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Regulatory Function of Polyamine Oxidase-Generated Hydrogen Peroxide in Ethylene-Induced Stomatal Closure in Arabidopsis thaliana 被引量:7
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作者 HOU Zhi-hui LIU Guo-hua +2 位作者 HOU Li-xia WANG Lan-xiang LIU Xin 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2013年第2期251-262,共12页
Hydrogen peroxide (H2O2) is an important signaling molecule in ethylene-induced stomatal closure in Arabidopsis thaliana. Early studies on the sources of H2O2 mainly focused on NADPH oxidases and cell-wall peroxidas... Hydrogen peroxide (H2O2) is an important signaling molecule in ethylene-induced stomatal closure in Arabidopsis thaliana. Early studies on the sources of H2O2 mainly focused on NADPH oxidases and cell-wall peroxidases. Here, we report the involvement of polyamine oxidases (PAOs) in ethylene-induced H2O2 production in guard cells. In Arabidopsis epidermal peels, application of PAO inhibitors caused the failure of ethylene to induce H2O2 production and stomatal closure. Results of quantitative RT-PCR analysis and pharmacological experiments showed that AtPAO2 and AtPAO4 transcripts and activities of PAOs were both induced by ethylene. In transgenic Arabidopsis plants over-expressing AtPAO2 and AtPAO4, stomatal movement was more sensitive to ethylene treatment and H2O2 production was also significantly induced. The increased H2O2 production in the transgenic lines compared to the wild-type plants suggests that AtPAO2 and AtPAO4 probably are involved in ethylene-induced H2O2 production. Several factors which induce stomatal closure such as dehydration and high salinity all enhanced the expression of AtPAO2 and AtPAO4 to different degrees. Moreover, GFP- AtPAOs fusion protein localized in the nucleus, cytoplasm, and cell wall of the guard cells. Therefore, our results strongly indicated that PAO is a source of H2O2 generation in Arabidopsis guard cells and plays crucial roles in stomatal movement. 展开更多
关键词 Arabidopsis thaliana ETHYLENE guard cell hydrogen peroxide polyamine oxidase
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The Role of Polyamine Oxidative Degradation in the Process of Lettuce Seed Germination 被引量:5
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作者 王立伟 孙娜 +1 位作者 张凤芝 苏国兴 《Agricultural Science & Technology》 CAS 2010年第1期86-89,共4页
[Objective]The aim of this study was to understand the role of polyamine oxidative degradation in the process of lettuce seed germination. [Method]After lettuce seed soaking treatments with aminoguanidine (AG,a speci... [Objective]The aim of this study was to understand the role of polyamine oxidative degradation in the process of lettuce seed germination. [Method]After lettuce seed soaking treatments with aminoguanidine (AG,a specific inhibitor of polyamine oxidases),seed germination rate,activities of polyamine oxidase (PAO) and diamine oxidase (DAO),change of endogenous polyamine and H2O2 content were determined. [Result]Compared with the control,AG treatment strongly inhibited the seed germination,which also had an extremely significant difference in seed germination rate after incubation for 12 h. During the seed germination,activities of PAO and DAO significantly changed,while their activities firstly increased and then decreased,then DAO and PAO