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国家自然科学基金(30970228)

作品数:7 被引量:45H指数:5
相关作者:刘新车永梅侯丽霞侯智慧王兰香更多>>
相关机构:青岛农业大学更多>>
发文基金:国家自然科学基金山东省自然科学基金国家重点实验室开放基金更多>>
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H_2S位于SOS上游参与盐胁迫诱导的拟南芥气孔关闭被引量:3
2012年
以拟南芥野生型、SOS突变体(Atsos1、Atsos2和Atsos3)、H2S合成相关酶L-/D-半胱氨酸脱巯基酶(L-/D-CDes)基因缺失突变体(Atl-cdes和Atd-cdes)和过表达株系(OEL-CDes和OED-CDes)为材料研究了H2S和SOS信号转导途径在盐胁迫诱导拟南芥气孔关闭中的作用及其相互关系。结果表明,盐胁迫能够引起拟南芥叶片H2S含量、L-/D-CDes活性及其基因表达量显著升高,诱导野生型拟南芥和OEL-CDes和OED-CDes叶片气孔关闭,但对Atl-cdes和Atd-cdes气孔开度无显著影响;而H2S清除剂次牛磺酸(hypotaurine,HT)可减弱盐胁迫诱导的拟南芥气孔关闭的作用,表明H2S参与盐胁迫诱导的拟南芥气孔关闭过程。外源H2S诱导野生型拟南芥气孔关闭,但对SOS突变体气孔开度无显著影响;同时盐胁迫下Atsos1、Atsos2和At-sos3亦表现出H2S含量及L-/D-CDes活性显著升高,且与野生型相比,盐胁迫对Atl-cdes和Atd-cdes叶片AtSOS基因表达量无显著影响。表明盐胁迫诱导气孔关闭过程中H2S位于SOS上游。
车永梅邹雪王兰香张丹丹刘新
关键词:H2SSOS盐胁迫气孔关闭
G蛋白位于H_2O_2上游参与H_2S诱导的拟南芥气孔关闭过程被引量:5
2013年
硫化氢(H2S)可诱导拟南芥气孔关闭。本文以拟南芥野生型及其G蛋白α亚基缺失突变体(Atgpa1-3、Atgpa1-4)和β亚基缺失突变体(Atagb1-1、Atagb1-2)为材料,研究了G蛋白在H2S诱导拟南芥气孔关闭中的作用及其与H2O2的关系。结果表明,H2S可诱导野生型拟南芥气孔关闭及G蛋白α亚基(GPA)和β亚基(AGB)基因表达量增加,但对Atgpa1-3、Atgpa1-4、Atagb1-1和Atagb1-2叶片气孔运动无显著影响;G蛋白激活剂霍乱毒素(CTX)增强H2S诱导拟南芥气孔关闭的作用,而其抑制剂百日咳毒素(PTX)能够阻断H2S的诱导作用,表明G蛋白参与H2S诱导的拟南芥气孔关闭过程。同时,H2S诱导野生型拟南芥叶片及气孔保卫细胞H2O2含量升高,但对Atgpa1-3、Atgpa1-4、Atagb1-1和Atagb1-2无显著作用。CTX促进拟南芥叶片及气孔保卫细胞中H2O2积累,而PTX抑制H2S引起的拟南芥叶片及气孔保卫细胞中H2O2含量的升高。由此说明,G蛋白位于HO上游参与HS诱导的拟南芥气孔关闭过程。
张丹丹车永梅侯丽霞赵方贵刘新
关键词:G蛋白硫化氢过氧化氢气孔关闭
Regulatory Function of Polyamine Oxidase-Generated Hydrogen Peroxide in Ethylene-Induced Stomatal Closure in Arabidopsis thaliana被引量:7
2013年
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.
HOU Zhi-huiLIU Guo-huaHOU Li-xiaWANG Lan-xiangLIU Xin
关键词:转基因拟南芥乙烯处理多胺氧化酶气孔关闭
Hydrogen Sulfide Regulates Ethylene-induced Stomatal Closure in Arabidopsis thaliana被引量:13
2013年
Hydrogen sulfide (H2S) is a newly-discovered signaling molecule in plants and has caused increasing attention in recent years, but its function in stomatal movement is unclear. In plants, H2S is synthesized via cysteine degradation catalyzed by D-/L-cysteine desulfhydrase (D-/L-CDes). AtD-/L-CDes::GUS transgenic Arabidopsis thaliana (L.) Heynh. plants were generated and used to investigate gene expression patterns, and results showed that AtD-/L-CDes can be expressed in guard cells. We also determined the subcellular localization of AtD-/L-CDes using transgenic plants of AtD-/L-CDes::GFP, and the results showed that AtD-CDes and AtL-CDes are located in the chloroplast and in the cytoplasm, respectively. The transcript levels of AtD-CDes and AtL-CDes were affected by the chemicals that cause stomatal closure. Among these factors, ACC, a precursor of ethylene, has the most significant effect, which indicates that the H2S generated from D-/L-CDes may play an important role in ethylene-induced stomatal closure. Meanwhile, H2S synthetic inhibitors significantly inhibited ethylene-induced stomatal closure in Arabidopsis. Ethylene treatment caused an increase of H2S production and of AtD-/L-CDes activity in Arabidopsis leaves. AtD-/L-CDes over-expressing plants exhibited enhanced induction of stomatal closure compared to the wild-type after ethylene treatment; however, the effect was not observed in the Atd-cdes and Atl-cdes mutants. In conclusion, our results suggest that the D-/L-CDes-generated H2S is involved in the regulation of ethylene-induced stomatal closure in Arabidopsis thaliana.
