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The Drosophila PROS-28.1 gene is a member of the proteasome gene family   总被引:4,自引:0,他引:4  
In the present communication, we report the identification of a new gene family which encodes the protein subunits of the proteasome. The proteasome is a high-Mr complex possessing proteolytic activity. Screening a Drosophila λgt11 cDNA expression library with the proteasome-specific antibody N19-28 we isolated a clone encoding the 28-kDa No. 1 proteasome protein subunit. In accordance with the nomenclature of proteasome subunits in Drosophila, the corresponding gene is designated PROS-28.1, and it encodes an mRNA of 1.1 kb with an open reading frame of 249 amino acids (aa). Genomic Southern-blot hybridization shows PROS-28.1 to be a member of a family of related genes. Analysis of the predicted aa sequence reveals a potential nuclear targeting signal, a potential site for tyrosine kinase and a potential cAMP/cGMP-dependent phosphorylation site. The aa sequence comparison of the products of PROS-28.1 and PROS-35 with the C2 proteasome subunit of rat shows a strong sequence similarity between the different proteasome subunits. The data suggest that at least a subset of the proteasome-encoding genes belongs to a family of related genes (PROS gene family) which may have evolved from a common ancestral PROS gene.  相似文献   

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Many genes encoding CCT domain‐containing proteins regulate flowering time. In rice (Oryza sativa), 41 such genes have been identified, but only a few have been shown to regulate heading date. Here, to test whether and how additional CCT family genes regulate heading date in rice, we classified these genes into five groups based on their diurnal expression patterns. The expression patterns of genes in the same subfamily or in close phylogenetic clades tended to be similar. We generated knockout mutants of the entire gene family via CRISPR/Cas9. The heading dates of knockout mutants of only 4 of 14 genes previously shown to regulate heading date were altered, pointing to functional redundancy of CCT family genes in regulating this trait. Analysis of mutants of four other genes showed that OsCCT22, OsCCT38, and OsCCT41 suppress heading under long‐day conditions and promote heading under short‐day conditions. OsCCT03 promotes heading under both conditions and upregulates the expression of Hd1 and Ehd1, a phenomenon not previously reported for other such genes. To date, at least 18 CCT domain‐containing genes involved in regulating heading have been identified, providing diverse, flexible gene combinations for generating rice varieties with a given heading date.  相似文献   

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闫晨阳  陈赢男 《植物学报》2020,55(4):442-456
全基因组重复与串联重复是发生基因重复的重要机制, 也是基因组和遗传系统多样化的重要动力。LRR-RLK编码富含亮氨酸重复的类受体蛋白激酶, 是被子植物进化史上发生大规模扩张而形成的多基因家族。拟南芥(Arabidopsis thaliana) AtLRR-RLK包含15个亚家族, AtLRR VIII-2是其中发生串联重复比例最高的亚家族。通过分析拟南芥、杨树(Populus trichocarpa)、葡萄(Vitis vinifera)和番木瓜(Carica papaya) 4种模式植物中LRR VIII-2亚家族基因的扩张及差异保留情况, 结果显示, LRR VIII-2在杨树中的扩张程度最高, 在拟南芥和葡萄中的扩张程度居中, 但在番木瓜中发生丢失。拟南芥、杨树和葡萄LRR VIII-2亚家族具有旁系同源基因对, 但在番木瓜中未发现旁系同源基因。除杨树中的1对旁系同源基因外, 4种模式植物中LRR VIII-2亚家族的旁系和直系同源基因都受到较强的纯化选择作用。对LRR VIII-2亚家族进化历史的深入分析有助于理解基因重复在植物进化中的作用和意义, 可为预测同源基因功能及解析其它基因家族进化历史提供参考。  相似文献   

