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1.
目的 检测成年牛心脏、肾脏、肝脏及睾丸组织中Gadd45a基因表达情况及DNA甲基化状态,并说明二者之间的关系.结果 牛Gadd45a基因在心脏中没有表达,而在其他3种组织中有表达且略有差异.选定该基因调控区中的7个CpG位点,利用甲基化特异性PCR检测CpG位点的DNA甲基化状态,结果心脏中的甲基化程度明显高于其他3种组织.结论 DNA甲基化对牛Gadd45a基因的组织特异性表达有一定影响.  相似文献   

2.
DNA甲基化是主要的表观遗传调节方式,在转录水平调节基因的表达,甲基化CpG结合蛋白MBD1能够结合甲基化及非甲基化的DNA,通过抑制域抑制基因的转录,在DNA甲基化和转录抑制之间起重要作用,但DNA甲基化对MBD1自身的调节作用还不清楚.本研究首先利用RT-PCR检测成年牛心脏、肾脏、肝脏、睾丸及卵巢5种组织中MBD1基因mRNA的表达;并根据牛MBD1调节区序列,针对其中的12个CpG位点设计引物,利用甲基化PCR测序分析方法,分析该调节区的DNA甲基化状态在牛5种组织中的变化.结果表明,在牛的5种组织中,MBD1基因在心脏和肾脏的表达量低于肝脏、睾丸及卵巢,且差异显著(P<0.05);DNA甲基化检测显示,心脏和肾脏MBD1调节区的甲基化比率较肝脏、睾丸及卵巢甲基化低,说明调控区DNA甲基化与MBD1基因的组织特异性表达相关.  相似文献   

3.
目的:旨在建立一种简便易行的DNA甲基化文库构建载体,用于筛选细胞中具有甲基化敏感性CCGG位点的DNA片段。方法:根据HpaⅡ/MspⅠ酶切体系对甲基化酶敏感性不同的特点,通过在PCR引物中添加CCGG酶切位点的方法,将扩增得到的目的片段连接到无CpG甲基化的质粒载体上。结果:成功构建了含双CCGG位点的pCpGfree-HpaⅡ/MspⅠ-1质粒载体。结论:所构建的pCpGfree-HpaⅡ/MspⅠ-1质粒载体CCGG位点未发生甲基化,故可以用于构建含有甲基化CCGG序列的DNA甲基化文库。  相似文献   

4.
以湿地松×洪都拉斯加勒比松(Pinus elliottii×P.caribaea var.hondurensis)及亲本为实验材料,采用甲基化敏感扩增多态性技术对其基因组中CCGG位点的甲基化相对水平及遗传变异模式进行了初步分析。结果表明,杂种及亲本CCGG总甲基化相对水平介于77.74%~81.75%,CG甲基化相对水平略低于CNG甲基化水平,CG/CNG甲基化相对水平高于亲本。杂种遗传自亲本的CG与CNG甲基化位点数之比接近1:1,遗传自母本的甲基化位点数与遗传自父本的CCGG甲基化位点数比例为1:1;杂种产生的全新甲基化与完全去甲基化位点数之比接近7:1,初步推测大量甲基化变异促进了杂合体的生长发育。  相似文献   

5.
采用扩增片段长度多态性(AFLP)和甲基化敏感扩增多态性(MSAP)技术分析红豆杉脱分化前后基因组DNA和DNA甲基化状态的变化。选用32个AFLP引物组合从红豆杉植株及其愈伤组织分别扩增出1834个片段,无多态性片段产生。这说明红豆杉植株在诱导形成愈伤组织的过程中基因组DNA保持高度的遗传稳定性。另用32个MSAP引物组合从红豆杉植株及其愈伤组织分别扩增出1197个片段,总扩增位点的甲基化水平由脱分化前的12.4%上升为16.2%,表明红豆杉在脱分化过程中的某些位点发生了甲基化。红豆杉脱分化前后的DNA甲基化模式也存在较大差异,说明DNA甲基化对愈伤组织形成有调控作用。  相似文献   

