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1.
甜瓜抗枯萎病基因同源序列克隆与序列分析   总被引:4,自引:2,他引:2  
目的:克隆甜瓜抗枯萎病基因同源序列并对其序列分析。方法:根据已发表的甜瓜抗枯萎病基因Fom-2设计引物,从高抗枯萎病甜瓜品种‘日本安农二号’基因组中扩增Fom-2同源序列R-Fom-2。结果:该基因长3307bp,包含一个完整的开放阅读框,编码1073个氨基酸,推测蛋白质分子量123.57kDa,等电点7.06。属于nonTIR-NBS-LRR类抗病基因,在LRR区存在一个可能的CC结构域。但在nonTIR类抗病蛋白中,CC结构域一般位于kin-1a前。氨基酸同源性分析显示,R-Fom-2同Fom-2全长序列具有96%的同源性,对不同甜瓜品种Fom-2的LRR区分析比较,同源性在91%以上。且LRR区的差异主要集中在β-strand/β-turn区域。结论:序列分析揭示Fom-2家族是一个活跃的基因,LRR区可能对Fom-2家族的功能起着重要作用,为进一步研究R-Fom-2基因的结构与生物学功能奠定了基础。  相似文献   

2.
棉花类LRR抗病蛋白(GhLRR-RL)基因的克隆及表达分析   总被引:8,自引:2,他引:6  
肖月华  罗明  侯磊  罗克明  罗小英  裴炎 《遗传学报》2002,29(7):T001-T002
从棉花胚株的cDNA-AFLP片段中,选取一个与拟南芥类LRR抗病原因(LRR-RL)序列相似的片段,用RACE方法延伸其3′和5′未知序列,得到一个棉花类LRR抗病蛋白的全长cDNA序列(GenBank登录号:AY040532)。该cDNA长1259bp,包含一个987bp的开放阅读框,具有Poly(A)加尾信号。推测蛋白质包含329个氨基酸,其中大部分是LRR区,其序列符合膜外LRR的共有序列LXXLXXLXXLXLXXNXGXIPXX。序列和结构比例分析表明:该棉花LRR-RL蛋白与拟南芥的两个类LRR抗病蛋白高度同源,而与植物的其他LRR蛋白结构不同,推测LRR-RL蛋白属于一类新的LRR蛋白。斑点杂交和3′RACE扩增表明,棉花LRR-RL基因具有组成性表达的特点。  相似文献   

3.
小麦NBS类抗病基因同源cDNA序列的克隆与特征分析   总被引:2,自引:0,他引:2  
根据已克隆植物抗病(R)基因NBS保守结构域设计简并引物,采用RT-PCR和cDNA末端快速扩增技术(RACE),在小麦抗叶锈病近等基因系材料TcLr19中进行抗病同源基因cDNA全长的扩增。获得了1个通读的NBS类抗病同源基因S11A11cDNA序列,该序列全长2923bp,编码878个氨基酸序列。生物信息学分析结果表明,该片段含有NB-ARC保守结构域和多个LRR结构域。聚类分析表明,S11A11编码的蛋白与小麦抗叶锈病基因Lr1编码的蛋白亲缘关系较近,而与Lr10亲缘关系较远。半定量RT-PCR分析表明,该基因在小麦叶片中为低丰度组成型表达。本研究在TcLr19小麦中成功获得了抗病基因同源序列,为最终克隆小麦抗叶锈病目的基因奠定了基础。  相似文献   

4.
旨在从含有疣粒野生稻抗白叶枯病基因的新种质SH5、SH76基因组中克隆抗病基因。利用RGAs法得到1个NBS-LRR类同源基因,暂命名为SHNLR(登录号为JF934724)。结果表明,SHNLR的开放阅读框长度为3 105 bp,编码1 034个氨基酸,含有CC、NB-ARC与LRR结构域,具备CC-NBS-LRR类植物抗病基因的结构特征。BLASTn和BLASTp比对显示SHNLR是单拷贝基因,未发现同源性较高且功能已知的基因,仅NBS保守域序列与番茄Prf基因的相似度最高。对SHNLR基因电子定位,发现其位于水稻第11号染色体的长臂末端,但与11号染色体上已定位或克隆的8个白叶枯病抗性基因具有不同序列或处于不同的位置。半定量RT-PCR分析表明,SHNLR在抗病新种质叶片中的表达明显受到白叶枯病菌Zhe173的诱导。因此推测SHNLR可能是1个与抗白叶枯病相关的R基因。  相似文献   