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A repressor element in the 5'-untranslated region of human Pax5 exon 1A   总被引:4,自引:0,他引:4  
Five members of the RecQ helicase family, RECQL, WRN, BLM, RTS and RECQL5, have been found in human and three of them (WRN, BLM and RTS) were disclosed to be the genes responsible for Werner, Bloom and Rothmund–Thomson syndromes, respectively. RECQL5 (RecQ helicase protein-like 5) was isolated as the fifth member of the family in humans through a search of homologous expressed sequence tags. The gene is expressed with at least three alternative splicing products, , β and γ. Here, we isolated mouse RECQL5β and determined the DNA sequence of full-length cDNA as well as the genome organization and chromosome locus. The mouse RECQL5β gene consists of 2949 bp coding 982 amino acid residues. Comparison of amino acid sequence among human (Homo sapiens), mouse (Mus musculus), Drosophila melanogaster and Caenorhabditis elegans RECQL5β homologs revealed three portions of highly conserved regions in addition to the helicase domain. Nineteen exons are dispersed over 40 kbp in the genome and all of the acceptor and donor sites for the splicing of each exon conform to the GT/AG rule. The gene is localized to the mouse chromosome 11E2, which has a syntenic relation to human 17q25.2-q25.3 where human RECQL5β exists. Our genetic characterizations of the mouse RECQL5β gene will contribute to functional studies on the RECQL5β products.  相似文献   

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真核生物mRNA转录后修饰可调控许多基因的遗传信息,植物m6A甲基化研究正成为关注的新热点。m6A结合蛋白 (m6A readers) 调节m6A修饰的特异性,通常具有YTH (YT521-B homology) 结构域,在拟南芥中被命名为ECT结构域 (evolutionarily conserved C-terminal region ECT domain) 。目前ECT基因已在拟南芥和水稻等植物中检测到,但该基因家族在水稻中的成员及生物学功能还缺乏研究。本研究通过水稻ECT基因家族的全基因组分析,鉴定出12个OsECT基因,具有1个保守的基序,多位于蛋白质氨基酸序列C-端。共线性分析表明,在水稻基因组内OsECT-c与OsECT-e发生了重复事件,在物种间ECT同源基因对可能是在双子叶和单子叶植物分化后形成。同源基因对OsECT的Ka/Ks < 1,表明OsECT基因家族在进化过程中可能经历了较强的纯化选择压力。表达模式分析显示,OsECT-b、OsECT-c、OsECT-e和OsECT-j在水稻生长初期各个组织均保持较高的表达水平,OsECT-g在干旱处理后表达量显著下调。因此,OsECT基因在水稻生长发育和逆境胁迫中可能发挥着重要作用。本研究为今后OsECT基因在水稻的节水抗旱机制研究和相关抗逆育种提供了重要的理论基础。  相似文献   

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何一旻  顾鸣敏 《遗传》2017,39(10):877-887
肌球蛋白超家族通过水解ATP,将化学能转化为机械能,在细胞迁移、肌肉收缩等多种生理活动中发挥重要的作用。其中,肌球蛋白Ⅱ类分子是肌细胞和非肌细胞中肌丝的重要组成成分。一个完整的肌球蛋白Ⅱ类分子是由2条肌球蛋白重链(myosin heavy chain, MyHC)和2对不同的轻链组成的六聚体。在人体中,存在多种MyHC亚型,分别由不同的MYH基因家族成员编码。迄今为止,人们已经发现MYH基因家族中多个成员的不同突变与人类遗传性疾病相关。其中,MYH2突变可以导致一类以眼肌麻痹为主要特征的骨骼肌疾病;MYH3MYH8突变可以引起远端关节挛缩综合征;MYH7突变即可以引起骨骼肌疾病包括肌球蛋白沉积性肌病和Laing远端肌病,也与肥厚性心肌病的发生密切相关;MYH9突变可以导致一类以巨大血小板、血小板减少和中性粒细胞包涵体为特征的MYH9相关性疾病。本文简要介绍MYH基因的表达特点,着重阐述MYH基因与人类遗传性疾病之间的相关性及研究进展。  相似文献   

