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炎症性肠病(IBD)是一种累及回肠、直肠和结肠的特发性慢性肠道炎症性疾病,主要包括溃疡性结肠炎和克罗恩病,在临床表现、病程和治疗反应等方面具有高度异质性。目前,关于IBD的发病机制尚未明确,治疗方法相对有限。由遗传、环境、肠道微生态以及宿主免疫失衡在内的多因素共同导致了过度活跃的炎症反应并最终引发患者的肠道粘膜屏障受损和管腔菌群紊乱。单一组学的分析无法全面揭示IBD发病过程中复杂的相互协同作用机制,更无法挖掘潜在的治疗靶点和开发有效的干预策略。因此需要运用多组学关联分析技术以帮助研究者从多个维度解析IBD的发病机制。回顾和分析了多组学技术在IBD相关研究领域中的应用,并且讨论了使用这些方法在IBD分型、早期诊断和个性化医疗等领域的潜力,以期为进一步研究IBD发病机制奠定良好基础。 相似文献
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桂宾 《中国生物化学与分子生物学报》2011,(10)
拉马克曾提出,环境条件对物种的变化起主导作用,而因环境条件影响所获取的新性状可以遗传给后代.然而当达尔文的进化论发表以后,这一理论也就趋于没落.近十年的研究表明,环境的确可以影响动物或 相似文献
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近年来基于高通量基因测序的微生物组学研究极大加深了人们对微生物与健康和疾病关系的认识。然而基因测序方法不能直接测定微生物的功能活性,难以鉴定微生物中的关键功能分子,单独使用无法回答肠道微生物何种成员通过何种方式影响宿主等关键科学问题。单一组学研究弊端尽显,多组学联用势在必行。肠道微生物代谢组学以微生物群落所有小分子代谢物为研究对象,可发现肠道微生物随宿主病理生理变化的关键代谢物,为微生物组-宿主互作机制研究提供线索,成为微生物组学研究的重要补充。肠道微生物功能基因组学与代谢组学关联分析在宿主生理、疾病病理、药物药理等方面取得众多进展,展现良好应用前景。然而目前肠道微生物功能基因组学与代谢组学关联分析存在方法滥用、相关性结论与生物学知识相悖等突出问题。为帮助正确应用肠道微生物功能宏基因组学与代谢组学关联分析,本文综述了各种多组学数据整合分析方法的原理、优缺点与适用范围,并给出了应用建议。 相似文献
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摘要 目的:探究哺乳动物早期胚胎发育过程中基因表达调控信息的变化规律。方法:收集小鼠早期胚胎发育各时期的RNA-seq,ATAC-seq,MethylC-Seq和H3K4me3 ChIP-seq数据进行整合分析,观察小鼠早期胚胎发育各时期转录因子表达量的变化,计算各时期基因表达量与转录因子结合位点数量及染色质可及性的相关性,筛选各时期表达量前10%的基因,统计其表达量和转录因子占比,并进行启动子可及性分析。根据前期报道的转录因子三节点调控网络,对早期胚胎各时期转录因子调控网络的富集模式进行分析。根据多组学数据分析结果,推测早期胚胎发育调控过程中转录因子和表观遗传修饰信息的共调控模型。结果:转录因子数量和调控关系变化以及染色质可及性、DNA甲基化修饰、组蛋白修饰等表观遗传修饰共同调控早期胚胎发育各时期的基因表达,这些因素在不同时期发挥不同程度的调控作用。结论:转录因子和表观遗传修饰在早期胚胎发育过程中动态调控基因表达。 相似文献
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信使RNA (Messenger RNA,mRNA)上的表观修饰对于转录本的稳定性和翻译活性有重要影响。在不同生物体的不同发育时期和不同组织器官中,特异转录本不同位点存在的核苷修饰影响mRNA的前体剪切、成熟mRNA的稳定性以及其翻译为蛋白质的效率。目前已知的170多种修饰核苷中在mRNA上发现的只占极少数,由于mRNA的丰度低、组织和发育特异性强等特点,研究mRNA特异位点的核苷修饰有很大的技术难度。近些年随着meRIP等技术的进步,mRNA核苷修饰功能的研究得到了长足的发展,特别是针对m6A、m5C等甲基化修饰的研究已经相当深入。文中简要回顾近年来mRNA核苷修饰领域的研究进展,对不同位点和不同类型的修饰核苷在不同物种生长发育中的调控作一总结,并对未来的研究热点和技术瓶颈展开讨论。 相似文献
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单细胞多组学技术基于单细胞测序技术和高通量组学方法发展而来,能在单细胞分辨率下同时整合转录组、基因组、表观遗传组、蛋白质组或空间状态等两种或多种组学信息.相比单细胞单组学技术,单细胞多组学技术能多层次、多角度地描绘细胞间的异质性,挖掘各层组学之间的直接和潜在联系,从而更加全面和系统地描绘细胞的状态和命运,在生命科学和医... 相似文献
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We analyzed the complete genome sequence of Arabidopsis thaliana and sequence data from 83 genes in the outcrossing A. lyrata, to better understand the role of gene expression on the strength of natural selection on synonymous and replacement sites in Arabidopsis. From data on tRNA gene abundance, we find a good concordance between codon preferences and the relative abundance of isoaccepting tRNAs in the complete A. thaliana genome, consistent with models of translational selection. Both EST-based and new quantitative measures of gene expression (MPSS) suggest that codon preferences derived from information on tRNA abundance are more strongly associated with gene expression than those obtained from multivariate analysis, which provides further support for the hypothesis that codon bias in Arabidopsis is under selection mediated by tRNA abundance. Consistent with previous results, analysis of protein evolution reveals a significant correlation between gene expression level and amino acid substitution rate. Analysis by MPSS estimates of gene expression suggests that this effect is primarily the result of a correlation between the number of tissues in which a gene is expressed and the rate of amino acid substitution, which indicates that the degree of tissue specialization may be an important determinant of the rate of protein evolution in Arabidopsis. 相似文献
