Department of Biochemistry and Molecular Biology, College of Life Science, Nanjing Agricultural University, Nanjing, 210095, China.
Biometals. 2017 Dec;30(6):917-931. doi: 10.1007/s10534-017-0057-3. Epub 2017 Oct 9.
In plants, metal transporters are responsible for metal uptake, translocation and homeostasis. These metals include essential nutrients such as zinc (Zn) and manganese (Mn) or non-essential metals like cadmium (Cd) and lead (Pb). Although a few metal transporters have been well characterized in model plants, little is known about their functionality in rapeseed (Brassica napus). In the study, 22 NRAMP transporter genes from B. napus genome were identified and annotated using bioinformatics and high-throughput RNA-sequencing (RNA-seq). Based on the sequence identity, these NRAMP transporters can be classified into 6 subfamilies. RNA-seq analysis revealed that 19 NRAMP transporters were detected and some of the genes were well confirmed by qRT-PCR. Ten NRAMP transporters (45.5%, 10/22) were found to be differentially expressed (> 2 fold change, p < 0.05) under Cd exposure. As an example, we specified expression of BnNRAMP1b under Cd exposure. BnNRAMP1b is a constitutive gene expressing throughout all development stages including seedlings, vegetative tissue, flowers and siliques. Expression of BnNRAMP1b can be strongly induced in seedlings exposed to 80, 160 and 240 μM Cd. To define whether BnNRAMP1b was specific for Cd transport, a yeast (wild-type, BY4741) system with its mutants (ycf1, zrc1, and smf1) defective in transport activity of Cd, Zn and Mn, respectively were tested. Compared to empty vectors (pYES2), cells carrying BnNRAMP1b can rescue the transport functions. As a consequence, excess Cd, Zn and Mn were taken in the cells, which led to metal toxicity, suggesting that BnNRAMP1b is responsible for transport of these metals in B. napus. Using our previously created degradome datasets, we found that BnNRAMP1b could be cleaved by miR167, suggesting that BnNRAMP1b is a target of miR167 in B. napus. The contrasting expression pattern of BnNRAMP1b and miR167 under Cd stress supported the post-transcriptional regulation of BnNRAMP1b by miR167.
在植物中,金属转运蛋白负责金属的摄取、转运和稳态。这些金属包括锌(Zn)和锰(Mn)等必需营养元素,或镉(Cd)和铅(Pb)等非必需金属。尽管一些金属转运蛋白在模式植物中得到了很好的描述,但对油菜(Brassica napus)中的功能知之甚少。在这项研究中,使用生物信息学和高通量 RNA-seq(RNA-seq)从油菜基因组中鉴定和注释了 22 个 NRAMP 转运蛋白基因。根据序列同一性,这些 NRAMP 转运蛋白可以分为 6 个亚家族。RNA-seq 分析表明,检测到 19 个 NRAMP 转运蛋白,其中一些基因通过 qRT-PCR 得到了很好的验证。在 Cd 暴露下,发现 10 个(45.5%,10/22)NRAMP 转运蛋白表达差异显著(> 2 倍变化,p < 0.05)。例如,我们指定了 Cd 暴露下 BnNRAMP1b 的表达。BnNRAMP1b 是一种组成型基因,在包括幼苗、营养组织、花朵和角果在内的所有发育阶段都表达。在暴露于 80、160 和 240 μM Cd 的幼苗中,BnNRAMP1b 的表达可以强烈诱导。为了确定 BnNRAMP1b 是否专门用于 Cd 转运,我们使用酵母(野生型,BY4741)系统及其突变体(分别在 Cd、Zn 和 Mn 转运活性方面有缺陷的 ycf1、zrc1 和 smf1)进行了测试。与空载体(pYES2)相比,携带 BnNRAMP1b 的细胞可以挽救转运功能。因此,过量的 Cd、Zn 和 Mn 被细胞吸收,导致金属毒性,表明 BnNRAMP1b 负责油菜中这些金属的转运。使用我们之前创建的降解组数据集,我们发现 BnNRAMP1b 可以被 miR167 切割,表明 BnNRAMP1b 是油菜中 miR167 的靶标。在 Cd 胁迫下,BnNRAMP1b 和 miR167 的表达模式相反,支持 miR167 对 BnNRAMP1b 的转录后调控。