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1.
脱水素在植物低温胁迫响应中的作用   总被引:1,自引:0,他引:1  
脱水素(dehydrin)是一类胚胎发育后期丰富蛋白(LEA.late embryogenesis abundant proteins),含有富含赖氨酸的K片段,属于具有高度热稳定性的亲水性蛋白,在植物脱水条件下能保护细胞内蛋白质和膜结构免受破坏.低温胁迫下,耐低温植物细胞内部会发生一系列的生理生化反应来抵御低温所造成的伤害.很多研究表明植物脱水素的表达和积累与多种双子叶植物(包括草本和木本植物)以及冬季栽培的禾本科植物品种(特别是小麦和大麦)的耐低温能力密切相关.本文对近年来国内外关于脱水素的结构、功能以及内源ABA(abscisie acid)含量、拟南芥CBF(C-repeat binding factor)同源转录激活因子、春化基因、光周期信号等对脱水素基因的表达调控机制进行综述.  相似文献   
2.
The changes of DHN1 expression and subcellular distribution in A. delicisoa cells under osmotic stress were studied by using GFP as a reporter molecule. Through creating the Xba I and BamH I restriction sites at the ends of dhn1 by PCR, the expression vector for the fusion protein DHN1-mGFP4 was constructed by cloning dhn1 into plasmid pBIN-35SmGFP4. Then the DHN1-mGFP4 expression vector was transformed into A. delicisoa suspension cells by micropro-jectile bombardment method. Bright green fluorescence of GFP which shows the high-level expression of DHN1-mGFP4 was visualized after culture for 10 h. However, the green fluorescence was only located within the nucleus. By increasing the culture medium osmotic potential, the green fluorescence was visualized in the cytoplasm (mainly around the plasma membranes). The generation of GFP fluorescence in the cytoplasm was also promoted by increasing the medium osmotic potential. Moreover, GFP green fluorescence was abolished by protein synthesis inhibitor dicyclo  相似文献   
3.
Pollen grains may become desiccated after independence from parent plants and remain viable in an inactive dry state during presentation and dispersal, until the conditions for rehydration and germination are prepared. But some pollen types do not tolerate the desiccation state and lose the germination power soon after release, and therefore, are difficult to store. In this study, moisture content, germinability, cytology and dehydrin and phenolics contents were surveyed in pistachio pollen at fresh and desiccated states. Mature pollen lost 54.1% of its initial moisture after 48 h desiccation along with severe decrease in germinability. Light microscopy results indicated that a low rate of pollen grains have vegetative cell rupture caused by desiccation, but a higher rate of grains were intact in appearance. Numerous amyloplasts persisted after desiccation as a sensitivity indicator. A 16 kDa dehydrin band was detected by western blot method with higher content in desiccated than fresh samples. High performance liquid chromatography (HPLC) analysis showed that the total content of phenolics increased slightly by desiccation. These results indicate the insufficiency of dehydrin and phenolics accumulation for achievement of desiccation tolerance. Furthermore, the severe loss of germinability in desiccated pistachio pollen may be the result of deficiency in some other protective mechanisms that need further investigations.  相似文献   
4.
以油茶EST文库为基础,采用5-′RACE技术,分离克隆了一个脱水素样基因的全长cDNA序列(GenBank接受号EU856537),同源分析表明其编码的208 aa的小分子蛋白(id号ACF72673)属于SK2型脱水素,命名为CoDHN2.CoDHN2的肽链内2个类K-片段间富含苏氨酸,有别于脱水素一般性结构特点,并且同油茶种子中另一类脱水素一样也具有一个十分保守的基序(EDDGQAGRRKK),这可能有利于脱水素的磷酸化和亚细胞定位;采用多种方法预测其二级结构,表明CoDHN2为内在性无规则蛋白,但其中远离C端的一个类K-片段可形成两亲性α-螺旋.CoDHN2含有较多的组氨酸残基以及良好的可溶性,推测它可结合金属离子从而减少活性氧的来源并清除活性氧,并在生理脱水时充当缓冲液.结合其它物种脱水素的研究进展,认为CoDHN2极有可能在油茶油脂合成高峰期同正在发育的脂体结合而保护脂体免受活性氧危害,这为油茶种子细胞的脂体发育研究提出了一个新的方向.  相似文献   
5.
小麦类脱水素的表达、纯化及多克隆抗体的制备   总被引:1,自引:0,他引:1  
脱水素在胚胎发育后期累积,外源脱落酸(ABA)、低温、干旱和其他一些环境条件下能诱导脱水素的产生,尽管植物在脱水条件下脱水素广泛存在于细胞中,但其生化功能仍不清楚.为研究小麦在不同时期脱水素基因的表达情况和生物学功能及抗体制备,以小麦幼芽为材料,经干旱胁迫处理后,提取总RNA,通过RT-PCR得到小麦类脱水素基因片段(WZY1-1),再连接至克隆载体PUCM-T,并成功构建重组表达质粒PET-32a( )-wzy1-1,将阳性重组质粒转化于受体菌BL21(DE3)感受态细胞中,经IPTG诱导表达,进行表达产物的聚丙烯酰胺凝胶电泳(SDS-PAGE)检测.结果表明,表达蛋白位于37ku处,小麦类脱水素基因获得高效表达.表达蛋白经Ni2 琼脂糖凝胶亲和层析和透析袋电洗脱法纯化后,对兔子进行免疫,制备的抗血清通过ELISA检测到较高的多克隆抗体效价.蛋白质印迹结果显示,利用纯化的蛋白质制备的兔抗血清可以很好地和所表达的蛋白质带特异性结合,且郑引1号小麦幼苗进行干旱处理,提取粗蛋白,SDS-PAGE,蛋白质印迹检测显示,在分子质量28ku处出现特异的蛋白质条带,这说明所制备的抗血清可以与小麦叶片所表达的dehydrin蛋白特异性结合,证明其具有良好的免疫原性.  相似文献   
6.
