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植物MADS-box基因家族编码高度保守的转录因子,参与了包括花发育在内的多种发育进程。为阐释双子叶植物草原龙胆(Eustoma grandiflorum)花器官发育的分子调控机制,根据MADS-box基因保守序列设计简并引物,用3'-RACE方法从草原龙胆中克隆了4个花器官特异表达的MADS-box家族基因。序列和系统进化树分析表明,这4个基因分别与金鱼草DEF基因、矮牵牛FBP3基因和FBP6基因以及拟南芥SEP3基因具有很高的同源性,分别属DEF/GLO、AG-like和SEP-like亚家族。从而将这4个基因分别命名为EgDEF1、EgGLO1、EgPLE1和EgSEP3-1。推导的氨基酸序列显示,这些基因编码的蛋白质都包含高度保守的MADS结构域、I结构域和K结构域,每个基因均有其亚家族特异的C-末端功能域。基因特异性RT-PCR检测结果显示:EgDEF1在萼片、花瓣、雄蕊及胚珠中高丰度表达,在心皮中微量表达;而EgGLO1在花瓣和雄蕊中高丰度表达,在萼片中微量表达;在根、茎、叶等营养器官中均未检测到上述2个基因的表达。EgPLE1在雌蕊、心皮和胚珠中特异表达,但表达的丰度存在差异,在雄蕊中的表达有所减弱。SEP-like亚家族基因EgSEP3-1在四轮花器官和胚珠中均特异表达,且表达丰度相对一致。  相似文献   

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植物MADS-box 基因家族编码高度保守的转录因子, 参与了包括花发育在内的多种发育进程。为阐释双子叶植物草原龙胆(Eustoma grandiflorum)花器官发育的分子调控机制, 根据MADS-box基因保守序列设计简并引物, 用3'-RACE方法从 草原龙胆中克隆了4个花器官特异表达的MADS-box家族基因。序列和系统进化树分析表明, 这4个基因分别与金鱼草DEF基因、矮牵牛FBP3基因和FBP6基因以及拟南芥SEP3基因具有很高的同源性, 分别属DEF/GLO、AG-like和SEP-l ike亚家族。从而将这4个基因分别命名为EgDEF1、EgGLO1、EgPLE1和EgSEP3-1。推导的氨基酸序列显示, 这些基因编码的蛋白质都包含高度保守的MADS结构域、I结构域和K结构域, 每个基因均有其亚家族特异的C-末端功能域。基因特异性RT-PCR检测结果显示: EgDEF1 在萼片、花瓣、雄蕊及胚珠中高丰度表达, 在心皮中微量表达; 而EgGLO1在花瓣和雄蕊中高丰度表达, 在萼片中微量表达; 在根、茎、叶等营养器官中均未检测到上述2个基因的表达。EgPLE1在雌蕊、心皮和胚珠中特异表达, 但表达的丰度存在差异, 在雄蕊中的表达有所减弱。SEP-like亚家族基因EgSEP3-1在四轮花器官和胚珠中均特异表达,且表达丰度相对一致。  相似文献   

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A cDNA clone, Mdh3, was isolated from young fruit of Malus domestica Borkh. The Mdh3 gene is closely related to the Phalaenopsis 039 homeobox gene, which is involved in ovule development in orchids. Mdh3 mRNA was expressed in young apple leaves, flower buds and young fruit. In situ hybridization of flower buds showed that Mdh3 mRNA accumulated in the ovules, suggesting that Mdh3 may be involved in apple ovule development.  相似文献   

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草莓果实MADS-box基因保守片段的克隆与序列分析   总被引:1,自引:0,他引:1  
根据多种植物MADS-box基因保守区序列设计简并引物,应用PCR技术从草莓绿果中分高出33条MADS-box基因cDNA片段.序列分析表明,这些片段长度在137 - 146 bp之间,包含基因起始密码子.推导的氨基酸序列与已登录的草莓的MADS-box基因同源性超过87%.推导的氨基酸序列与已知的革莓和其他物种调控果实发育成熟的MADs-box基因以及拟南芥的MADS-box家族基因进行系统发育分析,可将这些基因片段分科归入拟南芥MADS-box基因不同亚家族中,证明草莓果实中存在各类MADS-box家族基因,克隆的部分片段可能参与调控果实发育和成熟软化的调节.  相似文献   

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为探索MADS-box基因在凤梨花发育过程中的调控机制,通过设计简并引物,利用RACE技术,从蜻蜓凤梨花蕾中分离得到2个花发育相关B类MADS-box基因,分别命名为AfAP3和AfPI;AfAP3cDNA全长957bp,编码区编码226个氨基酸;AfPI cDNA全长808bp,编码区编码198个氨基酸,二者均具有典型的植物MADS-box蛋白结构.RT-PCR分析结果表明,AfAP3和AfPI基因主要在花器官中表达,在根系中也有微量表达;乙烯诱导后7d,AfPI基因在茎尖处开始有表达,表明此时蜻蜓凤梨花芽分化可能已经完成,AfAP3基因表达晚于AfPI.  相似文献   