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开花是植物生长发育的重要过程。CCT家族基因在植物中广泛存在, 参与植物花期的调控过程。该文从粗山羊草(Aegilops tauschii)全基因组中分离出26个CCT基因, 它们分布于7对染色体上, 按照排列顺序将其命名为AetCCT1-26。AetCCT蛋白分子量介于14.9 kDa (AetCCT3)-83.2 kDa (AetCCT12)之间, 其中有25个蛋白包含完整的CCT保守结构域。系统发育分析显示, 12对粗山羊草/乌拉尔图小麦(Triticum urartu) CCT蛋白和9对粗山羊草/水稻(Oryza sativa) CCT蛋白为直系同源蛋白。通过公共数据的数字表达分析表明, AetCCT具有组织特异性和组成型2种表达形式, 其中AetCCT3AetCCT4AetCCT7AetCCT9等9个基因在大部分组织中都有表达, 而AetCCT15AetCCT21AetCCT25等基因分别在种子、叶和根等少数组织中特异表达。AetCCT家族可以响应不同外源激素, 施用激素24小时和72小时后各成员对激素响应整体表现一致, 但不同成员对于不同激素的响应存在差异, 表明该家族成员在功能和行使方式等方面具有一定的多样性, 可能参与不同生长发育过程。光照条件影响AetCCT的表达, 说明光照和春化作用是影响与调控该家族基因表达的重要因素。研究结果有助于探索小麦(T. aestivum)进化、驯化和演变的规律, 以及认识重要农艺性状的形成与互作网络。  相似文献   

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We report the isolation and characterization of two new genomic loci corresponding to the mouse Dishevelled (Dvl) genes Dvl2 and Dvl3. The Dvl genes are homologs of the Drosophila dsh segment polarity gene, and are involved in the Wnt/wingless signal transduction pathway. Dvl2 and Dvl3 genomic clones were isolated from a mouse 129 strain λFIXII genomic library and have identical exon/intron organization to Dvll. All three Dishevelled genes span 15 exons and 14 introns and have a number of conserved splice junction sites.  相似文献   

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目的: WIND(WOUND INDUCED DEDIFFERENTIATION),是属于ERF/AP2 (ETHYLENE RESPONSE FACTOR/ APETALA 2)家族的一种重要转录因子,该类基因最早被发现在拟南芥中可以与乙烯响应元件GCC-BOX和脱水响应元件DRE结合,响应干旱信号和调节乙烯水平。最近的研究发现WIND基因在植物伤口信号回应、愈伤组织形成及不定芽的产生过程中也发挥了关键作用。已有的研究阐述了WIND基因在拟南芥中控制愈伤组织形成及不定芽再生的机制,但其在木本植物中的功能尚不明确,将探究WIND基因在胡杨中与伤口信号响应及不定芽再生相关的功能,同时为在分子水平上解决胡杨再生问题提供理论依据。方法: 采用基因克隆、qRT-PCR、转基因表型分析等方法研究WIND基因在胡杨外植体伤口响应和再生不定芽过程中的作用。结果: 克隆胡杨WIND家族中的基因PeWIND1PeWIND2,发现其编码区序列长度分别为1 050 bp和1 032 bp,编码349个和343个氨基酸,亚细胞定位均在细胞核中。组织特异性分析显示PeWIND1PeWIND2在胡杨根、茎、叶、愈伤组织中均有表达,且在愈伤组织中表达量最高。时间表达特异性显示,在经伤口刺激后的24 h内,PeWIND1PeWIND2基因均呈现先升高后降低的表达趋势,且均在伤口刺激后1 h达到表达量峰值。转基因植株表型统计发现,过表达PeWIND1PeWIND2基因后转基因植株不定芽再生能力增强。结论: 在胡杨叶片有伤口刺激后,PeWIND1PeWIND2响应伤口信号,表达量先升高后降低,PeWIND1PeWIND2能够促进杨树茎段再生不定芽。  相似文献   

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Aubourg S  Picaud A  Kreis M  Lecharny A 《Gene》1999,230(2):197-205
Biological and computer-assisted analyses of a 25 kb fragment from Arabidopsis thaliana chromosome IV led to the characterization of two multigene families and three novel orphan genes, not previously described. The first gene family named AtMO1-4 encodes monooxygenases, related to the prokaryotic salicylate hydroxylases. The second gene family contains three members, two on the analysed 25 kb fragment and one on chromosome I. The latter three genes lack introns and are homologous to the previously studied Glycine max src2 gene which is overexpressed at low temperature. Gene expression and primary structure of the deduced proteins are described and compared. Three genes of unknown function, showing tissue specific expressions, are characterized on the 25 kb fragment. Full length or partial cognate cDNAs have been sequenced for all the genes studied.  相似文献   

