您的位置: 专家智库 > >

河北省自然科学基金(C2011204031)

作品数:4 被引量:34H指数:3
相关作者:丁长欢肖凯李小娟孙昭华赵妙更多>>
相关机构:河北农业大学华北电力大学更多>>
发文基金:河北省自然科学基金国家自然科学基金国家重点基础研究发展计划更多>>
相关领域:农业科学生物学更多>>

文献类型

  • 4篇中文期刊文章

领域

  • 3篇农业科学
  • 2篇生物学

主题

  • 2篇小麦
  • 2篇TRITIC...
  • 1篇性状
  • 1篇逆境
  • 1篇染色体
  • 1篇染色体组
  • 1篇转录因子基因
  • 1篇磷水平
  • 1篇磷效率
  • 1篇克隆
  • 1篇基因
  • 1篇基因克隆
  • 1篇非生物
  • 1篇非生物逆境
  • 1篇PHOSPH...
  • 1篇PI
  • 1篇TRANSC...
  • 1篇B染色体
  • 1篇B染色体组
  • 1篇EXPRES...

机构

  • 2篇河北农业大学
  • 1篇华北电力大学

作者

  • 2篇李小娟
  • 2篇肖凯
  • 2篇丁长欢
  • 1篇郭程瑾
  • 1篇孙昭华
  • 1篇郭丽
  • 1篇赵妙

传媒

  • 2篇Journa...
  • 1篇植物营养与肥...
  • 1篇华北农学报

年份

  • 2篇2014
  • 2篇2012
4 条 记 录,以下是 1-4
排序方式:
Molecular Characterization and Expression Analysis of TaZFP15, a C_2H_2-Type Zinc Finger Transcription Factor Gene in Wheat (Triticum aestivum L.)被引量:22
2012年
Based on sequencing of part clones in a root subtractive cDNA library, an expressed sequence tag (EST) sharing high similarity to a rice C2H2 zinc finger transcription factor (ZFP15) was obtained in wheat. Through bioinformatics approach, the wheat C2H2-type ZFP gene referred to TaZFP15 has been identified and characterized. As a full-length cDNA of 670 bp, TaZFP15 has an open reading frame of 408 bp and encodes a 135-aa polypeptide. TaZFP15 contains two C2H2 zinc finger domains and each one has a conserved motif QALGGH. The typical L-box, generally identified in the C2H2 type transcription factors, has also been found in TaZFP15. Phylogenetic analysis suggested that TaZFP15 shares high similarities with rice ZFP15 (GenBank accession no. AY286473), maize ZFP (GenBank accession no. NM_001159094) and a subset of other zinc-finger transcription factor genes in plant species. The expression of TaZFP15 was up-regulated by starved-Pi stress, showing a pattern to be gradually elevated along with the progression of the Pi-stress in a 23-h treatment regime. Similarly, the transcripts of TaZFP15 in roots were also induced by nitrogen deficiency, and abiotic stresses of drought and salinity. No responses of TaZFP15 were detected in roots to nutrition deficiencies of P, Zn, and Ca, and the external treatment of abscisic acid (ABA). TaZFP15 could be specifically amplified in genome A, B, and D, and without variability in the sequences, suggesting that TaZFP15 has multi-copies in the homologous hexaploid species. Transgenic analysis in tobacco revealed that up-regulation of TaZFP15 could significantly improve plant dry mass accumulation via increasing the plant phosphorus acquisition capacity under Pi-deficiency condition. The results suggested that TaZFP15 is involved in mediation of signal transductions of diverse external stresses.
SUN Zhao-huaDING Chang-huanLI Xiao-juanXIAO Kai
小麦转录因子基因TaWRKY46的克隆与表达分析被引量:8
2012年
在富集低磷胁迫特异表达基因的小麦根系cDNA差减杂交文库中,鉴定了1个小麦WRKY型转录因子基因(TaWRKY46)。依据该基因的cDNA序列,在石新828中克隆了该基因。TaWRKY46的cDNA长度为872 bp,开放阅读框为669 bp,编码222个氨基酸残基,氨基酸组成上含有保守的WRKY基序和C2H2基序。系统进化分析表明,TaWRKY46与大麦WRKY34可能来自相同的祖先。与对照供磷水平(2 mmol/L Pi)相比,低磷处理(20μmol/L Pi)使根系中TaWRKY46的转录本数量明显增多,表明TaWRK46对低磷胁迫逆境产生了明显应答。此外,TaWRKY46对氮、钾、锌和钙养分胁迫也表现明显的上调表达特征。表明该基因编码蛋白在介导上述养分逆境信号的转导中具有重要作用。此外,TaWRKY46对干旱、盐分等非生物逆境和脱落酸(ABA)也产生明显应答。因此,TaWRKY46是小麦种属中应答多种非生物逆境的重要调控转录因子,在增强小麦抵御养分胁迫和非生物逆境的能力中可能具有重要作用。
丁长欢孙昭华李小娟肖凯
关键词:小麦基因克隆非生物逆境
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
共1页<1>
聚类工具0