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转录可塑性缓冲锌稳态中的遗传变异。

Transcriptional plasticity buffers genetic variation in zinc homeostasis.

机构信息

Center for Coastal, Limnology and Marine Studies, Federal University of Rio Grande do Sul, Litoral Norte Campus, Imbé, RS, 95625-000, Brazil.

Future Food Beacon of Excellence and the School of Biosciences, University of Nottingham, Nottingham, LE12 5RD, UK.

出版信息

Sci Rep. 2019 Dec 20;9(1):19482. doi: 10.1038/s41598-019-55736-0.

Abstract

In roots of Arabidopsis thaliana, Zn can be either loaded into the xylem for translocation to the shoot or stored in vacuoles. Vacuolar storage is achieved through the action of the Zn/Cd transporter HMA3 (Heavy Metal Atpase 3). The Col-0 accession has an HMA3 loss-of-function allele resulting in high shoot Cd, when compared to accession CSHL-5 which has a functional allele and low shoot Cd. Interestingly, both Col-0 and CSHL-5 have similar shoot Zn concentrations. We hypothesize that plants sense changes in cytosolic Zn that are due to variation in HMA3 function, and respond by altering expression of genes related to Zn uptake, transport and compartmentalisation, in order to maintain Zn homeostasis. The expression level of genes known to be involved in Zn homeostasis were quantified in both wild-type Col-0 and Col-0::HMA3 plants transformed with the functional CSHL-5 allele of HMA3. We observed significant positive correlations between expression of HMA3 and of genes known to be involved in Zn homeostasis, including ZIP3, ZIP4, MTP1, and bZIP19. The results support our hypothesis that alteration in the level of function of HMA3 is counterbalanced by the fine regulation of the Zn homeostasis gene network in roots of A. thaliana.

摘要

在拟南芥的根部,锌可以被装载到木质部中进行转运到地上部分,或者储存在液泡中。液泡储存是通过锌/镉转运蛋白 HMA3(重金属 ATP 酶 3)的作用实现的。Col-0 品系具有 HMA3 功能丧失突变体,导致地上部分的 Cd 含量较高,而 CSHL-5 品系具有功能性等位基因,地上部分的 Cd 含量较低。有趣的是,Col-0 和 CSHL-5 地上部分的 Zn 浓度相似。我们假设植物感知细胞质中 Zn 的变化,这是由于 HMA3 功能的变化引起的,并通过改变与 Zn 吸收、转运和区室化相关的基因的表达来做出响应,以维持 Zn 的稳态。在 Col-0 和 Col-0::HMA3 植物中,转化为具有功能性 CSHL-5 HMA3 等位基因后,测定了已知与 Zn 稳态相关的基因的表达水平。我们观察到 HMA3 和已知参与 Zn 稳态的基因的表达之间存在显著的正相关,包括 ZIP3、ZIP4、MTP1 和 bZIP19。这些结果支持我们的假设,即 HMA3 功能水平的改变通过拟南芥根部 Zn 稳态基因网络的精细调节得到平衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed75/6925235/9c9ad2bbe811/41598_2019_55736_Fig1_HTML.jpg

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