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A new class of low molecular weight glutenin subunit (LMW-GS) genes was isolated and characterized from Aegilops comosa (2n?=?2x?=?14, MM). Although their DNA structure displayed high similarity to LMW-i type genes, there are some key differences. The deduced amino acid sequences of their mature proteins showed that the first amino acid residue of each gene was leucine and therefore they were designated as LMW-l type subunits. An extra cysteine residue was present in the signal peptide and the first cysteine residue of mature proteins located at the end of repetitive domain. Additionally, a long insertion of 10?C22 residues (LGQQPQ5?C17) occurred in the end of the C-terminal II. Comparative analysis demonstrated that LMW-l type glutenin genes possessed a great number of single-nucleotide polymorphisms and insertions/deletions. A new classification system was proposed according to the gene structure and phylogenetic analysis. In this new system, LMW-GS is classified into two major classes, LMW-M and LMW-I, with each including two subclasses. The former included LMW-m and LMW-s types while the latter contained LMW-l and LMW-i types. Analysis of their evolutionary origin showed that the LMW-l genes diverged from the group 2 of LMW-m type genes at about 12?C14?million years ago (MYA) while LMW-i type evolved from LMW-l type at approximately 8?C12 MYA. The LMW-s type was a variant form of group 1 of LMW-m type and their divergence occurred about 4?C6 MYA. In addition to homologous recombination, non-homologous illegitimate recombination could be an important molecular mechanism for the origin and evolution of LMW-GS gene family. The secondary structure prediction suggested that the novel LMW-l type subunits, such as AcLMW-L1 and AcLMW-L2, may have positive effects on dough properties.  相似文献   
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Systemic necrosis often occurs during viral infection of plants and is thought mainly to be the result of long-term stress induced by viral infection. Potato virus X (PVX) encodes the P25 pathogenicity factor that triggers a necrotic reaction during PVX-potato virus Ysynergistic coinfection. In this study, we discovered that NbALY916, a multifunctional nuclear protein, could interact with P25. When NbALY916 expression was reduced by tobacco rattle virus (TRV)-based virus-induced gene silencing, the accumulation of P25 was increased, which would be expected to cause more severe necrosis. However, silencing of NbALY916 reduced the extent of cell death caused by P25. Furthermore, we found that overexpression of NbALY916 increased the accumulation of H2O2 and triggered more extensive cell death when coexpressed with P25, even though accumulation of P25 was itself reduced by the increased expression of NbALY916. Furthermore, transient expression of P25 specifically induced the expression of NbALY916 mRNA, but not the mRNAs of three other ALYs in Nicotiana benthamiana. In addition, we showed that silencing of NbALY916 or transient overexpression of NbALY916 affected the infection of PVX in N. benthamiana. Our results reveal that NbALY916 has an antiviral role that, in the case of PVX, operates by inducing the accumulation of H2O2 and mediating the degradation of P25.  相似文献   
4.