reached peaks at 24 h and 48 h respectively. AG treatment was strongly inhibitory for activities of DAO and PAO,whose activities even disappeared after incubation with AG for 24 h and 36 h. During the seed germination,endogenous Put reduced sharply in the first 24 h,then reduced slowly in 24-60 h,while Spd decreased slowly in the early stage of germination,and then sharply declined after 48 h. However,Spm content was low but slightly increased,and the total polyamine gradually decreased. AG treatment could significantly increase endogenous polyamines,especially Put and Spd contents. During the seed germination,H2O2 content gradually increased,and had a peak from 36 to 48 h,then kept a high level at last. AG treatment could significantly reduce H2O2 content. [Conclusion]During the seed germination,the changes of endogenous polyamine and H2O2 content correspond with the changes of PAO and DAO activities,which indicate that there is an active polyamine metabolism of oxidative degradation during the lettuce seed germination. 展开更多
关键词 LETTUCE Seed germination polyamine degradation polyamine oxidases
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枣PAO基因的鉴定及在果实发育和贮藏过程中的表达分析 被引量:1
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作者 李丽莉 樊丁宇 +2 位作者 杨磊 靳娟 郝庆 《山东农业科学》 北大核心 2023年第12期9-16,共8页
多胺氧化酶(PAO)是一种黄素腺嘌呤二核苷酸依赖酶,催化多胺(PA)分解代谢,在植物的生长发育和胁迫反应过程中起着关键作用。本研究对枣PAO基因进行了全基因组筛选,共鉴定出3个ZjPAO基因(ZjPAO1、ZjPAO2、ZjPAO3),并对它们的保守结构域、... 多胺氧化酶(PAO)是一种黄素腺嘌呤二核苷酸依赖酶,催化多胺(PA)分解代谢,在植物的生长发育和胁迫反应过程中起着关键作用。本研究对枣PAO基因进行了全基因组筛选,共鉴定出3个ZjPAO基因(ZjPAO1、ZjPAO2、ZjPAO3),并对它们的保守结构域、基因结构、染色体位置、进化关系、亚细胞定位、启动子顺式作用元件等进行预测和分析。结果表明,ZjPAO1、ZjPAO2、ZjPAO3基因分别分布在4、5、8号染色体上,结构特征较保守,都包含Amino-oxidase结构域。通过构建系统发育树,将拟南芥、番茄、桃和枣的PAO蛋白分为4类,并发现ZjPAOs蛋白与桃PAOs的亲缘关系较近。ZjPAOs基因启动子含有激素响应、应激响应等多种顺式作用元件,预测在枣生长发育中发挥作用。此外,转录组数据分析表明,ZjPAO1和ZjPAO2基因在枣果实不同发育阶段均有表达;在外源水杨酸处理下,ZjPAO1基因被显著诱导表达。本研究结果有助于了解延缓鲜枣果实成熟和衰老的机制。 展开更多
关键词 多胺氧化酶(pao) 基因鉴定 生物信息学分析 基因表达 果实发育 采后贮藏
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水稻多胺氧化酶基因(OsPAO4)CRISPR/Cas9编辑突变体的创制
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作者 林春姿 黄其伟 +5 位作者 侯艳 高上 韩志开 韦淡虹 陈淳 王加峰 《广东农业科学》 CAS 2023年第3期1-10,共10页
【目的】稻瘟病是水稻生产上的重要限制因素,挖掘与利用抗病基因是实现水稻高产稳产的重要保障。前期研究发现,稻瘟病抗性相关osa-miR-21可能通过靶向调控多胺氧化酶基因OsPAO4调节水稻稻瘟病抗性,但目前多胺氧化酶(Polyamine oxidases,... 【目的】稻瘟病是水稻生产上的重要限制因素,挖掘与利用抗病基因是实现水稻高产稳产的重要保障。前期研究发现,稻瘟病抗性相关osa-miR-21可能通过靶向调控多胺氧化酶基因OsPAO4调节水稻稻瘟病抗性,但目前多胺氧化酶(Polyamine oxidases,PAOs)在水稻抗病中的功能研究尚未见报道。为进一步探究其在水稻抗病中的可能生物学功能,本研究利用CRISPR/Cas9编辑技术对水稻OsPAO4基因进行定点编辑并对其后代突变体进行分析。【方法】在OsPAO4第2外显子处设计了1个20 bp的编辑靶点,将靶点核苷酸片段克隆至pRGEB32载体,获得OsPAO4编辑载体。随后,利用农杆菌介导法转化水稻Pik-H4 NIL愈伤组织中,经过再生培养、潮霉素检测获得转基因阳性植株,并对T_(0)代植株靶位点附近DNA序列进行PCR和测序分析。【结果】OsPAO4基因被成功编辑,最终获得25个转基因阳性植株,并在T_(0)代产生多种突变类型:3株纯合突变、18株杂合突变和4株未发生编辑的植株。此外,T_(0)代杂合突变ospao4-8的颖壳颜色由紫色变为深灰色,且ospao4突变体中过氧化氢酶(Catalase,CAT)活性有所升高,推测OsPAO4可能参与水稻的基础免疫过程。【结论】创制了多种类型ospao4突变体材料,初步确定OsPAO4可能参与水稻免疫过程的调控,为进一步深入揭示OsPAO4基因的具体生物学功能和分子调控机制奠定了重要基础。 展开更多
关键词 水稻 Ospao4 CRISPR/Cas9 基因编辑 多胺氧化酶
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The Improvement of Soybean Salt Tolerance by Overexpressed GmPAO1 被引量:1
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作者 Yeyao Du Yang Song +3 位作者 Ye Zhang Sujie Fan Hanzhu Zhang Piwu Wang 《Phyton-International Journal of Experimental Botany》 SCIE 2023年第4期1109-1124,共16页
