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1.
小麦TaLSD1锌指蛋白基因的电子克隆及序列分析   总被引:4,自引:0,他引:4  
采用电子克隆与RT-PCR相结合的技术,在条锈菌(Pucciniastriiformis f.sp.tritici)侵染的小麦中克隆了一个LSD1型锌指蛋白基因,命名为TaLSD1(GenBank登录号为EF553327)。序列分析表明,该基因全长1024bp,编码生成1个包含3个保守LSD1型锌指结构(CxxCxRxxLMYxxGASxVxCxxC)且长度为146个氨基酸的多肽。进化树分析表明,TaLSD1与水稻(Oryza sativa)、拟南芥(Arabidopsis thaliana)和芜菁(Brassica rapa)中部分含有3个保守LSD1型锌指结构的同源基因亲缘关系较近,而与其它包含不同数目的LSD1型锌指结构基因亲缘关系较远。推测TaLSD1在进化中丢失了部分序列,进而执行新的功能。半定量RT-PCR结果显示,该基因在亲和以及非亲和组合中的表达模式很相似,均表现在前期基因表达被抑制而后期恢复正常。初步推测TaLSD1在转录水平上的表达受光诱导,同时,作为一个细胞程序性死亡的负调控因子在小麦与条锈菌互作过程中起作用。  相似文献   

2.
采用电子克隆与RT-PCR相结合的技术,在条锈菌(Pucciniastriiformis f.sp.tritici)侵染的小麦中克隆了一个LSDl型锌指蛋白基因,命名为TaLSDl(GenBank登录号为EF553327)。序列分析表明,该基因全长1024bp,编码生成1个包含3个保守LSDl型锌指结构(CxxCxRxxLMYxxGASxVxCxxC)且长度为146个氨基酸的多肽。进化树分析表明,TaLSDl与水稻(Oryzasativa)、拟南芥(Arabidopsisthaliana)和芜菁(Brassicarapa)中部分含有3个保守LSDl型锌指结构的同源基因亲缘关系较近,而与其它包含不同数目的LSDl型锌指结构基因亲缘关系较远。推测TaLSDl在进化中丢失了部分序列,进而执行新的功能。半定量RT-PCR结果显示,该基因在亲和以及非亲和组合中的表达模式很相似,均表现在前期基因表达被抑制而后期恢复正常。初步推测TaLSDl在转录水平上的表达受光诱导,同时,作为一个细胞程序性死亡的负调控因子在小麦与条锈菌互作过程中起作用。  相似文献   

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类 LSD1 (LSD1-like) 基因家族是一类特殊的 C2C2 型锌指蛋白基因,编码植物特有的转录因子 . 目前已经研究的 2 个成员拟南芥 LSD1 (lesions stimulating disease resistance 1) 和 LOL1 (LSD-One-Like 1) 基因均参与植物细胞程序化死亡 (programmed cell death, PCD) 的调控 . 从水稻 cDNA 文库中克隆到 1 个类 LSD1 基因,命名为 OsLSD1. 该基因长 988 bp ,包含一个 432 bp 的开放阅读框,推导的氨基酸序列 (143 个氨基酸 ) 含有 3 个内部保守的锌指结构域 . DNA 印迹结果表明 OsLSD1 基因在水稻基因组中为单拷贝,且在根、茎和叶中表达 . 借助于生物信息学分析技术,从拟南芥和水稻数据库中各识别出 5 个和 7 个 ( 包括 OsLSD1) 类 LSD1 基因 . 分析了这些类 LSD1 基因的结构,蛋白质结构域组成 . 系统进化分析表明,无论基于编码区的核苷酸或氨基酸序列都可以将这些类 LSD1 基因分为 2 类 . 虽然不存在拟南芥或水稻特有的类 LSD1 蛋白,但有些结构域是水稻所特有的,也有些基因是来源于复制事件 .  相似文献   

