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1.
根据大麦MLa基因的保守区域设计了4对家族性引物。通过用家族性引物对小麦(Triticum aestivum L.)抗白粉病品系TAM104R在接种和未接种两种条件下的基因差异表达进行RT-PCR分析,获得了一个在接种条件下特异表达的基因片段RJ-3-3L, 并用RACE方法获得了其cDNA全长,命名为TaMla1。序列比对显示: TaMla1与大麦MLa位点的基因家族成员具有高度同源性,TaMla1编码的氨基酸功能基序扫描表明其为一个CC-NBS-LRR型抗病蛋白。用一套中国春缺-四体材料将TaMla1定位到了小麦的1A染色体上,这正是大麦MLa基因位点在小麦中的同源区段所在的染色体。这些结果表明,TaMla1为一个类MLa抗白粉病基因。同时我们还获得了一个在不接种条件下特异表达的基因片段RW-2-3L,序列分析表明它与MLa 基因也高度同源,推测其可能是一个小麦白粉病的敏感基因或抗性负调控因子。  相似文献   

2.
根据GenBank中公布的大麦白粉病抗性控制基因Mlo cDNA序列及一个来源于栽培一粒小麦(Triticum monococcum L.)的假定抗病基因序列分别设计引物,以携带小麦抗白粉病基因的近等基因系为材料进行RT-PCR筛选.结果获得两个表达基因的cDNA克隆.其中一个与大麦白粉病抗性控制基因Mlo的同源性达83%.另一个为非通读序列,含有两个可能的开放阅读框,分别包含抗病基因NBS保守结构域2和3以及与水稻抗稻瘟病基因Pib蛋白末端相似的13个LRR区域,推测该序列属于NBS-LRR类.白粉菌诱导前后,该片段RT-PCR扩增产物存在差异,表明该片段可能与小麦抗病性相关.利用"中国春"缺体-四体系,将该NBS-LRR类序列定位在小麦1D染色体上.  相似文献   

3.
小麦Mlo及NBS—LRR类抗病基因同源序列的分离与鉴定   总被引:4,自引:0,他引:4  
根据GenBank中公布的大麦白粉病抗性控制基因MlocDNA序列及一个来源于栽培一粒小麦(Triticum monococcumL.)的假定抗病基因序列分别设计引物,以携带小麦抗白粉病基因的近等基因系为材料进行RT-PCR筛选。结果获得两个表达基因的cDNA克隆。其中一个与大麦白粉病抗性控制基因Mlo的同源性达83%。另一个为非通读序列,含有两个可能的开放阅读框,分别包含抗病基因NBS保守结构域2和3以及与水稻抗稻瘟病基因Pib蛋白末端相似的13个LRR区域,推测该序列属于NBS-LRR类。白粉菌诱导前后,该片段RT-PCR扩增产物存在差异。表明该片段可能与小麦抗病性相关。利用“中国春”缺体-四体系,将该NBS-LRR类序列定位在小麦1D染色体上。  相似文献   

4.
用mRNA差异显示技术在含有抗白粉病基因Pm21的小麦(Tri ticum aestivum L.) -簇毛麦(Haynaldia villosa) 6VS /6AL易位系92R137中分离与抗白粉病相关的基因,获得一个命名为TaPK1的全长cDNA克隆.序列分析表明,它与大豆(Glycine max (L.) Merr.)蛋白激酶基因GmPK6高度同源.经推测,TaPK1 编码416个氨基酸的多肽,属丝氨酸-苏氨酸蛋白激酶家族,并具酪氨酸激酶特性.TaPK1是从小麦中分离的新基因.  相似文献   

5.
小麦近缘种簇毛麦携带许多尚未克隆的抗病(R)基因。NBS-LRR类型的R基因占已克隆植物R基因的绝大多数,因此,本研究根据NBS-LRR类型R基因的保守序列设计引物,从簇毛麦基因组DNA和cDNA中扩增获得23条相关序列。基于其中5条抗病基因同源序列(RGAs)H-56/d6、H-66/b2和CDS40设计引物,对小麦、簇毛麦、硬-簇双二倍体及其杂种以及已知携带个别簇毛麦染色体或染色体臂的小麦材料进一步进行PCR扩增,结果表明:3对引物均可对簇毛麦、硬-簇双二倍体进行特异扩增;同时,源于序列H-66/b2的引物可对1VL和6VL染色体臂进行特异扩增;源于序列CDS40的引物可在同时携带1VL和2VS或同时携带2VS和4V的小麦材料以及具有6VL的小麦材料中特异扩增,而H-56/d6的引物在携带1VL、2VS、4V和6V染色体臂或染色体的小麦背景中都不能获得目的片段的扩增。这些结果不仅为外源染色体臂在小麦背景中的追踪与鉴定提供了新的分子标记,而且这些标记还与外源染色体或染色体臂上的抗病基因或抗病基因同源物紧密连锁或共分离。  相似文献   