Polyamines play an important regulatory role during plant growth and development and adversity stress,and polyamine oxidase(PAO)is involved in polyamine catabolism.In this study,an up-regulated polyamine oxidase gene ... Polyamines play an important regulatory role during plant growth and development and adversity stress,and polyamine oxidase(PAO)is involved in polyamine catabolism.In this study,an up-regulated polyamine oxidase gene GmPAO1 was obtained by transcriptome sequencing analysis and screening at soybean seedling stages.Also,its expression pattern and function were analyzed.The identification results of transgenic GmPAO1 soybean positive lines showed that the relative expression level of GmPAO1 in the overexpressed lines was increased under salt stress.With increasing stress concentration,the seed germination rate decreased.However,the seed germination rate of the overexpressed lines was significantly higher than that of the control lines,and the phenotypic character of the root systems was also better than that of the control lines.The measurement of superoxide dismutase(SOD)and peroxidase(POD)activities and malondialdehyde and hydrogen peroxide contents revealed that the overexpressed soybean lines significantly increased the SOD and POD activities,significantly reducing the malondialdehyde content.Although the hydrogen peroxide content in the transformed plants gradually increased,the hydrogen peroxide content in the overexpression lines was still lower than that in the gene editing lines.Based on this,it was preliminarily judged that GmPAO1 can improve soybean salt tolerance. 展开更多
关键词 SOYBEAN polyamine oxidase salt tolerance overexpressed
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大鼠局灶性脑缺血再灌注后PAO活性和多胺含量变化及意义 被引量:7
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作者 刘宏伟 姜冰 +2 位作者 万新 吴光勇 刘运生 《中南大学学报(医学版)》 CAS CSCD 北大核心 2005年第4期452-455,共4页
目的:检测大鼠局灶性脑缺血再灌注不同时相脑皮质及皮质下多胺氧化酶(PAO)活性和多胺含量,探讨局灶性脑缺血再灌注后PAO活性和多胺含量变化的时相规律及意义。方法:采用改良的Longa线栓法,建立大鼠局灶性脑缺血2h后再灌注2,4,8,24h动物... 目的:检测大鼠局灶性脑缺血再灌注不同时相脑皮质及皮质下多胺氧化酶(PAO)活性和多胺含量,探讨局灶性脑缺血再灌注后PAO活性和多胺含量变化的时相规律及意义。方法:采用改良的Longa线栓法,建立大鼠局灶性脑缺血2h后再灌注2,4,8,24h动物模型,用高香草酸辣根过氧化物酶荧光法测定脑缺血区皮质和皮质下不同时相PAO活性变化,用高效液相色谱法测定脑缺血区皮质和皮质下不同时相多胺的含量。结果:实验组大鼠脑缺血区皮质和皮质下PAO活性在再灌注8h后开始升高(P<0.01),其高峰出现在再灌注24h后(P<0.01);实验组腐胺含量于再灌注4h后即开始逐渐升高(P<0.05),高峰出现在再灌注24h后(P<0.05);再灌注8,24h实验组精脒、精胺含量较对照组明显下降(P<0.05)。结论:脑缺血再灌注后PAO活性明显增高,PAO活性的增高促使腐胺高峰的形成,对脑缺血损伤有促进作用。 展开更多
关键词 多胺氧化酶 多胺 脑缺血 再灌注
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苹果多胺氧化酶(PAO)基因家族鉴定与表达分析 被引量:4
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作者 秦玲 张鑫 +5 位作者 荣春笑 莫传园 范露 闫婕 孟莹 张满让 《浙江农业学报》 CSCD 北大核心 2020年第2期262-273,共12页
从金冠基因组数据库中,利用BLAST网站在苹果中鉴定得到8个编码多胺氧化酶(polyamine oxidase,PAO)的家族基因(命名为MdPAO1~8),对其进行理化性质、系统进化、蛋白结构、基因结构和启动子元件分析。结果表明,MdPAO蛋白的分子量为54.053~6... 从金冠基因组数据库中,利用BLAST网站在苹果中鉴定得到8个编码多胺氧化酶(polyamine oxidase,PAO)的家族基因(命名为MdPAO1~8),对其进行理化性质、系统进化、蛋白结构、基因结构和启动子元件分析。结果表明,MdPAO蛋白的分子量为54.053~64.813 ku,等电点介于5.16~6.02。根据进化树分析,MdPAO被分为3个亚家族(Ⅰ、Ⅲ、Ⅳ),且同一亚家族的成员具有相似的蛋白结构、基因结构和蛋白保守基序分布。利用GEO数据库检测出8个MdPAO在不同组织器官中的表达具有明显差异。以苹果主栽品种长富2号为材料,利用实时荧光定量PCR检测分析得出8个MdPAO在不同组织中的表达情况,结果表明,MdPAO3、MdPAO4、MdPAO5/6和MdPAO8在花中有较高的表达水平;MdPAO1/2和MdPAO7在茎和果中有较高的表达水平。外源亚精胺处理后发现,除MdPAO3以外,其余MdPAO的转录水平显著提高,表明MdPAO在PA代谢途径中具有重要作用。 展开更多
关键词 苹果 多胺氧化酶(pao)基因家族 生物信息学 基因表达
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多胺氧化酶(PAO)调控光诱导玉米中胚轴伸长的生理机制 被引量:6
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作者 张同祯 李永生 +7 位作者 李玥 姚海梅 赵娟 王婵 赵阳 王汉宁 方永丰 胡晋 《作物学报》 CAS CSCD 北大核心 2016年第5期734-742,共9页
