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1.
大豆胞囊线虫病(Heterodera glycines,soybean cyst nematode,SCN)是大豆生产上的重要病害,其特点为危害重、分布广、难防治,每年对大豆生产造成极大的损失。种植大豆抗性新品种是防治SCN目前最为有效的措施,研究大豆对SCN侵染的应答机制,是培育大豆持久抗病品种的前提,对加快抗线虫品种选育及SCN的防控具有重要的意义。本文综述了大豆对SCN侵染的组织细胞学应答机制;介绍了大豆在SCN侵染后酶系变化及酚类代谢的生理生化应答机制;从分子水平阐明了SCN侵染后大豆的基因转录变化,差异蛋白及DNA甲基化的应答机制,以期为大豆胞囊线虫病害的进一步研究与防治提供参考。  相似文献   
2.
综合论述了DNA甲基化与基因组印记的最新研究进展,论述了它们的生物学意义,并阐述了两者的关系.  相似文献   
3.
The study aimed to investigate the effects of maternal dietary methyl donors on the performance of sows and their offspring, and the associated hepatic insulin‐like growth factor‐1 (IGF‐1) expression of the offspring. A total of 24 multiparous sows were randomly fed the control (CON) or the CON diet supplemented with methyl donors (MD) at 3 g/kg betaine, 15 mg/kg folic acid, 400 mg/kg choline and 150 μg/kg VB12, from mating until delivery. After farrowing, sows were fed a common lactation diet through a 28‐days lactation period and six litters per treatment were selected to be fed until at approximately 110 kg BW. Maternal MD supplementation resulted in greater birthweight (< 0.05) and increased the piglet weights (< 0.01) and litter weights (< 0.05) at the age of day 28, compared with that in CON group. The offspring pigs in the MD group had greater ADG (< 0.05) and tended to lower F:G ratio (= 0.07) compared with that of CON group from day 28 to 180 of age. The offspring pigs from MD group had greater serum IGF‐1 concentrations and expressions of hepatic IGF‐1 gene and muscular IGF‐1 receptor (IGF‐1r) protein at birth (< 0.05), and greater hepatic IGF‐1 protein (= 0.03) and muscular IGF‐1r gene expressions (< 0.05) at slaughter, than that from the CON group. Moreover, the methylation at the promoter of IGF‐1 gene in the liver of newborn piglets and finishing pigs was greater in the MD group than that of the CON group (< 0.05). In conclusion, maternal MD supplementation throughout gestation could enhance the birthweight and postnatal growth rate of offspring, associated with an increased expression of the IGF‐1 gene and IGF‐1r, as well as the altered DNA methylation of IGF‐1 gene promotor.  相似文献   
4.
BPA不影响卵母细胞减数分裂相关基因Dazl的甲基化   总被引:1,自引:0,他引:1  
为了探讨环境雌激素BPA对小鼠卵母细胞减数分裂相关基因Dazl甲基化的影响,本研究通过给孕鼠饮用含有BPA的水方式使胎鼠在发育过程中接触BPA,利用重亚硫酸盐测序法,分析了胎鼠生殖嵴卵母细胞不同发育时期Dazl甲基化水平的变化。结果显示:Dazl在减数分裂期间处于低甲基化水平,无论对照组或处理组均低于10%,说明Dazl的低甲基化对维持减数分裂的正常进行有重要作用;对照组与处理组的甲基化水平相当,差异不显著,说明本研究的BPA浓度不影响卵母细胞Dazl的甲基化水平。  相似文献   
5.