【目的】蜜蜂球囊菌(Ascosphaeraapis,简称球囊菌)是专性侵染蜜蜂幼虫的致死性真菌病原。MicroRNA(miRNA)作为一类重要的基因表达调控因子,能够广泛参与真菌及其宿主的相互作用过程。本研究通过比较分析球囊菌孢子(AaCK)和侵染中华蜜蜂(Apis cerana cerana,简称中蜂) 6日龄幼虫肠道内的球囊菌(AaT)的smallRNA(sRNA)组学数据对球囊菌的差异表达miRNA(differentiallyexpressed miRNA,DEmiRNA)、靶mRNA及二者间的调控网络进行全面解析,旨在揭示miRNA介导的球囊菌对中蜂幼虫的侵染机制。【方法】对于球囊菌侵染的中蜂6日龄幼虫肠道的small RNA-seq (sRNA-seq)数据,利用BLAST工具连续比对东方蜜蜂(Apiscerana)和球囊菌的参考基因组筛滤得到AaT的sRNA组学数据。分别将AaCK和AaT的sRNA组学数据比对miRBase数据库,对球囊菌侵染宿主前后miRNA的数量和结构特征进行分析。联用RNAhybrid+svm_light、Miranda和TargetScan软件预测AaCK vs AaT比较组中DEmiRNA的靶mRNA,进而利用相关生物信息学软件对上述靶mRNA进行GO分类和KEGG代谢通路富集分析。通过Cytoscape软件对DEmiRNA-mRNA调控网络进行可视化。利用Stem-loop RT-PCR、RT-qPCR和分子克隆验证测序结果的可靠性。【结果】在AaCK和AaT中分别鉴定到380和387个miRNA。结构特征分析结果显示,AaCK和AaT的mi RNA皆集中分布在18–25 nt,且首位碱基主要偏向于U。AaCKvsAaT比较组共有270个DEmiRNA,包含155个上调miRNA和115个下调miRNA,分别靶向结合6091和6145个mRNA。GO分类结果显示,上述靶mRNA主要涉及代谢进程、细胞进程、应激反应等15个生物学进程;细胞、细胞组分、细胞器等12个细胞组分;催化活性、结合、转运子活性等11个分子功能。KEGG代谢通路富集分析结果显示,上述靶mRNA富集在123条代谢通路,参与对氨基酸代谢、碳水化合物代谢以及核苷酸代谢等物质代谢,氧化磷酸化、硫代谢、氮代谢等能量代谢,以及MAPK和Hippo等信号通路的调控。球囊菌DEmiRNA与靶mRNA之间存在复杂的调控关系,其中miR-29-x、miR-250-x、miR-4968-y、miR-11200-x、novel-m0023-5p、novel-m0130-5p和novel-m0135-5p等DEmiRNA可靶向结合与球囊菌的半胱氨酸蛋白酶、DNA甲基化转移酶以及几丁质酶相关的mRNA;此外,miR-7-x、miR-9-z、miR-319-y和miR-5951-y等同时参与调控MAPK信号通路;进一步分析发现,miR-250-x同时参与对DNA甲基化转移酶、MAPK信号通路及其他酶类合成与代谢途径的调控,并可能参与球囊菌与中蜂6日龄幼虫之间的跨界调控。通过Stem-loopRT-PCR和RT-qPCR验证了4个DEmiRNA的差异表达,并利用分子克隆和Sanger测序证实miR-7-x的序列与测序结果一致。【结论】本研究解析了侵染中蜂6日龄幼虫的球囊菌的miRNA差异表达谱及DEmiRNA的调控网络,揭示了球囊菌DEmiRNA可能通过调控病原的物质和能量代谢、增殖、毒力、信号通路及相关mRNA参与对中蜂幼虫的侵染过程。miR-7-x、miR-250-x、novel-m0023-5p等关键DEmiRNA有望作为白垩病治疗的新型分子靶点。  相似文献   
5.
eIF-5A与DHS功能研究及应用进展   总被引:1,自引:0,他引:1  
脱氧羟腐胺赖氨酸合酶(deoxyhypusine synthase,DHS)在植物、哺乳动物和酵母细胞中普遍存在,参与真核翻译起始因子eIF-5A(eukaryotic initiation factor-5A)的翻译后活化.目前研究表明eIF-5A具有多重生物学功能,如参与细胞增殖、蛋白质翻译、mRNA降解、细胞周期的转化及细胞衰老与凋亡等.eIF-5A是目前已知的DHS的惟一底物,因此研究DHS的功能与作用机理离不开对eIF-5A的功能研究.  相似文献   
6.
蛋白质糖基化修饰的研究方法及其应用   总被引:4,自引:0,他引:4  
蛋白质糖基化是一种重要的翻译后修饰,它参与和调控生物体的许多生命活动。随着蛋白质组技术的不断发展,蛋白质糖基化研究越来越受到广泛的重视。本文介绍了蛋白质糖基化修饰的研究内容与方法,并综述了最近的研究进展。  相似文献   
7.
