miRNA和circRNA-miRNA-mRNA调控网络进行构建及可视化。通过设计背靠背引物和线性扩增引物RT-PCR对预测出的circRNA进行验证。【结果】意大利蜜蜂工蜂中肠样品的测序平均得到136 463 071条clean reads,去除rRNA后各样品的anchor reads均在136 779 122条及以上。共预测出10 833个circRNA,长度主要介于15~1 000 nt;上述circRNA的类型丰富,其中已注释的外显子circRNA数量最多,分布在西方蜜蜂1号染色体的circRNA数量最多,其次为8号染色体。CircRNA的来源基因可注释到包括结合、细胞进程和细胞在内的45个GO条目,以及包括内吞作用、内质网蛋白加工及核糖体在内的121条KEGG代谢通路,表明circRNA在意大利蜜蜂工蜂中肠的生长、发育、新陈代谢和细胞生命活动等生物学过程中发挥重要作用。进一步构建circRNA-miRNA和circRNA-miRNA-mRNA调控网络,分析结果显示部分circRNA可能作为竞争性内源RNA吸附结合microRNA,从而调控基因的表达水平。最后,对随机选择的3个circRNA的RT-PCR结果验证了其真实存在。【结论】本研究对意大利蜜蜂工蜂中肠中的circRNA进行预测、分析及鉴定。研究结果提供了中肠circRNA的数量、种类、结构特征、作用和调控网络的信息,揭示了circRNA可能通过作用于来源基因和作为竞争性内源RNA在意大利蜜蜂工蜂中肠的生长发育和免疫防御中发挥作用,为深入研究circRNA在意大利蜜蜂中肠发育及胁迫响应过程中的功能奠定了基础。  相似文献   

2.
【目的】预测、分析和鉴定意大利蜜蜂Apismelliferaligustica工蜂中肠的长链非编码RNA(lncRNA),探究lncRNA的作用。【方法】结合lncRNA-seq技术和链特异性cDNA建库方法对意大利蜜蜂工蜂中肠进行深度测序;利用Perl脚本对原始数据进行过滤;联用CPC和CNCI软件对测序数据进行lncRNA预测,并比较lncRNA基因与其邻近的蛋白编码基因的结构特征;通过RT-PCR对随机选取的lncRNA进行鉴定;利用相关生物信息学软件对lncRNA、的上下游基因进行GO分类和KEGG代谢通路富集分析。【结果】意大利蜜蜂工蜂中肠样品的lncRNA-seq共得到1 956 118 858原始读段,经过滤得到1 946 489 304有效读段,共预测出6 353个lncRNA,它们较蛋白编码基因含有较少的外显子数、较短的转录本长度。通过RT-PCR验证了9个lncRNA的表达。lncRNA的上下游基因富集在42个GO条目和256条代谢通路,进一步分析结果表明这些lncRNA参与调控意大利蜜蜂工蜂中肠的新陈代谢和细胞生命活动等生物学过程。【结论】研究结果丰富了蜜蜂的lncRNA信息,也为阐明lncRNA在意大利蜜蜂工蜂中肠发育及胁迫响应过程中的作用打下了基础。  相似文献   

3.
对意大利蜜蜂 Apis mellifera ligustica L工蜂唾腺和中肠中淀粉酶、蛋白酶、蔗糖酶、果胶酶和海藻糖酶5种消化酶进行活性测定,发现巾肠的蛋门酶和蔗糖酶活性较唾腺高,有显著性差异;唾腺的果胶酶活性较中肠高,有显著性差异;唾腺与中肠的淀粉酶和海藻糖酶没有显著性差异.表明意大利蜜蜂工蜂对蔗糖和蛋白的消化主要由中肠分泌的消化酶来完成,唾腺起辅助作用;对果胶的消化主要在唾腺,中肠起辅助作用;而在淀粉和海藻糖的消化过程中唾腺和中肠都有很重要的作用.  相似文献   

4.
[目的]本研究结合前期已获得的miRNA和mRNA组学数据对东方蜜蜂微孢子虫Nosema ceranae 的差异表达 miRNA(differentially expressed miRNA,DEmiRNA)靶向意大利蜜蜂 Apis mellifera ligustica 工蜂中肠的 mRNA 和差异表达 mRNA(d...  相似文献   

