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1.
于永昂  张蕾 《西北植物学报》2020,40(9):1475-1482
为了探究小麦WRKY基因的功能,该研究采用RT PCR方法,在小麦叶片组织中克隆WRKY基因,并对其进行生物信息学和不同逆境胁迫下的表达分析。结果表明:(1)成功克隆得到1个小麦WRKY基因,命名为TaWRKY47。(2)TaWRKY47基因开放阅读框长度为900 bp,编码299个氨基酸,含有一个WRKY保守结构域和一个C2HC锌指结构域,属于WRKY基因家族的第Ⅲ类成员。(3)亚细胞定位分析结果显示,TaWRKY47蛋白定位于细胞核。(4)荧光定量PCR结果表明,TaWRKY47基因在小麦根、茎、叶、雄蕊和雌蕊中均有表达,其中在雌蕊中表达量最高,且受低温、干旱、盐、ABA和H2O2等胁迫表达增强,推测TaWRKY47基因参与了小麦的逆境胁迫过程。该研究结果为进一步研究TaWRKY47基因功能与抗逆机制奠定了理论基础。  相似文献   

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该研究基于黄瓜基因组数据库,利用生物信息学和荧光定量PCR等方法,对黄瓜SOS2基因家族进行全基因组鉴定,并对其表达特性进行系统分析。结果表明:(1)在黄瓜基因组中,共鉴定到 15个SOS2基因(CsSOS2 1~CsSOS2 15),且不均匀分布在5条染色体上;亚细胞定位显示SOS2蛋白主要位于细胞质膜。(2)系统进化分析显示,CsSOS2 2和CsSOS2 6与AtSOS2亲缘关系更近。(3)顺式作用元件预测显示,SOS2基因启动子序列主要含有干旱诱导和防御应激响应元件。(4)结构分析显示,SOS2蛋白所含保守基序的排列顺序完全一致,且主要含有STKc和NAF保守结构域,这些结构可能在基因响应盐胁迫过程中起调控作用。(5)荧光定量试验表明,SOS2基因家族主要在黄瓜的根和叶片响应盐胁迫时上调表达,其中,盐胁迫处理1 d时有5个基因上调表达,并随处理时间延长盐胁迫下的基因表达有所下调;增施多胺显著上调了CsSOS2 1~CsSOS2 5、CsSOS2 8、CsSOS2 9、CsSOS2 12和CsSOS2 15在不同组织中的表达,说明盐胁迫下多胺能诱导黄瓜SOS2基因家族的表达,进而参与植物耐盐分子网络的调控。  相似文献   

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为揭示羽衣甘蓝二氢黄酮醇4 还原酶 (DFR)基因调控花青素合成的功能,该研究对不同叶色羽衣甘蓝的叶片花青素含量进行测定,根据结球甘蓝DFR序列信息,利用 RT PCR 技术克隆羽衣甘蓝BoDFR基因并进行实时荧光定量表达分析。结果表明: BoDFR的cDNA全长为1 158 bp,编码385个氨基酸,其蛋白相对分子质量为42 925.06 Da,预测亚细胞定位为细胞质;蛋白质二级结构分析表明α 螺旋和无规则卷曲为DFR 蛋白的主要二级结构元件。序列比对显示 DFR 蛋白具有 NADPH 结合位点和底物结合位点,属于NADB Rossmann 超基因家族。系统进化分析表明,BoDFR与结球甘蓝(Brassica oleracea var. capitata)DFR亲缘关系最近。花青素含量测定显示,紫叶羽衣甘蓝叶片中花青素含量最高,粉叶羽衣甘蓝含量较高,而白叶羽衣甘蓝叶片中检测不到花青素。实时荧光定量 PCR 分析表明,BoDFR基因表达量与花青素含量高低一致,其中紫叶羽衣甘蓝叶片中BoDFR基因的表达量最高,而白叶羽衣甘蓝心叶中仅微量表达。  相似文献   