以长中胚轴玉米自交系PH4CV为材料,在黑暗和光照两种处理条件下研究了玉米中胚轴长度与多胺氧化酶(polyamine oxidase,PAO)活性、H_2O_2含量、过氧化物酶(peroxidase,POD)活性及木质素含量的关系。通过添加5 mmol L^(–1) PAO抑制剂2-... 以长中胚轴玉米自交系PH4CV为材料,在黑暗和光照两种处理条件下研究了玉米中胚轴长度与多胺氧化酶(polyamine oxidase,PAO)活性、H_2O_2含量、过氧化物酶(peroxidase,POD)活性及木质素含量的关系。通过添加5 mmol L^(–1) PAO抑制剂2-羟乙基肼(2-hydroxyethylhydrazine,2-HEH)和5 mmol L^(–1) H_2O_2清除剂N,N’-二甲基硫脲(N,N’-Dimethylthiourea,DMTU)及组织化学染色,研究了影响中胚轴伸长的H_2O_2来源及其积累部位。采用实时荧光定量PCR(q RT-PCR)方法,探究了光对Zm PAO基因表达的影响。结果表明,光照处理显著抑制了玉米中胚轴的伸长,同时显著增加该部位的PAO活性、H_2O_2含量、POD活性及木质素含量。相关性分析表明,玉米中胚轴长度与PAO活性、H_2O_2含量和木质素含量呈极显著负相关,与POD活性呈显著负相关;PAO活性与H_2O_2含量、POD活性和木质素含量均呈正相关。外源PAO抑制剂和H_2O_2清除剂处理试验,玉米中胚轴表皮纵切面细胞长度显微观察及中胚轴H_2O_2组织化学染色表明,PAO氧化分解多胺(polyamines,PAs)产生的H_2O_2参与了中胚轴细胞伸长的生理调控,从而抑制了中胚轴的伸长。表达分析表明,Zm PAO基因在黑暗环境下的表达量相对稳定,光刺激0.5 h后表达量迅速升高,3 h后达到最大值,随后逐渐下降,10 h后趋于稳定。本研究表明,PAO在接受光刺激后活性升高,氧化分解PAs产生H_2O_2,从而诱导POD氧化胞壁的单木质醇并聚合为木质素,使细胞壁硬化,造成细胞伸长受阻。研究结果为进一步探讨PAO活性调控光诱导玉米中胚轴伸长的生理机制和阐明玉米中胚轴对光逆境的响应机理提供了理论依据。 展开更多
关键词 玉米 光照 中胚轴伸长 多胺氧化酶 表达分析
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棉花多胺氧化酶基因(GhPAO3)的克隆及表达分析 被引量:1
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作者 成新琪 朱雪峰 +3 位作者 程文翰 贺雪 孙杰 朱华国 《西北农业学报》 CAS CSCD 北大核心 2016年第10期1472-1478,共7页
根据拟南芥AtPAO5的cDNA序列在雷蒙德氏棉数据库中Blastn比对获得同源PAO基因,设计特异性引物并利用RT-PCR技术克隆获得1个陆地棉PAO基因,命名为GhPAO3。对GhPAO3的cDNA序列进行生物信息学分析,结果显示:该基因cDNA全长为1 736bp,开放... 根据拟南芥AtPAO5的cDNA序列在雷蒙德氏棉数据库中Blastn比对获得同源PAO基因,设计特异性引物并利用RT-PCR技术克隆获得1个陆地棉PAO基因,命名为GhPAO3。对GhPAO3的cDNA序列进行生物信息学分析,结果显示:该基因cDNA全长为1 736bp,开放阅读框为1 530bp,编码506个氨基酸,预测蛋白大小为56.88ku,等电点为5.77,编码蛋白为亲水性蛋白。Real-time PCR结果表明,GhPAO3在不同组织中的表达情况不同,表达量依次是叶>茎>根>花瓣>子房>雄蕊>种子>雌蕊。不同诱导处理下GhPAO3基因表达量也存在差异,其中低温处理和ABA处理后该基因在6h时表达量达到最大值,PEG处理后在24h时表达量达到最大值,NaCl则在处理后3h时表达量最高。表明GhPAO3基因受非生物胁迫诱导表达,可能以不同的角色参与棉花抗逆过程,结果为进一步研究该基因的功能奠定基础。 展开更多
关键词 棉花 克隆 多胺氧化酶 非胁迫处理
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阿托伐他汀钙对急性脑梗死患者血清ET-1、PAO、H-FABP、VEGF、S100β、炎症因子及神经功能的影响 被引量:23
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作者 刘伟 邵胜敏 +1 位作者 李晟 肖建新 《中国生化药物杂志》 CAS 2015年第3期134-137,共4页
目的探讨阿托伐他汀钙对急性脑梗死患者血清内皮素(endothelin-1,ET-1)、多胺氧化酶(polyamine oxidase,PAO)、心型脂肪酸结合蛋白(heart-type fatty acid binding protein,H-FABP)、血管内皮生长因子(vascular endothelial growth fact... 目的探讨阿托伐他汀钙对急性脑梗死患者血清内皮素(endothelin-1,ET-1)、多胺氧化酶(polyamine oxidase,PAO)、心型脂肪酸结合蛋白(heart-type fatty acid binding protein,H-FABP)、血管内皮生长因子(vascular endothelial growth factor,VEGF)、S100β、炎症因子及神经功能的影响。方法根据随机数字表法将本组纳入的113例患者随机分为观察组(n=61)和对照组(n=52)。对照组采用常规方法治疗,观察组在对照组基础上结合阿托伐他汀钙治疗。2组疗程均2周。对比分析2组治疗前、治疗7d和14d血清ET-1、PAO、H-FABP、VEGF、S100β、炎症因子水平及NIHSS评分。结果观察组血清ET-1、PAO、H-FABP水平治疗7 d、治疗14 d后显著低于对照组(P<0.05);观察组VEGF水平治疗7、14 d后显著高于对照组(P<0.05);观察组S100β水平治疗7、14 d后显著低于对照组(P<0.05);观察组hs-CRP、IL-8、TNF-α水平治疗7、14 d后显著低于对照组(P<0.05);观察组NIHSS评分治疗后显著低于对照组(P<0.05)。结论阿托伐他汀钙可通过降低血清ET-1、PAO、H-FABP、S100β水平,改善患者脑损伤及神经功能,通过促进VEGF高表达,促进血管新生,通过降低患者血清炎性因子水平,减轻炎症反应和缺血再灌注损伤,促进患者神经功能恢复。 展开更多
关键词 阿托伐他汀钙 急性脑梗死 内皮素 多胺氧化酶 心型脂肪酸结合蛋白 血管内皮生长因子 slooβ 炎症因子 神经 功能
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冷冻大熊猫初乳XO和PAO活性测定及其与牛、羊乳的比较
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作者 付尚辰 雷颖虎 +3 位作者 赵鹏鹏 张丹辉 沈洁娜 刘永峰 《西北农业学报》 CAS CSCD 北大核心 2022年第10期1258-1265,共8页