6.
本文调查研究了野生稻群体内及群体间的DNA甲基化多样性。选取与亚洲栽培稻近缘的两个野生种Oryza nivaraO. rufipogon作为研究对象, 采用改进的MSAP (methylation-sensitive amplification polymorphism)技术对其基因组CCGG位点的甲基化多样性进行了分析。结果表明: 在同一个IRGC(the International Rice Germplasm Center)编号群体内的不同个体间, 基因组甲基化条带高度一致; 而在不同编号群体间, 甲基化条带表现为多态。其中后者又可以分为两类: 条带模式高度一致的Class I和条带模式呈多态性的Class II。将上述两类甲基化片段的编码基因与栽培稻粳稻(O. sativaL. subsp. japonica)和籼稻(O. sativa L. subsp. indica)两个亚种的同源基因进行序列比对发现, 在进化趋势上Class I表现得比较保守, 而Class II较为活跃。DNA甲基化多样性作为标志遗传多样性的一种信息来源, 其在群体分化及物种进化过程中的作用还需要进一步探讨。  相似文献   

7.
DNA甲基化是表观遗传调控的重要机制,在真核生物基因表达调控中发挥重要作用。本研究通过荧光标记的甲基化敏感扩增多态性技术(F-MSAP,fluorescence-labeled methylation-sensitive amplified polymorphism)对二斑叶螨Tetranychus urticae Koch 4个龄期(卵、幼螨、若螨、成螨)基因组DNA中CCGG位点的胞嘧啶甲基化水平和模式进行分析。研究结果显示3种甲基化模式:无甲基化(TypeⅠ),半甲基化(TypeⅡ),全甲基化(TypeⅢ)在4个龄期均有出现,扩增的总甲基化位点共有641个,其中半甲基化率(TypeⅡ)均高于全甲基化率(TypeⅢ),各个龄期的平均总甲基化率(TypeⅡ+TypeⅢ)为16.01%,平均半甲基化率为10.24%,平均全甲基化率为5.77%。F-MSAP分析结果表明不同发育时期的二斑叶螨基因组DNA的甲基化水平和模式存在差异。  相似文献   

8.
应用甲基化敏感扩增多态性(MSAP)技术对6头长白公猪和50头蓝塘母猪及5头长白×蓝塘杂交F1代3个群体基因组DNA胞嘧啶甲基化位点进行检测,旨在克隆和分析父母代猪及其杂种F1代之间基因组DNA共同甲基化片段和差异片段,并找到其同源基因.结果显示,从MSAP条带中分离、克隆得到18条3个群体共同的甲基化片段、10条母代独有的甲基化片段和9条杂交一代独有的甲基化片段,其中有1条3个群体共有的甲基化片段通过EST拼接和电子延伸后在NCBI数据库中找到同源基因,即猪类酪氨酸蛋白激酶Lyn基因(GeneID:LOC100152890,序列号:XM_001926250).结果表明,长蓝杂交F1代与其父母代之间的基因组甲基化存在异同,为通过MSAP技术克隆猪基因组DNA甲基化片段及寻找其对应的甲基化基因提供可能,也会为将来研究这些甲基化基因表达调控机制奠定基础.  相似文献   

9.
草鱼全同胞鱼苗不同个体甲基化位点的差异   总被引:2,自引:0,他引:2  
本研究通过甲基化敏感扩增多态性(Methylation sensitive amplification polymorphism)对一对草鱼亲本的20个子代甲基化位点进行了研究。从20对引物组合中扩增出311个位点,其中甲基化位点236个,占总扩增位点的75.9%,表明草鱼水花期基因组甲基化水平已经很高,说明它们大部分组织分化基本完成;其中甲基化多态位点65个,占甲基化位点的27.5%,说明这些子代草鱼甲基化位点已经有相当的差异。对其他两对亲本的后代用六个引物组合扩增的结果表明,同一亲本的子代在甲基化模式上有差异可能是普遍现象。本研究结果说明,即使来自同一对草鱼亲本的不同子代个体在基因表达上也有较大的差异,因此很多性状在草鱼后代的分离和一些基因表达的改变有一定的关系。  相似文献   

