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作 者:陆锦池[1] 王海斌[1] 陈荣山[1] 刘长辉[1] 郭徐魁[1] 林志华[1] 何海斌[1,2] 林文雄[1,2]
机构地区:[1]福建农林大学生命科学学院,福州350002 [2]生物农药与化学生物学教育部重点实验室,福州350002
出 处:《中国农学通报》2009年第14期148-152,共5页Chinese Agricultural Science Bulletin
基 金:福建省教育厅项目资助JA08055"低磷诱导水稻化感潜力变化及其解毒机理分析";2008福建省大学生创新性实验项目"低磷诱导不同化感潜力水稻抑草效应变化的机理分析"
摘 要:为研究水稻响应低磷的分子机理,以化感水稻PI312777为材料,应用差异蛋白质组学方法分析化感水稻PI312777根部响应低磷的蛋白质组变化趋势。结果表明,共鉴定11个差异蛋白质点,共分为3类:第1类,与信号转导相关蛋白质—细胞色素B5、受体激酶;第2类,与生长相关蛋白质—推定叶绿体SPR接受子、CDC2蛋白激酶、生长素转运蛋白、脯氨酸富集蛋白家族;第3类,与化感物质代谢相关蛋白质—推定水杨酸羧基转甲基酶、推定4-香豆酸辅酶A连接酶、推定细胞色素P450、苯丙氨酸解氨酶、角鲨烯单氧化酶。其中除细胞色素B5和角鲨烯单氧化酶表达丰度下调,其余蛋白质表达丰度均上调。To reveal the molecular mechanism of rice responding to lower phosphorus stress, the differential expression of proteins in the roots of allelopathic rice P1312777 was detected by the method of differential pro teomics. The results indicated that eleven proteins with obviously different abundance were identified by MALDI-TOF/MS. According to the function of proteins, those proteins were classified into three categories: In the first category, proteins were related to signal transduction-Cytochrome B5, Receptor-like kinase; In the second category, proteins were associated with plant growth-Putative chloroplast SPR receptor cpFtsY, Putative CDC2-like protein kinase cdc2MsC, Auxin transport protein, Proline-rich protein family-like; In the third category, proteins were related to allelochemical metabolism-Putative salicylic acid carboxyl methhransferase, Putative 4-coumarate-CoA ligase, Putative cytochrome P450, Phenylalanine ammonia-lyase, Putative squalene monooxygenase. In addition, the eleven proteins were all up-regulated with the exception of Cytochrome B5 and Putative squalene monooxygenase.
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