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为了探究中国南瓜(Cucurbita moschata)热激蛋白70基因的功能,该研究采用转录组测序和RT PCR方法,从中国南瓜中分离获得3个HSP70基因的开放阅读框(ORF)全长,分别命名为CmHSP70 1、CmHSP70 2和CmHSP70 3,三者的序列长度分别为1 998、1 941和2 118 bp,编码666、647和706个氨基酸。蛋白序列分析显示,3个CmHSP70蛋白均属于亲水性蛋白,都含有典型的NBD和SBD保守结构域;CmHSP70 1蛋白含有信号肽和跨膜结构,亚细胞主要定位于内质网;CmHSP70 2蛋白和CmHSP70 3蛋白不含信号肽和跨膜结构,亚细胞主要定位于细胞质和叶绿体。同源比对和进化分析发现,3个CmHSP70蛋白与苦瓜、甜瓜和黄瓜的HSP70蛋白的相似性最高且遗传距离最近。qRT PCR分析显示,42 ℃处理能够诱导3个CmHSP70基因在根、茎、嫩叶和成熟叶中表达,并且表达量存在明显的组织特异性,成熟叶中基因的表达量最高;高温条件下,成熟叶中3个CmHSP70基因均能够在短时间内(处理0~2 h)响应热胁迫而大量表达,尤其是CmHSP70 2基因,推测该基因可能在中国南瓜热胁迫过程发挥重要的调节作用。该研究结果为深入了解HSP70基因功能以及阐明中国南瓜的耐热机制提供理论依据。  相似文献   

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该研究在呼伦贝尔黄花苜蓿(Medicago falcata L. cv. Hulunbuir)转录组测序基础上,通过RT PCR方法克隆获得了MfMYB30基因,并通过生物信息学和表达分析进行初步研究,为深入研究MfMYB30基因的功能和开发利用奠定基础。结果表明:(1)成功克隆获得呼伦贝尔黄花苜蓿MfMYB30基因,其ORF序列长为957 bp,编码318个氨基酸,相对分子质量为86.85 kD,理论等电点为5.11。MfMYB30蛋白为疏水性蛋白,无跨膜结构,无信号肽序列。(2)系统进化分析表明黄花苜蓿MfMYB30蛋白与紫花苜蓿MsMYB4、拟南芥AtMYB30、木豆CcMYB30、蒺藜苜蓿MtMYB30和大豆GmMYB60聚为一个类群,亲缘关系较近。(3)实时荧光定量PCR结果显示,MfMYB30在黄花苜蓿模拟刈割不同天数后的相对表达量呈先降低后升高的趋势,在刈割7 d后相对表达量达到峰值。(4)通过在拟南芥原生质体亚细胞定位分析发现,该蛋白定位于细胞核。研究推测,MfMYB30基因可能在黄花苜蓿刈割或放牧胁迫响应过程中发挥重要调控作用。  相似文献   

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SPL(SQUAMOSA promoter binding protein like)是植物特有的基因家族,在花发育过程中具有重要调控作用。该研究以桂花全基因组数据为基础,对SPL基因家族成员的蛋白理化性质、系统进化、基因结构和不同组织的表达模式进行生物信息学分析,筛选出花组织中较高表达的基因进行实时荧光定量、亚细胞定位及酵母自激活验证,为解析SPL基因参与调控桂花花朵开放过程中的作用机制和功能提供基因资源。结果显示:(1)共鉴定出29个桂花SPL基因家族成员,它们均具有SBP结构域,且不均匀分布在15条染色体上。(2)与拟南芥构建系统进化树,聚类可分为8大亚群,同亚群的OfSPL基因具有高度相似的基因结构。(3)RNA seq数据分析表明,OfSPL9/10/17/19/21/27/28整体FPKM值较高,在花组织中具有一定的特异性;qRT PCR分析表明,OfSPL10/21在花朵开放过程中的相对表达量呈先升后降的趋势。(4)亚细胞定位和转录自激活活性分析显示,OfSPL10/21编码蛋白主要定位于细胞核上,不具有转录自激活活性。研究推测,OfSPL10/21可能参与调控桂花花色与花香物质的生物合成。  相似文献   

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将鹅源新城疫病毒的NP、PL基因通过RT PCR方法从尿囊液中扩增后分别克隆进pGEM-Teasy载体 ,再分别亚克隆到真核表达载体pCI neo上 ,通过酶切、PCR和测序验证克隆正确。利用P基因开放性阅读框 (ORF)上靠近终止密码上游的AgeI位点 ,将报告基因绿色荧光蛋白 (GFP)基因克隆进P基因真核表达重组质粒 ,分别转染COS-1细胞和CEF细胞 ,在倒置荧光显微镜下可见到绿色荧光 ,表明GFP基因已得到表达 ,由此证明P相似文献   

