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1.
植物抗病基因Pto和Cf产物具完全不同的结构域,其细胞定位也不同。二决定的抗病性产生机制的异同令人关注。采用两种过敏性反应(hypersensitive response,HR)产生系统研究了Pro互作蛋白Pti4,Pti5和Pti6编码基因在Avr/Cf互作中的时序表达:(1)通过杂交方法获取同含互补基因对Avr4/Cf-4和Avr9/Cf-9的番茄(Lycoper-sicon esculentum Mill.)种子,常温下这些种子发芽后形成的苗产生HR坏死斑。(2)先将Avr/Cf苗置于33℃下培养,此时番茄苗生长正常,不形成HR坏死斑。然后将温度降至25℃,数小时内这些苗即形成HR坏死斑。不同方法研究结果均表明,随Avr/Cf苗中HR坏死斑的形成,Pti4、Pti5和Pti6均受显诱导表达。但它们的表达水平和动态不同,这些结果表明,这些Pti在功能上互补,可能同时涉及Pto和Cf决定性抗性的调节作用。  相似文献   

2.
组蛋白去乙酰化酶在植物非生物胁迫应答反应中具有重要的调控作用。利用RT-PCR的方法从毛果杨中克隆了组蛋白去乙酰化酶基因HDA902。利用农杆菌介导法将其遗传转化到烟草中,并对转基因植株进行低温耐受性分析。研究结果表明,HDA902在烟草中的表达显著提高了转基因株系对低温的耐受性。叶片NBT和DAB染色结果表明,在低温处理后转基因烟草比野生型烟草产生较少的活性氧。丙二醛和脯氨酸含量测定结果表明,在低温条件下,转基因烟草叶片的脯氨酸含量显著高于野生型烟草,而丙二醛含量显著低于野生型烟草。这些研究结果表明,HDA902参与低温胁迫应答反应,其过量表达提高了植株耐低温的能力。  相似文献   

3.
植物抗病基因Pto和Cf产物具完全不同的结构域,其细胞定位也不同.二者决定的抗病性产生机制的异同令人关注.采用两种过敏性反应(hypersensitive response,HR)产生系统研究了Pto互作蛋白Pti4、Pti5和Pti6编码基因在Avr/Cf互作中的时序表达:(1)通过杂交方法获取同含互补基因对Avr4/Cf-4和Avr9/Cf-9的番茄(Lycopersicon esculentum Mill.)种子.常温下这些种子发芽后形成的苗产生HR坏死斑.(2)先将Avr/Cf苗置于33 ℃下培养,此时番茄苗生长正常,不形成HR坏死斑.然后将温度降至25 ℃,数小时内这些苗即形成HR坏死斑.不同方法研究结果均表明,随Avr/Cf苗中HR坏死斑的形成,Pti4、Pti5和Pti6均受显著诱导表达.但它们的表达水平和动态不同.这些结果表明,这些Pti在功能上互补,可能同时涉及Pto和Cf决定性抗性的调节作用.  相似文献   

4.
利用PCR技术从实验室建立的天山雪莲DNA文库中克隆了天山雪莲质膜水孔蛋白基因sikPIP3,构建了植物表达载体pBI121-sikPIP3,通过农杆菌介导法转化烟草品种NC89,经PCR和RT-PCR检测证明目的基因成功导入并得到了表达,采用水分胁迫进行抗旱分析和采用冷冻胁迫进行抗寒性分析。结果显示:(1)克隆出具有水孔蛋白基因特性的sikPIP3基因。(2)经断水干旱处理,转基因烟草的生长表型优于野生型烟草,特别是在断水9d的情况下,野生型烟草已经完全萎蔫,转基因烟草萎蔫症状较轻;生理指标测量结果显示,转基因烟草的相对电导率和MDA的含量低于野生型烟草,相对含水量和CAT活性高于野生型烟草。试验表明转sikPIP3烟草的抗旱性高于野生型烟草。(3)经不同温度胁迫处理,转基因烟草的生长表型优于野生型烟草,特别是在-4℃冷处理6h情况下,野生型烟草已经完全萎蔫,转基因烟草只出现少量伤斑;生理指标分析结果表明,转基因烟草的相对电导率和MDA的含量低于野生型烟草,CAT活性高于野生型烟草。试验表明转sikPIP3烟草的抗寒性高于野生型烟草。综合结果表明:sikPIP3基因在抗逆基因工程方面具有较高的应用前景。  相似文献   