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天山北部拟南芥生存群落特征及其与环境的关系 总被引:3,自引:1,他引:3
为了解拟南芥在天山北部的分布状况及环境依赖特点, 分析拟南芥的自然选择特征, 本文对天山北部分布的13个拟南芥(Arabidopsis thaliana)生存群落结构、组成及其与环境关系进行了研究, 并分析了拟南芥与群落主要物种的种间联结性。结果表明: 拟南芥生存的群落结构简单, 其中天山北坡中段的石河子、一四三团、沙湾、独山子地区的8个群落均为草本类型, 优势种相似, 而与伊犁果子沟、额敏和阿勒泰的5个群落差别较大。属的区系成分分析表明世界分布、北温带分布以及地中海、西亚至中亚分布型成分占大多数, 具有典型的地中海旱生植物区系分布特征, 体现了本地拟南芥分布及演化的干旱、半干旱的地理环境特点。采用双向指示种分析(TWINSPAN)将13个群落分为新疆绢蒿–猪毛菜–角果毛茛(Seriphidium kaschgaricum–Salsola collina–Ceratocephalus testiculatus)、新疆绢蒿–猪毛菜(S. kaschgaricum–S. collina)、新疆绢蒿–狭果鹤虱(S. kaschgaricum–Lappula semiglabra)、新疆绢蒿–旱麦草(S. kaschgaricum–Eremopyrum triticeum)、勿忘草–草原苔草(Myosotis sylvatica–Carex liparocarpos)5个群落类型。去势典范对应分析(DCCA)表明纬度、坡向、土壤有机质及pH值是决定天山北部拟南芥种群分布的主导因子。拟南芥分布与群落内其他物种有极强的依赖关系, 与13个群落62个主要物种的种间联结性分析表明, 共有119个正关联性种对, 明显高于72个负关联性种对, 与各群落优势种呈显著正关联。拟南芥种群分布数量在群落间差异较大, 分布于降雨较少的天山中部浅山地带拟南芥种群数量均高于降雨较丰富的天山西部伊犁果子沟地区, 是否发生适应性分化需要深入研究。 相似文献
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Phototropins are blue-light photoreceptor molecules mediating the capacity for phototropism or bending toward or away from directional light. Like the red-light sensing phytochromes that control shade avoidance, phototropins modulate developmental plasticity in plant architecture. Yet, unlike phytochromes, the adaptive significance of phototropins has been largely a topic of conjecture. In Arabidopsis thaliana, phototropism of seedling and plant stems is under the control of two paralogous genes, PHOT1 and PHOT2, that encode different phototropins with partially redundant light response qualities. The PHOT1 gene product interacts with the NPH3 gene product to cause phototropic bending over a broad range of light intensity, from very weak light in the soil to stronger light in the aerial environment. The PHOT2 gene product modulates shoot bending in response to light of higher intensity only. We compared the fitness of wild-type, phot1, phot2, and nph3 genotypes over a range of light conditions in the field. Seeds were sown in the field on the soil surface and left bare or covered with either gravel or bark mulch chips. Plantings were made under full sun and dense canopy cover. Rates of seedling emergence, survival to flowering, and total seed set were measured. All mutant genotypes had significantly reduced lifetime fitness compared to wild-type. Consistent with their different fluence rate sensitivities, phot1 and phot2 signaling pathways affected fitness at discrete life-cycle stages. Fitness costs of phot1 and nph3 were expressed mainly during seedling emergence from the soil whereas that of phot2 was expressed solely after emergence. Surprisingly, the only significant genotype-by-environment interaction for fitness occurred during emergence: genotypes blind to dim blue light (phot1 and nph3) had poor emergence in the open, but not in the shade. Possibly, the loss of negative phototropism in seedling roots of mutant genotypes reduced establishment success in open (dry soil) conditions. Results show that phototropin-modulated pathways are adaptive and that their evolution has involved functional specialization. However, mechanism(s) of selection on these pathways remain a mystery. 相似文献