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An acid invertase (EC 3.2.1.26.) cDNA clone,CaAIV-18, was isolated from the red pericarp cDNA library of the hot pepper (Capsicum annuum L.) fruit. TheCaAIV-18 clone has 2223 nucleotides and one open reading frame encoding 641 amino acid residues. Analysis of deduced amino acid sequences reveals thatCaAIV-18 has a 24-amino acid transmembrane anchor region in its N-terminal, implying acid invertase in hot pepper may be localized in the membrane and not in the cytosol. This clone showed high homology to tomato acid invertase,Aiv1, in nucleotide and deduced amino acid sequences. In the Southern blot analysis, this clone proved to exist as single or low copy numbers on the genome of hot pepper. The clones had two well-conserved regions which appears in acid invertase of other plant species (eg. tomato,Arabidopsis, etc.) and yeasts. During fruit development,CaAIV-18 was expressed preferentially in the ripe red stage.  相似文献   

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A full-length cDNA designated GhTM6, which encodes an organ differentiation-related B-class MADS-box protein, was isolated from Upland cotton (Gossipium hirsutum) by screening a normalized fulllength cDNA library and using a RT-PCR strategy. The translated sequence analysis indicated that the polypeptide contained MADS-box and K domains and had a classic TM6 motif, i.e., the paleoAP3 in the C-terminal region. The phylogenetic analysis showed that GhTM6 is closest to CeTM6, MaTM6, BuTM6, and PhTM6. Quantitative RT-PCR analysis showed that the GhTM6 gene was expressed at high levels in all tissues examined, such as those from squares, flowers, petals, stamens, and carpels under normal growth conditions. GhTM6 was expressed at high levels before floral initiation and declined thereafter. Furthermore, six stamens were seen in the transgenic tobacco flower as compared to five stamens in a wild-type flower. The results indicated that GhTM6 did not exhibit the full B-function spectrum, because it is only involved in the determination of stamen organ identity. However, its function in cotton will need to be examined in transgenic cotton plants.  相似文献   

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为了分析南蛇藤MADS-box转录因子对其雌花发育和果实形成的调控信息,本文基于南蛇藤的转录组数据,获得15个具有全长开放阅读框的MADS-box转录因子(ColMADS),并利用生物信息学方法对其性质和结构特性进行了分析。结果表明,基因comp37814_g1和comp41380_g2属于M-type家族,不含有K盒结构,其他均为MIKC家族;除了comp37713_g1之外,其余均属于不稳定的亲水性蛋白;二级结构均含有α-螺旋、扩展链结构、β-转角和无规则卷曲,其中α-螺旋所占比例最高;序列主要包含5种保守基序,基序1和基序2分别含50个氨基酸且属于该基因家族的保守基序,仅基序1含有MADS盒。系统进化分析结果显示南蛇藤ColMADS转录因子被分为10个进化支,分属于不同类型的亚家族及不同的组。另外,利用荧光定量PCR检测方法揭示了这些基因在南蛇藤盛花、落花和幼果不同发育时期的表达情况。结果表明,2个基因在盛花期相对表达值最高,9个基因在落花期相对表达值最高,在幼果形成过程中有4个基因显著上调表达。  相似文献   

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Nucleotide sequence of a flower-specific MADS box cDNA clone from orchid   总被引:6,自引:0,他引:6  
An orchid (Aranda deborah) mature flower cDNA library was screened with an agamous cDNA probe from Arabidopsis. One positive clone for agamous gene was isolated, cloned and sequenced. This cDNA clone (om1) has a full length open reading frame of 750 bp corresponding to 250 amino acid residues. Comparison of om1 MADS box with that of its counterparts in tomato and Arabidopisis reveals significantly high homology (>95%). Northern analysis indicated this gene is expressed in mature flowers and not in young developing inflorescences or young floral buds. In the mature flowers, it is only expressed in petals and weakly in sepals but not in the column (gynostemium).  相似文献   

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该研究采用RT-PCR和RACE技术从春兰(Cymbidium goeringii)中分离到1个SEPALLATA3(SEP3)基因。序列分析表明,该基因含有1个732bp的开放阅读框(ORF),共编码243个氨基酸。系统进化树分析显示,该基因是MADS-box基因家族AP1/AGL9组SEP的同源基因,其编码蛋白与其它植物SEP3类蛋白具有较高的一致性,命名为CgSEP3(登录号为KF924272)。实时荧光定量分析表明,CgSEP3在春兰花器官中均有表达,其中在唇瓣、侧瓣和萼片中的表达量较高,在子房和蕊柱中的表达量较低;而且CgSEP3在花发育各个时期都有表达,在1~2cm的花芽中表达量最高,在盛开的花中的表达量最低。研究认为,CgSEP3基因可能在春兰花瓣和萼片的形成过程中具有重要作用。  相似文献   

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无核荔枝花发育相关MADS-box基因的克隆及结构分析   总被引:4,自引:0,他引:4  
目的:克隆与尢核荔枝花发百相关的MADS-box基因。方法:根据多种植物的MADS-box保守区及其C-端序列设计一对简并性引物,利用RT-PCR及3′-RACE的方法分离目的基因。结果:经同源分析,昕克隆到的基因的c-DNA序列包含有完整的MADS-box保守区与半保守的K区,是典型的MADS-box家族基因,命名为LMADSI。结论:成功地克隆到一个与无核荔枝花发育相关的MADS-box基因,以便进一步研究其对无核荔枝花发育的凋控作用。  相似文献   

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