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1.
探讨红莲型细胞质雄性不育(HL-CMS)水稻不育系‘粤泰A’(‘YTA’)和保持系‘粤泰B’(‘YTB’)中3个腺苷酸转位酶(ANT)基因在三叶期根、茎、叶以及不同发育时期的幼穗中的表达模式。结果表明:ANT1和ANT2在‘YTA’和‘YTB’三叶期的根、茎、叶中的表达量都较高,而在生殖生长不同时期的幼穗中表达量较低。‘YTA’中ANT1在不同时期的幼穗中表达量都较低,而ANT2的表达量到穗生长期II的幼穗才较低。‘YTB’中ANT1在生殖生长的穗生长期III的幼穗有很高的表达。ANT3的表达水平在研究的各组织中的表达都较低,在‘YTB’穗生长期V的幼穗中表达最高。相对于‘YTA’,‘YTB’中只有ANT3在穗生长期III和穗生长期V的幼穗中呈现明显的优势表达;而相对于‘YTB’,‘YTA’中ANT2和ANT3在穗生长期I、ANT2在穗生长期VI幼穗具有明显的优势表达。3个ANTs基因在HL-CMS不育系‘YTA’和保持系‘YTB’不同组织及发育时期的表达模式的差异,暗示它们可能与HL-CMS水稻不育系和保持系的发育调控有关。  相似文献   

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利用60Co辐射诱变籼稻品种"Ⅱ-32B",筛选得到一个水稻幼苗条纹突变体yss1,该突变体在水稻五叶期前表现出明显的条纹叶表型;色素分析表明yss1叶片中叶绿素和类胡萝卜素含量明显低于野生型,五叶期后突变体和野生型无显著差异。利用转录组分析水稻三叶期野生型和突变体yss1中的基因表达,表明与野生型相比,yss1中表达差异显著的基因432个,其中274个表达上调,158个表达下调。GO分析显示叶绿素合成途径中多数基因表达上调,类胡萝卜素合成过程中的相关基因受到不同程度地调控。因此,推测YSS1基因通过调节叶绿素和类胡萝卜素合成过程中的基因表达,进而调控光合色素的合成。  相似文献   

3.
RNA编辑普遍存在于高等植物线粒体中,是线粒体产生功能蛋白所必不可少的过程。以红莲(HL)型水稻细胞质雄性不育系粤泰A、保持系粤泰B及杂种红莲优6四分体时期的花药、单核花粉和二核花粉为材料,研究了线粒体功能基因———atp6、coxⅡ及嵌合基因orfH79转录本的编辑位点。结果表明,atp6转录本的编辑能力明显受到恢复基因的影响。atp6转录本在不育系中不被编辑或部分编辑,而在引入了恢复基因的杂种一代中,其编辑能力均大幅提高。coxⅡ转录本在3个材料中编辑状态没有差别,而嵌合基因orfH79在各个材料中均不被编辑。由此推测,红莲型水稻细胞质雄性不育与atp6转录本编辑能力的基本丧失紧密相关。  相似文献   

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红莲型细胞质雄性不育水稻线粒体DNA的AP-PCR分析   总被引:4,自引:0,他引:4  
为了研究红莲型细胞质雄性不育与线粒体基因组的关系。以水稻红莲型粤泰细胞质雄性不育系A和保持系B及杂种一代F1为材料。应用AP-PCR分析,用10个单引物对其线粒体DNA进行扩增。实验结果表明,不同的引物在3种材料间均有不同程度的差异。为红莲型细胞质雄性不育分子机理的研究提供了线索;此外,在引物6F1的扩增图谱中找到一条在YTA和F1中特异的带TAF6F2,Sounthern分析TAF6F2不育胞质的特异性,可能与红莲型水稻细胞质雄性 不育性状的形成有关。  相似文献   