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类LSD1 (LSD1-like)基因家族是一类特殊的C2C2型锌指蛋白基因,编码植物特有的转录因子.目前已经研究的2个成员拟南芥LSD1(1esions stimulating disease resistance 1)和LOL1(LSD-One-Like 1)基因均参与植物细胞程序化死亡(programmed cell death,PCD)的调控.从水稻cDNA文库中克隆到1个类LSD1基因,命名为OsLSD1.该基因长988 bp,包含一个432bp的开放阅读框,推导的氨基酸序列(143个氨基酸)含有3个内部保守的锌指结构域.DNA印迹结果表明OsLSD1基因在水稻基因组中为单拷贝,且在根、茎和叶中表达.借助于生物信息学分析技术,从拟南芥和水稻数据库中各识别出5个和7个(包括OsLSD1)类LSD1基因.分析了这些类LSD1基因的结构,蛋白质结构域组成.系统进化分析表明,无论基于编码区的核苷酸或氨基酸序列都可以将这些类LSD1基因分为2类.虽然不存在拟南芥或水稻特有的类LSD1蛋白,但有些结构域是水稻所特有的,也有些基因是来源于复制事件.  相似文献   

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类钙调磷酸酶亚基B蛋白(calcineurin B-1ike protein,CBL)作为一类钙离子结合蛋白,通过与一类蛋白激酶(CBL-interacting protein kinase,ClPK)结合,从而在钙信号依赖的生理生化过程中发挥作用。该研究在条锈菌诱导的小麦叶片中克隆获得CIPK家族中1个基因TaCIPK16,并利用qRT-PCR技术、酵母双杂交技术及亚细胞定位技术分析了其功能特性。序列分析表明,TaCIPK16编码447个氨基酸,包含保守的激酶催化结构域及调控结构域,与水稻、拟南芥CIPK蛋白具有高度相似性。酵母双杂交分析验证显示,TaCIPK16与TaCBL4和TaCBL9存在强烈互作。定量分析表明,TaCIPK16受到条锈菌的诱导表达,在小麦与条锈菌互作过程中呈显著差异表达趋势。综上结果,TaCIPK16可能作为正调控因子参与了小麦对条锈菌的抗病防卫反应。  相似文献   

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该研究利用同源克隆策略,获得了1条小麦F-box/LRR重复蛋白14基因(TaFBL14)。TaFBL14基因编码486个氨基酸,预测分子量为53.48kD,等电点为5.93,序列N端包含一个F-box结构域,C段包含7个LRR结构域。TaFBL14基因编码蛋白不具有信号肽及核定位信号序列,主要定位在细胞质中,二级结构以α-螺旋为主,呈球状。进化树分析表明,TaFBL14与粗山羊草和乌拉尔托小麦的FBL14蛋白亲缘关系较近。qRT-PCR分析结果显示,TaFBL14基因主要在小麦叶组织中表达,且受非亲和叶锈菌侵染后呈现上调表达趋势,说明该基因可能参与小麦抵御叶锈菌的侵染过程。  相似文献   

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OsZFP1(水稻锌指蛋白1)基因编码的蛋白含有3个推测的Cys2/Cys2-型锌指结构域,它的表达受盐胁迫负调控.构建了以35S为启动子的OsZFP1基因的植物表达载体,并将其转入拟南芥(Arabidopsis thaliana L.)植物和水稻(Oryza sativa L.)愈伤组织中以过量表达OsZFP1基因.转基因的拟南芥植株和水稻愈伤组织对盐处理的敏感性都比野生型要高.这一结果表明OsZFP1基因可能编码一种负调控蛋白,它可能抑制某些盐诱导基因的表达.在ABA处理下,转基因拟南芥植株比野生型植株抽苔晚,说明OsZFP1基因的作用可能受ABA调节.  相似文献   

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在拟南芥中腺嘌呤磷酸核糖转移酶基因(APRT)突变导致植株雄性不育.本文首次报道从水稻(Oryza sativa subsp.indica)中克隆了基因APRT(GenBank登录号AY238894),并将其定位于水稻第4染色体的一个BAC克隆(AL606604)的58 000 bp至63 000 bp区域.该基因长4 220 bp(起始密码子至终止密码子),含7个外显子、6个内含子,编码的APRT蛋白长212个氨基酸残基,与其他物种来源的APRT序列存在很高的同源性.与大麦、小麦、拟南芥1型及其2型的该蛋白同源性分别为54.9%、54.9%、49.6%和59.5%.经保守结构域搜索发现该蛋白中存在APRT催化结构域.从DNA、mRNA两个水平分析了该基因与水稻温敏核雄性不育(TGMS)的关系,结果表明:受温度诱导,水稻"安农S-1"APRT基因的表达变化可能与温敏核雄性不育表现型具相关性.  相似文献   