6.
小麦EDR1基因的克隆、鉴定和表达   总被引:5,自引:0,他引:5  
为了研究普通小麦(Triticum aestivum L.)中是否有EDR1途径存在,根据拟南芥EDR1基因及其同源物设计了一对兼并性引物,用来分离小麦的EDR1同源物.以用小麦叶片RNA合成的cDNA为模板进行RT-PCR扩增,获得了代表小麦EDR1基因(命名为TaEDR1)的627 bp长的cDNA片段(GenBank登录号:AY743662).此后,通过RACE技术成功地获得了编码959个氨基酸的全长TaEDR1基因的cDNA序列.TaEDR1的氨基酸序列与大麦EDR1(标记为HvEDR1)有92%的相同.在TaEDR1的羧基末端有一个高度保守的丝氨酸/苏氨酸激酶催化功能域.因为存在一个推测的核定位基序,这个蛋白可能在细胞核中起作用.首次提供了证明普通小麦中存在EDR1同源物的分子生物学证据.用半定量RT-PCR方法研究了接种小麦白粉病菌[Blumeria graminis(DC.)E.O.Speer f.sp.tritici Em.Marchal,Bgt]后叶片中TaEDR1基因的转录谱.结果表明,在接种白粉病菌后TaEDR1基因在叶片中的转录水平提高.组织特异性表达谱分析证明,小麦TaEDR1基因在叶片、茎、穗、根中均有表达.研究提示TaEDR1可能在小麦防卫应答反应中起作用.  相似文献   

7.
含有抗白粉病基因的黑麦染色体小片段向小麦的转移   总被引:7,自引:0,他引:7  
符书兰  唐宗祥  张怀琼  杨足君  任正隆 《遗传》2006,28(11):1396-1400
利用感白粉病的小麦品种绵阳11的纯系和黑麦自交系R12杂交, 在其单体附加系自交后代的BC1F5株系中选择小麦-黑麦异源易位系。根据已报道的黑麦特异重复序列pSc20H设计了一对特异引物, 用PCR方法鉴定了300个单体附加系的自交BC1F5株系,发现其中70个株系含有黑麦染色体成分。一个来源于6R单体附加系的小麦株系96Ⅱ691-830-98表现了对白粉病的高度抗性, PCR方法鉴定证明其含有黑麦染色体成分。对该株系作进一步的基因组原位杂交(GISH)鉴定, 证明它的一对染色体的端部含有黑麦染色体的小片段。这一结果指出, 含有抗白粉病基因的黑麦染色体6R小片段被引入了小麦。研究表明利用单体附加诱导染色体小片段易位是一种有效的方法。利用PCR和GISH原位杂交相结合的方法可提高检测外源染色体小片段的准确性和选择效率。  相似文献   

8.
本研究用225对引物对农艺性状优良但对白粉菌敏感的栽培小麦京411、抗白粉病栽培小麦Brock以及京411与Brock配制的近等基因系进行AFLP分子标记筛选,结果发现只有2对引物组合Pst GAC/Mse TCT(P1)和Pst AGC/Mse ACC(P2)在上述抗感材料中表现出多态性,分别扩增到2个特异片段,将特异片段克隆并测序发现,P1扩增的特异片段长268bp,P2扩增的特异片段长227bp,命名为AFLP标记P1268和P227.用106个京411×Brock的F2单株进行连锁性分析表明,P1268和P2227与抗白粉病基因的遗传距离分别为3.6和1.9cM,与Brock中的抗白粉病基因呈紧密连锁.该两个AFLP标记对小麦抗白粉病基因的积累和分子标记辅助选择育种有重要意义.  相似文献   