5.
小麦NBS-LRR类抗病基因同源序列的分离与鉴定   总被引:7,自引:0,他引:7  
根据已知植物抗病基因的保守区域设计引物,从抗锈病小麦品种西农88基因组DNA扩增出3条与植物抗病基因同源的序列,分别为WRGA1、WRGA2和WRGA14。这三条同源片段均含有典型的NBS-LRR类抗病基因所拥有的保守性结构域Kinase-2a、Kinase-3a和疏水结构域(HD).它们与部分已知NBS-LRR类抗病基因的氨基酸序列同源性为46.0%-9.9%,三个片段间在氨基酸水平上的同源性为80.7%-56.8%。Northern杂交表明WRGA1在小麦中受水杨酸正调控,属诱导型表达。  相似文献   

6.
 大部分已克隆的植物抗病基因都包含有核苷酸结合位点区 (NBS)和富含亮氨酸的重复序列区 (LRR) .利用来自节节麦的抗禾谷孢囊线虫基因Cre3位点NBS区保守序列设计特异引物 ,从含有来自易变山羊草的抗禾谷孢囊线虫基因的小麦品系E 10的基因组中PCR扩增得到一条约 5 30bp的单一条带 .将扩增条带克隆和序列分析发现 ,该克隆 (Rccn4 )的编码区长 5 2 8bp ,含一个不完整的开放读码框 ,没有起始密码子、终止密码子和内含子结构 ,它编码一个 176个氨基酸残基的蛋白质 ,分子量为 2 0 4kD .Rccn4含有NBS LRR类抗病基因NBS区共有的保守模体I(V)LDD、T(T S)R、G(L S)PLA(A I L)、RCF(A L)Y ,并且与Cre3基因的NBS编码区核苷酸和氨基酸同源性分别为99 4 %和 98% .它是一个新的含NBS编码区核苷酸的抗禾谷孢囊线虫基因  相似文献   

7.
水稻NBS-LRR类R基因同源序列   总被引:28,自引:0,他引:28  
根据多数抗病基因(R)编码蛋白质的核苷酸结合区(nucleotide binding site, NBS)和富含亮氨酸重复(leucine-rich repeat,LRR)保守区域特点,设计PCR特异扩增引物,从水稻中克隆了大小约为520 bpDNA片段23个.通过序列同源比较分析发现, 它们编码的蛋白质氨基酸序列包括有NBS-LRR类基因所具有的kinase-1a,kinase-2a, kinase-3a和保守的domain 2区域,它们属于R基因同源序列(R gene homologous sequence, 简称RS).聚类结果发现它们分为4类.遗传定位结果表明它们分布在1,3,4,7~11染色体上,其中10个RS位于已知R基因所在的染色体区间.用水稻抗白叶枯病基因Xa4的近等基因系和基因累加系对克隆的NBS-LRR同源序列进行RFLP分析,发现序列RS13可能来自Xa4基因家族.  相似文献   

8.
根据植物NBS类抗病基因保守氨基酸序列P-loop和疏水氨基酸GLPL保守序列设计简并引物,从香蕉抗镰刀菌枯萎病(4号小种)材料GCTCV-119的基因组DNA及cDNA中扩增获得9个DNA片段和10条cDNA片段,均编码为通读的氨基酸序列,命名为"BR-1"-"BR-19",GenBank登录号依次为EF515833-EF515836, EU123871-EU123885。同源性分析表明,均与已报道的植物抗病基因有不同程度的同源性,具有P-loop(Kinase-1a)、Kinase-2、RNBS-B(Kinase-3a)以及GLPL等保守氨基酸序列,属于non-TIR-NBS类候选抗病基因。其中,BR-5和BR-6与番茄抗镰刀菌枯萎病番茄专化型I2、I2-1和I2-2基因聚为一类,可能与香蕉镰刀菌枯萎病的抗性相关。  相似文献   

9.
从新鲜幼嫩‘丰香’草莓(Fragaria×ananassa cv.Toyonaka)果实中提取分离总RNA,反转录成cDNA,根据已报道的其他植物单脱氢抗坏血酸还原酶(MDHAR)及抗坏血酸氧化酶(AO)基因的保守区分别设计 一对引物,通过PCR扩增均得到目的条带.序列分析发现:mdhar基因片段长372bp,与刺梨同源性最高达96%,该片段编码123个氨基酸,推导的氨基酸序列与苹果属植物同源性为91%,与其他植物该基因编码的氨基酸序列也有较高相似性;a基因片段长842 bp,编码280个氨基酸,该片段与其他多种植物的ao基因均具有较高同源性,与甜瓜和黄瓜ao基因的同源性最高,均为70%,编码的氨基酸序列与其他多种植物均具有70%左右的相似性.  相似文献   