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将T4 RNA连接酶和AFLP技术特点相结合构建了适于mtRNA的差异显示方法 ,并比较了水稻 (OryzasativaL .)红莲型细胞质雄性不育系、保持系和杂种一代mtRNA的差异。在 4组引物对的选择扩增产物中共找到 6个差异片段 ,其中差异条带DTA为不育系仅有 ,条带DAB为不育系和保持系特有 ,而条带DBF1、DBF2 、DBF3 、DBF4 为保持系和F1杂种共有。这表明水稻红莲型不育系粤泰A与杂种一代泰优 2号mtRNA的差异大于保持系粤泰B和杂种一代泰优 2号mtRNA的差异。Northern杂交证实条带DTA在不育系、保持系和杂种一代的转录确有差异 ,表明它与红莲型细胞质雄性不育有关。条带DTA全长 2 5 9bp ,尽管未发现有同源序列和新的开放阅读框 ,但它可作为探针从cDNA文库中筛选全基因序列 ,进而寻找与细胞质雄性不育有关的开放阅读框架。  相似文献   

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为探讨小麦(Triticum aestivum L.)杂种优势形成的分子机理,选用普通小麦品种(系)3338、6554和2410TD及其强优势杂种A(3338×6654)和无优势杂种B(2410TD×6554),采用mRNA差异显示技术,对生长至三叶一心的根系(初生根)基因表达差异进行了比较研究.结果发现,小麦杂种一代苗期根系基因表达较亲本明显不同,表现为数量水平和质量水平上的差异,且差异表达基因的数目远高于我们以苗期叶片为材料的研究结果,表明小麦杂交种与其亲本间的基因差异表达与所研究的组织和器官有关.比较分析发现,在强优势杂种组合A中,超亲表达和偏高亲表达基因所占比例均明显高于无优势杂种组合B.以家族特异基因替代随机引物进行的差异显示结果表明,MADS-box家族基因在小麦杂交种和亲本苗期根系中存在着显著的表达差异,且差异表达类型以杂种特异表达和亲本基因在杂种一代沉默为主,说明MADS-box家族基因可能与小麦的杂种优势形成具有重要关系.对杂种和亲本基因表达差异与杂种优势的关系进行了分析和讨论.  相似文献   

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蔗糖是高等植物中碳水化合物最主要的转运形式,对于植物的生长发育至关重要.植物体内蔗糖的转运主要依赖蔗糖转运蛋白,因此对于蔗糖转运蛋白基因的研究具有重要意义.拟南芥蔗糖转运蛋白AtSUC2在蔗糖装载中起主要作用,通过半定量RT-PCR测定拟南芥叶片不同发育时期和不同光强下AtSUC2基因的表达量,研究拟南芥特定发育阶段和光诱导作用下AtSUC2基因表达的影响.结果表明,在野生型拟南芥叶片中,AtSUC2基因在16 d幼叶、30 d营养期叶片、生殖期叶片中均表达,在16 d幼叶和生殖期叶片中表达强度较弱,在营养生长旺盛时(30 d叶龄)表达较高.同时,植株在暗处理12 h时,AtSUC2基因表达量降低,在强光处理12 h时,AtSUC2基因表达量与对照差异不显著,可能AtSUC2基因的表达受光诱导但与光强无关.  相似文献   

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生物信息学基因表达差异分析   总被引:1,自引:1,他引:0       下载免费PDF全文
卢汀 《生物信息学》2014,12(2):140-144
基因的差异化表达由多种因素共同导致,并且与许多疾病的发生和发展有密切联系,对差异化表达的基因进行生物信息学以及生物统计学的分析对于研究细胞调节机制和疾病机理有着重要意义。目前,对差异化表达的基因有以下几种主流的研究方法:DNA微阵列(DNA microarray),抑制性消减杂交(SSH),基因表达连续性分析(SAGE),代表性差异分析(RDA),以及mRNA差异显示PCR(mRNA DDRT-PCR)。目前许多基因差异化表达数据是建立在时段(time series)基础上,因此对基于时间变化的基因差异化表达分析变得尤为重要。本文将对差异化表达基因的几种主流方法进行详细阐述,并介绍一种基于傅里叶函数的时段基因差异化表达分析。  相似文献   