黄嘌呤氧化酶(XO)和多胺氧化酶(PAO)是乳汁中两类重要的氧化还原酶,与新生幼崽免疫系统的形成密切相关。采用牛、羊鲜乳及其冷冻乳建立XO和PAO活性的AmplexRed荧光检测方法,对冷冻大熊猫初乳中XO和PAO活性进行测定,并与新鲜和冷冻牛、... 黄嘌呤氧化酶(XO)和多胺氧化酶(PAO)是乳汁中两类重要的氧化还原酶,与新生幼崽免疫系统的形成密切相关。采用牛、羊鲜乳及其冷冻乳建立XO和PAO活性的AmplexRed荧光检测方法,对冷冻大熊猫初乳中XO和PAO活性进行测定,并与新鲜和冷冻牛、羊乳中这两种酶的活性进行比较。结果表明,3种乳中XO活性高于PAO活性;XO活性总体趋势为牛乳>大熊猫初乳>羊乳;PAO活性总体趋势为牛乳>羊乳>大熊猫初乳。大熊猫初乳通过XO、PAO和乳过氧化物酶LPO系统的协同抗菌机制在新生幼崽肠道微生物和先天免疫系统形成过程中发挥作用且以XO为主。 展开更多
关键词 大熊猫 冷冻乳 黄嘌呤氧化酶(XO) 多胺氧化酶(pao)
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异源表达棉花GhPAO3基因对拟南芥种子萌发的影响
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作者 成新琪 庞芳芹 +3 位作者 汤欣欣 乌兰 胡孝明 朱华国 《种子》 北大核心 2022年第6期7-13,17,共8页
本研究以野生型WT(Wild Type)和转GhPAO3基因拟南芥种子为材料,研究NaCl和外源多胺及多胺抑制剂对WT和转基因拟南芥种子萌发的影响。结果表明,随着NaCl浓度的提高,对拟南芥种子萌发表现出较明显的抑制作用,150 mmol/L、200 mmol/L NaCl... 本研究以野生型WT(Wild Type)和转GhPAO3基因拟南芥种子为材料,研究NaCl和外源多胺及多胺抑制剂对WT和转基因拟南芥种子萌发的影响。结果表明,随着NaCl浓度的提高,对拟南芥种子萌发表现出较明显的抑制作用,150 mmol/L、200 mmol/L NaCl处理下造成种子萌发分别推迟1 d和2 d,且转基因拟南芥发芽率低于野生型,表明GhPAO3基因过表达可能对NaCl处理下拟南芥种子的萌发有抑制作用。此外,在100 mmol/L NaCl处理条件下,WT在第3天出现子叶变绿,而转基因植株在第4天出现子叶变绿,转基因拟南芥子叶变绿的数量低于WT;在此基础上添加外源多胺显示,添加Put时,与对照(ck)相比,WT和转基因株系的子叶变绿的数量均有所提高,且转基因株系子叶变绿提前,而添加Spd和Spm时,WT和转基因株系子叶变绿均推迟1 d。所有处理下转基因拟南芥的子叶变绿的数量低于WT,推测NaCl处理和过表达株系产生的H_(2)O_(2)抑制拟南芥的子叶变绿。外源多胺和多胺抑制剂处理结果显示,外源多胺和PAO抑制剂(1,8-DO)能够促进拟南芥子叶变绿,且转基因株系中H_(2)O_(2)含量高于WT;添加多胺抑制剂(D-Arg)时,转基因株系中H_(2)O_(2)含量低于WT。本研究揭示了GhPAO3基因对种子萌发的影响,为进一步了解多胺氧化酶在植物生长发育中的作用提供参考。 展开更多
关键词 多胺 多胺氧化酶 NACL胁迫 过氧化氢 种子萌发
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猕猴桃多胺氧化酶基因家族的鉴定及表达分析
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作者 谢羽恬 张新业 +5 位作者 苏彦苹 吴双 张泽银 褚卓栋 冯雪 孙艳香 《河南农业科学》 北大核心 2023年第10期109-119,共11页
通过鉴定猕猴桃多胺氧化酶(PAO)基因家族成员,分析其在猕猴桃果实生长发育、成熟及储藏过程中的表达变化,发掘与猕猴桃果实成熟、软化相关的重要候选基因,为调控猕猴桃鲜果的发育及采后保鲜提供参考。以拟南芥AtPAO、水稻OsPAO蛋白序列... 通过鉴定猕猴桃多胺氧化酶(PAO)基因家族成员,分析其在猕猴桃果实生长发育、成熟及储藏过程中的表达变化,发掘与猕猴桃果实成熟、软化相关的重要候选基因,为调控猕猴桃鲜果的发育及采后保鲜提供参考。以拟南芥AtPAO、水稻OsPAO蛋白序列作为参考序列,利用BLAST程序分别从中华猕猴桃、毛花猕猴桃、软枣猕猴桃基因组或转录组中筛选和鉴定PAO家族成员;利用Compute pI/Mw分析蛋白质分子质量、理论等电点,利用SignalP-4.1、TMHMM-2.0预测信号肽和跨膜区,利用WoLF PSORT进行亚细胞定位预测;利用MEGA 6构建系统发育进化树,利用MEME进行保守基序分析,利用TBtools分析PAO基因的共线性关系;基于转录组数据和荧光定量PCR技术,分析PAO基因的组织表达情况及其在猕猴桃果实生长发育、成熟及储藏过程中的表达变化。结果表明,中华猕猴桃、毛花猕猴桃、软枣猕猴桃中各存在4、4、5个PAO基因,分别是AcPAO1—4、AePAO1—4、AaPAO1—5。AcPAO、AePAO位于中华猕猴桃、毛花猕猴桃的8条染色体上,基因长度为1722~9837 bp。AcPAO、AePAO、AaPAO编码的氨基酸数目为420~496个,分子质量为45.74~55.92 ku,等电点为5.29~5.79,均不含有信号肽和跨膜区;AcPAO、AaPAO主要定位在过氧化物酶体,而AePAO分布范围较广;依据系统进化关系,13个猕猴桃PAO蛋白分属于3个类群,同一类群含有相似的motif分布及保守结构域;AcPAO、AePAO间存在4对共线性基因,它们在进化中经历了纯化选择。AcPAO3的表达量随猕猴桃果实成熟、软化呈现先升高后降低趋势,且能够响应不同储藏温度;AaPAO为组成型表达,多数成员的表达量在果实储藏过程中亦呈现先升高后降低的趋势。 展开更多
关键词 猕猴桃 多胺氧化酶(pao) 基因家族 生物信息学分析 表达分析
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Targeted mutagenesis of POLYAMINE OXIDASE 5 that negatively regulates mesocotyl elongation enables the generation of direct-seeding rice with improved grain yield 被引量:17
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作者 Yusong Lv Gaoneng Shao +6 位作者 Guiai Jiao Zhonghua Sheng Lihong Xie Shikai Hu Shaoqing Tang Xiangjin Wei Peisong Hu 《Molecular Plant》 SCIE CAS CSCD 2021年第2期344-351,共8页
Under conditions of labor or resource scarcity,direct seeding,rather than transplantation,is the preferred mode of rice(Oryza sativa)cultivation.This approach requires varieties that exhibit uniform seedling emergence... Under conditions of labor or resource scarcity,direct seeding,rather than transplantation,is the preferred mode of rice(Oryza sativa)cultivation.This approach requires varieties that exhibit uniform seedling emergence.Mesocotyl elongation(ME),the main driver of rapid emergence of rice seedlings from soil,is enhanced