5.
旨在研究C2H2型锌指蛋白在植物生长发育、非生物胁迫信号转导过程中的作用。前期从新疆无苞芥中克隆的一个单锌指基因Op ZFP,利用叶盘法将Op ZFP基因转入普通烟草中。半定量RT-PCR表明,在转基因植株中Op ZFP基因能够高效表达。烟草耐盐性分析显示,在高盐胁迫下,转基因植株的根长要长于野生型植株,且转基因烟草丙二醛(MDA)的含量要明显低于野生型植株;并且高盐胁迫处理,野生型烟草离体叶片叶绿素降解率高于转基因植株。这些结果表明,过量表达Op ZFP的转基因植株可以提高植物对盐胁迫的抗性。  相似文献   

6.
Pttkn1基因异位表达对烟草叶片形态的影响   总被引:1,自引:0,他引:1  
以红花烟草(Nicotiana tabacum L.)叶片为材料,利用农杆菌介导的叶盘转化法将Pttkn1基因整合到烟草基因组中,获得了转基因植株,研究了该基因对植物形态发生和维管形成的影响,并对其进行了RT-PCR分析。结果表明,转基因烟草植株的叶片形态和叶脉发生了多种变化,包括叶片对称性丧失、出现裂片、皱缩、异位茎、杯状叶片、瘤状结构、叶脉脉序紊乱等。RT-PCR分析表明,该基因仅强烈表达于转基因烟草植株中,而在野生型和组织培养材料中均未检测到该基因的存在。表明Pttkn1基因已经成功转入烟草中,而且在叶片形态发生和维管形成过程中发挥一定的作用。  相似文献   

7.
棉花乙烯合成基因促进拟南芥和烟草不定根发生的研究   总被引:1,自引:0,他引:1  
从棉花纤维cDNA中克隆获得乙烯合成基因GhACO3,构建了植物过量表达载体p35S::GhACO3.通过花序侵染法和叶盘法分别转化拟南芥和烟草,利用卡那霉素筛选及分子检测获得转基因阳性拟南芥和烟草植株.结果表明,GhACO3基因已整合到拟南芥和烟草基因组中;经过纯合筛选后获得转基因T2代拟南芥植株;与野生型拟南芥相比,GhACO3基因对拟南芥不定根发生具有显著促进作用;与野生型烟草植株相比,转GhACO3基因烟草不定根发生得到了显著的促进.研究表明,GhACO3基因的过量表达能够促进拟南芥和烟草不定根的形成发育,为进一步探讨GhACO3的生物学功能和进行转基因育种奠定了基础.  相似文献   

8.
转OsMAPK4基因烟草的抗旱性研究与遗传分析   总被引:5,自引:0,他引:5  
李杰  齐岩  李莹  刘西燕  冀好布套  朱延明  柏锡  才华 《遗传》2007,29(9):1144-1148
以低温处理的水稻辽盐241植株叶片总RNA为模板, 用OsMAPK4基因特异引物通过RT-PCR扩增出OsMAPK4基因, 构建了由E12启动子调控的OsMAPK4基因植物表达载体pBME12。通过农杆菌介导法将OsMAPK4基因导入烟草, 筛选获得25株转基因植株。抗旱性研究结果表明, OsMAPK4基因的超量表达提高了T1代转基因植株的抗旱性。卡那霉素抗性在T1代转基因植株中的分离情况表明, 大多数转基因株系符合单基因遗传规律。  相似文献   

9.
一种基于PCR技术鉴定单拷贝转基因烟草的方法   总被引:4,自引:0,他引:4  
为了鉴定携带单拷贝外源基因的转基因烟草植株,以烟草核基因组上已知的单拷贝内源基因(RNR2)为内参,转基因烟草植株基因组DNA为模板,在同一PCR反应体系中扩增内源基因(RNR2)和外源目的基因(NPTⅡ)。反应产物在琼脂糖凝胶上电泳,获得了预期大小的两条特异性扩增条带。经ImageJ软件捕捉分析两条目的条带的灰度比,当T1代转基因烟草植株中外源基因与内源基因的扩增条带灰度比为1时,所检测植株即为单拷贝外源基因的转基因烟草植株。孟德尔经典遗传学方法证实了上述检测结果高度可信。  相似文献   

