首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Dissecting the Seed Maturation and Germination Processes in the Non-Orthodox Quercus ilex Species Based on Protein Signatures as Revealed by 2-DE Coupled to MALDI-TOF/TOF Proteomics Strategy
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Dissecting the Seed Maturation and Germination Processes in the Non-Orthodox Quercus ilex Species Based on Protein Signatures as Revealed by 2-DE Coupled to MALDI-TOF/TOF Proteomics Strategy

机译:基于2-de耦合到MALDI-TOF / TOF蛋白质组学策略所显示的蛋白质签名将种子成熟和萌发过程中的种子成熟和萌发过程剖析为蛋白质签名

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摘要

Unlike orthodox species, seed recalcitrance is poorly understood, especially at the molecular level. In this regard, seed maturation and germination were studied in the non-orthodox by using a proteomics strategy based on two-dimensional gel electrophoresis coupled to matrix-assisted laser desorption ionization/time of flight (2-DE-MALDI-TOF).Cotyledons and embryo/radicle were sampled at different developmental stages, including early (M1–M3), middle (M4–M7), and late (M8–M9) seed maturation, and early (G1–G3) and late (G4–G5) germination. Samples corresponding to non-germinating, inviable, seeds were also included. Protein extracts were subjected to 2-dimensional gel electrophoresis (2-DE) and changes in the protein profiles were analyzed. Identified variable proteins were grouped according to their function, being the energy, carbohydrate, lipid, and amino acid metabolisms, together with protein fate, redox homeostasis, and response to stress are the most represented groups. Beyond the visual aspect, morphometry, weight, and water content, each stage had a specific protein signature. Clear tendencies for the different protein groups throughout the maturation and germination stages were observed for, respectively, cotyledon and the embryo axis. Proteins related to metabolism, translation, legumins, proteases, proteasome, and those stress related were less abundant in non-germinating seeds, it related to the loss of viability. Cotyledons were enriched with reserve proteins and protein-degrading enzymes, while the embryo axis was enriched with proteins of cell defense and rescue, including heat-shock proteins (HSPs) and antioxidants. The peaks of enzyme proteins occurred at the middle stages (M6–M7) in cotyledons and at late ones (M8–M9) in the embryo axis. Unlike orthodox seeds, proteins associated with glycolysis, tricarboxylic acid cycle, carbohydrate, amino acid and lipid metabolism are present at high levels in the mature seed and were maintained throughout the germination stages. The lack of desiccation tolerance in seeds may be associated with the repression of some genes, late embryogenesis abundant proteins being one of the candidates.
机译:与正统物种不同,种子批量较差,特别是在分子水平。在这方面,通过使用基于二维凝胶电泳的蛋白质组学策略与基质辅助激光解吸电离/飞行时间(2-DE-MALDI-TOF),在非正统中研究了种子成熟和萌发.cotyleDons在不同的发育阶段进行采样,包括早期(M1-M3),中间(M4-M7)和晚期(M8-M9)种子成熟,以及早期(G1-G3)和晚期(G4-G5)的不同发育阶段进行取样。(G4-G5)发芽。还包括对应于非发芽,可接受的种子的样品。将蛋白质提取物进行二维凝胶电泳(2-DE),并分析蛋白质谱的变化。鉴定的可变蛋白根据其功能进行分组,是能量,碳水化合物,脂质和氨基酸代谢,以及蛋白质命运,氧化还原稳态和对应激的反应是最代表性的群体。除了视角,形态学,重量和含水量之外,每个阶段都有特定的蛋白质签名。分别观察到整个成熟和发芽阶段的不同蛋白质基团的清晰倾向,分别为子叶和胚胎轴。与新陈代谢,翻译,肉豆苷,蛋白酶,蛋白酶组相关的蛋白质在非发芽种子中较少,与活力损失较小。将子叶富含储备蛋白和蛋白质降解酶,而胚胎轴富含细胞防御蛋白质和救援,包括热休克蛋白(HSP)和抗氧化剂。酶蛋白的峰在子叶中的中间阶段(M6-M7)和胚胎轴上的后期(M8-M9)中发生。与正统种子不同,与糖酵解,三羧酸循环,碳水化合物,氨基酸和脂质代谢相关的蛋白质在成熟的种子中存在,并在整个发芽阶段保持。种子中缺乏干燥耐受性可能与一些基因的抑制有关,晚期胚胎发生丰富的蛋白质是候选者之一。

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