首页> 美国卫生研究院文献>Journal of Experimental Botany >Induction of root Fe(lll) reductase activity and proton extrusion by iron deficiency is mediated by auxin-based systemic signalling in Malus xiaojinensis
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Induction of root Fe(lll) reductase activity and proton extrusion by iron deficiency is mediated by auxin-based systemic signalling in Malus xiaojinensis

机译:小金海棠中基于生长素的系统性信号传导介导的铁缺乏诱导根系Fe(III)还原酶活性和质子挤出

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摘要

Iron is a critical cofactor for a number of metalloenzymes involved in respiration and photosynthesis, but plants often suffer from iron deficiency due to limited supplies of soluble iron in the soil. Iron deficiency induces a series of adaptive responses in various plant species, but the mechanisms by which they are triggered remain largely unknown. Using pH imaging and hormone localization techniques, it has been demonstrated here that root Fe(III) reductase activity and proton extrusion upon iron deficiency are up-regulated by systemic auxin signalling in a Fe-efficient woody plant, Malus xiaojinensis. Split-root experiments demonstrated that Fe-deprivation in a portion of the root system induced a dramatic increase in Fe(III) reductase activity and proton extrusion in the Fe-supplied portion, suggesting that the iron deficiency responses were mediated by a systemic signalling. Reciprocal grafting experiments of M. xiaojinensis with Malus baccata, a plant with no capability to produce the corresponding responses, indicate that the initiation of the systemic signalling is likely to be determined by roots rather than shoots. Iron deficiency induced a substantial increase in the IAA content in the shoot apex and supplying exogenous IAA analogues (NAA) to the shoot apex could mimic the iron deficiency to trigger the corresponding responses. Conversely, preventing IAA transport from shoot to roots blocked the iron deficiency responses. These results strongly indicate that the iron deficiency-induced physiological responses are mediated by systemic auxin signalling.
机译:铁是参与呼吸和光合作用的许多金属酶的关键辅助因子,但是由于土壤中可溶性铁的供应有限,植物经常遭受铁缺乏的困扰。缺铁会在各种植物物种中引起一系列适应性反应,但是触发它们的机制在很大程度上仍然未知。使用pH成像和激素定位技术,已证明在铁效率高的木本植物小金海棠中,根系Fe(III)还原酶活性和铁缺乏时的质子挤出通过系统性生长素信号上调。分裂根实验表明,一部分根系中的铁剥夺引起Fe(III)还原酶活性的急剧增加和Fe提供的部分中的质子挤出,表明铁缺乏反应是由系统性信号传导介导的。小金丝猴与无能产生相应应答的植物海棠属的相互嫁接实验表明,系统性信号的启动可能由根而不是芽决定。缺铁导致茎尖中IAA含量大幅增加,向茎尖供应外源IAA类似物(NAA)可以模仿缺铁来触发相应的响应。相反,阻止IAA从芽到根的转运会阻止铁缺乏反应。这些结果强烈表明,铁缺乏诱导的生理反应是由系统性生长素信号传导介导的。

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