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首页> 外文期刊>Journal of Plant Physiology >Expression profiles and hormonal regulation of tobacco expansin genes and their involvement in abiotic stress response
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Expression profiles and hormonal regulation of tobacco expansin genes and their involvement in abiotic stress response

机译:烟草扩展蛋白基因的表达谱和激素调控及其参与非生物胁迫的响应

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摘要

Changes in the expression levels of tobacco expansin genes NtEXPA1, NtEXPA4, NtEXPA5, and NtEXPA6 were studied in different organs of tobacco (Nicotiana tabacum L.) as well as in response to phytohormone and stress treatments. It was shown that NtEXPA1, NtEXPA4 and NtEXPA5 transcripts were predominantly expressed in the shoot apices and young leaves, but almost absent in mature leaves and roots. The NtEXPA6 mRNA was found at high levels in calluses containing a large number of undifferentiated cells, but hardly detectable in the leaves of different ages and roots. In young leaves, expression levels of NtEXPA1, NtEXPA4 and NtEXPA5 genes were induced by cytokinins, auxins and gibberellins. Cytokinins and auxins were also found to increase NtEXPA6 transcripts in young leaves but to the much lower levels than the other expansin mRNAs. Expression analysis demonstrated that brassinosteroid phytohormones were able either to up-regulate or to down-regulate expression of different expansins in leaves of different ages. Furthermore, transcript levels of NtEXPA1, NtEXPA4, and NtEXPA5 genes were increased in response to NaCl, drought, cold, heat, and 10 mu M abscisic acid (ABA) treatments but reduced in response to more severe stresses, i.e. cadmium, freezing, and 100 mu M ABA. In contrast, no substantial changes were found in NtEXPA6 transcript level after all stress treatments. In addition, we examined the involvement of tobacco expansins in the regulation of abiotic stress tolerance by transgenic approaches. Transgenic tobacco plants with constitutive expression of NtEXPA1 and NtEXPA5 exhibited improved tolerance to salt stress: these plants showed higher growth indices after NaCl treatment and minimized water loss by reducing stomatal density. In contrast, NtEXPA4-silenced plants were characterized by a considerable growth reduction under salinity and enhanced water loss. Our findings indicate that expression levels of all studied tobacco expansins genes are modulated by plant hormones whereas NtEXPA1, NtEXPA4, and NtEXPA5 expansins may be involved in the regulation of stress tolerance in tobacco plants. (C) 2016 Published by Elsevier GmbH.
机译:研究了烟草不同器官(植物烟草)对烟草扩展素基因NtEXPA1,NtEXPA4,NtEXPA5和NtEXPA6表达水平的变化以及对植物激素和胁迫处理的响应。结果表明,NtEXPA1,NtEXPA4和NtEXPA5转录本主要在茎尖和幼叶中表达,而在成熟叶和根中几乎不表达。 NtEXPA6 mRNA在含有大量未分化细胞的老茧中被发现含量很高,但在不同年龄和根部的叶片中几乎检测不到。在幼叶中,NtEXPA1,NtEXPA4和NtEXPA5基因的表达水平是由细胞分裂素,生长素和赤霉素诱导的。还发现细胞分裂素和生长素能增加幼叶中NtEXPA6的转录本,但水平要比其他expansin mRNA低得多。表达分析表明,油菜素甾醇植物激素能够上调或下调不同年龄叶片中不同弹性蛋白的表达。此外,NtEXPA1,NtEXPA4和NtEXPA5基因的转录水平响应于NaCl,干旱,寒冷,高温和10μM脱落酸(ABA)处理而增加,但响应于更严重的压力(例如镉,冷冻和冰激凌)而降低。 100亩M ABA。相反,在所有应激处理后,NtEXPA6转录本水平均未发现实质性变化。此外,我们通过转基因方法研究了烟草扩展酶参与非生物胁迫耐受性调控的过程。组成型表达NtEXPA1和NtEXPA5的转基因烟草植株对盐胁迫表现出更好的耐受性:这些植株在NaCl处理后显示出更高的生长指数,并通过降低气孔密度将水分流失降至最低。相比之下,NtEXPA4沉默的植物的特征是在盐度下明显减少了生长并增加了水分流失。我们的发现表明,所有研究的烟草扩展酶基因的表达水平均受植物激素调节,而NtEXPA1,NtEXPA4和NtEXPA5扩展酶可能参与烟草植物的胁迫耐受性调控。 (C)2016由Elsevier GmbH发布。

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