10.
青稞NBS LRR类基因HvtRGA的克隆与条纹病胁迫表达分析   总被引:1,自引:0,他引:1  
为探索青稞(Hordeum vulgare L. var. nudum)NBS LRR类基因在青稞抗条纹病中的分子作用机制,该研究以抗条纹病青稞品种‘昆仑14号’和感病品种‘Z1141’为材料,从叶片中克隆了HvtRGA 基因。HvtRGA基因长3 544 bp,包含一个3 306 bp开放阅读框,编码1 101个氨基酸。序列测序后比对发现,‘昆仑14号’与‘Z1141’的碱基序列相似性为99.89%,‘Z1141’的碱基在1196和1945位置处由G替换成A,但氨基酸序列相似性为100%。蛋白质序列分析表明,HvtRGA为亲水性的不稳定酸性蛋白,具有NB ARC保守结构域和5个LRR结构域,属于 NBS LRR 家族。HvtRGA蛋白与大麦的rgaS 9217、rgaS 226编码的NBS LRR氨基酸序列相似性分别为96.55%和88.72%。进化树分析表明,青稞与小麦族的大麦、硬粒小麦和二穗短柄草NBS LRR聚为一个分支,且与大麦 rgaS 9217编码的蛋白亲缘关系最近,其次是大麦rgaS 226编码的蛋白,而与狗尾草和栗的亲缘关系最远。qRT PCR结果表明,条纹病胁迫下,抗病品种和感病品种的HvtRGA基因的表达量极显著升高,且抗病品种‘昆仑14号’感病后基因表达量显著高于感病品种‘Z1141’。研究推测,HvtRGA 基因在青稞抗条纹病的调控过程中可能发挥着重要作用。  相似文献   

11.
Downy mildew (Plasmopara halstedii (Farl.) Berlese et de Toni) is a serious foliar pathogen of cultivated sunflower (Helianthus annuus L.). Genetic resistance is conditioned by several linked downy mildew resistance gene specificities in the HaRGC1 cluster of TIR-NBS-LRR resistance gene candidates (RGCs) on linkage group 8. The complexity and diversity of the HaRGC1 cluster was assessed by multilocus intron fragment length polymorphism (IFLP) genotyping using a single pair of primers flanking a hypervariable intron located between the TIR and NBS domains. Two to 23 bands were amplified per germplasm accession. The size of the included intron ranged from 89 to 858 nucleotides. Forty-eight unique markers were distinguished among 24 elite inbred lines, six partially isogenic inbred lines, nine open-pollinated populations, four Native American land races, and 20 wild H. annuus populations. Nine haplotypes (based on 24 RGCs) were identified among elite inbred lines and were correlated with known downy mildew resistance specificities. Sixteen out of 39 RGCs identified in wild H. annuus populations were not observed in elite germplasm. Five partially isogenic downy mildew resistant lines developed from wild H. annuus and H. praecox donors carried eight RGCs not found in other elite inbred lines. Twenty-four HaRGC1 loci were mapped to a 2-4 cM segment of linkage group 8. The multilocus IFLP marker and duplicated, hypervariable microsatellite markers tightly linked to the HaRGC1 cluster are powerful tools for distinguishing downy mildew resistance gene specificities and identifying and introgressing new downy mildew resistance gene specificities from wild sunflowers.  相似文献   

12.
The resistance of sunflower, Helianthus annuus L., to downy mildew, caused by Plasmopara halstedii, is conferred by major genes denoted by Pl. Using degenerate and specific primers, 16 different resistance gene analogs (RGAs) have been cloned and sequenced. Sequence comparison and Southern-blot analysis distinguished six classes of RGA. Two of these classes correspond to TIR-NBS-LRR sequences while the remaining four classes correspond to the non-TIR-NBS-LRR type of resistance genes. The genetic mapping of these RGAs on two segregating F2 populations showed that the non-TIR-NBS-LRR RGAs are clustered and linked to the Pl5/ Pl8 locus for resistance to downy mildew in sunflower. These and other results indicate that different Pl loci conferring resistance to the same pathogen races may contain different sequences.  相似文献   

