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1.
利用Blast检索、EST分析和RT-PCR, 在水稻中分离到一个与拟南芥COI1同源的新基因,命名为OsCOI1. OsCOI1编码595个氨基酸. 推测的OsCOI1编码蛋白有一个F-box motif和16个富含亮氨酸的重复序列,这与拟南芥COI1相似. OsCOI1在氨基酸水平上和COI1有很高的同源性(74%). 经半定量RT-PCR法和RNA印迹分析,表明水稻中OsCOI1表达水平在经茉莉酸甲酯和脱落酸处理后呈明显变化,但不受水杨酸和乙烯的影响,说明OsCOI1可能在茉莉酸信号途径和脱落酸途径中具有特定功能.  相似文献   

2.
茉莉酸是植物响应生物和非生物逆境胁迫的关键激素之一,而茉莉酸信号受体蛋白(Coronatine-insensitive protein 1, COI1)在茉莉酸信号转导过程中发挥着关键作用。本研究基于海南龙血树转录数据中的转录本序列,利用注释拼接和RT-PCR的方法首次鉴定了1个编码海南龙血树茉莉酸受体COI1基因(命名为DcCOI1, GenBank登录号为MF193604),DcCOI1基因长度为2 274 bp,包含一个1 785 bp的完整开放阅读框,编码594个氨基酸,Dc COI1蛋白与芦笋COI1序列的一致性为94%,系统进化分析中与芦笋、剑兰划为同一分支,同属于单子叶植物大类。生物信息学分析显示,其编码蛋白包含COI1的蛋白的F-box特征结构域,分子量为64.14 k D,理论等电点为6.09,为非分泌型蛋白,且不含跨膜结构域,包含52个磷酸化位点,主要在细胞质中发挥生理作用;二级结构主要有α螺旋(43.10%)和无规则卷曲(29.63%)构成。实时荧光定量PCR检测发现DcCOI1在海南龙血树根、茎、叶和花中均有表达,根和茎中的表达量较高,而花中的表达量最低。此结果为阐明海南龙血树血竭形成过程中茉莉酸的调控作用研究奠定了基础。  相似文献   

3.
甘蓝型油菜BnCOP1基因编码区全长cDNA的克隆与功能研究   总被引:1,自引:0,他引:1  
通过分析拟南芥、豌豆、番茄和水稻的COP1 (constitutively photomorphogenic 1) 的cDNA序列, 运用RT-PCR和改进的基因组步行 (genome walking) 技术相结合的方法, 首次从甘蓝型油菜中克隆到油菜 BnCOP1编码区cDNA的全长序列, 其全长2 034 bp, 编码677个氨基酸. 同源 性分析表明, 其编码的氨基酸序列与拟南芥的同源性高达94%. 对BnCOP1编 码序列(cDNA)演绎出的氨基酸序列分析表明, 其编码的蛋白包含有N端的 环形锌指结合域(ring finger zinc binding domain, RING)、中间的卷曲 螺旋形结构域(coiled-coil domain, coiled-coil ), 7个C端的WD-40重复 序列(WD-40 repeats, WD-40)的功能域. 半定量RT-PCR和实时荧光定量PCR 分析该基因在油菜中的表达模式,结果显示, BnCOP1在甘蓝型油菜的各个组 织器官中均有表达,其中在花中的表达明显高于在根、叶、茎、果荚及子叶 和胚轴中,暗示该蛋白可能与开花途径相关. 过表达BnCOP1的转基因拟南芥 植株在高度、主茎的直径和叶片大小上都呈现出比野生型弱小的表型, 表 明BnCOP1抑制了拟南芥光形态建成从而影响了植物的生长发育.  相似文献   

4.
拟南芥F-box蛋白COI1(Coronatine insensitive 1)与ASK1(Arabidopsis serine/Threonine kinase 1)蛋白及CUL1(CULLIN1)蛋白等结合形成SCFCOI1泛素连接酶复合体.COI1感知茉莉素信号、进而调控植物一系列的防御反应和生长发育过程.虽然多种作物的COI1同源蛋白已经被相继鉴定,但是其自身蛋白水平的调控机制仍然未知.本文重点研究了蔬菜作物番茄(Solanum lycopersicum)和经济作物烟草(Nicotiana attenuata)中COI1蛋白稳定性的调控机制.结果证明,这两种作物的COI1蛋白通过与ASK1的相互作用而得到稳定,表明形成SCFCOI1复合体可能有助于COI1蛋白的稳定.同时,26S蛋白酶体抑制剂能够明显抑制COI1的降解,说明泛素-蛋白酶体途径参与了其降解过程.这些结果证明在这两个不同物种中,两条互相拮抗的途径共同发挥作用,平衡并稳定COI1蛋白在细胞内的恰当丰度.该研究为深入研究不同作物的茉莉素信号转导调控机制奠定了良好的基础.  相似文献   

