Department of Plant Nutrition, China Agricultural University, Beijing, PR China.
J Proteome Res. 2010 Jun 4;9(6):2968-76. doi: 10.1021/pr901168v.
Maize (Zea mays L.) root cap cells secrete a large variety of compounds including proteins via an amorphous gel structure called mucilage into the rhizosphere. In the present study, mucilage secreted by primary roots of 3-4 day old maize seedlings was collected under axenic conditions, and the constitutively secreted proteome was analyzed. A total of 2848 distinct extracellular proteins were identified by nanoLC-MS/MS. Among those, metabolic proteins (approximately 25%) represented the largest class of annotated proteins. Comprehensive sets of proteins involved in cell wall metabolism, scavenging of reactive oxygen species, stress response, or nutrient acquisition provided detailed insights in functions required at the root-soil interface. For 85-94% of the mucilage proteins previously identified in the relatively small data sets of the dicot species pea, Arabidopsis, and rapeseed, a close homologue was identified in the mucilage proteome of the monocot model plant maize, suggesting a considerable degree of conservation between mono and dicot mucilage proteomes. Homologues of a core set of 12 maize proteins including three superoxide dismutases and four chitinases, which provide protection from fungal infections, were present in all three mucilage proteomes investigated thus far in the dicot species Arabidopsis, rapeseed, and pea and might therefore be of particular importance.
玉米(Zea mays L.)根冠细胞通过一种称为黏液的无定形凝胶结构将各种化合物(包括蛋白质)分泌到根际中。在本研究中,在无菌条件下收集了 3-4 天大的玉米幼苗主根分泌的黏液,并分析了其组成型分泌的蛋白质组。通过纳升液相色谱-串联质谱(nanoLC-MS/MS)共鉴定出 2848 种不同的细胞外蛋白质。其中,代谢蛋白(约 25%)代表了注释蛋白质中最大的一类。参与细胞壁代谢、清除活性氧、应激反应或养分获取的综合蛋白质组为根系与土壤界面所需的功能提供了详细的见解。在单子叶模式植物玉米的黏液蛋白质组中,鉴定到了先前在双子叶物种豌豆、拟南芥和油菜中相对较小数据集鉴定出的黏液蛋白的 85-94%的近同源物,这表明单子叶和双子叶黏液蛋白质组之间存在相当程度的保守性。包括三种超氧化物歧化酶和四种几丁质酶在内的核心玉米蛋白组的同源物存在于迄今为止在双子叶物种拟南芥、油菜和豌豆中研究的三种黏液蛋白质组中,它们可能因此具有特别重要的意义。