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超氧阴离子激活叶片损伤、乙烯和水杨酸的合成,以及暴露于臭氧环境下的烟草中臭氧诱导基因的表达。

O2- activates leaf injury, ethylene and salicylic acid synthesis, and the expression of O3-induced genes in O3-exposed tobacco.

作者信息

Ogawa Daisuke, Nakajima Nobuyoshi, Tamaoki Masanori, Aono Mitsuko, Kubo Akihiro, Kamada Hiroshi, Saji Hikaru

机构信息

Graduate School of Life and Environmental Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8572, Japan.

出版信息

Z Naturforsch C J Biosci. 2006 Nov-Dec;61(11-12):856-64. doi: 10.1515/znc-2006-11-1214.

Abstract

O3 is the major component of photochemical oxidants and gives rise to visible injuries on plant leaves. In O3-exposed plants, O2- is produced before the formation of the injury, but the role that O2- plays in plant response to 03 exposure is still unknown. To clarify its role, we observed the behavior of plants during O3 exposure after pretreatment with tiron, which is an O2- scavenger. When tiron-pretreated tobacco cv. Bel W3 was exposed to O3, leaf damage was attenuated. In O3-exposed tobacco, tiron inhibited increases in the levels of ethylene and salicylic acid, which promote leaf injury. Tiron pretreatment also suppressed increases in the expression of O3-induced genes. These results suggest that O2- is involved in many plant responses induced by O3 exposure. Bel B, a tobacco cultivar that is genetically related to Bel W3, is reported to be more resistant to O3 than Bel W3, but the reason for this difference is unclear. We investigated the differences between the responses of Bel B and tiron-pretreated Bel W3 to O3 exposure, and we discuss the reasons for the resistance to O3 by comparing the phenotype of Bel B with that of tiron-pretreated Bel W3.

摘要

臭氧(O3)是光化学氧化剂的主要成分,会导致植物叶片出现可见损伤。在暴露于臭氧的植物中,超氧阴离子(O2-)在损伤形成之前就已产生,但O2-在植物对臭氧暴露的反应中所起的作用仍不清楚。为了阐明其作用,我们在用铁试剂(一种O2-清除剂)预处理后,观察了植物在臭氧暴露期间的行为。当用铁试剂预处理的烟草品种Bel W3暴露于臭氧时,叶片损伤减轻。在暴露于臭氧的烟草中,铁试剂抑制了促进叶片损伤的乙烯和水杨酸水平的升高。铁试剂预处理还抑制了臭氧诱导基因表达的增加。这些结果表明,O2-参与了许多由臭氧暴露诱导的植物反应。据报道,与Bel W3有遗传关系的烟草品种Bel B比Bel W3对臭氧更具抗性,但这种差异的原因尚不清楚。我们研究了Bel B和经铁试剂预处理的Bel W3对臭氧暴露反应的差异,并通过比较Bel B与经铁试剂预处理的Bel W3的表型来讨论对臭氧抗性的原因。

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