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国家自然科学基金(31201674)

作品数:8 被引量:11H指数:2
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Expression and functional analyses of the mitogen-activated protein kinase (MPK) cascade genes in response to phytohormones in wheat ( Triticum aestivum L.)
2017年
Mitogen-activated protein kinase (MPK) cascades consist of a set of kinase types (MPKKKs, MPKKs, MPKs) to establish conserved signal-transducing modules mediating plant growth, development as well as responses to internal and external cues. In this study, the expression patterns of six MPKKK, two MPKK, and 11 MPK genes in wheat in responses to external treatments of phytohormones, including naphthylacetic acid (NAA), abscisic acid (ABA), 6-benzyladenine (6-BA), gibber- ellin (GA3), salisylic acid (SA), jasmonic acid (JA), and ethylene (ETH), were investigated. Expression analysis revealed that several of the MPK cascade genes are responses to the external phytohormone signaling. Of which, TaMPKKKA;3 is induced by 6-BA and NAA while TaMPK4 repressed by ETH, GA3, SA, and JA; TaMPKKKA, TaMPKKKA;3 and TaMPK1 are down-regulated by ETH and GA3whereas TaMPK9 and TaMPK12 repressed by ETH and JA in addition that TaMPK12 also repressed by GA3; TaMPK12;1 is down-regulated by ABA, GA3 and SA while TaMPK17 repressed by all exogenous phytonormones examined. TaMPK4, a MPK type gene previously characterized to mediate tolerance to phosphate (Pi) deprivation, was functionally evaluated for its role in mediation of responses of plants to exogenous GA3, ETH, SA, and JA. Results indicated that overexpression and antisense expression of TaMPK4 in tobacco dramatically modify the growth of seedlings upon treatments of GA3, SA and JA, in which the overexpressors behaved deteriorated growth feature whereas the seedlings with antisense expression of TaMPK4 exhibited improved seedling phenotype. The growth behaviors in lines overexpressing or antisensely expressing TaMPK4 are closely associated with the biomass and the corresponding hormone-associated parameters. These results demonstrated that TaMPK4 acts as a critical player in mediating the phyto- hormone signaling. Our findings have identified the phytohormone-responsive MPK cascade genes in wheat and provided a connection between the phytohormon
YAO Su-feiWANG Yan-xiaYANG Tong-renHAO LinLU Wen-jingXIAO Kai
关键词:PHYTOHORMONEEXPRESSION
Expression pattern and function analyses of the MADS thranscription factor genes in wheat(Triticum aestivum L.) under phosphorusstarvation condition被引量:1
2016年
supported by the National Natural Science Foundation of China (31201674 and 31371618);the National Transgenic Major Program, China (2011ZX08008)