9.
一个小麦丝氨酸—苏氨酸蛋白激酶基因的克隆和分析   总被引:8,自引:0,他引:8  
用mRNA差异显示技术在含有抗白粉病基因Pm2 1的小麦 (TriticumaestivumL .)_簇毛麦 (Haynaldiavillosa)6VS/ 6AL易位系 92R137中分离与抗白粉病相关的基因 ,获得一个命名为TaPK1的全长cDNA克隆。序列分析表明 ,它与大豆 (Glycinemax (L .)Merr.)蛋白激酶基因GmPK6高度同源。经推测 ,TaPK1编码 416个氨基酸的多肽 ,属丝氨酸_苏氨酸蛋白激酶家族 ,并具酪氨酸激酶特性。TaPK1是从小麦中分离的新基因。  相似文献   

10.
小麦面粉黄色素相关基因研究   总被引:9,自引:1,他引:8  
小麦八氢番茄红素合成酶(PSY)基因和脂肪氧化酶(LOx)基因可能影响面粉黄色素含量。根据玉米P5y 基因序列设计引物,扩增出小麦PSY基因的部分片段,序列比较表明小麦和玉米PSY基因外显子DNA序列长度一致,但存在单核苷酸多态性(SNP)位点,序列一致性为90%;蛋白质氨基酸序列比较发现其序列一致性为97%, 说明一些SNP并未导致氨基酸的改变,该基因在玉米和小麦中应具有类似的功能活性。利用非整倍体材料将小麦 PSY基因初步定位到1D染色体。用同样方法,发现小麦的LOX基因与大麦、水稻、玉米的L0X基因具有很高的一致性,并将其初步定位到4BS染色体。  相似文献   

11.
The barley Mla locus encodes 28 characterized resistance specificities to the biotrophic fungal pathogen barley powdery mildew. We describe a single-cell transient expression assay using entire cosmid DNAs to pinpoint Mla1 within the complex 240-kb Mla locus. The MLA1 cDNA encodes a 108-kD protein containing an N-terminal coiled-coil structure, a central nucleotide binding domain, and a C-terminal leucine-rich repeat region; it also contains a second short open reading frame at the 5' end that has a possible regulatory function. Although most Mla-encoded resistance specificities require Rar1 for their function, we used the single-cell expression system to demonstrate that Mla1 triggers full resistance in the presence of the severely defective rar1-2 mutant allele. Wheat contains an ortholog of barley Mla, designated TaMla, that is tightly linked to (0.7 centimorgan) but distinct from a tested resistance specificity at the complex Pm3 locus to wheat powdery mildew. Thus, the most polymorphic powdery mildew resistance loci in barley and wheat may have evolved in parallel at two closely linked homeoloci. Barley Mla1 expressed in wheat using the single-cell transformation system failed to trigger a response to any of the wheat powdery mildew Avr genes tested, indicating that AvrMla1 is not genetically fixed in wheat mildew strains.  相似文献   

12.
The barley Mla locus confers multiple resistance specificities to the obligate fungal biotroph, Blumeria (= Erysiphe) graminis f. sp. hordei. Interspersed within the 240 kb Mla complex are three families of resistance gene homologs (RGHs). Probes from the Mla-RGH1 family were used to identify three classes of cDNAs. The first class is predicted to encode a full-length CC-NBS-LRR protein and the other two classes contain alternatively spliced, truncated variants. Utilizing a cosmid that contains a gene corresponding to the full-length candidate cDNA, two single-cell expression assays were used to demonstrate complementation of AvrMla6-dependent, resistance specificity to B. graminis in barley and wheat. The first of these assays was also used to substantiate previous genetic data that the Mla6 allele requires the signaling pathway component, Rar1, for function. Computational analysis of MLA6 and the Rar1-independent, MLA1 protein reveals 91.2% identity and shows that the LRR domain is subject to diversifying selection. Our findings demonstrate that highly related CC-NBS-LRR proteins encoded by alleles of the Mla locus can dictate similar powdery mildew resistance phenotypes yet still require distinct downstream signaling components.  相似文献   

13.
小麦锌指蛋白基因的克隆、序列与表达分析   总被引:4,自引:0,他引:4  
根据R基因及其调控基因保守序列设计简并性引物,对白粉菌接种和未接种处理的一对抗病和感病的小麦—黑麦等位突变易位系TAM104R和TAM104S总RNA进行RT-PCR扩增,得到一个诱导表达的cDNA片段。序列分析表明,该片段全长2474bp,其中含有一个822bp的完整开放阅读框,推测其编码一个有273个氨基酸残基、分子量约31kD的蛋白质分子。蛋白质的氨基酸序列比对显示,该蛋白质分子具有C2HC锌结合motif CX2CX4HX4C结构和锌指domain,可见克隆的cDNA是一个锌指蛋白基因,命名为TaZF。Southern杂交表明,TaZF在抗病易位系TAM104R的基因组中是多拷贝的。半定量RT-PCR分析显示,TaZF基因属组成型表达、但受白粉菌诱导表达上调的基因,推测其与白粉病菌的侵染过程相关。基因组DNA专化扩增、克隆和测序揭示TaZF基因无内含子。  相似文献   