5.
【目的】利用代谢组学分析患枣花病意大利蜜蜂Apis mellifera ligustica工蜂中肠内代谢物变化,挖掘出与蜜蜂枣花病相关的重要代谢通路,旨在揭示蜜蜂枣花病发病机制,为枣花病靶向药物的研发提供理论依据。【方法】分别利用液相色谱-质谱联用(liquid chromatography-mass spectrometry, LC-MS)和气相色谱-质谱联用(gas chromatography-mass spectrometry, GC-MS)技术对患枣花病和健康意大利蜜蜂工蜂进行中肠非靶向代谢组检测;通过主成分分析(principal component analysis, PCA)和正交偏最小二乘法判别分析(orthogonal partial least squares discriminant analysis, OPLS-DA),以变量投影重要性(variable projection importance, VIP)>1.0,差异倍数(fold change, FC)>2.0和P<0.05为标准筛选差异代谢物,并对其进行KEGG注释和通路富集;利用生...  相似文献   

6.
【目的】意大利蜜蜂(Apis mellifera ligustica,简称意蜂)是西方蜜蜂(Apis mellifera)的亚种之一。蜜蜂球囊菌(Ascosphaera apis)侵染意蜂幼虫导致白垩病。本研究对西方蜜蜂裸表皮蛋白(naked cuticle, Nkd)进行保守基序预测和系统进化分析,并通过RNAi明确nkd基因对意蜂工蜂幼虫体重及宿主响应蜜蜂球囊菌胁迫的免疫应答的影响,以期丰富西方蜜蜂基因nkd的信息,并揭示意蜂幼虫nkd的功能。【方法】通过MEME软件预测西方蜜蜂和其他9个物种Nkd蛋白的保守基序。采用MEGA X软件对西方蜜蜂及其他9个物种的Nkd蛋白进行系统进化分析。通过饲喂dsRNA对意蜂幼虫肠道内的nkd进行RNAi。使用电子天平对幼虫进行称重。利用RT-qPCR检测nkd基因的干扰效率及免疫基因的相对表达量。【结果】西方蜜蜂与东方蜜蜂、柑橘凤蝶、家蚕和金凤蝶的Nkd蛋白均含有3个保守基序(motif 1、motif 2 和motif 3),说明上述5个昆虫物种的Nkd具有较高的保守性。西方蜜蜂与东方蜜蜂的Nkd蛋白聚为一支,说明二者的亲缘关系近。与dsRNA-egfp组相比,dsRNA-nkd组5日龄和6日龄幼虫肠道内nkd的表达量均极显著下调(P<0.001),干扰效率分别为49.60%和56.40%。另外,dsRNA-nkd组幼虫体重较dsRNA-egfp组显著下降,说明nkd显著影响幼虫体重。RT-qPCR结果显示,4日龄幼虫肠道内abaecinapidaecinbirc5defensin-1PGRP-S2均被激活表达;5日龄幼虫肠道内abaecinapidaecinbirc5defensin-1均被激活表达,PGRP-S2的表达受到抑制;6日龄幼虫肠道内abaecin被激活表达,而apidaecinbirc5defensin-1PGRP-S2的表达均受到抑制,说明上述5个免疫基因在宿主响应胁迫的过程中呈不同的表达趋势,均参与宿主的免疫应答,nkdabaecinapidaecin的表达存在负向调控关系。【结论】西方蜜蜂的Nkd蛋白含有3个保守基序(motif 1、motif 2和motif 3),西方蜜蜂与东方蜜蜂的Nkd蛋白亲缘关系最近,通过饲喂dsRNA能有效干扰意蜂工蜂幼虫肠道内nkd表达,nkd影响意蜂工蜂幼虫体重及宿主对蜜蜂球囊菌胁迫的免疫应答。  相似文献   

7.
刘启鹏  安妮  岑山  李晓宇 《遗传》2018,40(6):445-450
转座子是一类可以在染色体上或不同染色体间自由移动的DNA。在高等生物中,处于活跃状态的转座子多为通过RNA中间体进行转座的逆转录转座子。由于逆转录转座子在细胞基因组中占有很高的比例,它的频繁转座能引起细胞基因组结构和功能的改变,导致癌症等严重基因疾病的发生,因此宿主细胞在长期的进化中形成了多种自我保护机制用以控制逆转录转座子活性。属于非编码小RNA的piRNA以其独特的机制在转录及转录后水平控制逆转录转座子RNA中间体的产生,抑制了逆转录转座过程的发生。本文总结了近年来piRNA控制转座子转座相关分子机制的研究进展,以期为转座子及基因调控方面的研究工作提供一些参考。  相似文献   

