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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Stress-inducible OsP5CS2 gene is essential for salt and cold tolerance in rice
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Stress-inducible OsP5CS2 gene is essential for salt and cold tolerance in rice

机译:胁迫诱导的OsP5CS2基因对于水稻的耐盐和耐寒性至关重要

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We isolated a rice T-DNA tagging line, in which T-DNA was inserted into the sixth intron of OsP5CS2. This gene encodes for a protein that is highly homologous to Delta(1)-pyrroline-5-carboxylate synthetase (P5CS), a proline biosynthesis enzyme. The T-DNA contained the promoterless gus gene, allowing generation of a gene fusion between OsP5CS2 and gus. Therefore, the expression pattern of OsP5CS2 could be easily monitored by in situ GUS assay. At the seedling stage, the transcript level was low. However, gene expression was preferentially induced in the dividing zone of the roots by salt, cold, or ABA treatments. In mature spikelets, the gene was expressed mainly in stamens. RT-PCR analyses confirmed the results from the GUS assay. OsP5CS2 transcript was present in reproductive organs, especially the stamens. In seedling roots, transcript levels were increased by treatment with 250 mM NaCl, 4 degreesC cold stress, or 0.5 muM ABA. Our OsP5CS2 knockout plants were more sensitive to salt and cold stresses than were the wild-type controls. Root and shoot growth in the knockout seedlings were severely retarded when plants were exposed to 250 mM NaCl. Cold treatment for more than 12 h also caused growth retardation in those seedlings. Therefore, our results indicate that the OsP5CS2 gene is necessary for plant tolerance to salt and cold stresses. (C) 2004 Elsevier Ireland Ltd. All rights reserved.
机译:我们分离了一个水稻T-DNA标签系,其中将T-DNA插入到OsP5CS2的第六个内含子中。该基因编码的蛋白质与脯氨酸生物合成酶Delta(1)-pyrroline-5-carboxylate synthetase(P5CS)高度同源。 T-DNA包含无启动子的gus基因,可以在OsP5CS2和gus之间产生基因融合体。因此,通过原位GUS测定可以容易地监测OsP5CS2的表达模式。在苗期,转录本水平较低。但是,通过盐,冷或ABA处理,基因表达优先在根的分裂区中被诱导。在成熟的小穗中,该基因主要在雄蕊中表达。 RT-PCR分析证实了GUS分析的结果。 OsP5CS2转录本存在于生殖器官,尤其是雄蕊中。在幼苗的根中,通过使用250 mM NaCl,4°C低温胁迫或0.5μMABA处理,可以提高转录水平。与野生型对照相比,我们的OsP5CS2敲除植物对盐和冷胁迫更敏感。当植物暴露于250 mM NaCl中时,基因敲除幼苗的根和芽生长严重受阻。冷处理超过12小时也导致这些幼苗的生长发育迟缓。因此,我们的结果表明,OsP5CS2基因对于植物对盐和寒冷胁迫的耐受性是必需的。 (C)2004 Elsevier Ireland Ltd.保留所有权利。

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