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国家自然科学基金(30470990)

作品数:8 被引量:81H指数:5
相关作者:戴良英王国梁刘雄伦刘金灵潘素君更多>>
相关机构:湖南农业大学俄亥俄州立大学作物基因工程湖南省重点实验室更多>>
发文基金:国家自然科学基金国家教育部博士点基金湖南省教育厅科研基金更多>>
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8 条 记 录,以下是 1-8
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BWMK1 Responds to Multiple Environmental Stresses and Plant Hormones被引量:3
2007年
Many plant mltogen-actlvated protein klnases (MAPKs) play an important role In regulating responses to both ablotlc and biotic stresses. The first reported rice MAPK gene BWMK1 Is Induced by both rice blast (Magnaporthe grisea) Infection and mechanical wounding. For further analysis of Its response to other environmental cues and plant hormones, such as jasmonlc acid (JA), salicylic acid (SA), and benzothladlazole (BTH), the promoter of BWMKf was fused with the coding region of the β-glucuronldase (GUS) reporter gene. Two promoter-GUS constructs with a 1.0- and 2.5-kb promoter fragment, respectively, were generated and transformed into the Japonica rice cultIvars TP309 and Zhonghua 11. Expression of GUS was Induced in the transgenic lines by cold, drought, dark, and JA. However, light, SA, and BTH treatments suppressed GUS expression. These results demonstrate that BWMK1 Is responsive to multiple ablotlc stresses and plant hormones and may play a role In cross-talk between different signaling pathways.
Wai-Foong HongChaozu HeLijun WangDong-Jiang WangLeina M. JosephChatchawan JantasuriyaratLiangying DaiGuo-Liang Wang
广谱抗稻瘟病基因Pi9对籼稻的转化研究被引量:13
2006年
通过农杆菌介导法,将由CaMv35s启动子启动的广谱抗稻瘟病基因Pi9转入5个籼稻品种(丰源B、湘晚籼13号、R996、527、1701)的愈伤组织中,所用质粒为pCAMBIA1301,pCAMBIA1301的T-DNA区含有潮霉素(hygmycin)抗性基因和β-葡萄糖苷酸酶(GUS)基因。以潮霉素作为筛选剂对籼稻愈伤组织进行筛选,结果表明,不同品种在转化过程中抗性愈伤率在73.9% ̄83.3%之间,获得的部分抗性苗经PCR检测为阳性,阳性植株的转化率差异显著,其转化率为5.7% ̄25.9%之间,对获得的抗性苗和T2代幼苗的根和叶进行GUS组织化学染色分析,有些抗性苗和T2代幼苗的根和叶呈蓝色反应,表明广谱抗稻瘟病基因Pi9基因已整合到水稻基因组并能正常表达。对T2代进行稻瘟病小种接种试验,结果显示了抗性分离。并且建立了一套较为有效的水稻遗传转化体系。
潘素君戴良英刘雄伦王国梁
关键词:籼稻农杆菌介导法
植物抗逆相关ERF转录因子研究综述被引量:11
2007年
植物在它的生命周期中要经历各种逆境胁迫。植物许多胁迫相关基因的表达主要受特定转录因子在转录水平的调控。ERF转录因子家族参与植物的生物胁迫和非生物胁迫的应答,是同植物抗逆应答密切相关的一类转录因子大家族。它们通过识别不同的顺式元件,调节多种功能基因的表达,调节植物抗性应答。综述简要介绍ERF转录因子及其相关顺式作用元件。阐述植物ERF转录因子家族在植物抗逆应答中的功能。
刘武戴良英
关键词:ERF转录因子逆境应答顺式作用元件
Recent Progress in Elucidating the Structure, Function and Evolution of Disease Resistance Genes in Plants被引量:30
2007年
Plants employ multifaceted mechanisms to fight with numerous pathogens in nature. Resistance (R) genes are the most effective weapons against pathogen invasion since they can specifically recognize the corresponding pathogen effectors or associated protein(s) to activate plant immune responses at the site of infection. Up to date, over 70 R genes have been isolated from various plant species. Most R proteins contain conserved motifs such as nucleotide-binding site (NBS), leucine-rich repeat (LRR), Toll-interleukin-1 receptor domain (TIR, homologous to cytoplasmic domains of the Drosophila Toll protein and the manamalian intefleukin-1 receptor), coiled-coil (CC) or leucine zipper (LZ) structure and protein kinase domain (PK). Recent results indicate that these domains play significant roles in R protein interactions with effector proteins from pathogens and in activating signal transduction pathways involved in innate immunity. This review highlights an overview of the recent progress in elucidating the structure, function and evolution of the isolated R genes in different plant-pathogen interaction systems.