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葡萄NCED基因家族进化及表达分析   总被引:1,自引:0,他引:1  
9-顺式-环氧类胡萝卜素双加氧酶(NCED)是植物体内ABA生物合成的关键限速酶, 参与植物对干旱、外源ABA和高盐的响应过程, 降低环境胁迫对植株的危害。基于全基因组鉴定分析葡萄(Vitis vinifera) NCED基因家族成员, 探讨各成员的物种进化关系及各个基因成员在不同组织中的时空表达模式及对干旱、ABA和高盐(NaCl)胁迫的响应, 为进一步揭示该基因家族成员的生物学功能奠定基础。在葡萄基因组中共发现12个NCED基因。其推测的编码蛋白质长度在510 (VvNCED2)-625 aa (VvNCED10)之间。VvNCED蛋白的分子量最大值是70.53 kDa (VvNCED10), 最小值是57.85 kDa (VvNCED2)。在从祖先基因分化之后, 葡萄NCED基因发生了5次复制事件, 同时有2次丢失事件。NCED1/2NCED3/4NCED6/7NCED9/10基因对被认为是通过片段复制产生。上述4对复制基因复制时间分布在3.08-120.0百万年前, 晚于单双子叶植物分化的时间。与对照相比, VvNCED1在ABA处理48小时后显著上调(72.1%), 而VvNCED2显著下调(84.0%)。VvNCED6只在干旱处理14、21和28天的根系中表达量高于对照, 分别为对照的2.49、1.05和1.09倍。VvNCED7只在干旱处理14天的根系中表达量高于对照, 为对照的1.07倍。在ABA处理72小时后, VvNCED3表达量较对照显著下调(59.5%), 而VvNCED4较对照显著上调(169.9%)。VvNCED3/VvNCED4分别在NaCl处理24和48小时出现显著性峰值, 较对照分别上调219.2%和114.4%。保守结构域不同组成和不同胁迫处理下差异表达模式是NCED蛋白发生功能分化的基础。推测NCED在进化过程中发生的功能分化有利于复制事件的发生。  相似文献   

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9-顺式-环氧类胡萝卜素双加氧酶(NCED)是植物体内ABA生物合成的关键限速酶, 参与植物对干旱、外源ABA和高盐的响应过程, 降低环境胁迫对植株的危害。基于全基因组鉴定分析葡萄(Vitis vinifera) NCED基因家族成员, 探讨各成员的物种进化关系及各个基因成员在不同组织中的时空表达模式及对干旱、ABA和高盐(NaCl)胁迫的响应, 为进一步揭示该基因家族成员的生物学功能奠定基础。在葡萄基因组中共发现12个NCED基因。其推测的编码蛋白质长度在510 (VvNCED2)-625 aa (VvNCED10)之间。VvNCED蛋白的分子量最大值是70.53 kDa (VvNCED10), 最小值是57.85 kDa (VvNCED2)。在从祖先基因分化之后, 葡萄NCED基因发生了5次复制事件, 同时有2次丢失事件。NCED1/2NCED3/4NCED6/7NCED9/10基因对被认为是通过片段复制产生。上述4对复制基因复制时间分布在3.08-120.0百万年前, 晚于单双子叶植物分化的时间。与对照相比, VvNCED1在ABA处理48小时后显著上调(72.1%), 而VvNCED2显著下调(84.0%)。VvNCED6只在干旱处理14、21和28天的根系中表达量高于对照, 分别为对照的2.49、1.05和1.09倍。VvNCED7只在干旱处理14天的根系中表达量高于对照, 为对照的1.07倍。在ABA处理72小时后, VvNCED3表达量较对照显著下调(59.5%), 而VvNCED4较对照显著上调(169.9%)。VvNCED3/VvNCED4分别在NaCl处理24和48小时出现显著性峰值, 较对照分别上调219.2%和114.4%。保守结构域不同组成和不同胁迫处理下差异表达模式是NCED蛋白发生功能分化的基础。推测NCED在进化过程中发生的功能分化有利于复制事件的发生。  相似文献   

