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禾本科谷氨酰胺合成酶的新视角。

New perspectives on glutamine synthetase in grasses.

机构信息

Earth Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.

出版信息

J Exp Bot. 2011 Feb;62(4):1511-22. doi: 10.1093/jxb/erq356. Epub 2010 Dec 13.

Abstract

Members of the glutamine synthetase (GS) gene family have now been characterized in many crop species such as wheat, rice, and maize. Studies have shown that cytosolic GS isoforms are involved in nitrogen remobilization during leaf senescence and emphasized a role in seed production particularly in small grain crop species. Data from the sequencing of genomes for model crops and expressed sequence tag (EST) libraries from non-model species have strengthened the idea that the cytosolic GS genes are organized in three functionally and phylogenetically conserved subfamilies. Using a bioinformatic approach, the considerable publicly available information on high throughput gene expression was mined to search for genes having patterns of expression similar to GS. Interesting new hypotheses have emerged from searching for co-expressed genes across multiple unfiltered experimental data sets in rice. This approach should inform new experimental designs and studies to explore the regulation of the GS gene family further. It is expected that understanding the regulation of GS under varied climatic conditions will emerge as an important new area considering the results from recent studies that have shown nitrogen assimilation to be critical to plant acclimation to high CO(2) concentrations.

摘要

目前,许多作物物种(如小麦、水稻和玉米)中的谷氨酰胺合成酶(GS)基因家族成员已经得到了描述。研究表明,细胞质 GS 同工酶参与叶片衰老过程中的氮再利用,并强调其在种子生产中尤其是在小粒作物中的作用。来自模式作物基因组测序和非模式物种表达序列标签(EST)文库的数据加强了这样一种观点,即细胞质 GS 基因组织在三个功能和系统发育上保守的亚家族中。利用生物信息学方法,从大量公开的高通量基因表达信息中挖掘出具有与 GS 相似表达模式的基因。在对水稻多个未过滤的实验数据集进行共表达基因搜索时,出现了有趣的新假设。这种方法应该为新的实验设计和研究提供信息,以进一步探索 GS 基因家族的调控。考虑到最近的研究结果表明氮同化对于植物适应高 CO(2)浓度至关重要,预计在不同气候条件下理解 GS 的调控将成为一个重要的新领域。

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