13.
We have used the naturally occurring plant-parasite system of Arabidopsis thaliana and its common parasite Peronospora parasitica (downy mildew) to study the evolution of resistance specificity in the host population. DNA sequence of the resistance gene, RPP13, from 24 accessions, including 20 from the United Kingdom, revealed amino acid sequence diversity higher than that of any protein coding gene reported so far in A. thaliana. A significant excess of amino acid polymorphism segregating within this species is localized within the leucine-rich repeat (LRR) domain of RPP13. These results indicate that single alleles of the gene have not swept through the population, but instead, a diverse collection of alleles have been maintained. Transgenic complementation experiments demonstrate functional differences among alleles in their resistance to various pathogen isolates, suggesting that the extreme amino acid polymorphism in RPP13 is maintained through continual reciprocal selection between host and pathogen.  相似文献   

14.
The major cluster of resistance genes in lettuce cv. Diana contains approximately 32 nucleotide binding site-leucine-rich repeat encoding genes. Previous molecular dissection of this complex region had identified a large gene, RGC2B, as a candidate for encoding the downy mildew resistance gene, Dm3. This article describes genetic and transgenic complementation data that demonstrated RGC2B is necessary and sufficient to confer resistance with Dm3 specificity. Ethylmethanesulphonate was used to induce mutations to downy mildew susceptibility in cv. Diana (Dm1, Dm3, Dm7, and Dm8). Nineteen families were identified with a complete loss of resistance in one of the four resistance specificities. Sequencing revealed a variety of point mutations in RGC2B in the six dm3 mutants. Losses of resistance were due to single changes in amino acid sequence or a change in an intron splice site. These mutations did not cluster in any particular region of RGC2B. A full-length genomic copy of RGC2B was isolated from a lambdaphage library and introduced into two genotypes of lettuce. Transgenics expressing RGC2B exhibited resistance to all isolates expressing Avr3 from a wide range of geographical origins. In a wildtype Dm3-expressing genotype, many of the RGC2 family members are expressed at low levels throughout the plant.  相似文献   

15.
Disease resistance gene candidates (RGCs) belonging to the nucleotide-binding site (NBS) superfamily have been cloned from numerous crop plants using highly conserved DNA sequence motifs. The aims of this research were to (i) isolate genomic DNA clones for RGCs in cultivated sunflower (Helianthus annuus L.) and (ii) map RGC markers and Pl1, a gene for resistance to downy mildew (Plasmopara halstedii (Farl.) Berl. & de Toni) race 1. Degenerate oligonucleotide primers targeted to conserved NBS DNA sequence motifs were used to amplify RGC fragments from sunflower genomic DNA. PCR products were cloned, sequenced, and assigned to 11 groups. RFLP analyses mapped six RGC loci to three linkage groups. One of the RGCs (Ha-4W2) was linked to Pl1, a downy mildew resistance gene. A cleaved amplified polymorphic sequence (CAPS) marker was developed for Ha-4W2 using gene-specific oligonucleotide primers. Downy mildew susceptible lines (HA89 and HA372) lacked a 276-bp Tsp5091 restriction fragment that was present in downy mildew resistant lines (HA370, 335, 336, 337, 338, and 339). HA370 x HA372 F2 progeny were genotyped for the Ha-4W2 CAPS marker and phenotyped for resistance to downy mildew race 1. The CAPS marker was linked to but did not completely cosegregate with Pl1 on linkage group 8. Ha-4W2 was found to comprise a gene family with at least five members. Although genetic markers for Ha-4W2 have utility for marker-assisted selection, the RGC detected by the CAPS marker has been ruled out as a candidate gene for Pl1. Three of the RGC probes were monomorphic between HA370 and HA372 and still need to be mapped and screened for linkage to disease resistance loci.  相似文献   

16.
The Arabidopsis Ler-RPP27 gene confers AtSgt1b-independent resistance to downy mildew (Peronospora parasitica) isolate Hiks1. The RPP27 locus was mapped to a four-bacterial artificial chromosome interval on chromosome 1 from genetic analysis of a cross between the enhanced susceptibility mutant Col-edm1 (Col-sgt1) and Landsberg erecta (Ler-0). A Cf-like candidate gene in this interval was PCR amplified from Ler-0 and transformed into mutant Col-rpp7.1 plants. Homozygous transgenic lines conferred resistance to Hiks1 and at least four Ler-0 avirulent/Columbia-0 (Col-0) virulent isolates of downy mildew pathogen. A full-length RPP27 cDNA was isolated, and analysis of the deduced amino acid sequences showed that the gene encodes a receptor-like protein (RLP) with a distinct domain structure, composed of a signal peptide followed by extracellular Leu-rich repeats, a membrane spanning region, and a short cytoplasmic carboxyl domain. RPP27 is the first RLP-encoding gene to be implicated in disease resistance in Arabidopsis, enabling the deployment of Arabidopsis techniques to investigate the mechanisms of RLP function. Homology searches of the Arabidopsis genome, using the RPP27, Cf-9, and Cf-2 protein sequences as a starting point, identify 59 RLPs, including the already known CLAVATA2 and TOO MANY MOUTHS genes. A combination of sequence and phylogenetic analysis of these predicted RLPs reveals conserved structural features of the family.  相似文献   