8.
NAC转录因子家族是植物特有的、最大的转录因子家族之一,在植物应答非生物胁迫和生长发育过程中有重要的功能。该研究通过PCR技术,克隆得到了中间锦鸡儿 CiNAC1基因1 066 bp的cDNA全长序列。生物信息学分析显示, CiNAC1基因的开放阅读框(ORF)为921 bp,编码306个氨基酸,推导的蛋白分子量为34.57 kD,等电点为8.35,是一种亲水性蛋白,N端具有保守的NAM结构域,具有26个磷酸化位点和7个糖基化位点。实时荧光定量PCR检测显示,中间锦鸡儿 CiNAC1基因表达受干旱、高盐、脱水、高pH诱导;亚细胞定位发现CiNAC1定位到细胞核中,这与它作为转录因子的功能是一致的;转CiNAC1基因拟南芥株系侧根数目显著多于野生型,根长也明显比野生型长。研究认为, CiNAC1基因可能与中间锦鸡儿响应逆境胁迫机制有关。  相似文献   

9.
以枸杞品种‘宁杞1号’花药为材料,采用 RT-PCR技术,分离了R2R3类MYB基因LbMYB103包含完整开放阅读框(ORF)的cDNA片段,碱基序列与已知基因HQ415755完全一致。运用Gateway技术构建LbMYB103基因植物过表达载体pMDC83-LbMYB103,利用基因枪法将融合有绿色荧光蛋白(GFP)的过表达载体转入洋葱表皮细胞,将LbMYB103基因定位在细胞核。实时荧光定量PCR分析发现,LbMYB103基因在花药中优势表达,果实中表达量较低,在根、茎和叶中均未检测到其转录本,推测LbMYB103基因可能在花药发育过程中起重要作用。通过根癌农杆菌介导法将pMDC83-LbMYB103转入拟南芥(Col-0),经筛选获得T1代抗性再生植株52棵,PCR鉴定有41棵阳性植株,收获T1代种子,经抗性筛选获得T2代抗性植株29棵,PCR鉴定有23棵阳性植株。实时荧光定量PCR分析表明,LbMYB103在拟南芥植株的基因组中正常表达。表型观察发现T1和T2代拟南芥花药发育异常,花发育迟缓,果荚短小无种子,进一步表明LbMYB103可能与植物的育性有关。该结果为进一步开展枸杞遗传转化,深入研究LbMYB103基因在枸杞花药发育过程中可能发挥的调控功能奠定了基础。  相似文献   

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Ohne Zusammenfassung  相似文献   

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Data from microscopic morphology, single-spore cultures, and DNA analyses of teleomorphs and anamorphs support the recognition of five species of Prosthecium with Stegonsporium anamorphs on Acer: P. acerinum sp. nov., the teleomorph of S. acerinum; P. acerophilum comb. nov., formerly known as Dictyoporthe acerophila; P. galeatum comb. nov., originally described as Massaria galeata; P. opalus sp. nov.; and P. pyriforme sp. nov., the teleomorph of S. pyriforme s. str. The morphology of both type specimens and freshly collected material was investigated. The teleomorphs have brown ellipsoidal ascospores with five distosepta and often a longitudinal distoseptum. The anamorphs of all species described here belong to Stegonsporium; their connection to the Prosthecium teleomorphs was demonstrated by morphology and DNA sequences of single spore cultures derived from both ascospores and conidia. The anamorphs and teleomorphs of all five Prosthecium species are described and illustrated by LM images, and a key to these species is provided. As perceived from this work, S. pyriforme is restricted to Europe and does not occur in North America, whereas S. acerinum is restricted to North America, not found in Europe. The host associations given in the literature are revised and evidence is provided that only A. opalus, A. pseudoplatanus, and A. saccharum are confirmed hosts of Prosthecium with Stegonsporium anamorphs. Molecular phylogenetic analyses of tef1, ITS rDNA, and partial nuLSU rDNA sequences confirm that the species with Stegonsporium anamorphs are closely related to P. ellipsosporum, the generic type species. Stilbospora macrosperma is confirmed as the anamorph of P. ellipsosporum by DNA data of single spore isolates obtained from both ascospores and conidia.  相似文献   