10.
FTL(F-box Triple LRR protein)是F-box蛋白家族的成员,具有F-box保守结构域,在植物抵御逆境胁迫过程中起重要作用。本研究参考低温胁迫下紫花苜蓿转录组数据设计引物,通过RT-PCR克隆获得紫花苜蓿MsFTL基因,该基因的全长1422 bp,编码473个氨基酸。该蛋白含有1个F-box结构域及3个LRR重复。系统进化分析表明,MsFTL与蒺藜苜蓿XP_003626345.1 F-box/FBD/LRR-repeat protein亲缘关系最近。两者蛋白序列比对发现共有11个差异位点。在低温、盐、干旱以及外源ABA处理下,MsFTL基因受到诱导,表达量上调。构建植物过表达载体pCBM-MsFTL,通过农杆菌介导法转化烟草。对经过抗性筛选、PCR和Real-time PCR验证的转基因植株进行低温抗性鉴定。在-4℃低温胁迫下,野生型烟草叶片出现了明显的萎蔫失水现象,而转基因烟草萎蔫程度相对较轻。生理检测结果表明,4℃处理24 h之后,转基因烟草的可溶性蛋白含量、可溶性糖含量、SOD活性,CAT活性高于野生型,MDA含量低于野生型。本研究表明,MsFTL基因在提高植物对低温胁迫的抗性方面具有重要的作用。  相似文献   

11.
Tomato leaves or cotyledons expressing the Cf-2 or Cf-9 Cladosporium fulvum resistance genes induce salicylic acid (SA) synthesis following infiltration with intercellular washing fluid (IF) containing the fungal peptide elicitors Avr2 and Avr9. We investigated whether SA was required for Cf gene-dependent resistance. Tomato plants expressing the bacterial gene nahG, encoding salicylate hydroxylase, did not accumulate SA in response to IF infiltration but remained fully resistant to C. fulvum. NahG Cf0 plants were as susceptible to C. fulvum as wild-type Cf0. Neither free nor conjugated salicylic acid accumulated in IF-infiltrated Cf2 and Cf9 NahG leaves and cotyledons but conjugated catechol did accumulate. The Cf-9-dependent necrotic response to IF was prevented in NahG plants and replaced by a chlorotic Cf-2-like response. SA also potentiated Cf-9-mediated necrosis in IF-infiltrated wild-type leaves. In contrast, the Cf-2-dependent IF response was retained in NahG leaves and chlorosis was more pronounced than in the wild-type. The distribution of cell death between different cell types was altered in both Cf2 and Cf9 NahG leaves after IF injection. IF-induced accumulation of three SA-inducible defence-related genes was delayed and reduced but not abolished in NahG Cf2 and Cf9 leaves and cotyledons. NahG Tm-22 tomato showed increased hypersensitive response (HR) lesion size upon TMV infection, as observed in TMV-inoculated N gene-containing NahG tobacco plants.  相似文献   

12.
The Cf-9 gene encodes an extracytoplasmic leucine-rich repeat protein that confers resistance in tomato to races of the fungus Cladosporium fulvum that express the corresponding avirulence gene Avr 9. We investigated whether the genomic Cf-9 gene functions in potato and tobacco. Transgenic tobacco and potato plants carrying Cf-9 exhibit a rapid hypersensitive cell death response (HR) to Avr 9 peptide injection. Cf 9 tobacco plants were reciprocally crossed to Avr 9-producing tobacco. A developmentally regulated seedling lethal phenotype occurred in F1 progeny when Cf9 was used as the male parent and Avr 9 as the female parent. However, when Cf9 was inherited in the maternal tissue and a heterozygous Avr 9 plant was used as the pollen donor, a much earlier reaction was caused, leading to no germination of any F1 seed. Detailed analysis of the Avr 9-induced responses in Cf 9 tobacco leaves revealed that (1) most mesophyll cells died within 3 hr (compared with 12 to 16 hr in tomato); (2) the macroscopic HR was visible at an Avr 9 titer five times lower than that which caused visible symptoms in tomato; (3) the HR invariably extended into noninjected panels of the tobacco leaf; (4) no HR occurred in leaves of young tobacco plants; (5) in older plants, the HR was dramatically enhanced by sequential Avr 9 challenges; and (6) coexpression of a salicylate hydroxylase transgene (nahG) from Pseudomonas putida reduced the severity of the macroscopic leaf HR and also restored germination to Cf 9 x 35S:Avr 9 F1 seedlings. Simultaneous introduction of Cf-9 homologs (Hcr 9-9 genes A and B or D) along with the native Cf-9 gene did not alter the responses that were specifically induced by Avr 9. Various ways to use the Cf-9-Avr 9 gene combination to engineer broad-spectrum disease resistance in several solanaceous species are discussed.  相似文献   