AIM:To investigate the effects of histone methylation on the abnormal expression of cardiomyogenesis genes caused by alcohol during pregnancy and the regulatory mechanism, and to provide a new idea and intervention targets for preventing and curing congenital heart disease. METHODS:The alcohol (56%, 5 mL/kg) and G9a-histone methyltransferases (HMT) inhibitor BRD4770 (1 mg/kg) were given by gavage in Kunming mice during embryo (E) 0.5~14.5 d, and the hearts of the mice in E14.5, E16.5 and post neonatal 0.5 d (PND0.5) were collected. The mRNA expression of Gata4, Cx43 and β-MHC genes was detected by RT-qPCR. The activity of HMT was measured by colorimetry. Meanwhile, the protein expression of histone H3K9me3, G9a-HMT, Cx43 and β-MHC was determined by Western blot. RESULTS:The results of colorimetry showed that the activity of HMT in the heart of the offspring mice treated with alcohol during pregnancy was decreased significantly compared with normal saline group (P<0.05), and Western blot data showed that the expression of G9a-HMT and histone H3K9me3 were apparently decreased in the same samples (P<0.05). The mRNA expression levels of Gata4, Cx43 and β-MHC in alcohol group were apparently increased compared with normal saline group (P<0.05). Meanwhile, the protein levels of Cx43 and β-MHC were increased significantly in the same samples (P<0.05). However, BRD4770, a G9a-HMT inhibitor, further attenuated the level of histone H3K9me3, and further upregulated the expression of Gata4, Cx43 and β-MHC in the heart of the the mice treated with alcohol (P<0.05). CONCLUSION:Histone methylation modification imbalance induced by G9a-HMT may be involved in the abnormal expression of cardiomyogenesis genes in the heart of offspring mice caused by alcohol during pregnancy.  相似文献   
6.
建立菠萝 DNA 甲基化水平的 HPLC 测定方法,分析菠萝愈伤组织 DNA 甲基化水平变化,为进一步研究菠萝 体细胞无性系变异机理奠定基础。通过对流动相和水解温度等条件的优化,建立菠萝 DNA 甲基化水平的检测方法。结 果表明,分离 C 和 5m-C 的最佳流动相为甲醇∶磷酸二氢钾∶三乙胺为 10∶90∶0.2(V/V),pH 3.0,DNA 的最佳水解 温度为 90 ℃。利用此体系分析菠萝愈伤组织和胚性愈伤组织的 DNA 甲基化变化,结果表明,菠萝愈伤组织在分化过 程中 DNA 总甲基化水平呈动态变化,变化范围为 5.14%~96.86%。此外,胚性愈伤组织甲基化水平低于非胚性愈伤组 织。推测 DNA 甲基化影响菠萝愈伤组织的分化及胚性愈伤组织的形成。  相似文献   