10.
以孝顺竹为材料,利用HPLC和MSAP技术在其未开花至开花的生长过程中进行甲基化水平的检测,分析竹子开花过程中基因组DNA甲基化的动态,以揭示DNA甲基化水平与竹子开花现象的相关性。结果显示:(1)孝顺竹基因组DNA甲基化率在不同的时间处于动态变化中,进入开花状态的孝顺竹植株其甲基化水平极显著低于开花竹丛中未开花植株和未开花竹丛;开花和未开花植株的总甲基化率分别为9.00%和12.42%,全甲基化率分别为5.06%和7.53%。(2)MSAP位点中有66.83%的位点在开花和未开花材料中甲基化状态保持一致,33.17%的位点在开花和未开花植株中发生甲基化变化:其中22.28%的位点在开花植株中发生完全的去甲基化,1.98%的谱带在开花植株中发生甲基化,8.91%的位点在开花和未开花材料中甲基化水平呈现上升或降低的趋势。研究表明,开花的孝顺竹同时发生甲基化和去甲基化,但发生去甲基化的概率明显大于发生甲基化的概率,最终导致其甲基化水平极显著降低。  相似文献   

11.
Analysis of DNA methylation in different maize tissues   总被引:2,自引:0,他引:2  
DNA methylation plays an important role in gene expression regulation during biological development and tissue differentiation in plants. This study adopted methylation-sensitive Amplified fragment length polymorphism (AFLP) to compare the levels of DNA cytosine methylation at CCGG sites in tassel, bracteal leaf, and ear leaf from maize inbred lines, 18 White and 18 Red, respectively, and also examined specific methylation patterns of the three tissues. Significant differences in cytosine methylation level among the three tissues and the same changing tendency in two inbred lines were detected. Both MSAP (methylation sensitive amplification polymorphism) ratio and full methylation level were the highest in bracteal leaf, and the lowest in tassel. Meanwhile, different methylation levels were observed in the same tissue from the inbred lines, 18 White and 18 Red. Full methylation of internal cytosine was the dominant type in the maize genome. The differential methylation patterns in the three tissues were observed. In addition, sequencing of nine differentially methylated fragments and the subsequent blast search revealed that the cytosine methylated 5 ' -CCGG-3 ' sequences were distributed in repeating sequences, in the coding and noncoding regions. Southern hybridization was used to verify the methylation polymorphism. These results clearly demonstrated the power of the MSAP technique for large-scale DNA methylation detection in the maize genome, and the complexity of DNA methylation change during plant growth and development. The different methylation levels may be related to specific gene expression in various tissues.  相似文献   

12.
Understanding dynamics and inheritance of DNA methylation represents important facets for elucidating epigenetic paradigms in plant development and evolution. Using four sets of sorghum (Sorghum bicolor L.) inter-strain hybrids and their inbred parents, the developmental stability and inheritance of cytosine methylation in two tissues, leaf and endosperm, by MSAP analysis were investigated. It was found that in all lines (inbred and hybrid) studied, endosperm exhibited a markedly reduced level of full methylation of the external cytosine or both cytosines at the CCGG sites relative to leaf, which caused a variable reduction in the estimated total methylation level in endosperm by 6.89–19.69% (11.47% on average). For both tissues, a great majority of cytosine methylation profiles transmitted to F1 hybrids, however, from 1.69 to 3.22% of the profiles showed altered patterns in hybrids. Both inherited and altered methylation profiles can be divided into distinct groups, and their frequencies are variable among the cross-combinations, and between the two tissues. The variations in methylation level and pattern detected in the hybrids were not caused by parental heterozygosity, and they could be either non-random or stochastic among hybrid individuals. Homology analysis of isolated bands that showed endosperm-specific hypomethylation or variation in hybrids indicated that diverse sequences were involved, including known-function cellular genes and mobile elements. RT-PCR analysis of six genes representing endosperm-specific hypomethylation in MSAP profiles indicated that all showed higher expression in endosperm than in leaf, suggesting involvement of methylation state in regulating tissue-specific or tissue-biased expression in sorghum. Analysis on leaf-RNA from 5-azacytidine-treated plants further corroborated this possibility. Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users.  相似文献   