Dehydrins are a family of proteins that accumulate in response to abiotic stresses. Little is known about the biochemical functions of these proteins. It is known that the Arabidopsis dehydrin, ERD14, is activated by phosphorylation to bind calcium and other ions. To begin to categorize the Arabidopsis dehydrins into functional families, we determined whether representative members of the dehydrin sub families share the properties of ERD14. When phosphorylated in vitro with casein kinase II; recombinant COR47, and ERD10 (and ERD14) become activated to bind calcium. ERD14 exhibited the highest calcium-binding activity followed by ERD10 and COR47. These dehydrins, when isolated from cold-treated Arabidopsis plants were also shown to have phosphorylation-dependent, calcium-binding activity. RAB18 showed very little calcium binding activity, even though it was phosphorylated by casein kinase II. XERO2 was not phosphorylated with CKII and did not bind calcium. Competition studies suggest that other divalent cations may bind to the dehydrins COR47, ERD10, and ERD14. Utilizing matrix-assisted laser desorption ionization – time of flight mass spectroscopy (MALDI-TOF), we determined that the poly serine region located in all three calcium-binding family members (COR47, ERD10, and ERD14) is the most likely phosphorylation site responsible for the activation of calcium binding. These results are consistent with a distinct biochemical function for the acidic subclass of dehydrins (COR47, ERD10, and ERD14) as ion (calcium)-interacting proteins.  相似文献   
7.
Stress-induced accumulation of five (COR47, LTI29, ERD14, LTI30 and RAB18) and tissue localization of four (LTI29, ERD14, LTI30 and RAB18) dehydrins in Arabidopsis were characterized immunologically with protein-specific antibodies. The five dehydrins exhibited clear differences in their accumulation patterns in response to low temperature, ABA and salinity. ERD14 accumulated in unstressed plants, although the protein level was up-regulated by ABA, salinity and low temperature. LTI29 mainly accumulated in response to low temperature, but was also found in ABA- and salt-treated plants. LTI30 and COR47 accumulated primarily in response to low temperature, whereas RAB18 was only found in ABA-treated plants and was the only dehydrin in this study that accumulated in dry seeds.Immunohistochemical localization of LTI29, ERD14 and RAB18 demonstrated tissue and cell type specificity in unstressed plants. ERD14 was present in the vascular tissue and bordering parenchymal cells, LTI29 and ERD14 accumulated in the root tip, and RAB18 was localized to stomatal guard cells. LTI30 was not detected in unstressed plants. The localization of LTI29, ERD14 and RAB18 in stress-treated plants was not restricted to certain tissues or cell types. Instead these proteins accumulated in most cells, although cells within and surrounding the vascular tissue showed more intense staining. LTI30 accumulated primarily in vascular tissue and anthers of cold-treated plants.This study supports a physiological function for dehydrins in certain plant cells during optimal growth conditions and in most cell types during ABA or cold treatment. The differences in stress specificity and spatial distribution of dehydrins in Arabidopsis suggest a functional specialization for the members of this protein family.  相似文献   
8.
Pea dehydrins: identification,characterisation and expression   总被引:3,自引:0,他引:3  
An antiserum raised against dehydrin from maize (Zea mays) recognised several polypeptides in extracts of pea (Pisum sativum) cotyledons. A cDNA expression library was prepared from mRNA of developing cotyledons, screened with the antiserum and positive clones were purified and characterised. The nucleotide sequence of one such clone, pPsB12, contained an open reading frame which would encode a polypeptide with regions of significant amino acid sequence similarity to dehydrins from other plant species.The deduced amino acid sequence of the pea dehydrin encoded by B12 is 197 amino acids in length, has a high glycine content (25.9%), lacks tryptophan and is highly hydrophilic. The polypeptide has an estimated molecular mass of 20.4 kDa and pI=6.4. An in vitro synthesised product from the clone comigrates with one of the in vivo proteins recognised by the antiserum.A comparison of the pea dehydrin sequence with sequences from other species revealed conserved amino acid regions: an N-terminal DEYGNP and a lysine-rich block (KIKEKLPG), both of which are present in two copies. Unexpectedly, pea dehydrin lacks a stretch of serine residues which is conserved in other dehydrins.B12 mRNA and dehydrin proteins accumulated in dehydration-stressed seedlings, associated with elevated levels of endogenous abscisic acid (ABA). Applied ABA induced expression of dehydrins in unstressed seedlings. Dehydrin expression was rapidly reversed when seedlings were removed from the stress or from treatment with ABA and placed in water.During pea cotyledon development, dehydrin mRNA and proteins accumulated in mid to late embryogenesis. Dehydrin proteins were some of the most actively synthesised at about the time of maximum fresh weight and represent about 2% of protein in mature cotyledons.  相似文献   
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