14.
15.
Comparative sequence analysis of the resistance gene analog (RGA) marker locus aACT/CAA (originally found to be tightly linked to the multiallelic barley Mla cluster) from genomes of barley, wheat and rye revealed a high level of relatedness among one another and showed high similarity to a various number of NBS-LRR disease resistance proteins. Using the sequence-specific polymerase chain reaction (PCR), RGA marker aACT/CAA was mapped on group 1S chromosomes of the Triticeae and was associated with disease resistance loci. In barley and rye, the marker showed linkage to orthologous powdery mildew resistance genes Mla1 and Pm17, respectively, while in wheat linkage with a QTL against fusarium head blight (FHB) disease was determined. The use of RGA clones for R gene mapping and their role in the expression of qualitative and quantitative resistance is discussed.  相似文献   

16.
大麦抗白粉病基因Mlo的研究进展   总被引:10,自引:0,他引:10  
野生型Mlo基因是大麦抗白粉病的负调控因子,该基因突变,赋予大麦对白粉菌的广谱抗性。综述了Mlo基因结构、功能及Mlo突变的等位基因(mlo)的抗性特点;讨论了mlo基因可能的抗病机制。为mlo抗性在麦类白粉病抗病育种中的应用提供了理论基础。  相似文献   

17.
Nineteen barley landraces collected from Morocco were screened for resistance to powdery mildew. The landraces originated from the collection at the Polish Gene Bank, IHAR Radzików, Poland. The fifteen landraces tested showed powdery mildew resistance reactions and 35 single plant lines were selected. Twenty-one of these lines were tested in the seedling stage with 30, four lines with 17 and another 10 lines with 23 differential isolates of powdery mildew, respectively. The isolates were chosen according to their virulence spectra observed on the Pallas isolines differential set. Nine lines (E 1029-1-1, E 1042-2-2, E 1050-1-1, E 1054-5-1, E 1056-2-5, E 1056-3-1, E 1061-1-1, E 1061-1-3 and E 1067-1-2) which originated from seven landraces showed resistance to all prevalent European powdery mildew virulence genes. The most frequent score was 2 and 16 lines showed this reaction for inoculation with most isolates used. The distribution of reaction type indicated that about 77% of all reaction types observed were classified as powdery mildew resistance (scores 0, 1 and 2). In all lines the presence of unknown genes alone or in combinations with specific ones was postulated. Four different resistance alleles ( Mlat , Mla6 , Mla14 and Mla12 ) were postulated to be present in 10 tested lines alone or in combination. Alleles Mlat , Mla6 and Mla14 were postulated to be present in four and Mla12 in two tested lines, respectively. The value of barley landraces for diversification of resistance genes for powdery mildew is discussed.  相似文献   

18.
Isolates of Magnaporthe oryzae (the causal agent of rice blast disease) can infect a range of grass species, including barley. We report that barley Hordeum vulgare cv. Baronesse and an experimental line, BCD47, show a range of resistance reactions to infection with two rice blast isolates. The complete resistance of Baronesse to the isolate Ken 54-20 is controlled by a single dominant gene, designated RMo1. RMo1 mapped to the same linkage map position on chromosome 1H as the powdery mildew resistance locus Mla and an expressed sequence tag (k04320) that corresponds to the barley gene 711N16.16. A resistance quantitative trait locus (QTL), at which Baronesse contributed the resistance allele, to the isolate Ken 53-33 also mapped at the same position as RMo1. Synteny analysis revealed that a corresponding region on rice chromosome 5 includes the bacterial blight resistance gene xa5. These results indicate that a defined region on the short arm of barley chromosome 1H, including RMo1 and Mla, harbors genes conferring qualitative and quantitative resistance to multiple pathogens. The partial resistance of BCD47 to Ken53-33 is determined by alleles at three QTL, two of which coincide with the linkage map positions of the mildew resistance genes mlo and Mlf.  相似文献   

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