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Ohne Zusammenfassung  相似文献   

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Genetic engineering has improved the product yield of a variety of compounds by overexpressing, inactivating, or introducing new genes in microbial systems. The production of flavor-enhancing ester compounds is an emerging area of heterologous gene expression for desired product yield in Escherichia coli. Isoamyl acetate, butyl acetate, ethyl acetate, and butyl butyrate are reported here to be produced by expressing Saccharomyces cerevisiae genes ATF1 or ATF2 and the strawberry gene SAAT in E. coli when the appropriate substrates are provided. Increasing the concentration of alcohol added to the reaction generally resulted in increased ester production. ATF1 expression was found to produce more isoamyl acetate and butyl acetate than ATF2 expression or SAAT expression in the strains and culture conditions examined. Additionally, SAAT expression resulted in greater isoamyl acetate and butyl acetate production than ATF2 expression. Butyl butyrate is produced by cell-free extracts of E. coli harboring SAAT but not ATF1 or ATF2.  相似文献   

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Samples of Kochia (K. scoparia), Atriplex (A. dimorphostegia), Suaeda (S. arcuata) and Gamanthus (G. gamacarpus) were collected and analyzed for chemical composition including crude protein (CP), ether extract (EE), ash, neutral detergent fiber (NDFom), acid detergent fiber (ADFom), non-protein N (NPN), Ca, P, Na, K, Cl, Mg, Fe, Cu and Se. In addition, in situ ruminal degradability and post-ruminal disappearance of dry matter (DM) and CP of the samples using a mobile bag technique were determined. Results indicate that the chemical composition of Kochia and Atriplex was notably different from those of Suaeda and Gamanthus. All of these halophytic plants had high concentrations of Na, K, Cl, Cu and Se, and low levels of Ca, P and Mg. The rapidly degradable fractions of DM and CP (g/g) of Kochia (0.31 and 0.35, respectively) and Atriplex (0.39 and 0.50, respectively) were lower than for Suaeda (0.53 and 0.55, respectively) and Gamanthus (0.56 and 0.66, respectively). Ruminal DM and CP disappearance of Kochia (444 and 517 g/kg, respectively) and Atriplex (472 and 529 g/kg, respectively) were lower (P<0.05) than those of Suaeda (553 and 577 g/kg, respectively) and Gamanthus (663 and 677 g/kg, respectively) (P<0.05) using the mobile bag technique. Suaeda had the lowest (P<0.05) NDFom and ADFom disappearance (214 and 232 g/kg, respectively) in the rumen. Kochia scoparia and Atriplex dimorphostegia have more beneficial chemical nutritive components and digestible values versus Suaeda arcuata and Gamanthus gamacarpus.  相似文献   

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Ohne Zusammenfassung  相似文献   

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Seven bean rhizobial strains EBRI 2, 3, 21, 24, 26, 27 and 29 identified as Rhizobium etli, and EBRI 32 identified as Rhizobium gallicum, isolated from Egyptian soils and which nodulated Phaseolus vulgaris efficiently, were subjected to hybridization with a nifH probe in order to estimate the copy number of this gene. Seven strains (EBRI 2, 3, 21, 24, 26, 27 and 29) which were only able to nodulate Phaseolus vulgaris, contained three copies of the nifH gene, consistent with their identification as Rhizobium etli bv. phaseoli. Only one strain (EBRI 32) which nodulated both Phaseolus vulgaris and Leucaena leucocephala, had one copy of nifH gene. This confirmed the classification of this strain as Rhizobium gallicum bv. gallicum.  相似文献   

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In order to dissect the genetic regulation of leafblade morphogenesis, 16 genotypes of pea, constructed by combining the wild-type and mutant alleles of MFP, AF, TL and UNI genes, were quantitatively phenotyped. The morphological features of the three domains of leafblades of four genotypes, unknown earlier, were described. All the genotypes were found to differ in leafblade morphology. It was evident that MFP and TL functions acted as repressor of pinna ramification, in the distal domain. These functions, with and without interaction with UNI, also repressed the ramification of proximal pinnae in the absence of AF function. The expression of MFP and TL required UNI function. AF function was found to control leafblade architecture multifariously. The earlier identified role of AF as a repressor of UNI in the proximal domain was confirmed. Negative control of AF on the UNI-dependent pinna ramification in the distal domain was revealed. It was found that AF establishes a boundary between proximal and distal domains and activates formation of leaflet pinnae in the proximal domain.  相似文献   

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