SHI Shu-yaZHANG Fei-feiGAO SiXIAO Kai
磷转运蛋白基因TaPht1;4的染色体定位及其在低磷下与小麦吸磷能力的关系被引量:3
2014年
【目的】植株对介质中磷素的吸收及磷素在体内器官组织间的转运,是通过位于细胞质膜上的磷转运蛋白(PT)介导完成的。高亲和PT在介导植物对低磷逆境下的磷素吸收中发挥重要作用。本研究以小麦中国春遗传背景的整套B染色体双端体为材料,对小麦高亲和PT基因TaPht1;4的染色体定位特征及其与低磷下小麦品种磷效率的联系进行系统研究,旨在为今后小麦品种磷效率分子鉴定和磷高效遗传改良提供依据。【方法】采用水培法培养中国春(CS)及其遗传背景B染色体组双端体幼苗。三叶期时收获各供试材料根系,提取各材料基因组DNA,通过PCR特异扩增TaPht1;4,鉴定TaPht1;4在染色体上定位。通过对各供试材料三叶期幼苗进行24 h低磷胁迫获取丰缺磷处理根叶样本,采用半定量RT-PCR及实时定量PCR分析TaPht1;4在丰缺磷下的表达。采用上述幼苗培养、丰缺磷处理和基因表达分析技术,研究不同磷吸收效率小麦品种磷效率参数和TaPht1;4表达特征。【结果】1)与CS及其他双端体材料能特异扩增目标基因不同,在3BS中未扩增到目标基因TaPht1;4;采用半定量RT-PCR和qPCR对丰、缺磷下CS和各双端体根、叶中TaPht1;4的表达研究表明,丰磷下各供试材料根、叶中均检测不到TaPht1;4表达,缺磷下各供试材料叶片中也均未检测到TaPht1;4表达,但在根中除3BS未检测到TaPht1;4表达外,CS和其他双端体均具有较高的TaPht1;4表达水平。表明TaPht1;4定位在3B染色体长臂,呈低磷诱导和根系特异表达特征。2)丰磷下,3BS单株干重与CS没有差异;缺磷下,与CS相比,3BS单株干重显著降低。表明缺少TaPht1;4及所在3B染色体长臂后,植株干物质生产能力受到较大影响,这可能与因缺乏该染色体臂丧失TaPht1;4造成低磷下植株的磷素吸收能力降低密切相关。3)对丰、缺磷下不同磷吸收效率6个小麦品种TaPht1;4的表达水平以及单株干重、全�
郭丽郭程瑾路文静李小娟肖凯
关键词:AESTIVUM磷素吸收干物质生产
Expression Pattern Analysis of Zinc Finger Protein Genes in Wheat(Triticum aestivum L.) Under Phosphorus Deprivation被引量:2
2014年
Zinc finger protein(ZFP) genes comprise a large and diverse gene family, and are involved in biotic and abiotic stress responses in plants. In this study, a total of 126 ZFP genes classified into various types in wheat were characterized and subjected to expression pattern analysis under inorganic phosphate(Pi) deprivation. The wheat ZFP genes and their corresponding GenBank numbers were obtained from the information of a 4×44K wheat gene expression microarray chip. They were confirmed by sequence similarity analysis and named based on their homologs in Brachypodium distachyon or Oriza sativa. Expression analysis based on the microarray chip revealed that these ZFP genes are categorized into 11 classes according to their gene expression patterns in a 24-h of Pi deprivation regime. Among them, ten genes were differentially up-regulated, ten genes differentially downregulated, and two genes both differentially up- and down-regulated by Pi deprivation. The differentially up- or down-regulated genes exhibited significantly more or less transcripts at one, two, or all of the checking time points(1, 6, and 24 h) of Pi stress in comparison with those of normal growth, respectively. The both differentially up- and down-regulated genes exhibited contrasting expression patterns, of these, TaWRKY70;5 showed significantly up-regulated at 1 and 6 h and down-regulated at 24 h whereas TaAN1AN20-8;2 displayed significantly upregulated at 1 h and downregulated at 6 h under deprivation Pi condition. Real time PCR analysis confirmed the expression patterns of the differentially expressed genes obtained by the microarray chip. Our results indicate that numerous ZFP genes in wheat respond to Pi deprivation and have provided further insight into the molecular basis that plants respond to Pi deprivation mediated by the ZFP gene family.