13.
14.
The avirulence genes Avr9 and Avr4 from the fungal tomato pathogen Cladosporium fulvum encode extracellular proteins that elicit a hypersensitive response when injected into leaves of tomato plants carrying the matching resistance genes, Cf-9 and Cf-4, respectively. We successfully expressed both Avr9 and Avr4 genes in tobacco with the Agrobacterium tumefaciens transient transformation assay (agroinfiltration). In addition, we expressed the matching resistance genes, Cf-9 and Cf-4, through agroinfiltration. By combining transient Cf gene expression with either transgenic plants expressing one of the gene partners, Potato virus X (PVX)-mediated Avr gene expression, or elicitor injections, we demonstrated that agroinfiltration is a reliable and versatile tool to study Avr/Cf-mediated recognition. Significantly, agroinfiltration can be used to quantify and compare Avr/Cf-induced responses. Comparison of different Avr/Cf-interactions within one tobacco leaf showed that Avr9/Cf-9-induced necrosis developed slower than necrosis induced by Avr4/Cf-4. Quantitative analysis demonstrated that this temporal difference was due to a difference in Avr gene activities. Transient expression of matching Avr/Cf gene pairs in a number of plant families indicated that the signal transduction pathway required for Avr/Cf-induced responses is conserved within solanaceous species. Most non-solanaceous species did not develop specific Avr/Cf-induced responses. However, co-expression of the Avr4/Cf-4 gene pair in lettuce resulted in necrosis, providing the first proof that a resistance (R) gene can function in a different plant family.  相似文献   

15.
Defense responses mediated by the genetically unlinked Cf-9 and Cf-2 genes were compared with those involving no Cf gene (Cf0). Compatible tomato (Lycopersicon esculentum)-Cladosporium fulvum intercellular washing fluids were injected into tomato cotyledons, and the kinetics of responses was monitored under conditions of 70 and 98% relative humidity. The latter conditions suppressed the normal macroscopic responses. For the Cf-9-Avr9 interaction, stomatal opening was induced within 3 to 4 h and after 9 h mesophyll cell death commenced. A burst of ethylene production occurred between 9 and 12.5 h and remained elevated. Free salicylic acid levels increased after 12 h, peaked at 24 h, and thereafter declined. For the Cf-2-Avr2 interaction, stomata became plugged after 8 h, and salicylic acid and ethylene levels increased by 12 and 18 h, respectively, and thereafter declined. Host cell death commenced around vascular tissue by 24 h. Cell death in both incompatible interactions was frequently preceded by cell enlargement. For Cf0-injected plants, no significant responses were detected. High humidity delayed and reduced the Cf-Avr-gene-dependent cell death and ethylene synthesis, whereas induced salicylic acid levels were unaffected for Cf-2-Avr2 and reduced in magnitude only for Cf-9-Avr9.  相似文献   

16.
Virus-induced gene silencing identified the Avr9/Cf-9 RAPIDLY ELICITED gene ACRE189 as essential for the Cf-9- and Cf-4-mediated hypersensitive response (HR) in Nicotiana benthamiana. We report a role for ACRE189 in disease resistance in tomato (Solanum lycopersicum) and tobacco (Nicotiana tabacum). ACRE189 (herein renamed Avr9/Cf-9-INDUCED F-BOX1 [ACIF1]) encodes an F-box protein with a Leu-rich-repeat domain. ACIF1 is widely conserved and is closely related to F-box proteins regulating plant hormone signaling. Silencing of tobacco ACIF1 suppressed the HR triggered by various elicitors (Avr9, Avr4, AvrPto, Inf1, and the P50 helicase of Tobacco mosaic virus [TMV]). ACIF1 is recruited to SCF complexes (a class of ubiquitin E3 ligases), and the expression of ACIF1 F-box mutants in tobacco compromises the HR similarly to ACIF1 silencing. ACIF1 affects N gene-mediated responses to TMV infection, including lesion formation and salicylic acid accumulation. Loss of ACIF1 function also reduced confluent cell death induced by Pseudomonas syringae pv tabaci. ACIF1 silencing in Cf9 tomato attenuated the Cf-9-dependent HR but not Cf-9 resistance to Cladosporium fulvum. Resistance conferred by the Cf-9 homolog Cf-9B, however, was compromised in ACIF1-silenced tomato. Analysis of public expression profiling data suggests that Arabidopsis thaliana homologs of ACIF1 (VFBs) regulate defense responses via methyl jasmonate- and abscisic acid-responsive genes. Together, these findings support a role of ACIF1/VFBs in plant defense responses.  相似文献   

