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玉米幼根毛中蛋白质动力学对大量元素和微量元素缺乏的响应

Protein Dynamics in Young Maize Root Hairs in Response to Macro- and Micronutrient Deprivation.

作者信息

Li Zhi, Phillip Daniel, Neuhäuser Benjamin, Schulze Waltraud X, Ludewig Uwe

机构信息

†Department of Plant Systems Biology, University of Hohenheim, Garbenstraße 30, 70599 Stuttgart, Germany.

‡Institute of Crop Science, Nutritional Crop Physiology, University of Hohenheim, Fruwirthstraße 20, 70599 Stuttgart, Germany.

出版信息

J Proteome Res. 2015 Aug 7;14(8):3362-71. doi: 10.1021/acs.jproteome.5b00399. Epub 2015 Jul 29.

Abstract

Plants increase their root surface with root hairs to improve the acquisition of nutrients from the soil. The unicellular character of root hairs and their position at the root surface make them an attractive system to investigate adaptive processes of rhizodermal cells that are in direct contact with the soil solution. In young maize seedlings, roots are densely covered with root hairs, although nutrient reserves in the seed are sufficient to support seedling growth rates for a few days. We used a label-free quantitative proteomics approach to study protein abundance adjustments in 4 day old root hairs grown in aeroponic culture in the presence and absence of several macro- and micronutrients. Compared to the proteome of root hairs developed under full nutrition, protein abundance changes were observed in pathways related to macronutrient (N, P, K, and Mg) deficiencies. For example, lack of N in the medium repressed the primary N metabolism pathway, increased amino acid synthesis, but repressed their degradation, and affected the primary carbon metabolism, such as glycolysis. Glycolysis was similarly affected by K and P deprivation, but the glycolytic pathway was negatively regulated by the absence of the micronutrients Fe and Zn. In contrast, the deprivation of Mn had almost no affect on the root hair proteome. Our results indicate either that the metabolism of very young root hairs adjusts to cellular nutrient deficiencies that have been already experienced or that root hairs sense the external lack of specific nutrients in the nutrient solution and adjust their metabolism accordingly.

摘要

植物通过根毛增加其根表面积,以提高从土壤中获取养分的能力。根毛的单细胞特性及其在根表面的位置,使其成为研究与土壤溶液直接接触的根表皮细胞适应性过程的一个有吸引力的系统。在年轻的玉米幼苗中,尽管种子中的养分储备足以支持幼苗几天的生长速度,但根上仍密布着根毛。我们采用无标记定量蛋白质组学方法,研究了在有无几种大量和微量营养素的情况下,气培培养的4日龄根毛中蛋白质丰度的调整情况。与在完全营养条件下发育的根毛蛋白质组相比,在与大量营养素(氮、磷、钾和镁)缺乏相关的途径中观察到了蛋白质丰度的变化。例如,培养基中缺乏氮会抑制主要的氮代谢途径,增加氨基酸合成,但抑制其降解,并影响主要的碳代谢,如糖酵解。糖酵解同样受到钾和磷缺乏的影响,但糖酵解途径受到微量营养素铁和锌缺乏的负调控。相比之下,锰的缺乏对根毛蛋白质组几乎没有影响。我们的结果表明,要么非常年轻的根毛的代谢适应已经经历的细胞营养缺乏,要么根毛感知营养液中特定营养素的外部缺乏并相应地调整其代谢。

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