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鉴定在海松树根中受铵供应影响的基因。

Identification of genes regulated by ammonium availability in the roots of maritime pine trees.

机构信息

Departamento de Biología Molecular y Bioquímica, Instituto Andaluz de Biotecnología, Universidad de Málaga, Spain.

出版信息

Amino Acids. 2010 Oct;39(4):991-1001. doi: 10.1007/s00726-010-0483-9. Epub 2010 Feb 6.

Abstract

Conifers have a preference for ammonium over nitrate as the main inorganic nitrogen source. However, it is unknown how changes in nitrogen nutrition may affect transcription profiles. In this study, microarray analysis and suppressive subtraction hybridization were used to identify differentially expressed genes in the roots of maritime pine exposed to changes in ammonium availability. A total of 225 unigenes that were differentially regulated by changes in ammonium nutrition were identified. Most of the unigenes were classified into seven functional categories by comparison with sequences deposited in the databases. A significant proportion of these genes were encoded for ammonium-regulated proteins of unknown functions. The differential expression of selected candidate genes was further validated in plants subjected to ammonium excess/deficiency. The transcript levels of representative genes were compared in maritime pine roots, 1, 15 and 35 days after nutritional treatments. Gene expression patterns suggest the existence of potential links between ammonium-responsive genes and genes involved in amino acid metabolism, particularly in asparagine biosynthesis and utilization. Functional analyses and exploration of the natural variability in maritime pine populations for a number of relevant genes are underway.

摘要

针叶树优先选择铵态氮而不是硝酸盐作为主要的无机氮源。然而,目前尚不清楚氮营养的变化会如何影响转录谱。在这项研究中,使用微阵列分析和抑制差减杂交技术来鉴定暴露于铵态氮供应变化的海松根中的差异表达基因。共鉴定出 225 个受铵态氮营养变化调节的差异表达基因。通过与数据库中存储的序列进行比较,大多数基因被分为七个功能类别。这些基因中的很大一部分编码未知功能的铵调节蛋白。在经历铵过量/缺乏的植物中,进一步验证了所选候选基因的差异表达。在营养处理后 1、15 和 35 天,比较了代表性基因在海松根中的转录水平。基因表达模式表明,铵响应基因与参与氨基酸代谢的基因之间存在潜在联系,特别是在天冬酰胺生物合成和利用中。正在对一些相关基因进行功能分析和对海松种群的自然变异进行探索。

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