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首页> 外文期刊>Environmental and experimental botany >Overexpression of tobacco UBQ2 increases Cd tolerance by decreasing Cd accumulation and oxidative stress in tobacco and Arabidopsis
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Overexpression of tobacco UBQ2 increases Cd tolerance by decreasing Cd accumulation and oxidative stress in tobacco and Arabidopsis

机译:烟草UBQ2的过表达通过降低烟草和拟南芥中的CD累积和氧化应激来增加CD耐受性

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摘要

Ubiquitin (Ub)-extension protein (UBQ) functions as a Ub-donor in the Ub/26S proteasome system, which is widely engaged in degrading target proteins and, thus, participates in a broad range of physiological responses. We previously reported that the overexpression of NtUBQ2 confers cadmium (Cd) tolerance by increasing 20S proteasome activity and reducing ubiquitinated protein levels in NtUBQ2 tobacco (Lee and Hwang, 2015a). Here, we show that higher Cd tolerance in NtUBQ2 tobacco is ascribed to decreased Cd accumulation and oxidative stress. The lower accumulation of Cd is attributed to lower expression levels of HMA-A, HMA-B, IRT1 and ZIP1, and the lower oxidative stress is ascribed to higher activities of antioxidative enzymes and lower Cd accumulation. To further confirm the role of NtUBQ2 in Arabidopsis, we generated transgenic Arabidopsis lines expressing NtUBQ2. These plants exhibited higher Cd tolerance and lower Cd accumulation, which may be caused by enhanced proteasome activity. The reduced Cd accumulation is ascribed to the higher expression of PDR8 and lower expression levels of IRT1, HMA-2 and HMA-4. Furthermore, atubq2 knockout Arabidopsis showed a reduction in Cd tolerance and proteasome activity. Taken together, our results indicate that NtUBQ2 expression elevates Cd tolerance in transgenic tobacco and in Arabidopsis by increasing 20S proteasome activity, reducing oxidative stress through activating antioxidant enzymes and decreasing Cd accumulation by regulating the expression of Cd/metal transporters. This study can be applied to creating metal phytoremediators or metal hypo-accumulating crops.
机译:泛素(UB)-Extension蛋白(UBQ)用作UB / 26S蛋白酶体系中的UB供体,其广泛地从此接合降解靶蛋白,因此参与广泛的生理反应。我们之前报道,NTUBQ2的过表达通过增加20S蛋白酶体活性并减少NTUBQ2烟草(Lee和Hwang,2015A)中的普遍蛋白质水平来赋予镉(CD)耐受性。在这里,我们表明NTUBQ2烟草中的较高的CD耐受性归因于降低CD累积和氧化应激。 CD的较低积累归因于HMA-A,HMA-B,IRT1和ZIP1的较低表达水平,并且较低的氧化应激归因于抗氧化酶的更高活性和降低CD积累。为了进一步证实NTUBQ2在拟南芥中的作用,我们产生了表达NTUBQ2的转基因拟南芥线。这些植物表现出更高的Cd耐受性和降低Cd积累,这可能是由增强的蛋白酶体活性引起的。降低的CD积累归因于IRT1,HMA-2和HMA-4的PDR8和较低表达水平的表达。此外,ATUBQ2敲除拟南芥表现出CD耐受性和蛋白酶体活性的降低。我们的结果表明,通过增加20S蛋白酶体活性,通过激活抗氧化酶来降低氧化应激并通过调节Cd /金属转运蛋白的表达来降低氧化应激并通过调节CD /金属转运蛋白的表达来提高转基因烟草和拟南芥中的CD耐受性。该研究可以应用于产生金属植物模型剂或金属杂交作物。

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