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【目的】克隆小麦条锈菌钙调素依赖蛋白激酶基因Pscamk,并分析其在条锈菌侵染小麦过程中的表达特征及初步功能。【方法】基于本实验室已测序的小麦条锈菌基因组序列,利用RT-PCR方法,从小麦条锈菌生理小种CYR32中克隆Pscamk基因的cDNA序列,并利用网络数据库和生物信息学工具预测该基因编码蛋白的基本特征和保守结构;运用qRT-PCR技术分析Pscamk在不同发育及侵染阶段的表达水平,进一步通过钙调素依赖蛋白激酶(CaMK)的免疫抑制剂KN-93处理小麦条锈菌夏孢子,观察其萌发状况。【结果】获得1个1620 bp的小麦条锈菌CaMK基因Pscamk;序列分析发现,Pscamk编码蛋白包含CaMK蛋白的保守结构域,并与小麦杆锈菌该类蛋白序列相似性最高。qRT-PCR分析表明,Pscamk在条锈菌侵染初期过程中的芽管发育、初生菌丝侵染及吸器形成时期呈显著上调表达,且在条锈菌接种6 h时表达量最高,为对照夏孢子的20.74倍。在专一性免疫抑制剂KN-93处理后,随着KN-93施加浓度的增加,条锈菌夏孢子萌发率逐渐降低,当浓度为1.4μmol/L时夏孢子萌发率为8.02%,仅为对照的12%。【讨论】推测Pscamk基因参与了小麦条锈菌夏孢子萌发、芽管发育以及初期侵染结构的形成。本研究为进一步探索条锈菌细胞钙信号传导机理和致病机制奠定了基础。  相似文献   

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【目的】克隆小麦条锈菌细胞分裂基因PsCdc2,分析该基因在条锈菌接种小麦后不同时间点的表达特征。【方法】利用PCR和RT-PCR技术克隆PsCdc2的cDNA序列和基因组序列,采用生物信息学技术预测分析该基因编码蛋白的保守结构域及基本特性,对该蛋白进行系统发育分析,构建进化树;运用实时荧光定量RT-PCR技术,以PsCdc2在夏孢子时期的表达情况为对照,分析该基因在亲和及非亲和互作中不同时间点的表达特征。【结果】PsCdc2基因组序列长2279 bp,由11个外显子和10个内含子构成,开放阅读框为885 bp,编码294个氨基酸,分子量为33.14 kDa,等电点为6.26。编码蛋白含两个保守的激酶特征位点,一个跨膜螺旋区域。PsCdc2基因编码蛋白与小麦秆锈菌、新型隐球菌、玉米瘤黑粉菌等多种真菌的Cdc2高度相似,其中与小麦秆锈菌的Cdc2亲缘关系最近,序列相似性达73.1%。实时荧光定量RT-PCR结果表明,在亲和组合中,该基因在条锈菌接种小麦的前期上调表达,其中接种后12 h时表达量最高,约为夏孢子中表达量的1.62倍,接种后24-268 h,基因表达基本呈下调趋势,其中96 h基因表达量最低,仅为夏孢子时期的0.07倍。在非亲和组合中,该基因表达基本呈下调趋势,在接种后各个时间点的表达量均低于在夏孢子中的表达量,其中接种后12 h时表达量最高,但仅为夏孢子中表达量的0.34倍;接种后96 h表达量最低,为夏孢子中表达量的0.02倍。【结论】PsCdc2可能通过调控条锈菌的细胞周期循环参与了侵染前期初生菌丝生长和吸器母细胞的形成,与条锈菌的致病性相关。本文首次报道了小麦条锈菌的Cdc2基因,为进一步揭示条锈菌细胞周期调控的本质及研究开发靶向Cdc2的新型农药,以及实现对小麦条锈病的新型药剂防治提供了理论基础。  相似文献   