8.
本研究利用已获得的意大利蜜蜂Apis mellifera ligustica工蜂中肠的转录组数据对意蜂的单核苷酸多态性(Single nucleotide polymorphism, SNP)和插入缺失(Insertion-Deletion, InDel)突变位点进行挖掘和分析,共鉴定到232 678个SNP位点,其中发生转换和颠换的SNP位点数分别为196 087和36 591个;最丰富的突变类型是G/A,最少的突变类型为T/G;分布在内含子的SNP位点最多,其次为外显子和基因间区;密码子突变类型为同义突变的SNP位点数最多,其次是非同义突变、终止子增加和终止子减少;此外,SNP位点所在基因可注释到 50个 GO条目和351条KEGG通路。共鉴定到38 715个InDel位点,最丰富的突变类型为移码插入,其次是移码缺失;分布InDel位点数较多的基因组区域为内含子和基因间区;另外,InDel位点所在基因可注释到50个功能条目和340条通路。研究结果丰富了西方蜜蜂Apis mellifera的SNP和InDel位点信息,并为开发和利用意蜂的新型分子标记提供基础。  相似文献   

9.
蜜蜂Apis mellifera L.蜂群中的工蜂卵巢发育和工蜂产卵现象受多种因素控制,了解其影响因素对养蜂生产具有重要意义。本研究将意大利蜜蜂蜂群设置为囚王群(tg1)、无王有子群(tg2)、无王无子群(tg3)以及正常有王蜂群(CK)4个试验组,通过对工蜂卵巢管的显微观察,确定不同处理组工蜂在不同时间段内卵巢的发育情况。结果表明:随着时间的延长,与CK处理组相比,tg3处理组中的工蜂卵巢发育水平最高,tg2次之,tg1最低;在31d时,4个处理组两两之间差异均达到显著水平(P<0.05)。tg1、tg2和tg3处理组中工蜂产卵前期时间分别为35、22和17d,而CK蜂群在试验期内未出现工蜂产卵现象;tg2和tg3处理组的工蜂产卵的封盖前期时间分别为8和6d,而tg1和CK组在试验期内未出现子房封盖现象。蜂群失王时间过长会刺激工蜂卵巢发育,并导致其产卵;蜂群的短期失王和蜂王老化也会刺激工蜂卵巢发育,但是刺激程度较低;蜂群中的蜂子能抑制工蜂卵巢管的发育,因此在蜂群短时间失王时可以适当地补充子脾延缓工蜂卵巢发育。  相似文献   

10.
东方蜜蜂微孢子虫Nosema ceranae侵染成年蜜蜂导致蜜蜂微孢子虫病。本研究旨在验证东方蜜蜂微孢子虫nce-miR-12220的存在和表达,并检测nce-miR-12220及其靶基因在病原侵染意大利蜜蜂Apis mellifera ligustica (简称意蜂)工蜂过程的表达谱。Stem-loop RT-PCR和Sanger测序结果显示nce-miR-12220真实存在和表达。靶向预测结果显示nce-miR-12220共靶向KRAB-Aγ tubulin等15个基因。上述靶基因可注释到19个GO条目和3条KEGG通路。RT-qPCR结果显示,相较于接种后1 d (1 day post infection,1 dpi),nce-miR-12220在2 dpi上调表达,而在3-12 dpi阶段总体表现出显著下调表达的趋势。类似地,与1 dpi相比,靶基因KRAB-A在2 dpi上调表达,而在3-12 dpi阶段总体呈下调表达的趋势。另外,与1 dpi相比,靶基因γ tubulin在2-12 dpi阶段总体表现出显著下调表达的趋势。上述结果表明nce-miR-12220与KRAB-Aγ tubulin之间存在潜在的靶向结合和正向调控关系;东方蜜蜂微孢子虫通过下调表达nce-miR-12220抑制KRAB-A的表达进而促进增殖;意蜂工蜂可能通过抑制东方蜜蜂微孢子虫的γ tubulin表达抵御病原侵染。研究结果明确了nce-miR-12220及其靶基因KRAB-Aγ tubulin在东方蜜蜂微孢子虫侵染意蜂工蜂过程中的动态表达规律,为深入探究nce-miR-12220在病原侵染中的功能及调控机制提供了理论和实验依据。  相似文献   