17.
植物金属蛋白酶Ft SH基因家族在拟南芥(Arabidopsis thaliana)中有12个成员,目前各基因的功能还不清楚。该文利用细胞生物学和遗传学方法初步分析了拟南芥FtSH4在叶片衰老中的功能。ftsh4-4突变体叶片中H_2O_2含量及细胞死亡率增加,叶绿素含量降低;此外,突变体中过氧化物酶基因表达上调,过氧化物酶活性增加,出现早衰表型。外源抗氧化剂As A、内源和外源生长素能够通过降低ftsh4-4体内H_2O_2含量、过氧化物酶基因的表达及过氧化物酶活性,恢复ftsh4-4叶片的衰老表型。ftsh4-4突变体中生长素响应因子基因ARF2和ARF7上调表达,外源生长素和抗氧化剂能够降低ARF2和ARF7的表达,并且ARF2突变能够降低ftsh4-4的H_2O_2含量并恢复其早衰表型。以上结果表明,FtSH4基因通过生长素与活性氧在调控植物叶片衰老中起重要作用。  相似文献   

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赵磊  刘淑艳 《菌物学报》2019,38(9):1457-1469
白粉菌是一类植物专性寄生真菌,广泛分布于世界各地,可引起多种植物白粉病。开展白粉菌交配型基因研究可以为全面认识白粉菌的生活史循环和系统演化提供证据。本研究以子囊菌中已报道的10种MAT基因和4种侧翼基因的氨基酸序列为种子序列,采用生物信息学方法在21个白粉菌基因组中进行氨基酸同源性分析,探索MAT基因及其侧翼基因的种类和线性排布。结果表明,21个白粉菌基因组中有10个属于MAT1-1型,包含MAT1-1-1MAT1-1-3两种基因;10个属于MAT1-2型,仅包含MAT1-2-1基因;在Erysiphe pulchra的基因组中同时存在MAT1-1-1MAT1-1-3MAT1-2-1;而4种侧翼基因SLA2APC5APN2CoxVia在21个白粉菌基因组中均存在。21个菌株中有两个菌株Blumeria graminis f. sp. hordei RACE1和Golovinomyces orontiiMAT基因和4种侧翼基因分布在同一个scaffold,其余菌株MAT基因和侧翼基因均不在同一scaffold出现。本研究分别分析了具有MAT1-1MAT1-2的菌株中MAT基因和4种侧翼基因的排列关系,同时根据9个菌株的MAT基因注释信息,推测了其他菌株的MAT基因结构。结果表明,同属白粉菌的MAT基因结构相同,属间MAT基因结构差异明显。以从白粉菌基因组中获得的MAT1-1-1MAT1-1-3MAT1-2-1 3种MAT基因序列分别构建系统发育树,发现布氏白粉菌属Blumeria、白粉菌属Erysiphe和戈洛文白粉菌属Golovinomyces分别形成独立分枝,且白粉菌属与戈洛文白粉菌属形成姊妹群,这与前人对白粉菌系统发育关系的研究结果一致。本研究得到的白粉菌MAT基因种类、分布及其结构的相关结果为进一步实验提供了理论依据,为探究白粉菌的系统发育提供了新的思路。  相似文献   

20.
Previously isolated mutations in baker's yeast, Saccharomyces cerevisiae, that impair induced mutagenesis were all identified with the aid of tests that either exclusively or predominantly detect base-pair substitutions. To avoid this bias, we have screened 11 366 potentially mutant clones for UV-induced reversion of the frameshift allele, his4–38, and have identified 10 mutants that give much reduced yields of revertants. Complementation and recombination tests show that 6 of these carry mutations at the previously known REV1, REV1 and REV3 loci, while the remaining 4 define 3 new genes, REV4 (2 mutations), REV5 and REV6. The rev4 mutations are readily suppressed in many genetic backgrounds and, like the rev5 mutation, impart only a limited deficiency for induced mutagenesis: it is likely, therefore that the REV4+ and REV5+ gene functions are only remotely concerned with this process. The rev6 mutants have a more general deficiency, however, as well as marked sensitivity to UV and an increased spontaneous mutation rate, properties that suggest the REV6 gene is directly involved in mutation induction. The REV5 gene is located about 1 cM proximal to CYC1 on chromosome X.  相似文献   

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