11.
Arabidopsis LSD1-related proteins that contain LSD1-like zinc finger domains have been identified to be involved in disease resistance and programmed cell death. To investigate the potential role of LSD1-related gene in rice (Oryza sativa L.), we cloned an LSD1 ortholog, OsLOL2, from the rice cDNA plasmid library. The OsLOL2 gene is predicted to encode a polypeptide of 163 amino acids with two LSD1-like zinc finger domains with 74.5% identity to those of LSD1. Southern blot analysis indicated that OsLOL2 was a single-copy gene in the rice genome. Transgenic rice lines carrying the antisense strand of OsLOL2 with decreased expression of OsLOL2 had dwarf phenotypes, and the dwarfism could be restored by exogenous GA3 treatment, suggesting that the dwarfism was the result of a deficiency in bioactive gibberellin (GA). In agreement with this possibility, the content of endogenous bioactive GA1 decreased in the antisense transgenic lines. Expression of OsKS1, one of the genes encoding for GA biosynthetic enzymes, was suppressed in the antisense transgenic lines. Sense transgenic lines with increased expression of OsLOL2 were more resistant to rice bacterial blight, while antisense transgenic lines were less resistant to rice bacterial blight. The OsLOL2-GFP (green fluorescence protein) fusion protein was localized in the nucleus of cells of transgenic BY2 tobacco (Nicotiana tabacum L.). These data suggest that OsLOL2 is involved in rice growth and disease resistance.  相似文献   

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Plants sense various pathogens and activate immunity responses through receptor-like kinases (RLKs). Cysteine-rich receptor-like kinases (CRKs) are involved in massive transduction pathways upon perception of a pathogen. However, the roles of CRKs in response to stripe rust are unclear. In the present study, we identified a CRK gene (designated TaCRK10) from wheat variety Xiaoyan 6 (XY6) that harbors high-temperature seedling-plant (HTSP) resistance to stripe rust caused by fungal pathogen Puccinia striiformis f. sp. tritici (Pst). The expression level of TaCRK10 was induced by Pst inoculation and high temperature treatment. Knockdown of TaCRK10 by virus-induced gene silencing resulted in attenuated wheat HTSP resistance to Pst, whereas there is no effect on Pst development and host responses under normal temperatures. Notably, overexpression of TaCRK10 in susceptible variety Fielder provided resistance only under normal temperatures at 14 days with reactive oxygen species accumulation and defense-related gene expression of the salicylic acid pathway. Moreover, TaCRK10 physically interacted with and phosphorylated a histone variant TaH2A.1, which belongs to the H2A.W group. Silencing of TaH2A.1 suppressed wheat resistance to Pst, indicating that TaH2A.1 plays a positive role in wheat resistance to Pst. Thus, TaCRK10 serves as an important sensor of Pst infection and high temperatures, and it activates wheat resistance to Pst through regulating nuclear processes. This knowledge helps elucidate the molecular mechanism of wheat HTSP resistance to Pst and promotes efforts in developing wheat varieties with resistance to stripe rust.  相似文献   

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As in other eukaryotes, protein kinases (PKs) are generally evolutionarily conserved and play major regulatory roles in plant pathogenic fungi. Many PKs have been proven to be important for pathogenesis in model fungal plant pathogens, but little is currently known about their roles in the pathogenesis of cereal rust fungi, devastating pathogens in agriculture worldwide. Here, we report on an in planta highly induced PK gene PsSRPKL from the wheat stripe rust fungus Puccinia striiformis f. sp. tritici (Pst), one of the most important cereal rust fungi. PsSRPKL belongs to a group of PKs that are evolutionarily specific to cereal rust fungi. It shows a high level of intraspecies polymorphism in the kinase domains and directed green fluorescent protein chimers to plant nuclei. Overexpression of PsSRPKL in fission yeast induces aberrant cell morphology and a decreased resistance to environmental stresses. Most importantly, PsSRPKL is proven to be an important pathogenicity factor responsible for fungal growth and responses to environmental stresses, therefore contributing significantly to Pst virulence in wheat. We hypothesize that cereal rust fungi have developed specific PKs as pathogenicity factors for adaptation to their host species during evolution. Thus, our findings provide significant insights into pathogenicity and virulence evolution in cereal rust fungi.  相似文献   

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Puccinia striiformis f. sp. tritici (Pst), the causal fungus of wheat stripe rust, was previously reported to be infected by Lecanicillium lecanii, Microdochium nivale and Typhula idahoensis. Here, we report a novel hyperparasite on Pst. This hyperparasitic fungus was identified as Cladosporium cladosporioides (Fresen.) GA de Vries based on morphological characteristics observed by light and scanning electron microscopy together with molecular data. The hyperparasite reduced the production and viability of urediniospores and, therefore, could potentially be used for biological control of wheat stripe rust.  相似文献   

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