过去10年来,蛋白质组学得到迅速发展,蛋白质间的相互作用作为蛋白质组学的重要内容,更是成为国内外竞相研究的重点,研究方法的快速发展为蛋白质间相互作用的研究奠定了坚实基础。着重就经典的噬菌体展示、酵母双杂交以及新近发展起来的串联亲和纯化、荧光共振能量转移技术和表面等离子共振等蛋白质相互作用研究方法的原理及应用作一综述并展望其发展前景。  相似文献   
8.
基因枪法转化小麦谷蛋白基因研究进展   总被引:1,自引:0,他引:1  
小麦面粉品质的优劣主要取决于麦谷蛋白多聚体结构的组成,谷蛋白多聚体由高分子量谷蛋白亚基(HMW-GS)、低分子量谷蛋白亚基(LMW-GS)和醇溶蛋白以二硫键相互交联构成,其数量和结构特征直接影响面团的粘弹性,所以通过基因工程方法转化优质谷蛋白基因,增加谷蛋白数量,改善谷蛋白多聚体结构组成,进而改良面粉品质的研究逐渐引起国内外的重视,并在近年来取得了重要进展。基因枪法是目前利用基因工程改良小麦品质的主要途径,自1992年以来已在多个研究室取得了较为瞩目的成果,显示了基因工程改良小麦品质的可能性及前景。综述了迄今为止国内外利用基因枪法转化谷蛋白基因改良小麦品质的研究进展,并在受体材料的选择等方面的研究现状作了较为详细的阐述。  相似文献   
9.
For perennial woody plants, softwood cutting is an efficient technique for larger scale propagation and adventitious rooting of cuttings is one of the most crucial steps. To evaluate the significance of juvenility on adventitious rooting, rooting rates was compared between softwood cuttings collected from apomictic seedlings (juvenile), in vitro cultured plants (rejuvenated), suckers (juvenile like) and canopy shoots (adult) of reproductively mature trees in Malus xiaojinensis. After pre-treatment with indole-3-butytric acid (IBA) (3,000 mg L?1) + H2O2 (50 mM), rooting rates in cutting from juvenile, juvenile like and rejuvenated donor plants were significantly higher (>90 %) than that from adult trees. The effects of IBA on adventitious rooting were enhanced significantly by exogenous H2O2. After 15 passages of in vitro subculture, the micro-shoots from adult phase explants were rejuvenated successfully, marked by the elevated expression of miR156 in the leaflets of the micro-shoots. But the rooting ability of rejuvenated micro-shoots was recovered delayed at the 18th or 21st passage of subculture. During the process of rejuvenation, the leaf indole-3-acetic acid contents and the expressions of rooting related genes CKI1, ARRO-1, ARF7 and ARF19 increased significantly. In contrary, the leaf abscisic acid contents decreased. A lack of juvenility is the most important limiting factor governing adventitious rooting of softwood cuttings in apple rootstocks.  相似文献   
10.
Taxus chinensis var. mairei (Taxaceae) is a domestic variety of yew species in local China. This plant is one of the sources for paclitaxel, which is a promising antineoplastic chemotherapy drugs during the last decade. We have sequenced the complete nucleotide sequence of the chloroplast (cp) genome of T. chinensis var. mairei. The T. chinensis var. mairei cp genome is 129,513 bp in length, with 113 single copy genes and two duplicated genes (trnI-CAU, trnQ-UUG). Among the 113 single copy genes, 9 are intron-containing. Compared to other land plant cp genomes, the T. chinensis var. mairei cp genome has lost one of the large inverted repeats (IRs) found in angiosperms, fern, liverwort, and gymnosperm such as Cycas revoluta and Ginkgo biloba L. Compared to related species, the gene order of T. chinensis var. mairei has a large inversion of ~ 110 kb including 91 genes (from rps18 to accD) with gene contents unarranged. Repeat analysis identified 48 direct and 2 inverted repeats 30 bp long or longer with a sequence identity greater than 90%. Repeated short segments were found in genes rps18, rps19 and clpP. Analysis also revealed 22 simple sequence repeat (SSR) loci and almost all are composed of A or T.  相似文献   
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