11.
Identification of piRNAs in the central nervous system   总被引:1,自引:0,他引:1  
Piwi-interacting RNAs (piRNAs) are small noncoding RNAs generated by a conserved pathway. Their most widely studied function involves restricting transposable elements, particularly in the germline, where piRNAs are highly abundant. Increasingly, another set of piRNAs derived from intergenic regions appears to have a role in the regulation of mRNA from early embryos and gonads. We report a more widespread expression of a limited set of piRNAs and particularly focus on their expression in the hippocampus. Deep sequencing of extracted RNA from the mouse hippocampus revealed a set of small RNAs in the size range of piRNAs. These were confirmed by their presence in the piRNA database as well as coimmunoprecipitation with MIWI. Their expression was validated by Northern blot and in situ hybridization in cultured hippocampal neurons, where signal from one piRNA extended to the dendritic compartment. Antisense suppression of this piRNA suggested a role in spine morphogenesis. Possible targets include genes, which control spine shape by a distinctive mechanism in comparison to microRNAs.  相似文献   

12.
The adult Drosophila midgut is thought to arise from an endodermal rudiment specified during embryogenesis. Previous studies have reported the presence of individual cells termed adult midgut precursors (AMPs) as well as “midgut islands” or “islets” in embryonic and larval midgut tissue. Yet the precise relationship between progenitor cell populations and the cells of the adult midgut has not been characterized. Using a combination of molecular markers and directed cell lineage tracing, we provide evidence that the adult midgut arises from a molecularly distinct population of single cells present by the embryonic/larval transition. AMPs reside in a distinct basal position in the larval midgut where they remain through all subsequent larval and pupal stages and into adulthood. At least five phases of AMP activity are associated with the stepwise process of midgut formation. Our data shows that during larval stages AMPs give rise to the presumptive adult epithelium; during pupal stages AMPs contribute to the final size, cell number and form. Finally, a genetic screen has led to the identification of the Ecdysone receptor as a regulator of AMP expansion.  相似文献   

