低磷胁迫下水稻根系基因表达谱研究。

LiHua Li, XuHua Qiu, XiangHua Li, ShiPing Wang, XingMing Lian
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引用次数: 20

摘要

磷(P)是植物生长所必需的大量营养元素之一。虽然磷在土壤中含量丰富,但由于植物能直接吸收的可溶性磷浓度低,往往是限制作物产量潜力的养分。利用60000个寡核苷酸(70 mer)的DNA芯片,研究了低磷胁迫下水稻根系6、24和72 h的基因表达谱,并与对照(正常磷胁迫)的基因表达谱进行了比较。在至少一种处理中,共鉴定出795个差异表达基因对磷酸盐(Pi)饥饿的响应。结果表明:(1)水稻根系中Pi转运体、酸性磷酸酶和RNase编码基因表达上调;(ii)糖酵解相关基因先上调后下调;(iii)多个参与氮代谢和脂质代谢的基因表达模式发生改变;(iv)部分参与细胞衰老和DNA或蛋白质降解的基因上调;(5)部分跨膜转运蛋白基因表达上调。研究结果可为了解缺磷的分子过程提供有用信息,从而为研究如何提高作物对缺磷的利用提供依据。
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The expression profile of genes in rice roots under low phosphorus stress.

Phosphorus (P) is one of the most essential macronutrients required for plant growth. Although it is abundant in soil, P is often the limiting nutrient for crop yield potential because of the low concentration of soluble P that plants can absorb directly. The gene expression profile was investigated in rice roots at 6, 24 and 72 h under low P stress and compared with a control (normal P) profile, using a DNA chip of 60000 oligos (70 mer) that represented all putative genes of the rice genome. A total of 795 differentially expressed genes were identified in response to phosphate (Pi) starvation in at least one of the treatments. Based on the analysis, we found that: (i) The genes coding for the Pi transporter, acid phosphatase and RNase were up-regulated in rice roots; (ii) the genes involved in glycolysis were first up-regulated and then down-regulated; (iii) several genes involved in N metabolism and lipid metabolism changed their expression patterns; (iv) some genes involved in cell senescence and DNA or protein degradation were up-regulated; and (v) some transmembrane transporter genes were up-regulated. The results may provide useful information in the molecular process associated with Pi deficiency and thus facilitate research in improving Pi utilization in crop species.

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