首页> 外文期刊>Journal of proteome research >Proteomic Comparison between Maturation Drying and Prematurely Imposed Drying of Zea mays Seeds Reveals a Potential Role of Maturation Drying in Preparing Proteins for Seed Germination, Seedling Vigor, and Pathogen Resistance
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Proteomic Comparison between Maturation Drying and Prematurely Imposed Drying of Zea mays Seeds Reveals a Potential Role of Maturation Drying in Preparing Proteins for Seed Germination, Seedling Vigor, and Pathogen Resistance

机译:玉米种子成熟干燥与过早实施干燥之间的蛋白质组学比较揭示了成熟干燥在制备用于种子萌发,幼苗活力和病原体抗性的蛋白质中的潜在作用

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We have studied the role(s) of maturation drying in the acquisition of germinability, seedling vigor and pathogen resistance by comparing the proteome changes in maize embryo and endosperm during mature and prematurely imposed drying. Prematurely imposed dried seeds at 40 days after pollination (DAP) germinated almost as well as mature seeds (at 65 DAP), but their seedling growth was slower and they were seriously infected by fungi. A total of 80 and 114 proteins were identified to change at least two-fold (p < 0.05) in abundance during maturation drying in embryo and endosperm, respectively. Fewer proteins (48 and 59 in embryo and endosperm, respectively) changed in abundance during prematurely imposed drying. A number of proteins, 33 and 38 in embryo and endosperm, respectively, changed similarly in abundance during both maturation and prematurely imposed drying. Storage proteins were abundant in this group and may contribute to the acquisition of seed germinability. However, a relatively large number of proteins changed in the embryo (47 spots) and endosperm (76 spots) specifically during maturation drying. Among these proteins, storage proteins in the embryo and defense proteins in the endosperm may be particularly important for seedling vigor and resistance to fungal infection, respectively.
机译:通过比较成熟和过早干燥过程中玉米胚和胚乳的蛋白质组变化,我们研究了成熟干燥在获得可发芽性,幼苗活力和病原体抗性中的作用。授粉后(DAP)40天发芽的早干种子几乎和成熟种子(65 DAP)发芽一样,但它们的幼苗生长较慢,并且受到真菌的严重感染。在胚胎和胚乳成熟干燥过程中,总共鉴定出80种和114种蛋白质的丰度至少变化了两倍(p <0.05)。在过早进行干燥的过程中,较少的蛋白质(分别在胚胎和胚乳中的48和59)发生大量变化。在成熟和过早干燥过程中,胚胎和胚乳中的大量蛋白质(分别为33和38)的丰度变化类似。该组中的存储蛋白丰富,可能有助于获得种子的发芽性。但是,相对而言,大量蛋白质在胚胎(47个斑点)和胚乳(76个斑点)中发生了变化,特别是在成熟干燥过程中。在这些蛋白质中,胚中的贮藏蛋白和胚乳中的防御蛋白可能分别对幼苗活力和对真菌感染的抵抗力特别重要。

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