7.
试验旨在研究RNA m6A修饰相关基因去甲基化酶Alk B同源蛋白5(Alk B homologue 5,ALKBH5)、去甲基化酶肥胖相关蛋白(fat mass and obesity-associated protein,FTO)、甲基转移酶样蛋白3(methyltransferase like 3,METTL3)、甲基转移酶样蛋白14(methyltransferase like 14,METTL14)和成肾细胞瘤1-结合蛋白(Wilms’tumor 1-associating protein,WTAP)在鸡骨骼肌发育过程中的表达,分析其与骨骼肌m6A甲基化水平的相关性。首先,利用实时荧光定量PCR技术检测m6A甲基化相关基因在金茅花鸡12(E12)、14(E14)、16(E16)、18(E18)胚龄和1日龄腿肌和胸肌组织中mRNA表达水平,以及其在鸡成肌细胞50%、100%增殖期和1、2、3、4、5 d分化期的mRNA表达水平;随后,利用m6A甲基化试剂盒检测金茅花鸡E12和1日龄腿肌和胸肌组织中m6A甲基化修饰水平,与m6A甲基化相关基因表达水平进行相关性分析。结果显示,m6A去甲基化基因ALKBH5和FTO mRNA表达水平在骨骼肌发育过程中显著上调(P<0.05),即在E12、E14低表达,E16、E18逐渐上调,1日龄达到最高。m6A甲基化写入基因METTL14、METTL3和WTAP mRNA表达水平在E12、E14、E16逐渐上升,E18下降,随后至1日龄表达量回升。在细胞增殖过程中,ALKBH5、FTOMETTL14、METTL3和WTAP基因表达均上调;在细胞分化过程中ALKBH5和FTO基因表达水平显著上调(P<0.05),在分化第5天达到最高。METTL14、METTL3和WTAP基因mRNA表达水平在细胞诱导分化的1、2、3、4 d表达量呈下降趋势,而在诱导分化的第5天有所回升。甲基化水平检测结果显示,腿肌和胸肌m6A甲基化水平变化趋势一致,均在胚胎发育过程中显著下降(P<0.05),至1日龄达到最低。相关性分析结果显示,鸡骨骼肌RNA m6A甲基化水平与m6A去甲基化修饰基因ALKBH5、FTO mRNA表达水平呈显著负相关(P<0.05)。综合以上试验结果,推测m6A甲基化修饰与鸡骨骼肌发育相关,而去甲基化基因ALKBH5、FTO可能通过调控RNA m6A甲基化水平,影响鸡骨骼肌发育。本研究结果为进一步研究m6A甲基化修饰调控鸡骨骼肌生长发育的功能和分子机制提供理论依据。  相似文献   
8.
鸡脂肪组织TCF21基因启动子区DNA甲基化与其表达的关系   总被引:1,自引:1,他引:0  
旨在研究鸡脂肪组织中TCF21基因启动子区DNA甲基化水平与其表达的关系。以东北农业大学高、低腹脂双向选择品系(简称高、低脂系)第24世代7周龄肉鸡为试验材料,利用RT-qPCR检测高、低脂系肉鸡腹部脂肪组织中TCF21基因的mRNA表达水平;利用生物信息学和双荧光素酶报告系统分析TCF21基因启动子的结构与功能;利用Sequenom MassARRAY飞行质谱检测高、低脂系肉鸡腹部脂肪组织中TCF21基因启动子区CpG位点的甲基化水平;利用CpG甲基转移酶处理TCF21启动子报告基因质粒,分析DNA甲基化对TCF21基因启动子活性的影响。结果显示,高脂系肉鸡腹部脂肪组织中TCF21基因的mRNA表达水平极显著高于低脂系(P<0.001);TCF21基因的启动子区存在40个CpG位点,且在启动子的近端和远端均有分布,但不存在CpG岛;将TCF21基因的启动子划分为5个功能区域,分别为R1区域(-2 000~-1 500 bp)、R2区域(-1 500~-1 000 bp)、R3区域(-1 000~-500 bp)、R4区域(-500~-200 bp)和Core区域(-200~-100 bp);高脂系R2、R3和R2+R3区域的DNA甲基化水平显著或极显著高于低脂系(P<0.05或P<0.001);R2、R3、R2+R3区域的DNA甲基化水平与TCF21基因mRNA表达水平呈显著正相关(R2区域:r=0.438,P<0.05;R3区域:r=0.371,P<0.05;R2+R3区域:r=0.489,P<0.05);R2区域的DNA甲基化显著抑制其转录活性(P<0.05)。综上所述,TCF21基因在高、低脂系肉鸡腹部脂肪组织中的表达水平主要与其启动子R2区域的DNA甲基化水平有关。  相似文献   
9.
