Department of Biotechnology, University of Verona, Verona, Italy.
Physiol Plant. 2021 Nov;173(3):920-934. doi: 10.1111/ppl.13488. Epub 2021 Jul 5.
miRNAs have been found to be key players in mineral homeostasis, both in the control of nutrient balance and in the response to toxic trace elements. However, the effect of Zn excess on miRNAs has not been elucidated; moreover, no data are present regarding miRNAs in hyperaccumulator species, where metal homeostasis is tightly regulated. Therefore, expression levels of mature miRNAs were measured by RNA-Seq in Zn-sensitive Arabidopsis thaliana grown in control conditions and upon high Zn, in soil and in Zn-hyperaccumulator Arabidopsis halleri grown in control conditions. Differential expression of notable miRNAs and their targets was confirmed by real-time RT-PCR. The comparison in A. thaliana revealed a small subset modulated upon Zn treatment that is associated with stress response and nutrient homeostasis. On the other hand, a more consistent group of miRNAs was differentially expressed in A. halleri compared with A. thaliana, reflecting inherent differences in nutritional requirements and response to stresses and plant growth and development. Overall, these results confirm the involvement of miRNAs in Zn homeostasis and support the hypothesis of distinct regulatory pathways in hyperaccumulator species.
miRNAs 被发现是矿物质稳态的关键调控因子,既能控制营养平衡,又能响应有毒微量元素。然而,Zn 过量对 miRNAs 的影响尚未阐明;此外,关于金属稳态严格调控的超积累物种中的 miRNAs,目前还没有数据。因此,通过 RNA-Seq 测量了在对照条件下和高 Zn 条件下、在土壤中生长的 Zn 敏感拟南芥和在对照条件下生长的 Zn 超积累拟南芥 halleri 中成熟 miRNAs 的表达水平。通过实时 RT-PCR 确认了显著 miRNAs 及其靶标的差异表达。拟南芥的比较显示,一小部分 miRNAs 在 Zn 处理后发生了变化,这些 miRNAs 与应激反应和营养稳态有关。另一方面,与拟南芥相比,A. halleri 中有更多一致的 miRNA 群体发生了差异表达,反映了营养需求的固有差异以及对胁迫和植物生长发育的反应。总的来说,这些结果证实了 miRNAs 参与 Zn 稳态的调控,并支持超积累物种中存在不同调控途径的假说。