Zhihui HouLanxiang WangJing LiuLixia HouXin Liu
H_2O_2介导H_2S诱导的拟南芥气孔关闭被引量:10
2011年
以拟南芥(Arabidopsis thaliana)为材料,研究了过氧化氢(H2O2)在硫化氢(H2S)调控气孔运动信号转导中的作用。结果表明,光下H2S的供体硫氢化钠(NaHS)能够诱导拟南芥气孔关闭;且能够显著提高叶片和保卫细胞胞质H2O2含量;H2O2的清除剂AsA和H2O2合成酶的抑制剂可不同程度地抑制NaHS诱导的拟南芥气孔关闭及叶片和保卫细胞胞质H2O2水平的升高;NaHS对AtrbohD、AtrbohF、Atpao2和Atpao4突变体气孔关闭、叶片和保卫细胞胞质H2O2水平升高的诱导作用要明显的小于野生型,但对AtPAO2和AtPAO4过表达株系叶片和保卫细胞H2O2水平的升高较野生型显著。据此推测,来源于NADPH氧化酶、细胞壁过氧化物酶和多胺氧化酶途径的H2O2参与H2S诱导的拟南芥气孔关闭。
叶青侯智慧刘菁刘瑞清刘新
关键词:硫化氢过氧化氢气孔关闭拟南芥
H_2S位于H_2O_2下游参与乙烯诱导拟南芥气孔关闭过程被引量:10
2012年
H2O2和H2S是植物体内重要的信号分子,二者均参与乙烯诱导的拟南芥气孔关闭过程。以拟南芥野生型及其突变体为材料研究了H2O2和H2S在乙烯诱导拟南芥气孔关闭过程中的相互关系。结果表明,乙烯能够诱导野生型拟南芥叶片H2S含量及L-/D-半胱氨酸脱巯基酶(L-/D-CDes)活性显著增加,促进气孔关闭,但对H2O2合成突变体AtrbohD、AtrbohF、Atpao2和Atpao4植株叶片无显著作用;乙烯亦可引起H2S合成突变体Atl-cdes和Atd-cdes气孔保卫细胞H2O2水平的显著增加,但对其气孔运动没有显著作用。此外,H2O2清除剂和合成抑制剂均能抑制乙烯诱导的拟南芥叶片H2S含量和L-/D-CDes活性的增加及气孔开度的减小;而H2S清除剂和合成抑制剂虽能抑制乙烯诱导的气孔关闭,却不能改变乙烯对拟南芥叶片气孔保卫细胞H2O2的作用效应。由此表明H2S位于H2O2下游介导乙烯诱导拟南芥气孔关闭过程。
侯智慧车永梅王兰香侯丽霞刘新
关键词:硫化氢过氧化氢乙烯气孔关闭
NO参与玉米幼苗对盐胁迫的应答被引量:4
2010年
以玉米幼苗为材料,研究盐胁迫下其內源NO含量、NR和NOS活性的变化;NOS专一性抑制剂L-NAME和NR非专一性抑制剂NaN3对玉米幼苗內源NO含量的影响;利用激光共聚焦显微技术观测盐胁迫下玉米幼苗根部NO含量的变化及其分布特点。结果表明,盐胁迫下玉米幼苗根尖和叶片中NO含量有猝发现象,NOS活性也随之显著提高,NR活性则显著降低;L-NAME或NaN3均可降低盐胁迫所引起的玉米幼苗NO水平的增加,L-NAME对NO含量的影响比NaN3更显著。推测,NO参与玉米幼苗对盐胁迫的应答,NOS途径是盐胁迫下玉米幼苗內源NO合成的主要途径。
侯丽霞车永梅赵方贵唐静刘新
关键词:玉米幼苗盐胁迫一氧化氮一氧化氮合酶
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