by darkness and inhibited by light.Plant polyamine oxidases(PAOs)oxidize polyamines(PAs)and release H2O2,Here,we established that OsPAO5 expression in rice seedlings is increased in the presence of light and inhibited by darkness.To determine its role in ME,we created OsPAO5 mutants using CRISPR/Cas9.Compared with the wild type,pao5 mutants had longer mesocotyls,released less H2O2,and synthesized more ethylene.The mutant seedlings emerged at a higher and more uniform rate,indicating their potential for use in direct seeding.Nucleotide polymorphism analysis revealed that an SNP(PAO5-578G/A)located 578 bp upstream of the OsPAO5 start codon alters its expression,and was selected during rice mesocotyl domestication.The PAO5-578G genotype conferring a long mesocotyl mainly exists in wild rice,most Aus accessions,and some Geng(Japonica)accessions.Intriguingly,knocking out OsPAO5 can remarkably increase the grain weight,grain number,and yield potential.In summary,we developed a novel strategy to obtain elite rice with higher emergence vigor and yield potential,which can be conveniently and widely used to breed varieties of direct-seeding rice. 展开更多
关键词 Oryza sativa direct seeding mesocotyl elongation grain yield polyamine oxidase 5
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COPPER AMINE OXIDASE1 (CuAO1) of Arabidopsis thaliana Contributes to Abscisic Acid- and Polyamine-lnduced Nitric Oxide Biosynthesis and Abscisic Acid Signal Transduction 被引量:13
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作者 Rinukshi Wimalasekera Corina Villar +1 位作者 Tahmina Begum Giinther F. E. Scherer 《Molecular Plant》 SCIE CAS CSCD 2011年第4期663-678,共16页
Polyamines (PA), polyamine oxidases, copper amine oxidases, and nitric oxide (NO) play important roles in physiology and stress responses in plants. NO biosynthesis as a result of catabolism of PA by polyamine oxi... Polyamines (PA), polyamine oxidases, copper amine oxidases, and nitric oxide (NO) play important roles in physiology and stress responses in plants. NO biosynthesis as a result of catabolism of PA by polyamine oxidases and copper amine oxidases may explain in part PA-mediated responses. Involvement of a copper amine oxidase gene, COPPER AMINE OXIDASEI (CuAO1), of Arabidopsis was tested for its role in stress responses using the knockouts cuao1-1 and cuaol-2. PA-induced and ABA-induced NO production investigated bY fluorometry and fluorescence microscopy showed that the cuaol-1 and cuaol-2 are impaired in NO production, suggesting a function of CuAO1 in PA and ABA-mediated NO production. Furthermore, we found a PA-dependent increase in protein S-nitrosylation. The addition of PA and ABA also resulted in H2O2 increases, cuao1-1 and cuao1-2 showed less sensitivity to exogenous ABA supplementation during germination, seedling establishment, and root growth inhibition as compared to wild-type. In response to ABA treatment, expression levels of the stress-responsive genes RD29A and ADH1 were significantly lower in the knockouts. These observations characterize cuao1-1 and cuao1-2 as ABA-insensitive mutants. Taken together, our findings extend the ABA signal transduction network to include CuAO1 as one potential contributor to enhanced NO production by ABA. 展开更多
关键词 COPPER AMINE oxidasE1 polyamines nitric oxide abscisic acid signal transduction germination.
