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通过微阵列分析揭示拟南芥对缺铁胁迫的响应。

Response of Arabidopsis to iron deficiency stress as revealed by microarray analysis.

作者信息

Thimm O, Essigmann B, Kloska S, Altmann T, Buckhout T J

机构信息

Applied Botany, Humboldt University Berlin, Invalidenstrasse 42, 10115 Berlin, Germany.

出版信息

Plant Physiol. 2001 Nov;127(3):1030-43.

Abstract

Gene expression in response to Fe deficiency was analyzed in Arabidopsis roots and shoots through the use of a cDNA collection representing at least 6,000 individual gene sequences. Arabidopsis seedlings were grown 1, 3, and 7 d in the absence of Fe, and gene expression in roots and shoots was investigated. Following confirmation of data and normalization methods, expression of several sequences encoding enzymes known to be affected by Fe deficiency was investigated by microarray analysis. Confirmation of literature reports, particularly for changes in enzyme activity, was not always possible, but changes in gene expression could be confirmed. An expression analysis of genes in glycolysis, the tricarboxylic acid cycle, and oxidative pentose phosphate pathway revealed an induction of several enzymes within 3 d of Fe-deficient growth, indicating an increase in respiration in response to Fe deficiency. In roots, transcription of sequences corresponding to enzymes of anaerobic respiration was also induced, whereas in shoots, the induction of several genes in gluconeogenesis, starch degradation, and phloem loading was observed. Thus, it seemed likely that the energy demand in roots required for the Fe deficiency response exceeded the capacity of oxidative phosphorylation, and an increase in carbon import and anaerobic respiration were required to maintain metabolism.

摘要

通过使用一个代表至少6000个个体基因序列的cDNA文库,分析了拟南芥根和地上部分对缺铁的基因表达情况。将拟南芥幼苗在缺铁条件下培养1天、3天和7天,然后研究根和地上部分的基因表达。在确认数据和标准化方法后,通过微阵列分析研究了几个已知受缺铁影响的编码酶的序列的表达。虽然并非总能证实文献报道,特别是酶活性的变化,但基因表达的变化是可以证实的。对糖酵解、三羧酸循环和氧化戊糖磷酸途径中的基因进行表达分析发现,在缺铁生长3天内,几种酶被诱导表达,这表明缺铁会导致呼吸作用增强。在根中,与无氧呼吸酶相对应的序列的转录也被诱导,而在地上部分,观察到糖异生、淀粉降解和韧皮部装载中的几个基因被诱导。因此,缺铁反应所需的根中的能量需求似乎超过了氧化磷酸化的能力,需要增加碳的输入和无氧呼吸来维持代谢。

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