17.
Rivas S  Romeis T  Jones JD 《The Plant cell》2002,14(3):689-702
The tomato Cf-9 gene confers race-specific resistance to the fungal pathogen Cladosporium fulvum expressing the corresponding avirulence gene Avr9. In tobacco, Cf-9 confers a hypersensitive response to the Avr9 peptide. To investigate Cf-9 protein function in initiating defense signaling, we engineered a functional C-terminal fusion of the Cf-9 gene with the TAP (Tandem Affinity Purification) tag. In addition, we established a transient expression assay in Nicotiana benthamiana leaves for the production of functional Cf-9:myc and Cf-9:TAP. Transiently expressed Cf-9:myc and Cf-9:TAP proteins induced an Avr9-dependent hypersensitive response, consistent with previous results with stably transformed tobacco plants and derived cell suspension cultures expressing c-myc-tagged Cf-9. Gel filtration of microsomal fractions solubilized with octylglucoside revealed that the Cf-9 protein, either as c-myc or TAP fusions, migrated at a molecular mass of 350 to 475 kD. By using blue native gel electrophoresis, the molecular size was confirmed to be approximately 420 kD. Our results suggest that only one Cf-9 protein molecule is present in the Cf-9 complex and that Cf-9 is part of a membrane complex consisting of an additional glycoprotein partner(s). The high structural similarity between Cf proteins and Clavata2 (CLV2) of Arabidopsis, together with the similarity of molecular mass between Cf-9 and CLV complexes (420 and 450 kD, respectively), led us to investigate whether Cf-9 is integrated into membrane-associated protein complexes like those formed by CLV1 and CLV2. Unlike CLV2, the Cf-9 protein did not form disulfide-linked heterodimers, no ligand (Avr9)-dependent shift in the molecular mass of the Cf-9 complex was detected, and no Rho-GTPase-related proteins were found associated with Cf-9 under the conditions tested. Thus, Cf-9-dependent defense signaling and CLV2-dependent regulation of meristem development seem to be accomplished via distinct mechanisms, despite the structural similarity of their key components Cf-9 and CLV2.  相似文献   

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Defence against pathogens in Arabidopsis is orchestrated by at least three signalling molecules: salicylic acid (SA), jasmonic acid (JA) and ethylene (ET). The hrl1 (hypersensitive response-like lesions 1) mutant of Arabidopsis is characterized by spontaneous necrotic lesions, accumulation of reactive oxygen species, constitutive expression of SA- and ET/JA-responsive defence genes, and enhanced resistance to virulent bacterial and oomycete pathogens. Epistasis analyses of hrl1 with npr1, etr1, coi1 and SA-depleted nahG plants revealed novel interactions between SA and ET/JA signalling pathways in regulating defence gene expression and cell death. RNA gel-blot analysis of RNA isolated separately from the lesion+ and the lesion- leaves of double mutants of hrl1 revealed different signalling requirements for the expression of defence genes in these tissues. Expression of the ET/JA-responsive PDF1.2 gene was markedly reduced in hrl1 npr1 and in SA-depleted hrl1 nahG plants. In hrl1 nahG plants, expression of PDF1.2 was regulated by benzathiadiazole in a concentration-dependent manner: induced at low concentration and suppressed at high concentration. The hrl1 etr1 plants lacked systemic PR-1 expression, and exhibited compromised resistance to virulent Pseudomonas syringae and Peronospora parasitica. Inhibiting JA responses in hrl1 coi1 plants lead to exaggerated cell death and severe stunting of plants. Finally, the hrl1 mutation lead to elevated expression of AtrbohD, which encodes a major subunit of the NADPH oxidase complex. Our results indicate that defence gene expression and resistance against pathogens in hrl1 is regulated synergistically by SA and ET/JA defence pathways.  相似文献   

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