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Loss of alkaline ceramidase inhibits autophagy in Arabidopsis and plays an important role during environmental stress response 下载免费PDF全文
Sphingolipids, a class of bioactive lipids found in cell membranes, can modulate the biophysical properties of the membranes and play a critical role in signal transduction. Sphingolipids are involved in autophagy in humans and yeast, but their role in autophagy in plants is not well understood. In this study, we reported that the AtACER, an alkaline ceramidase that hydrolyses ceramide to long‐chain base (LCB), functions in autophagy process in Arabidopsis. Our empirical data showed that the loss of AtACER inhibited autophagy, and its overexpression promoted autophagy under nutrient, salinity, and oxidative stresses. Interestingly, nitrogen deprivation significantly affected the sphingolipid's profile in Arabidopsis thaliana, especially the LCBs. Furthermore, the exogenous application of LCBs also induced autophagy. Our findings revealed a novel function of AtACER, where it was found to involve in the autophagy process, thus, playing a crucial role in the maintenance of a dynamic loop between sphingolipids and autophagy for cellular homeostasis under various environmental stresses. 相似文献
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A new method (MZEF) for predicting internal coding exons in genomic DNA sequences has been developed. This method is based on a prediction algorithm that uses the quadratic discriminant function for multivariate statistical pattern recognition. With improved feature measures, an Arabidopsis thaliana-specific implementation of MZEF is completed and made available to the plant genome community. 相似文献
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环境激素DBP对拟南芥体外培养叶片超微结构的影响 总被引:3,自引:1,他引:3
报道了酞酸酯类化合物DBP对拟南芥离体培养叶片超微结构的影响。在DBP(1.0mg·L-1)处理第3天即观察到拟南芥叶片叶绿体的超微结构受到破坏。不同浓度的DBP长期处理植株(40d)出现叶片白化、节间短缩等异常现象。在0.01mg·L-1DBP处理40d植株的叶细胞中,叶绿体出现解体,破碎部分呈颗粒状,散落其间,但细胞结构完整;0.1mg·L-1DBP处理后引起叶绿体的进一步解体,叶绿体中类囊体基粒和片层结构解体,细胞出现空洞现象,其它细胞器很少观察到;1.0mg·L-1DBP和2.0mg·L-1DBP处理植株叶片叶绿体中类囊体基粒和片层结构破碎,叶绿体结构也解体,细胞中其它细胞器数目极少。 相似文献
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Study of mechanisms for plant growth promotion elicited by rhizobacteria in Arabidopsis thaliana 总被引:1,自引:0,他引:1
Plant growth-promoting rhizobacteria (PGPR) colonize plant roots and exert beneficial effects on plant health and development. We are investigating the mechanisms by which PGPR elicit plant growth promotion from the viewpoint of signal transduction pathways within plants. We report here our first study to determine if well-characterized PGPR strains, which previously demonstrated growth promotion of various other plants, also enhance plant growth in Arabidopsis thaliana. Eight different PGPR strains, including Bacillus subtilis GB03, B. amyloliquefaciens IN937a, B. pumilus SE-34, B. pumilus T4, B. pasteurii C9, Paenibacillus polymyxa E681, Pseudomonas fluorescens 89B-61, and Serratia marcescens 90-166, were evaluated for elicitation of growth promotion of wild-type and mutant Arabidopsis in vitro and in vivo. In vitro testing