13.
A k-mer scheme to predict piRNAs and characterize locust piRNAs   总被引:1,自引:0,他引:1  
  相似文献   

14.
Piwi proteins and their partner small RNAs play an essential role in fertility, germ-line stem cell development, and the basic control and evolution of animal genomes. However, little knowledge exists regarding piRNA biogenesis. Utilizing microfluidic chip analysis, we present a quantitative profile of zebrafish piRNAs expressed differentially between testis and ovary. The sex-specific piRNAs are derived from separate loci of repeat elements in the genome. Ovarian piRNAs can be categorized into groups that reach up to 92 members, indicating a sex-specific arrangement of piRNA genes in the genome. Furthermore, precursor piRNAs preferentially form a hairpin structure at the 3′end, which seem to favor the generation of mature sex-specific piRNAs. In addition, the mature piRNAs from both the testis and the ovary are 2′-O-methylated at their 3′ ends.SMALL RNAs, ranging from 19 to 30 nucleotides (nt) in length, constitute a large family of regulatory molecules with diverse functions in invertebrates, vertebrates, plants, and fungi (Bartel 2004; Nakayashiki 2005). Two major classes of small RNAs are microRNAs (miRNAs) and small interfering RNAs (siRNAs). The functions of small RNAs have been conserved through evolution; they have been shown to inhibit gene expression at the levels of mRNA degradation, translational repression, chromatin modification, heterochromatin formation, and DNA elimination (Mochizuki et al. 2002; Bartel 2004; Kim et al. 2005; Brodersen and Voinnet 2006; Lee and Collins 2006; Vaucheret 2006).Over the past few years, focus on the genetics of small RNAs has helped clarify the mechanisms behind the regulation of these molecules. While hundreds of small RNAs have been identified from mammalian somatic tissues, relatively little is known about small RNAs in germ cells. A recent breakthrough has been the identification of small RNAs that associate with Piwi proteins (piRNAs) from Drosophila and mammalian gonads (Aravin et al. 2001, 2006; Girard et al. 2006; Grivna et al. 2006; Vagin et al. 2006; Watanabe et al. 2006). piRNAs and their interacting proteins Ziwi/Zili have also been identified in zebrafish (Houwing et al. 2007, 2008). Increasing evidence indicates that piRNAs play roles mainly in germ cell differentiation and genomic stability (Carthew 2006; Lau et al. 2006; Vagin et al. 2006; Brennecke et al. 2007; Chambeyron et al. 2008; Klattenhoff and Theurkauf 2008; Kuramochi-Miyagawa et al. 2008; Kim et al. 2009; Lim et al. 2009; Unhavaithaya et al. 2009). Moreover, although piRNAs are mostly expressed in germ line cells, recent studies showed piRNA expression in nongerm cells, for example, T-cell lines (Jurkat cells and MT4) (Azuma-Mukai et al. 2008; Yeung et al. 2009), indicating other functions such as in the immune system. piRNAs do not appear to be derived from double-stranded RNA precursors, and their biogenesis mechanisms, although unclear, may be distinct from those of siRNA and miRNA. Recently, two distinct piRNA production pathways were further proposed: the “ping-pong” model (Brennecke et al. 2007; Gunawardane et al. 2007) and the Ago3-independent piRNA pathway centered on Piwi in somatic cells (Li et al. 2009; Malone et al. 2009). However, the mechanistic pathways of piRNA activity and their biogenesis are still largely unknown.Teleost fishes comprise >24,000 species, accounting for more than half of extant vertebrate species, displaying remarkable variation in morphological and physiological adaptations (see review in Zhou et al. 2001). Recently, Houwing et al. (2007, 2008) reported findings on Ziwi/Zili and associated piRNAs, implicating roles in germ cell differentiation, meiosis, and transposon silencing in the germline of the zebrafish. However, some of the identified zebrafish piRNAs are nonrepetitive and nontransposon-related piRNAs, suggesting that piRNAs may have additional unknown roles. In this study, we show that for males and females, piRNAs are specifically derived from separate loci of the repeat elements, and that ovarian piRNAs are far more often associated in groups. Genomic analysis of piRNAs indicates a tendency to folding at the 3′ end of the piRNA precursor, which may favor cleavage of the piRNA precursor to generate mature sex-specific piRNAs. Furthermore, methylation modification occurs at the 2′-O-hydroxyl group on the ribose of the final 3′ nucleotide in both the testis and the ovary.  相似文献   

15.
Transposable element (TE) activity is repressed in the Drosophila germline by Piwi-Interacting RNAs (piRNAs), a class of small non-coding RNAs. These piRNAs are produced by discrete genomic loci containing TE fragments. In a recent publication, we tested for the existence of a strict epigenetic induction of piRNA production capacity by a locus in the D. melanogaster genome. We used 2 lines carrying a transgenic 7-copy tandem cluster (P-lacZ-white) at the same genomic site. This cluster generates in both lines a local heterochromatic sector. One line (T-1) produces high levels of ovarian piRNAs homologous to the P-lacZ-white transgenes and shows a strong capacity to repress homologous sequences in trans, whereas the other line (BX2) is devoid of both of these capacities. The properties of these 2 lines are perfectly stable over generations. We have shown that the maternal transmission of a cytoplasm carrying piRNAs from the first line can confer to the inert transgenic locus of the second, a totally de novo capacity to produce high levels of piRNAs as well as the ability to induce homology-dependent silencing in trans. These new properties are stably inherited over generations (n > 50). Furthermore, the converted locus has itself become able to convert an inert transgenic locus via cytoplasmic maternal inheritance. This results in a stable epigenetic conversion process, which can be performed recurrently—a phenomenon termed paramutation and discovered in Maize 60 y ago. Paramutation in Drosophila corresponds to the first stable paramutation in animals and provides a model system to investigate the epigenetically induced emergence of a piRNA-producing locus, a crucial step in epigenome shaping. In this Extra View, we discuss some additional functional aspects and the possible molecular mechanism of this piRNA-linked paramutation.  相似文献   

