Li Jie, Wu Xu-Dong, Hao Shan-Ting, Wang Xiu-Jie, Ling Hong-Qing
The State Key Laboratory of Plant Cell and Chromosome Engineering, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing, China.
Proteomics. 2008 Jun;8(11):2299-311. doi: 10.1002/pmic.200700942.
To know the root adjustment in response to iron deficiency, differentially displayed proteins in tomato roots of wild type and its iron uptake inefficient mutant T3238fer were analyzed by 2-DE and MALDI-TOF MS-based proteomic method under iron sufficiency and deficiency. Ninety-seven proteins were identified, 63 of them were classified in various metabolic pathways. About 40 proteins involved in starch degradation, TCA and ascorbate cycles were upregulated under iron deficiency and grouped in a network together with glycolysis, whereas proteins for fructose metabolism were decreased. Proteins involved in methionine synthesis, cell wall synthesis, mitochondria ATP synthesis, vacuole ATPase, HSP70/90, etc. also revealed enhanced expression under iron deficiency, while proteins about redox homeostasis, transcription factors, kinases, etc. showed diversified changes. The responses are closely associated with energy metabolism, organic acid formation, root morphological change, redox and sulfur homeostasis, and signal transduction, which enhance iron uptake, reutilization and other adaptive changes. Most of the proteins affected by iron deficiency and fer mutation showed similar effect on individual proteins or pathways, but the independent function of FER to iron deficiency were statistically indicated.
为了解番茄根系对缺铁的调节作用,采用基于双向电泳(2-DE)和基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)的蛋白质组学方法,分析了野生型番茄及其铁吸收效率低下突变体T3238fer在铁充足和缺铁条件下番茄根系差异表达的蛋白质。共鉴定出97种蛋白质,其中63种归类于各种代谢途径。在缺铁条件下,约40种参与淀粉降解、三羧酸循环(TCA)和抗坏血酸循环的蛋白质上调,并与糖酵解一起形成一个网络,而参与果糖代谢的蛋白质则减少。参与蛋氨酸合成、细胞壁合成、线粒体ATP合成、液泡ATP酶、热休克蛋白70/90等的蛋白质在缺铁条件下也显示出表达增强,而与氧化还原稳态、转录因子、激酶等相关的蛋白质则表现出多样化的变化。这些反应与能量代谢、有机酸形成、根系形态变化、氧化还原和硫稳态以及信号转导密切相关,从而增强铁的吸收、再利用和其他适应性变化。大多数受缺铁和fer突变影响的蛋白质对单个蛋白质或途径表现出相似的作用,但FER对缺铁的独立作用通过统计学方法得到了证实。