Discovery of epigenetic modifications associated with feed efficiency or other economically important traits would increase our understanding of the molecular mechanisms underlying these traits. In combination with known genetic markers, this would provide opportunity to improve genomic selection accuracy in cattle breeding programs. It would also allow cattle to be managed to improve favorable gene expression. The objective of this study was to identify variation in DNA methylation between beef cattle of differential pre-natal nutrition and divergent genetic potential for residual feed intake (RFI). Purebred Angus offspring with the genetic potential for either high (HRFI) or low (LRFI) RFI were prenatally exposed to either a restricted maternal diet of 0.5 kg/d average daily gain (ADG) or a moderate maternal diet of 0.7 kg/d ADG from 30 to 150 d of gestation. We performed DNA methylation analysis of differentially methylated regions (DMR) of imprinted genes (Insulin-like growth factor 2 (IGF2) DMR2, IGF2/H19 imprinting control region (ICR) and IGF2 receptor (IGF2R) DMR2) using post-natal samples of longissimus dorsi (LD) muscle taken from male and female calves at birth and weaning, and of LD muscle, semimembranosus (SM) muscle, and liver samples collected from steers at slaughter (17 months of age). Interestingly, for all three DMR investigated in liver, LRFI steers had higher levels of methylation than HRFI steers. In LD muscle, IGF2/H19 ICR methylation differences for heifers at birth were due to pre-natal diet, while for steers at birth they were mostly the result of genetic potential for RFI with LRFI steers again having higher levels of methylation than HRFI steers. While results from repeated measures analysis of DNA methylation in steers grouped by RFI revealed few differences, in steers grouped by diet, we found higher methylation levels of IGF2 DMR2 and IGF2R DMR2 in LD muscle of restricted diet steers at weaning and slaughter than at birth, as well as increased methylation in LD muscle of restricted diet steers compared with moderate diet steers at weaning and/or slaughter. Our results suggest that differential pre-natal nutrition, and divergent genetic potential for RFI, induces tissue- and sex-specific alterations in post-natal IGF2 and IGF2R methylation patterns and that these patterns can vary with age in Angus beef cattle.  相似文献   
10.
鸡繁殖性能近交衰退是地方鸡遗传资源活体保种过程中面临的重要问题之一,本研究旨在探讨全基因组CpG岛(CpG island,CGI)区DNA甲基化在鸡繁殖性能近交衰退中的作用。分别从狼山鸡高近交组和低近交组中各选取健康母鸡3只,即试验分2个组,每组3个重复,然后采用全基因组重亚硫酸盐测序(WGBS)技术,检测分析两组个体性腺轴组织(包括卵巢和下丘脑)全基因组DNA甲基化差异,筛选差异甲基化区域(DMRs),并对CpG岛区差异甲基化基因进行功能注释和富集分析。结果表明,狼山鸡高近交组和低近交组比较,其卵巢和下丘脑基因组整体甲基化水平均不存在显著差异(P>0.05);高、低近交组间差异甲基化区域检测发现,下丘脑和卵巢中分别检测到5 948和4 593个差异甲基化区域,其中1 798和995个差异甲基化区域位于基因组CpG岛区,分别注释到1 020和552个基因;下丘脑中,这些CpG岛区差异甲基化基因显著富集在信号转导、神经系统发育、生殖系统发育和卵母细胞成熟调控等繁殖相关的GO条目,以及转化生长因子β信号通路、乙型肝炎、脂肪酸代谢、胰岛素信号通路等19条KEGG信号通路(P<0.05);卵巢中,CpG岛区差异甲基化基因显著富集于12条信号通路(P<0.05),包括慢性骨髓白血病、流感A、精氨酸和脯氨酸代谢、粘着连接等,一些与卵子发育和性激素分泌相关的信号通路也被富集到,如黄体酮介导的卵母细胞成熟、卵母细胞减数分裂、GnRH信号通路、雌激素信号通路等,其中包含CDC27、ADCY8、AKT3等10个差异甲基化基因。因此,本研究在狼山鸡高、低近交组间检测到了大量差异甲基化区域,并发现大量差异甲基化基因与繁殖性状相关,推测这些基因CpG岛区DNA甲基化可能在狼山鸡繁殖性能近交衰退调控中发挥重要作用,研究结果为进一步深入探索鸡繁殖性能近交衰退调控机制奠定了基础,为物种资源保护和家禽育种工作提供了理论参考依据。  相似文献   
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