13.
镉胁迫下萝卜基因组DNA甲基化敏感扩增多态性分析   总被引:27,自引:0,他引:27  
应用甲基化敏感扩增多态性(MSAP)技术分析了重金属镉(cd)胁迫处理后萝卜基因组DNA甲基化程度的变化。结果表明,经50、250和500mg/L CdCl_2处理后,MSAP比率分别为37%、43%和51%,均高于对照(34%);全甲基化率(双链C~mCGG)分别为23%、25%和27%,而其对照为22%,表明重金属CdCl_2胁迫后,某些位点发生了重新甲基化。萝卜叶片DNA中总甲基化水平的增加与CdCl_2处理浓度呈显著正相关。甲基化变异可分为重新甲基化、去甲基化、不定类型以及与对照相同的甲基化模式等类型,Cd胁迫处理引起的植株基因组DNA甲基化程度的提高主要是重新甲基化。  相似文献   

14.
Analysis of DNA methylation during the germination of wheat seeds   总被引:1,自引:0,他引:1  
DNA methylation is known to play a crucial role in regulating plant development and organ or tissue differentiation. Here, we focused on the DNA methylation dynamics during the germination of wheat seeds using the adapted AFLP technique so called methylation-sensitive amplified polymorphism (MSAP). The MSAP profiles of genomic DNA in embryo and endosperm tissues of germinating seeds, as well as dry seeds were characterized and notable changes of cytosine methylation were detected. Comparisons of MSAP profiles in different tissues tested showed that the methylation level in dry seeds is the highest. The alteration analysis of cytosine methylation displayed that the number of demethylation events were three times higher than that of de novo methylation, which indicated that the demethylation was predominant in germinating wheat seeds, though the methylation events occurred as well. Sixteen differentially displayed DNA fragments in MSAP profiles were cloned and the sequencing analysis confirmed that nine of them contained CCGG sites. The further BLAST search showed that four of the cloned sequences were located in coding regions. Interestingly, three of the sixteen candidates were homologous to retrotransposons, which indicated that switches between DNA methylation and demethylation occurred in retrotransposon elements along with the germination of wheat seeds.  相似文献   

15.
以高粱(Sorghum bicolor(L.)Moench)品种‘B_2V_4’和‘1383-2’杂交获得的F_2群体为材料,通过SSR和MSAP标记检测高粱基因组差异,构建其甲基化遗传连锁群。结果显示,高粱甲基化连锁群LGC含有3个SSR标记和23个甲基化标记,覆盖高粱基因组44.3 cM;甲基化连锁群LGD含有4个SSR标记和8个甲基化标记,覆盖高粱基因组46.2 cM。LGC上甲基化位点仅来源于EcoRⅠ/MspⅠ酶切组合,而LGD上有来源于EcoRⅠ/MspⅠ和EcoRⅠ/HpaⅡ两种酶切组合的甲基化位点。在LGC连锁群Xtxp 69附近检测到一个密集的甲基化位点区域。研究结果表明MSAP标记可以快速检测植物基因组甲基化差异,适用于构建甲基化连锁群。  相似文献   

16.
为探讨巴西橡胶树(Hevea brasiliensis)自根幼态无性系与供体间差异产生的原因,应用甲基化敏感扩增多态性扩增技术,对巴西橡胶树体细胞胚发生过程中基因组DNA 胞嘧啶甲基化程度和模式进行了分析。结果表明,在巴西橡胶树体细胞胚发生过程中不同阶段的DNA 甲基化程度不同,以花药的DNA 甲基化程度最高,体细胞胚的DNA 甲基化水平最低。在体细胞胚发生过程中出现了I、Ⅱ和Ⅲ 3 种类型的甲基化多态性带型的改变,包括他们的出现与消失。因此,橡胶树体细胞胚发生过程中可能通过DNA 甲基化甲基化和去甲基化来调控基因的表达。  相似文献   