5.
小麦TaCRC基因的克隆及表达分析   总被引:2,自引:1,他引:1  
以小麦心皮为材料,利用RT-PCR方法分离出一个新的YABBY基因TaCRC,并利用Northern杂交对TaCRC在不同组织中的表达模式进行分析.结果显示:该基因全长1 105 bp,编码199个氨基酸.TaCRC具有YABBY家族典型的结构域,即N端含有C2C2锌指结构域,C端含有YABBY结构域.其氨基酸序列与水稻的 DROOPING LEAF(DL)、拟南芥的CRABS CLAW(CRC)和金鱼草的AmCRC的氨基酸具有较高的一致性.TaCRC在心皮中特异表达,类似于拟南芥的CRC的表达模式.研究表明,TaCRC是小麦中的CRC同源基因.  相似文献   

6.
我们利用RT-PCR方法成功从水稻中克隆了R2R3类MYB转录因子OsDUO1(Oryza sativa duo pollen1)的全长为1032bp的cDNA,该基因编码一个343个氨基酸残基的蛋白。RT-PCR分析结果表明OsDUO1只在水稻的花粉发育后期表达,说明OsDUO1可能对水稻花粉发育具有生物学功能。生物信息学分析表明,OsDUO1在短柄草、高粱、玉米、拟南芥、烟草、葡萄、蓖麻、杨毛果、小立碗藓植物中有相近同源序列,暗示该基因在进化中具有保守的生物学功能。  相似文献   

7.
黄瓜胞质6-磷酸葡萄糖酸脱氢酶基因克隆及序列分析   总被引:1,自引:0,他引:1  
根据6-磷酸葡萄糖酸脱氢酶(6-phosphogluconate dehydrogenase,6PGDH)基因的保守氨基酸序列设计简并引物,应用RT-PCR技术从黄瓜栽培种品种'北京截头'(Cucumis sativus 'Beijingjietou')叶片中获得了640 bp的特异片段,以该序列在EST数据库进行同源检索筛选,发现甜瓜EST序列AM715537.2与之高度一致,据此设计引物经RT-PCR扩增、分子克隆和序列拼接,获得了黄瓜6-磷酸葡萄糖酸脱氢酶基因全长序列,命名为Cs6PGDH(GenBank登录号FJ610345).序列分析表明,该基因全长1 829 bp,其中开放读码框(ORF)长1 488 bp编码495个氨基酸组成的多肽,编码区内无内含子存在,5'、3'端非翻译区长度各为70 bp和271 bp.Blast同源性分析显示该基因编码的氨基酸序列与拟南芥、大豆、水稻、玉米、菠菜等物种6PGDH 基因有74%以上的一致性.由于与其他物种胞质6PGDH相类似氨基酸N端都缺少长度约为40aa的转运肽,推断Cs6PGDH为黄瓜胞质6-磷酸葡萄糖酸脱氢酶基因.  相似文献   

8.
bestatin是一种氨肽酶抑制剂, 能够激活茉莉酸信号转导途径而诱导抗性相关基因的表达, 从而为用化学遗传学手段解析茉莉酸途径提供了一个有效的工具。ber15是我们鉴定到的一个对bestatin不敏感的拟南芥突变体, 随后的研究表明该突变体对外源茉莉酸的敏感性也明显降低, 表明相应的野生型基因BER15在茉莉酸信号转导中起重要作用。图位克隆结果表明BER15编码一个细胞色素P450单加氧酶, 是植物激素油菜素内酯合成途径中的一个关键酶。对BER15基因功能的深入研究将会为了解油菜素内酯的合成与茉莉酸信号途径间的互作关系提供证据。  相似文献   

9.
bestatin是一种氨肽酶抑制剂,能够激活茉莉酸信号转导途径而诱导抗性相关基因的表达,从而为用化学遗传学手段解析茉莉酸途径提供了一个有效的工具。ber15是我们鉴定到的一个对bestatin不敏感的拟南芥突变体,随后的研究表明该突变体对外源茉莉酸的敏感性也明显降低,表明相应的野生型基因BER15在茉莉酸信号转导中起重要作用。图位克隆结果表明BER15编码一个细胞色素P450单加氧酶,是植物激素油菜素内酯合成途径中的一个关键酶。对BER15基因功能的深入研究将会为了解油菜素内酯的合成与茉莉酸信号途径间的互作关系提供证据。  相似文献   