on MS medium indicated that all eight PGPR strains increased foliar fresh weight of Arabidopsis at distances of 2, 4, and 6 cm from the site of bacterial inoculation. Among the eight strains, IN937a and GB03 inhibited growth of Arabidopsis plants when the bacteria were inoculated 2 cm from the plants, while they significantly increased plant growth when inoculated 6 cm from the plants, suggesting that a bacterial metabolite that diffused into the agar accounted for growth promotion with this strain. In vivo, eight PGPR strains promoted foliar fresh weight under greenhouse conditions 4 weeks after sowing. To define signal transduction pathways associated with growth promotion elicited by PGPR, various plant-hormone mutants of Arabidopsis were evaluated in vitro and in vivo. Elicitation of growth promotion by PGPR strains in vitro involved signaling of brassinosteroid, IAA, salicylic acid, and gibberellins. In vivo testing indicated that ethylene signaling was involved in growth promotion. Results suggest that elicitation of growth promotion by PGPR in Arabidopsis is associated with several different signal transduction pathways and that such signaling may be different for plants grown in vitro vs. in vivo. 相似文献
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Mesophyll conductance to CO2 in Arabidopsis thaliana 总被引:1,自引:0,他引:1
Flexas J Ortuño MF Ribas-Carbo M Diaz-Espejo A Flórez-Sarasa ID Medrano H 《The New phytologist》2007,175(3):501-511
The close rosette growth form, short petioles and small leaves of Arabidopsis thaliana make measurements with commercial gas exchange cuvettes difficult. This difficulty can be overcome by growing A. thaliana plants in 'ice-cream cone-like' soil pots. This design permitted simultaneous gas exchange and chlorophyll fluorescence measurements from which the first estimates of mesophyll conductance to CO(2) (g(m)) in Arabidopsis were obtained and used to determine photosynthetic limitations during plant ageing from c. 30-45 d. Estimations of g(m) showed maximum values of 0.2 mol CO(2) m(-2) s(-1) bar(-1), lower than expected for a thin-leaved annual species. The parameterization of the response of net photosynthesis (A(N)) to chloroplast CO(2) concentrations (C(c)) yielded estimations of the maximum velocity of carboxylation (V(c,max_Cc)) which were also lower than those reported for other annual species. As A. thaliana plants aged from 30 to 45 d, there was a 40% decline of A(N) that was entirely the result of increased diffusional limitations to CO(2) transfer, with g(m) being the largest. The results suggest that in A. thaliana A(N) is limited by low g(m) and low capacity for carboxylation. Decreased g(m) is the main factor involved in early age-induced photosynthetic decline. 相似文献
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以拟南芥(Arabidopsis thaliana)两种基因型(ws-0和col-0)材料,采用复因子混合水平正交试验设计开展盆栽实验,研究了土壤盐分、土壤水分、光照强度、去叶处理等生态因子及其交互作用对受试植株18个表型特征的影响.结果表明生态因子对植物表型可塑性的影响是有针对性的:土壤水分主要影响植物体构件数目;土壤盐分主要影响生物量、角果数及种籽总数等直接反映植株适合度的表型特征;光照条件则主要影响植物的物候表型特征.植物体表型可塑性的方向随水分梯度的变化而发生改变.生态因子交互作用对植物表型可塑性的影响效果不是各因子独立作用的简单加和:对某个表型特征都有显著影响的两个生态因子其交互作用对该特征可能没有影响;反之,受两个生态因子交互作用影响显著的表型特征也可能不受它们的独立影响.在对生态因子交互作用作出响应时,col-0的9个特征表现出可塑性,而ws-0仅有4个表型是可塑的;同一基因型内彼此相关的表型特征在可塑性上也具一致性.抽苔时莲座叶数与角果平均籽粒数不受任何生态因子及其交互作用的影响,这两个表型作为数量特征而未表现出可塑性. 相似文献