刘金灵刘雄伦戴良英王国梁
The COI1 and DFR Genes are Essential for Regulation of Jasmonate-lnduced Anthocyanin Accumulation in Arabidopsis被引量:8
2007年
Jasmonates (JAs) are a class of plant hormones that play important roles in the regulation of plant development and plant defense. It has been shown that Arabidopsis plants produce much higher levels of anthocyanins when treated exogenously with methyl jasmonate (MeJA). However, a molecular link between the JA response and anthocyanin production has not been determined. The CORONATINE INSENTITIVE1 (COI1) gene is a key player in the regulation of many JA-related responses. In the present study, we demonstrate that the COI1 gene is also required for the JA-induced accumulation of anthocyanins in Arabidopsis. Furthermore, the MeJA-inducible expression of DIHYDROFLAVONOL REDUCTASE (DFR), an essential component in the anthocyanin biosynthesis pathway, was completely eliminated in the coil mutant. Jasmonateinduced anthocyanin accumulation was found to be independent of auxin signaling. The present results indicate that the expression of both COI1 and DFR genes is required for the regulation of JA-induced anthocyanin accumulation and that DFR may be a key downstream regulator for this process.
Qin-Fang ChenLiang-Ying DaiShi XiaoYun-Sheng WangXiong-Lun LiuGuo-Liang Wang
关键词:ANTHOCYANINDFR
水稻BWMK1互作基因的分离
2011年
为探明BWMK1介导的信号传导途径,采用酵母双杂交系统,构建水稻稻瘟病菌诱导后的cDNA文库,以BWMK1为诱饵,对文库进行筛选,通过验证、测序和基因编码分析,获得了7个BWMK1互作基因BWIPI-BWIP7,分别位于水稻基因组第12、2、3、10、6、4、5染色体上;7个互作基因中,除BWIP2和BWIP7未找到同源编码蛋白外,其余5个基因BWIP1编码硫甲基转运酶,BWIP3编码磷酸肌醇合成酶,BWIP4编码磷转运蛋白,BWIP5编码WD-40重复包含蛋白,BWIP6编码N-乙酰谷氨酸激酶。
潘素君高佳刘玲刘赛军刘金灵刘雄伦王国梁戴良英
关键词:水稻酵母双杂交稻瘟病菌
植物U-box蛋白研究进展被引量:1
2007年
U-box结构是真核生物体内尤其是植物中广泛存在的一种高度保守的基序,其构象与RING-finger极其相似,两者都能发挥泛素连接酶E3的作用,促进底物蛋白泛素化降解。U-box基序还是泛素链聚集酶E4最主要的功能因子。在植物体内U-box经常与ARM重复耦联形成U-box/ARM结构,影响蛋白-蛋白互作,参与信号传导级联反应。许多植物U-box蛋白(PUB)能有效提高植株对干旱、高盐、异常温度等非生物胁迫的抵抗能力。此外,在植物对许多病原物的抗病反应中也需要U-box蛋白的参与。
李魏戴良英王国梁
关键词:泛素化非生物胁迫抗病性植物
Recent Advances in Cloning and Characterization of Disease Resistance Genes in Rice被引量:15
2007年
Rice diseases caused by fungi, bacteria and viruses are one of the major constraints for sustainable rice (Oryza sativa L.) production worldwide. The use of resistant cultivars is considered the most economical and effective method to control rice diseases. In the last decade, a dozen resistance genes against the fungal pathogen Magnaporthe grisea and the bacterial pathogen Xanthomonas oryzae pv. oryzae have been cloned. Approximately half of them encode nuclear binding site (NBS) and leucine rich repeat (LRR)-containing proteins, the most common type of cloned plant resistance genes. Interestingly, four of them encode novel proteins which have not been identified in other plant species, suggesting that unique mechanisms might be involved in rice defense responses. This review summarizes the recent advances in cloning and characterization of disease resistance genes in rice and presents future perspectives for in-depth molecular analysis of the function and evolution of rice resistance genes and their interaction with avirulence genes in pathogens.
Liang-Ying DaiXiong-Lun LiuYing-Hui XiaoGuo-Liang Wang
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