17.
A cDNA library was constructed from field pea leaves infected by the downy mildew pathogen, Peronospora viciae f. sp. pisi, using a suppression subtractive hybridisation approach. The library consists of 399 expressed sequence tags, from which 207 unisequences were obtained after sequence assembly. Of the unisequences, six were shown to be of Peronospora viciae f. sp. pisi origin. The remaining unisequences were subjected to gene ontology analysis and their functions were predicted in silico. Eleven of these unisequences (representing 24 clones) shared significant sequence similarities with Arabidopsis genes known to be involved in downy mildew resistance, including the well‐characterised genes RPP5, RPP6 and RPP27. Expression analysis of five selected unisequences by real‐time PCR indicated that all five were up‐regulated during downy mildew pathogenesis, suggesting a significant role for these genes in the host response to downy mildew infection.  相似文献   

18.
Resistance of sunflower to the obligate parasite Plasmopara halstedii is conferred by specific dominant genes, denoted Pl. The Pl6 locus confers resistance to all races of P. halstedii except one, and must contain at least 11 tightly linked genes each giving resistance to different downy mildew races. Specific primers were designed and used to amplify 13 markers covering a genetic distance of about 3 cM centred on the Pl6 locus. Cloning and sequence analysis of these 13 markers indicate that Pl6 contains conserved genes belonging to the TIR-NBS-LRR class of plant resistance genes. Received: 9 April 2001 / Accepted: 10 August 2001  相似文献   

19.
52 entries including landraces, old cultivars and wild accessions of B. oleracea and closely related Brassica species were screened for resistance against downy mildew and clubroot. Several accessions resistant to downy mildew and a few to clubroot were found. Genetic inheritance of the resistance in downy mildew was investigated by screening F1 and BC1F1 offspring from three resistant landrace accessions crossed with both a resistant and a susceptible father. The seedling resistance against downy mildew was found to be inherited recessively. This is a bit surprising as earlier papers mostly report of inheritance controlled by a single dominant gene. Previous screenings of B. oleracea resistance against downy mildew at the cotyledon stage have been done with P. parasitica isolated from B. oleracea as the original host plant. The recessive nature of the cotyledon resistance found in this screening might be due to the fact that the P. parasitica isolate was collected from B. napus fields. The clubroot seedling resistance was found to be controlled by recessive inheritance after screening the F1 offspring, this in agreement with earlier results/reports.  相似文献   

20.
A genetic linkage map of grapevine was constructed using a pseudo-testcross strategy based upon 138 individuals derived from a cross of Vitis vinifera Cabernet Sauvignon × Vitis riparia Gloire de Montpellier. A total of 212 DNA markers including 199 single sequence repeats (SSRs), 11 single strand conformation polymorphisms (SSCPs) and two morphological markers were mapped onto 19 linkage groups (LG) which covered 1,249 cM with an average of 6.7 cM between markers. The position of SSR loci in the maps presented here is consistent with the genome sequence. Quantitative traits loci (QTLs) for several traits of inflorescence and flower morphology, and downy mildew resistance were investigated. Two novel QTLs for downy mildew resistance were mapped on linkage groups 9 and 12, they explain 26.0–34.4 and 28.9–31.5% of total variance, respectively. QTLs for inflorescence morphology with a large effect (14–70% of total variance explained) were detected close to the Sex locus on LG 2. The gene of the enzyme 1-aminocyclopropane-1-carboxylic acid synthase, involved in melon male organ development and located in the confidence interval of all QTLs detected on the LG 2, could be considered as a putative candidate gene for the control of sexual traits in grapevine. Co-localisations were found between four QTLs, detected on linkage groups 1, 14, 17 and 18, and the position of the floral organ development genes GIBBERELLIN INSENSITIVE1, FRUITFULL, LEAFY and AGAMOUS. Our results demonstrate that the sex determinism locus also determines both flower and inflorescence morphological traits.  相似文献   

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