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Characterization of two genes encoding metal tolerance proteins from Beta vulgaris subspecies maritima that confers manganese tolerance in yeast

机译:表征来自滨海甜菜亚种的两个金属耐受蛋白的编码酵母的锰耐受性的基因

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摘要

Manganese (Mn2+) is an essential micronutrient in plants. However increased Mn2+ levels are toxic to plant cells. Metal tolerance proteins (MTPs), member of cation diffusion facilitator protein (CDF) family, have important roles in metal homeostatis in different plant species and catalyse efflux of excess metal ions. In this study, we identified and characterized two MTP genes from Beta vulgaris spp. maritima (B. v. ssp. maritima). Overexpression of these two genes provided Mn tolerance in yeast cells. Sequence analyses displayed BmMTP10 and BmMTP11as members of the Mn-CDF family. Functional analyses of these proteins indicated that they are specific to Mn2+ with a role in reducing excess cellular Mn2+ levels when expressed in yeast. GFP-fusion constructs of both proteins localized to the Golgi apparatus as a punctuated pattern. Finally, Q-RT-PCR results showed that BmMTP10 expression was induced threefold in response to the excess Mn2+ treatment. On the other hand BmMTP11 expression was not affected in response to excess Mn2+ levels. Thus, our results suggest that the BmMTP10 and BmMTP11 proteins from B. v. ssp. maritima have non-redundant functions in terms of Mn2+ detoxification with a similar in planta localization and function as the Arabidopsis Mn-CDF homolog AtMTP11 and this conservation shows the evolutionary importance of these vesicular proteins in heavy metal homeostatis among plant species.
机译:锰(Mn2 +)是植物中必需的微量营养素。但是,增加的Mn2 +水平对植物细胞有毒。金属耐受蛋白(MTP)是阳离子扩散促进蛋白(CDF)家族的成员,在不同植物物种的金属稳态中具有重要作用,并催化过量金属离子的外流。在这项研究中,我们鉴定和鉴定了来自寻常寻常甜菜属的两个MTP基因。 maritima(诉v。ssp。maritima)。这两个基因的过表达在酵母细胞中提供了锰耐受性。序列分析显示BmMTP10和BmMTP11是Mn-CDF家族的成员。这些蛋白质的功能分析表明,它们对Mn2 +具有特异性,在酵母中表达时具有降低过量细胞Mn2 +水平的作用。两种蛋白的GFP融合构建体均以点状模式定位于高尔基体。最后,Q-RT-PCR结果表明,BmMTP10的表达被诱导了三倍于过量的Mn2 +处理。另一方面,BmMTP11表达不受过量Mn2 +水平的影响。因此,我们的结果表明来自B.v.ssp的BmMTP10和BmMTP11蛋白。 maritima在Mn2 +解毒方面具有非冗余功能,在植物体内的定位与拟南芥Mn-CDF同系物AtMTP11类似,并且这种保守性表明这些水泡蛋白在植物物种中的重金属稳态中的进化重要性。

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