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为明确小麦春化基因的时空表达特性,以中国春和洛旱2号小麦品种为试验材料,利用半定量RT-PCR技术,分析了3个春化基因VERNALIZATION1(VRN1)、VRN2和VRN3的时空表达特性。结果表明,VRN1在中国春的三叶期叶片和根、灌浆期的茎秆和旗叶、花药、胚珠和发育的种子中均有不同程度的表达。在开花前,表达水平呈上升趋势,而花后呈降低的趋势,在干种子和萌发种子的胚芽中没有检测到表达;在洛旱2号中,除了在三叶期的叶片和根中没有检测到表达外,VRN1的表达特性与中国春有相同的趋势。VRN2只在三叶期的叶片和萌发种子的胚芽中表达,在其他检测的组织中没有表达;VRN3的表达与VRN1的时空表达特性相似,但在根中未检测到表达。这一结果为进一步分析普通小麦品种春化发育的分子调控机理提供了重要信息。  相似文献   

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基因差异表达与杂种优势形成机制探讨   总被引:6,自引:0,他引:6  
许晨璐  孙晓梅  张守攻 《遗传》2013,35(6):714-726
对杂种优势这一普遍而重要的生物学现象研究虽有百余年的历史, 但其根本机理尚未阐述清楚。继基因组组成差异及基因效应研究之后, 基因表达差异成为探寻杂种优势分子机理新的切入点。旨在通过揭示杂种中等位基因差异表达、杂种与亲本间基因差异表达的调控机制, 来认识杂种优势形成的分子机理, 从而达到指导育种实践的目的。文章概述了杂种等位基因差异表达现象及其产生机理, 总结了杂种与亲本相比所呈现出的加性、显性和超显性等多种差异基因表达模式, 归纳了表达谱研究筛选出的与杂种优势形成有关的基因, 以及某些关键生化代谢途径对杂种优势形成的贡献。但由于杂种优势机理的复杂性, 基因表达研究并没有得出统一的表达模式, 大多数杂种优势基因也不能被归属为同一类别。尽管如此, 基因表达谱研究毕竟迈出了解析杂种优势形成复杂基因表达网络的第一步, 随着表达谱技术和生物信息学的不断更新和发展, 杂种优势形成的分子机理有望在基因表达层面上取得突破。  相似文献   

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Hybrid rice ( Oryza sativa L. ) seedling is more vigorous in root development and plant growth than its parental lines in the tested indica rice of hybridized combination (Shanyou 63 (Fl): Zhenshan 97A × ♂Minghui 63). Analysis of the difference in gene expression between the hybrid Fl and its parental seedlings by means of mRNA differential display indicated that gene expression of the parental lines was obviously altered the hybrid Fl both in quantity and quality., Quantitatively, there were over-expression and under-expression of genes in hybrid Fl with genetic expression trend forwards a single parent. Qualititatively, hybrid Fl could have specific gene expression, single parem (maternal or paternal) gene silence, co-suppression of paternal genes, and single paternal gene expression. The relationship between heterosis formation and alteration of gene expression of parental lines in hybrid Fl was also discussed.  相似文献   

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Summary To provide an insight into the molecular basis of heterosis, we investigated gene expression in primary root tips of a heterotic maize hybrid (B73 × Mo17) and its parental lines (B73 and Mo17). This analysis was carried out (i) by differential plaque hybridization of a recombinant cDNA library made to poly(A) RNA isolated from B73 × Mo17 primary root tips, and (ii) by comparing with two-dimensional gel electrophoresis proteins synthesized in vitro in the rabbit reticulocyte system by poly(A) RNA isolated, at different stages of development, from the three genotypes. The results showed that there are sets of proteins and mRNAs that are differentially synthesized and expressed in the F1 primary root tips in comparison to the parental lines. Moreover, results from the survey of 21 major in-vitrosynthesized polypeptide variants, from mRNAs of primary root tips of the parental lines and their F1 hybrid, indicated that in seven instances hybrid proteins translated in vitro were more abundant or possibly new. In most of the remaining cases, hybrid spots were similar in intensity to the same protein produced by one of the two parental lines.  相似文献   