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Involvement of Polyamine Oxidase in Abscisic Acidinduced Cytosolic Antioxidant Defense in Leaves of Maize 被引量:3
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作者 Beibei Xue Aying Zhang Mingyi Jiang 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2009年第3期225-234,共10页
Using pharmacological and biochemical approaches, the role of maize polyamine oxidase (MPAO) in abscisic acid (ABA)- induced antioxidant defense in leaves of maize (Zea mays L.) plants was investigated. Exogenou... Using pharmacological and biochemical approaches, the role of maize polyamine oxidase (MPAO) in abscisic acid (ABA)- induced antioxidant defense in leaves of maize (Zea mays L.) plants was investigated. Exogenous ABA treatment enhanced the expression of the MPAO gene and the activities of apoplastic MPAO. Pretreatment with two different inhibitors for apoplastic MPAO partly reduced hydrogen peroxide (H202) accumulation induced by ABA and blocked the ABA-induced expression of the antioxidant genes superoxide dismutase 4 and cytosolic ascorbate peroxidase and the activities of the cytosolic antioxidant enzymes. Treatment with spermidine, the optimum substrate of MPAO, also induced the expression and the activities of the antioxidant enzymes, and the upregulation of the antioxidant enzymes was prevented by two inhibitors of MPAO and two scavengers of H202. These results suggest that MPAO contributes to ABA-induced cytosolic antioxidant defense through H202, a Spd catabolic product. 展开更多
关键词 abscisic acid cytosolic antioxidant defense hydrogen peroxide polyamine oxidase Zea mays.
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Polyamine oxidase 3 is involved in salt tolerance at the germination stage in rice 被引量:4
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作者 Guangyu Liu Wanxia Jiang +5 位作者 Lei Tian Yongcai Fu Lubin Tan Zuofeng Zhu Chuanqing Sun Fengxia Liu 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2022年第5期458-468,共11页
Soil salinity inhibits seed germination and reduces seedling survival rate,resulting in significant yield reductions in crops.Here,we report the identification of a polyamine oxidase,OsPAO3,conferring salt tolerance a... Soil salinity inhibits seed germination and reduces seedling survival rate,resulting in significant yield reductions in crops.Here,we report the identification of a polyamine oxidase,OsPAO3,conferring salt tolerance at the germination stage in rice(Oryza sativa L.),through map-based cloning approach.OsPAO3 is up-regulated under salt stress at the germination stage and highly expressed in various organs.Overexpression of OsPAO3 increases activity of polyamine oxidases,enhancing the polyamine content in seed coleoptiles.Increased polyamine may lead to the enhance of the activity of ROS-scavenging enzymes to eliminate over-accumulated H;O;and to reduce Na;content in seed coleoptiles to maintain ion homeostasis and weaken Na;damage.These changes resulted in stronger salt tolerance at the germination stage in rice.Our findings not only provide a unique gene for breeding new salt-tolerant rice cultivars but also help to elucidate the mechanism of salt tolerance in rice. 展开更多
关键词 polyamine oxidase Ospao3 Salt tolerance Germination stage RICE
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Highly expressed Nl-acetylpolyamine oxidase detoxifies polyamine analogue N^1-cyclopropylmethyl-N^11-ethylnorspermine in human lung cancer cell line A549 被引量:2
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作者 HAN Yu REN Yu-san CAO Chun-yu REN Dong-ming ZHOU Yong-qin WANG Yan-lin 《Chinese Medical Journal》 SCIE CAS CSCD 2009年第12期1394-1399,共6页
Background The critical roles of polyamines in cell growth and differentiation have made polyamJne metabolic pathway a promising target for antitumor therapy. Recent studies have demonstrated in vitro that some antitu... Background The critical roles of polyamines in cell growth and differentiation have made polyamJne metabolic pathway a promising target for antitumor therapy. Recent studies have demonstrated in vitro that some antitumor polyamine analogues could be used as substrates and oxidized by purified recombinant human N^1-acetylpolyamine oxidase (APAO, an enzyme that catabolizes natural poiyamines), indicating a potential role of APAO in determining the