10.
α-吡啶羧酸(PA)是动物细胞程序化死亡的诱导物.我们前期的研究表明,PA可以激发单子叶模式植物水稻的过敏反应(HR).进一步用双子叶模式植物拟南芥(Arabidopsis thaliana)进行的研究表明,PA是一个广谱的植物HR反应的激发子,包括诱导氧进发和细胞死亡.我们探究了PA诱导的拟南芥防卫反应途径,利用不同信号途径标志基因PR-1,PR-2和PDF1.2受诱导剂量和时间激活的结果,表明PA可以同时激活水杨酸和茉莉酸/乙烯依赖的防卫途径.我们也发现PA诱导水稻悬浮细胞产生活性氧是钙离子依赖性的.综合所有结果,我们认为PA可以作为一个非专化性的植物防卫反应激发子,可望用于系统获得性抗性激发的细胞模型的建立.  相似文献   

11.
12.
CORONATINE INSENSITIVE 1 (COI1) encodes an E3 ubiquitin ligase complex component that interacts with JAZ proteins and targets them for degradation in response to JA signaling. The Arabidopsis genome has a single copy of COI1, but the Oryza sativa genome has three closely related COI homologs. To examine the functions of the three OsCOIs, we used yeast two-hybrid assays to examine their interactions with JAZ proteins and found that OsCOIs interacted with OsJAZs and with JAZs, in a coronatine dependent manner. We also tested whether OsCOI1a and OsCOI1b could complement Arabidopsis coi1-1 mutants and found that overexpression of either gene in the coi1-1 mutant resulted in restoration of JA signal transduction and production of seeds, indicating successful complementation. Although OsCOI2 interacted with a few OsJAZs, we were not able to successfully complement the coi1-1 mutant with OsCOI2. Molecular modeling revealed that the three OsCOIs adopt 3D structures similar to COI1. Structural differences resulting from amino acid variations, especially among amino acid residues involved in the interaction with coronatine and JAZ proteins, were tested by mutation analysis. When His-391 in OsCOI2 was substituted with Tyr-391, OsCOI2 interacted with a wider range of JAZ proteins, including OsJAZ1, 2, 5∼9 and 11, and complemented coi1-1 mutants at a higher frequency than the other OsCOIs and COI1. These results indicate that the three OsCOIs are orthologues of COI1 and play key roles in JA signaling.  相似文献   

13.
14.
Jasmonic acid (JA) functions in plant development, including senescence and immunity. Arabidopsis thaliana CORONATINE INSENSITIVE 1 encodes a JA receptor and functions in the JA‐responsive signaling pathway. The Arabidopsis genome harbors a single COI gene, but the rice (Oryza sativa) genome harbors three COI homologs, OsCOI1a, OsCOI1b, and OsCOI2. Thus, it remains unclear whether each OsCOI has distinct, additive, synergistic, or redundant functions in development. Here, we use the oscoi1b‐1 knockout mutants to show that OsCOI1b mainly affects leaf senescence under senescence‐promoting conditions. oscoi1b‐1 mutants stayed green during dark‐induced and natural senescence, with substantial retention of chlorophylls and photosynthetic capacity. Furthermore, several senescence‐associated genes were downregulated in oscoi1b‐1 mutants, including homologs of Arabidopsis thaliana ETHYLENE INSENSITIVE 3 and ORESARA 1, important regulators of leaf senescence. These results suggest that crosstalk between JA signaling and ethylene signaling affects leaf senescence. The Arabidopsis coi1‐1 plants containing 35S:OsCOI1a or 35S:OsCOI1b rescued the delayed leaf senescence during dark incubation, suggesting that both OsCOI1a and OsCOI1b are required for promoting leaf senescence in rice. oscoi1b‐1 mutants showed significant decreases in spikelet fertility and grain weight, leading to severe reduction of grain yield, indicating that OsCOI1‐mediated JA signaling affects spikelet fertility and grain filling.  相似文献   