LI Xiao-juanGUO Cheng-jinLU Wen-jingDUAN Wei-weiZHAO MiaoMA Chun-yingGU Jun-taoXIAO Kai
不同磷水平下小麦B染色体双端体植株干物质积累和磷效率特征研究被引量:3
2014年
以中国春(CS)及其B染色体组双端体(1BS 7BS和1BL 7BL))为材料,采用溶液培养法,研究了不同磷水平下各供试材料的干物质积累和磷效率特征。结果表明,与CS相比,丰磷下4BS、6BS、3BL及7BL和低磷下4BS、6BS、7BS、和7BL植株形态及单株干重无明显变化,其他B染色体组双端体植株形态变劣、单株干重降低。丰、低磷下,各双端体单株磷累积量与CS相比多呈减少趋势,表明缺失B染色体长、短臂对小麦的磷素吸收和累积发挥不同程度负调控效应。全磷含量表现为丰磷下4BS和4BL较CS显著增加、5BS较CS显著降低;低磷下5BS较CS显著提高,3BL和5BL较CS显著降低。与CS相比,各双端体植株的磷效率变幅较大,呈与单株磷累积量相反趋势变化,即丰磷下3BS、5BS较CS显著增加,4BS、1BL和4BL较CS显著减少。丰、低磷条件下,多数双端体植株氮钾效率与CS相比也发生不同程度改变。丰、低磷磷下单株干重与磷累积量呈显著正相关,且单株干重与单株叶面积也呈显著正相关。因此,本研究证实,特定B染色体组长、短臂在调控植株抵御低磷逆境中发挥着重要遗传效应,可用单株叶面积作为丰、低磷下植株磷效率的评价指标。
郭丽郭程瑾丁长欢赵妙李小娟肖凯
关键词:B染色体组
B染色体组短臂对丰、缺氮下小麦幼苗干物质积累和氮效率的影响被引量:1
2015年
以中国春(CS)及其B染色体组双端体(1BL^7BL)为材料,研究了丰、缺氮条件下小麦B染色体组短臂对小麦植株干重和氮效率的影响。结果表明:与CS相比,3BL和7BL端体,3BL、4BL和5BL端体分别在丰、缺氮条件下表现出幼苗长势变差、单株干重降低等特征,这些特征可能与端体相应短臂的缺失有关;同时,丰氮下4BL、5BL和7BL及缺氮下2BL和7BL的含氮量分别较CS显著降低,丰氮下3BL、4BL和7BL及缺氮下2BL的单株氮累积量较CS显著降低,丰、缺氮下供试双端体的氮效率与CS相比无显著差异。表明丰氮下,小麦幼苗氮累积量、株高、单株叶面积、单株地上部干重和单株根干重与单株干重呈显著正相关,缺氮下,单株氮累积量、单株叶面积、单株地上部干重和单株根干重与单株干重呈显著正相关;丰、缺氮下的含氮量与氮效率均呈显著负相关。
张菲菲高思郭程瑾肖凯
关键词:氮效率植株性状
小麦TaSPX129基因的分子特征及其在非生物逆境下的表达模式被引量:1
2016年
在前期构建的富集丰磷逆境特异表达小麦根系cDNA差减文库中,鉴定了1个SPX家族基因成员TaSPX129(GenBank登录号:EF522137)。TaSPX129的开放阅读框为1 320bp,编码一条由439个氨基酸残基组成的蛋白质多肽链,该预测蛋白中含有植物保守的SPX基序。系统进化分析表明,TaSPX129与大麦和二穗短柄草的SPX基因具有较高同源性,推测上述基因可能具有相似的进化途径。对TaSPX129与其他植物种属中的同源蛋白进行聚类分析,该小麦SPX成员属于SPX-MFS亚家族。与丰磷对照相比,低磷处理后小麦根系中TaSPX129的表达水平下降。此外,TaSPX129对低氮和高盐逆境也明显应答,表现为根系中该基因的表达水平明显下降。本研究表明,TaSPX129在转录水平上对低磷等逆境产生应答,为探索该基因介导植株抵御非生物胁迫的机制打下基础。
方韦博丁维维肖凯李小娟
关键词:小麦低磷胁迫非生物逆境分子特征
小麦生长素响应因子TaARF6转基因烟草植株分子鉴定被引量:1
2016年
【目的】生长素响应因子(ARF)在介导生长素信号传递和调控下游生长素响应基因的表达中发挥着重要功能。本文旨在以在富集丰磷特异表达基因的小麦根系c DNA差减文库中鉴定的1个ARF类别的家族成员TaARF6为基础,对该基因c DNA序列、分子特征、不同供磷水平下该基因在根、叶中表达模式及遗传转化TaARF6对丰磷和缺磷条件下植株形态的影响进行较全面研究,阐明该小麦生长素响应因子基因介导不同供磷水平下对植株生长特性的影响。【方法】采用生物信息学工具预测TaARF6编码蛋白特征;采用溶液培养法培养丰、缺磷处理小麦幼苗,采用半定量RT-PCR技术鉴定TaARF6在丰、缺磷处理下的表达特征。采用DNA重组技术构建将TaARF6编码阅读框融合至表达载体中的表达质粒,利用农杆菌介导的遗传转化法建立超表达TaARF6转基因烟草植株。采用琼脂培养和溶液培养法,培养丰、缺磷不同供磷水平下野生型植株和转基因烟草植株,进而利用常规分析方法鉴定不同磷水平下植株长势、根系和茎叶生物量和植株根叶形态及性状。【结果】1)TaARF6编码生长素响应因子(ARF)型转录因子,编码蛋白中含有ARF家族成员具有的保守结构域。该基因在氨基酸水平上与源于短柄草Bd ARF6和源于水稻的Os ARF6具有高度同源特征。表达分析表明,TaARF6在根、叶中均呈典型低磷下表达下调、复磷后表达再度回升模式,表明该基因表达受到外界供磷水平的调节。2)遗传转化结果表明,在正常生长和低磷逆境下,与野生型植株相比,转基因烟草株系幼苗和植株形态明显增大。3)丰、缺磷不同供磷水平下,与未转化的野生型(WT)对照植株相比,转基因系(Line 3和Line 5)植株幼苗和植株根系、茎叶和单株鲜、干重均较野生型显著增加。此外,与WT相比,转基因系植株根系数量增多、主侧根长度、根体积、叶面积和根冠�
智一鸣陈芳刘晓曼肖凯
关键词:AESTIVUM分子特征
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