sensitivity of cancer cells to specific antitumor analogues. This study evaluated, in vivo, the effect of APAO on cytotoxicity of antitumor polyamine analogue, N^1-cyclopropylmethyl-N^11-ethylnorspermine (CPENS) and its mechanism when highly expressed in human lung cancer line A549. Methods A clone with high expression of APAO was obtained by transfecting A549 lung cancer ceil line with pcDNA3.1/APAO plasmid and selecting with quantitative realtime PCR and APAO activity assay. Cell proliferation was determined by MTT method and apoptosis related events were evaluated by DNA fragmentation, sub-G1/flow cytometric assay, western blotting (for cytochrome C and Bax) and colorimetric assay (for casapse-3 activity). Results A clone highly expressing APAO was obtained. High expression of APAO in A549 cells inhibited accumulation of CPENS, decreased their sensitivity to the toxicity of CPENS and prevented CPENS induced apoptosis. Conclusion These results indicate a new drug resisting, mechanism in the tumor cells. High expression of APAO can greatly decrease the sensitivity of tumor cells to the specific polyamine analogues by detoxifying those analogues and prevent analogue induced apoptosis. 展开更多
关键词 N^1-acetylpolyamine oxidase lung cancer cell polyamine analogue drug resistance
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Thymol ameliorates ammonium toxicity via repressing polyamine oxidase-derived hydrogen peroxide and modulating ammonium transporters in rice root
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作者 Kai Guo Guangchi An +6 位作者 Ning Wang Bingdong Pang Zhiqi Shi Hongwu Bai Li Zhang Jian Chen Weimin Xu 《Food Production, Processing and Nutrition》 2021年第1期106-114,共9页
Background:Ammonium is an indispensable nutrient for crop growth,but anoxic conditions or inappropriate fertilizer usage result in the increase in ammonium content in soil.Excessive ammonium causes phytotoxicity.Thymo... Background:Ammonium is an indispensable nutrient for crop growth,but anoxic conditions or inappropriate fertilizer usage result in the increase in ammonium content in soil.Excessive ammonium causes phytotoxicity.Thymol is a kind of natural phenolic compound with anti-microbial properties.However,little is known about the role of thymol in modulating plant physiology.Here we find the novel role of thymol in protecting rice from ammonium toxicity.Results:Thymol remarkably rescued rice seedlings growth from ammonium stress,which may resulted from the attenuation of reactive oxygen species(ROS)accumulation,oxidative injury,and cell death in both shoots and roots.Polyamine oxidase(PAO)metabolizes polyamines to produce ROS in plants in response to stress conditions.Thymol blocked ammonium-induced upregulation of a set of rice PAOs,which contributed to the decrease in ROS content.In rice seedlings upon ammonium stress,thymol downregulate the expression of ammonium transporters(AMT1;1 and AMT1;2);thymol upregulated the expression of calcineurin B-like interacting protein kinase 23(CIPK23)and calcineurin B-like binding protein 1(CBL1),two negative regulators of AMTs.This may help rice avoid ammonium overload in excessive ammonium environment.Correlation analysis indicated that PAOs,AMTs,and CBL1 were the targets of thymol in the detoxification of excessive ammonium.Conclusion:Thymol facilitates rice tolerance against ammonium toxicity by decreasing PAO-derived ROS and modulating ammonium transporters.Such findings may be applicable in the modulation of nutrient acquisition during crop production. 展开更多
关键词 Ammonium toxicity polyamine oxidase Reactive oxygen species RICE THYMOL
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氯化钠胁迫下野生和栽培大豆幼苗体内的多胺水平变化 被引量:36
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作者 於丙军 吉晓佳 +1 位作者 刘俊 刘友良 《应用生态学报》 CAS CSCD 2004年第7期1223-1226,共4页
以通用的较耐盐的栽培大豆Lee6 8品种和对盐敏感的野生大豆N2 32 32种群为参照 ,研究了盐胁迫下耐盐野生大豆BB5 2种群幼苗体内多胺 (PAs)组分、含量及多胺氧化酶 (PAO)活性的变化 .结果表明 ,盐胁迫下BB5 2幼苗根PAs中Put和Spm含量下降... 以通用的较耐盐的栽培大豆Lee6 8品种和对盐敏感的野生大豆N2 32 32种群为参照 ,研究了盐胁迫下耐盐野生大豆BB5 2种群幼苗体内多胺 (PAs)组分、含量及多胺氧化酶 (PAO)活性的变化 .结果表明 ,盐胁迫下BB5 2幼苗根PAs中Put和Spm含量下降较Lee6 8和N2 32 32显著 ,但Spd含量下降较少 .BB5 2叶片PAs中Put含量下降 ,Spd上升 .(Spd +Spm) /Put值增加和Put/PAs值降低幅度与耐盐性呈正相关趋势 .盐胁迫下 ,各材料根和叶中PAO活性上升 ,N2 32 32上升最明显 .探讨了多胺水平与BB5 2耐盐性的关系 . 展开更多
关键词 野生大豆 栽培大豆 盐胁迫 多胺(PAs) 多胺氧化酶(pao)活性 耐盐性
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