16.
Enterococcus sp. was isolated from the midgut of silkworm against the germination ofNosema bombycis spores. Identification was based on the biochemical characteristics, 16S rDNA sequences analysis and species-specific probes ofEnterococcus spp. The isolated strains fermented sorbitol and arabinose but did not ferment raffinose.Enterococcus sp. was clustered together withEnterococcus mundtii ATCC 43188 and 100% sequence homology was found by 16S rDNA sequences BLAST analysis and constructing the phylogenetic tree. Comparison of the sequences of the 16S rDNA species-specific probes ofEnterococcus spp. with the 16S rDNA sequence of isolate revealed similar segment to the species-specific probe ofE. mundtii. So, we can make conclusion the 16S rDNA segment ofEnterococcus sp. can hybridise with species-specific probe ofE. mundtii. Enterococcus mundtii was detected for the first time in the intestine of silkworm.  相似文献   

17.
The crystal proteins of Bacillus thuringiensis are widely used in transgenic crops and commercially available insecticides. Manduca sexta, the tobacco hornworm, is the model insect for B. thuringiensis studies. Although brush border vesicles prepared from larval M. sexta midgut have been used in numerous mode-of-action studies of B. thuringiensis toxins, their protein components are mostly unknown. Vesicles prepared from the brush border of M. sexta midgut were analyzed using one- and two-dimensional gel electrophoresis to establish a midgut brush border proteome. Sub-proteomes were also established for B. thuringiensis Cry1Ac binding proteins and glycosylphosphatidyl inositol (GPI) anchored proteins. Peptide mass fingerprints were generated for several spots identified as Cry1Ac binding proteins and GPI-anchored proteins and these fingerprints were used for database searches. Results generally did not produce matches to M. sexta proteins, but did match proteins of other Lepidoptera. Actin and alkaline phosphatase were identified as novel proteins that bind Cry1Ac in addition to the previously reported aminopeptidase N. Aminopeptidase N was the only GPI-anchored protein identified. Actin, aminopeptidase N, and membrane alkaline phosphatase were confirmed as accurate protein identifications through western blots.  相似文献   

18.
Biogenesis and germline functions of piRNAs   总被引:7,自引:0,他引:7  
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19.
Digestion of proteins in the midgut of lepidopteran larvae relies on different trypsin and chymotrypsin isoforms. In this study we describe three chymotrypsin-like proteinases (CTLP2-4) from the larval midgut of Manduca sexta, which are closely related to CTLP1 and less closely related to another chymotrypsin (CT), two previously described proteinases present in the larval midgut of M. sexta. CTLP1-4 fit perfectly into a novel subgroup of insect CTLPs by sequence similarity and by the replacement of GP by SA in the highly conserved GDSGGP motif. When we examined CTLP expression in different tissues, most of the proteinases were predominantly expressed in the anterior and median midgut, while some were found in the Malpighian tubules. When we examined CTLP expression at different physiological states, we observed that the CTLP mRNA amounts did not differ considerably in feeding and starving larvae except for CTLP2, whose mRNA dropped significantly upon starvation. During moulting, however, the mRNA amounts of all CTLPs dropped significantly. When we immunologically examined CTLP amounts, mature proteinases were only detectable in the gut lumen of feeding and re-fed larvae, but not in that of starving or moulting larvae, suggesting that CTLP secretion is suspended during starvation or moult.  相似文献   

20.
Li Y  Wang HY  Wan FC  Liu FJ  Liu J  Zhang N  Jin SH  Li JY 《Gene》2012,497(2):330-335
The epididymis plays a crucial role in regulating the development of sperm motility and fertilizing capacity. Small non-coding RNAs (sncRNAs), especially microRNAs (miRNAs), can participate in the regulation of various physiological pathways. However, their abundance and whether they are involved in the regulation of gene expression in the human epididymis are unknown. By adopting the Solexa deep sequencing approach, we systematically investigated the sncRNAs in the adult human epididymis. A total of 4903 unique sequences representing 527 known miRNA were discovered. Eighteen novel miRNA genes encoding 23 mature miRNAs were also identified and the expression of some of them was confirmed by qRT-PCR. The presence of Piwi-interacting RNAs (piRNAs) in the library also adds to the diversity of the sncRNA population in the human epididymis. This research will contribute to a preliminary database for their functional study in male reproductive system.  相似文献   

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