15.
Expression of AtPHO1;H10, a member of the Arabidopsis (Arabidopsis thaliana) PHO1 gene family, is strongly induced following numerous abiotic and biotic stresses, including wounding, dehydration, cold, salt, and pathogen attack. AtPHO1;H10 expression by wounding was localized to the cells in the close vicinity of the wound site. AtPHO1;H10 expression was increased by application of the jasmonic acid (JA) precursor 12-oxo-phytodienoic acid (OPDA), but not by JA or coronatine. Surprisingly, induction of AtPHO1;H10 by OPDA was dependent on the presence of CORONATINE INSENSITIVE1 (COI1). The induction of AtPHO1;H10 expression by wounding and dehydration was dependent on COI1 and was comparable in both the wild type and the OPDA reductase 3-deficient (opr3) mutant. In contrast, induction of AtPHO1;H10 expression by exogenous abscisic acid (ABA) was independent of the presence of either OPDA or COI1, but was strongly decreased in the ABA-insensitive mutant abi1-1. The involvement of the ABA pathway in regulating AtPHO1;H10 was distinct between wounding and dehydration, with induction of AtPHO1;H10 by wounding being comparable to wild type in the ABA-deficient mutant aba1-3 and abi1-1, whereas a strong reduction in AtPHO1;H10 expression occurred in aba1-3 and abi1-1 following dehydration. Together, these results reveal that OPDA can modulate gene expression via COI1 in a manner distinct from JA, and independently from ABA. Furthermore, the implication of the ABA pathway in coregulating AtPHO1;H10 expression is dependent on the abiotic stress applied, being weak under wounding but strong upon dehydration.  相似文献   

16.
The abi1-1 mutation blocks ABA signaling downstream of cADPR action   总被引:1,自引:0,他引:1  
Arabidopsis thaliana abscisic acid insensitive 1-1 (abi1-1) is a dominant mutant that is insensitive to the inhibition of germination and growth by the plant hormone, abscisic acid (ABA). The mutation severely decreases the catalytic activity of the ABI1 type 2C protein phosphatase (PP2C). However, the site of action of the abi1-1/ABI1 in the ABA signal transduction pathway has not yet been determined. Using single cell assays, we showed that microinjecting mutant abi1-1 protein inhibited the activation of RD29A-GUS and KIN2-GUS in response to ABA, cyclic ADP-ribose (cADPR), and Ca2+. The inhibitory effect of the mutant protein, however, was reversed by co-microinjection of an excess amount of the ABI1 protein. In transgenic Arabidopsis plants, overexpression of abi1-1 rendered the plants insensitive to ABA during germination, whereas overexpression of ABI1 did not have any apparent effect. Moreover, transgenic plants overexpressing abi1-1 were blocked in the induction of ABA-responsive genes; however, overexpression of ABI1 did not affect gene expression. Taken together, our results demonstrate that abi1-1 is likely to be a dominant negative mutation and ABI1 likely acts downstream of cADPR in the ABA-signaling pathway. Our results on ABI1 overexpression in Arabidopsis are not compatible with a negative regulatory role of this phosphatase in ABA responses.  相似文献   

17.
18.
拟南芥CIPK1基因的功能初步分析   总被引:1,自引:0,他引:1  
以模式植物拟南芥为材料,采用RT-PCR分析、基因克隆、转化等方法对CIPK1基因功能进行了研究.结果发现,CIPK1(CBL-interacting protein kinase 1)基因在拟南芥茎和花中表达量最高,在叶中表达量最低;ABA能迅速诱导CIPK1基因的表达,GA则抑制该基因的表达,但2,4-D和6-BA对该基因的表达无明显影响;通过对CIPK1基因转基因突变体进行ABA处理,发现转基因拟南芥种子的萌发率明显高于野生型.以上结果表明CIPK1基因的表达具有组织特异性,并且该基因参与ABA和GA信号传导,尤其在ABA促进种子休眠的信号传导途径中具有非常重要的作用.  相似文献   

19.
Cao Y  Yang Y  Zhang H  Li D  Zheng Z  Song F 《Physiologia plantarum》2008,134(3):440-452
F-box proteins play important roles in plant growth/development and responses to environmental stimuli through targeting substrates into degradation machinery. A rice defense-related F-box protein gene, OsDRF1, was cloned and identified during a course of study aimed at elucidating the molecular basis of induced immunity in rice. OsDRF1 encodes a protein of 328 amino acids, containing a highly conserved F-box domain. Expression of OsDRF1 was induced upon treatment with benzothiadiazole (BTH), a chemical inducer of defense responses in rice. Moreover, in BTH-treated rice seedlings, expression of OsDRF1 was further induced by infection with Magnaporthe grisea, the rice blast fungus, compared with those in water-treated seedlings. OsDRF1 was also upregulated in rice seedlings after treatment with ABA. Overexpression of OsDRF1 in transgenic tobacco resulted in enhanced disease resistance against tomato mosaic virus (ToMV) and Pseudomonas syringae pv. tabaci and strengthened expression of defense-related genes after salicylic acid treatment or ToMV infection. Root elongation of the OsDRF1-overexpressing transgenic seedlings was significantly inhibited by ABA, indicating that overexpression of OsDRF1 resulted in increased ABA sensitivity. The results suggest that OsDRF1 plays a role in disease resistance via upregulating defense-related gene expression and that OsDRF1 may also be involved in the response to ABA.  相似文献   

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