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水稻杂种一代与亲本幼苗基因表达差异的分析   总被引:49,自引:0,他引:49  
杂种优势是一种普遍存在的生物学现象,其形成的原因十分复杂。本世纪初,Bruce和Shull相继提出的杂种优势形成的显性互补假设和超亲优势假设至今仍作为一种理论模型而缺乏实验证实。水稻杂种优势的利用自70年代三系配套技术建立得到了广泛的应用,但水稻杂种优势形成的遗传学基础目前还知之甚少。在水稻杂种优势形成机理研究中,分别从生理生化代谢、同工酶分析、DNA限制性片段多态性和DNA含量差异进行了分析,但杂种优势形成的分子机理仍未得到阐明。杂种优势的形成是与异质化相关的过程,它涉及到两个遗传背景不同的体系的相互作用。因此,在相互作用过程中,亲本基因的表达与调控就决定了杂种一代的基因表达类型和特性。因此,我们从分析基因表达与调控入手,运用mRNA差异展示技术分析了玉米杂种一代与亲本基因表达的差异,揭示了不少有意义的现象。本研究以水稻籼型杂交组合(汕优63:珍汕97A×明恢63)为材料,探讨水稻杂种一代与亲本基因表达的差异,揭示了杂种优势形成过程中的一些重要现象。  相似文献   

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The phenomenon of heterosis describes the increased agronomic performance of heterozygous F(1) plants compared to their homozygous parental inbred plants. Heterosis is manifested during the early stages of root development in maize. The goal of this study was to identify nonadditive gene expression in primary roots of maize hybrids compared to the average expression levels of their parental inbred lines. To achieve this goal a two-step strategy was used. First, a microarray preselection of nonadditively expressed candidate genes was performed. Subsequently, gene expression levels in a subset of genes were determined via high-throughput quantitative real-time (qRT)-PCR experiments. Initial microarray experiments identified 1941 distinct microarray features that displayed nonadditive gene expression in at least 1 of the 12 analyzed hybrids compared to the midparent value of their parental inbred lines. Most nonadditively expressed genes were expressed between the parental values (>89%). Comparison of these 1941 genes with nonadditively expressed genes identified in maize shoot apical meristems via the same experimental procedure in the same genotypes revealed significantly less overlap than expected by pure chance. This finding suggests organ-specific patterns of nonadditively expressed genes. qRT-PCR analyses of 64 of the 1941 genes in four different hybrids revealed conserved patterns of nonadditively expressed genes in different hybrids. Subsequently, 22 of the 64 genes that displayed nonadditive expression in all four hybrids were analyzed in 12 hybrids that were generated from four inbred lines. Among those genes a superoxide dismutase 2 was expressed significantly above the midparent value in all 12 hybrids and might thus play a protective role in heterosis-related antioxidative defense in the primary root of maize hybrids. The findings of this study are consistent with the hypothesis that both global expression trends and the consistent differential expression of specific genes contribute to the organ-specific manifestation of heterosis.  相似文献   

17.
Stupar RM  Springer NM 《Genetics》2006,173(4):2199-2210
Microarray analysis of gene expression patterns in immature ear, seedling, and embryo tissues from the maize inbred lines B73 and Mo17 identified numerous genes with variable expression. Some genes had detectable expression in only one of the two inbreds; most of these genes were detected in the genomic DNA of both inbreds, indicating that the expression differences are likely caused by differential regulation rather than by differences in gene content. Gene expression was also monitored in the reciprocal F1 hybrids B73xMo17 and Mo17xB73. The reciprocal F1 hybrid lines did not display parental effects on gene expression levels. Approximately 80% of the differentially expressed genes displayed additive expression patterns in the hybrids relative to the inbred parents. The approximately 20% of genes that display nonadditive expression patterns tend to be expressed at levels within the parental range, with minimal evidence for novel expression levels greater than the high parent or less than the low parent. Analysis of allele-specific expression patterns in the hybrid suggested that intraspecific variation in gene expression levels is largely attributable to cis-regulatory variation in maize. Collectively, our data suggest that allelic cis-regulatory variation between B73 and Mo17 dictates maintenance of inbred allelic expression levels in the F1 hybrid, resulting in additive expression patterns.  相似文献   

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