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首页> 外文期刊>Russian Journal of Plant Physiology >Superoxide radical and auxin are implicated in redistribution of root growth and the expression of auxin and cell-cycle genes in cadmium-stressed rice
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Superoxide radical and auxin are implicated in redistribution of root growth and the expression of auxin and cell-cycle genes in cadmium-stressed rice

机译:超氧自由基和生长素与镉胁迫水稻根系生长的重新分布以及生长素和细胞周期基因的表达有关

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Changes of root growth and the expression of auxin and cell-cycle genes were analyzed in rice (Oryza sativa L. cv. Zhonghua No. 11) treated with Cd alone, Cd plus TIBA (2,3,5-triiodobenzoic acid, an inhibitor of polar auxin transport) or IBA (indole-3-butytric acid) and Cd plus Tiron (a scavenger of O (2) (center dot-) or DDC (sodium diethyldithiocarbamate, a superoxide dismutase inhibitor). It was shown that Cd-stimulated rice root growth can be further enhanced by Cd plus IBA or DDC treatments but can be significantly suppressed following Cd together with Tiron or TIBA application. A comprehensive expression analysis of auxin genes, such as OsPID, OsPINs (Pin-Formeds), OsARFs (auxin response factors), and core cell-cycle genes, such as CDKs and CYCs in differently treated roots was conducted by semi-quantitative RT-PCR. The results showed that the expressions of 21 out of 35 tested auxin genes and 51 out of 63 tested cell-cycle genes were regulated by various treatments. Among the modified expression profiles of 72 genes, 53 and 59 genes were up- or down-regulated by auxin (including Cd plus TIBA or IBA treatments) and O (2) (center dot-) (including Cd plus Tiron or DDC treatments), respectively. In the roots treated with Cd plus IBA or TIBA, the expressions of 39 genes changed differently from those under single Cd treated roots. Following Cd plus DDC or Tiron treatment, the transcripts of 36 genes were also altered differently from those under single Cd treatment. Obviously, auxin and O (2) (center dot-) affected the expression of auxin and core cell-cycle genes under Cd stress. Taken together, our results indicated that in Cd-stressed rice plants, O (2) (center dot-) and auxin were implicated in the redistribution of root growth and the expression of auxin and cell-cycle genes.
机译:分析了单独使用镉,镉加TIBA(2,3,5-三碘苯甲酸,一种抑制剂)处理的水稻(中华稻11号)的根系生长变化以及生长素和细胞周期基因的表达。生长素运输的极性)或IBA(吲哚-3-丁酸)和Cd加Tiron(O(2)(中心点)的清除剂或DDC(二乙基二硫代氨基甲酸钠,一种超氧化物歧化酶抑制剂)的清除剂。镉+ IBA或DDC处理可进一步促进水稻受激根系的生长,但镉与Tiron或TIBA一起施用后可显着抑制水稻受激稻根的生长。对生长素基因的全面表达分析,例如OsPID,OsPINs(Pin-formeds),OsARFs(用半定量RT-PCR法在不同处理的根中进行了生长素应答因子)和核心细胞周期基因的检测,例如CDK和CYCs,结果显示35个被检测的生长素基因中有21个和63个中有51个的表达测试的细胞周期基因受到各种处理的调控。生长素(包括Cd加TIBA或IBA处理)和O(2)(中心点)(包括Cd加Tiron或DDC处理)分别上调或下调了72个基因,53和59个基因的固定表达谱。在用Cd加IBA或TIBA处理的根中,39个基因的表达与在单个Cd处理的根下的表达变化不同。镉加DDC或Tiron处理后,与单一镉处理相比,36个基因的转录物也发生了变化。显然,生长素和O(2)(中心点)影响了Cd胁迫下生长素和核心细胞周期基因的表达。两者合计,我们的结果表明,在镉胁迫的水稻植株中,O(2)(中心点)和生长素与根生长的重新分布以及生长素和细胞周期基因的表达有关。

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