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目前关于植物乙烯信号转导的认识:养分供应的影响。

Current understanding on ethylene signaling in plants: the influence of nutrient availability.

机构信息

Department of Botany, Aligarh Muslim University, Aligarh 202002, India.

出版信息

Plant Physiol Biochem. 2013 Dec;73:128-38. doi: 10.1016/j.plaphy.2013.09.011. Epub 2013 Sep 20.

Abstract

The plant hormone ethylene is involved in many physiological processes, including plant growth, development and senescence. Ethylene also plays a pivotal role in plant response or adaptation under biotic and abiotic stress conditions. In plants, ethylene production often enhances the tolerance to sub-optimal environmental conditions. This role is particularly important from both ecological and agricultural point of views. Among the abiotic stresses, the role of ethylene in plants under nutrient stress conditions has not been completely investigated. In literature few reports are available on the interaction among ethylene and macro- or micro-nutrients. However, the published works clearly demonstrated that several mineral nutrients largely affect ethylene biosynthesis and perception with a strong influence on plant physiology. The aim of this review is to revisit the old findings and recent advances of knowledge regarding the sub-optimal nutrient conditions on the effect of ethylene biosynthesis and perception in plants. The effect of deficiency or excess of the single macronutrient or micronutrient on the ethylene pathway and plant responses are reviewed and discussed. The synergistic and antagonist effect of the different mineral nutrients on ethylene plant responses is critically analyzed. Moreover, this review highlights the status of information between nutritional stresses and plant response, emphasizing the topics that should be further investigated.

摘要

植物激素乙烯参与许多生理过程,包括植物生长、发育和衰老。乙烯在植物对生物和非生物胁迫条件的响应或适应中也起着关键作用。在植物中,乙烯的产生通常会增强对环境条件不适的耐受性。从生态和农业的角度来看,这种作用尤为重要。在非生物胁迫中,乙烯在营养胁迫条件下对植物的作用尚未得到全面研究。在文献中,关于乙烯与大量或微量营养素之间的相互作用的报道很少。然而,已发表的研究工作清楚地表明,几种矿物质营养素极大地影响了乙烯的生物合成和感知,对植物生理学有很强的影响。本综述的目的是重新审视关于植物中乙烯生物合成和感知的亚最佳营养条件对其影响的旧发现和最新进展。综述并讨论了单一大量营养素或微量营养素缺乏或过量对乙烯途径和植物响应的影响。对不同矿物质营养素对乙烯植物响应的协同和拮抗作用进行了批判性分析。此外,本综述强调了营养胁迫与植物响应之间信息的现状,强调了应该进一步研究的主题。

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