17.
利用甲基化敏感扩增多态性(Methylation-sensitive amplified polymorphism, MSAP)技术分析了健康仿刺参(Apostichopus japonicus)体壁和“化皮病”仿刺参病变体壁、正常体壁DNA序列中CCGG位点的甲基化情况。结果显示, 健康仿刺参体壁和“化皮病”仿刺参病变体壁、正常体壁总甲基化水平分别为(18.60±5.61)%、(26.70±6.82)%和(19.53±3.34)%, 其中全甲基化水平分别为(13.97±4.86)%、(20.08±5.26)%和(15.42±2.61)%, 半甲基化水平分别为(4.63±3.59)%、(6.62±3.80)%和(4.11±2.08)%。“化皮病”仿刺参病变体壁总甲基化水平和全甲基化水平显著高于健康仿刺参体壁和“化皮病”仿刺参正常体壁(P<0.05), 健康仿刺参体壁与“化皮病”仿刺参正常体壁总甲基化水平和全甲基化水平差异不显著(P>0.05); 三者的半甲基化水平无显著差异(P>0.05)。因此, 推测仿刺参体壁“化皮”与DNA甲基化有关。  相似文献   

18.
不同倍性西瓜基因组DNA甲基化水平与模式的MSAP分析   总被引:2,自引:0,他引:2  
DNA甲基化是表观遗传修饰的主要方式之一,在基因表达调控中发挥重要作用。本研究以不同倍性(2x、3x、4x)西瓜为试材,采用基于DNA甲基化敏感酶的扩增多态性分析(Methylation-Sensitive Ampliftcation Polymorphism,MSAP)方法,在全基因组水平上探究西瓜同源多倍化过程中DNA序列中CCGG位点的甲基化水平及模式变化特征。研究中选用23对选扩引物,共检测到1883个基因位点。二倍体、三倍体、四倍体中检测到的位点数分别为647、655和581;其中发生甲基化的位点数分别为181、150和159。相应的扩增总甲基化率分别为28.0%、22.9%和27.4%:全甲基化位点数分别为121、80和82,相应的全甲基化率分别为18.7%、12.2%和14.1%。进一步对不同倍性西瓜DNA甲基化模式的变化特征进行分析,结果显示:四倍体西瓜与二倍体西瓜相比有超过半数的位点(54.4%)DNA甲基化模式发生了变化,其与三倍体西瓜相比也有近一半的位点(45.4%)DNA甲基化模式发生了变化,并且变化趋势都以四倍体西瓜甲基化程度升高为主:而三倍体西瓜与二倍体西瓜相比.虽然也有41.6%的位点DNA甲基化模式发生了改变,但变化趋势以三倍体西瓜甲基化程度降低略占优势:与之相似,三倍体西瓜与四倍体相比较。甲基化的变化趋势也是以三倍体西瓜甲基化程度降低为主。以上结果表明:不同倍性西瓜中DNA甲基化事件虽均有发生.但不论是从总甲基化率还是全甲基化率来看,DNA甲基化水平与倍性高低关系不大.三倍体西瓜表现出较为显著的低甲基化水平特征。DNA甲基化模式的分析也表明。与二倍体及四倍体西瓜相比.三倍体西瓜DNA甲基化模式的调整主要以去甲基化为主。显示出三倍体西瓜基因组独特的DNA甲基化特征。本研究为进一步从表观遗传学的角度探讨西瓜的三倍体优?  相似文献   

19.
It has been widely shown that polyploidization can result in changes in cytosine methylation. However, little is known regarding how cytosine methylation changes in polyploids development, especially in polyploid trees. In this study, we investigated drifting changes of DNA methylation status at 5′-CCGG sites in the apical bud, young and mature leaf tissues of triploid black poplar (Populus. euramericana) with methylation-sensitive amplification polymorphism (MSAP) and assessed the expression of multiple DNA methyltransferases (MTases) and DNA demethylase during different developmental stages. MSAP analysis detected methylation levels at CG and CNG sites of diploid tissues reduced during development from bud to leaves, while for the triploid, methylation at CNG sites increased during development, but levels of methylation at CG sites first decreased in young leaves before increasing in mature leaves. MTase genes related to CG or CNG methylation were respectively preferential in different triploid tissues with high CG or CNG methylation levels. High expression of DNA demethylase was observed in tissue with high demethylation trends. These finding suggest CG and CNG methylation and their related enzymes are involved with different biological functions and networks of gene regulation in different developmental stages of triploid.  相似文献   

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