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缺铁对甘蓝型油菜韧皮部汁液蛋白质谱的影响。

Effects of Fe deficiency on the protein profile of Brassica napus phloem sap.

作者信息

Gutierrez-Carbonell Elain, Lattanzio Giuseppe, Albacete Alfonso, Rios Juan José, Kehr Julia, Abadía Anunciación, Grusak Michael A, Abadía Javier, López-Millán Ana Flor

机构信息

Plant Nutrition Department, CSIC, Aula Dei Experimental Station, Zaragoza, Spain.

Department of Plant Nutrition, CEBAS-CSIC, Campus Universitario de Espinardo, Murcia, Spain.

出版信息

Proteomics. 2015 Nov;15(22):3835-53. doi: 10.1002/pmic.201400464. Epub 2015 Oct 26.

Abstract

The aim of this work was to study the effect of Fe deficiency on the protein profile of phloem sap exudates from Brassica napus using 2DE (IEF-SDS-PAGE). The experiment was repeated thrice and two technical replicates per treatment were done. Phloem sap purity was assessed by measuring sugar concentrations. Two hundred sixty-three spots were consistently detected and 15.6% (41) of them showed significant changes in relative abundance (22 decreasing and 19 increasing) as a result of Fe deficiency. Among them, 85% (35 spots), were unambiguously identified. Functional categories containing the largest number of protein species showing changes as a consequence of Fe deficiency were signaling and regulation (32%), and stress and redox homeostasis (17%). The Phloem sap showed a higher oxidative stress and significant changes in the hormonal profile as a result of Fe deficiency. Results indicate that Fe deficiency elicits major changes in signaling pathways involving Ca and hormones, which are generally associated with flowering and developmental processes, causes an alteration in ROS homeostasis processes, and induces decreases in the abundances of proteins involved in sieve element repair, suggesting that Fe-deficient plants may have an impaired capacity to heal sieve elements upon injury.

摘要

本研究旨在利用二维电泳(IEF-SDS-PAGE)研究缺铁对甘蓝型油菜韧皮部汁液渗出物蛋白质谱的影响。实验重复进行了三次,每个处理进行了两次技术重复。通过测量糖浓度评估韧皮部汁液的纯度。共持续检测到263个斑点,其中15.6%(41个)由于缺铁导致相对丰度发生显著变化(22个减少,19个增加)。其中,85%(35个斑点)得到了明确鉴定。因缺铁而表现出变化的蛋白质种类数量最多的功能类别是信号传导与调节(32%),以及应激和氧化还原稳态(17%)。由于缺铁,韧皮部汁液表现出较高的氧化应激和激素谱的显著变化。结果表明,缺铁引发了涉及钙和激素的信号通路的重大变化,这些变化通常与开花和发育过程相关,导致活性氧稳态过程发生改变,并导致参与筛管分子修复的蛋白质丰度降低,这表明缺铁植物在受伤时修复筛管分子的能力可能受损。

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