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铜经济响应在水稻(Oryza sativa L.)中部分得到保守。

The copper economy response is partially conserved in rice (Oryza sativa L.).

机构信息

Programa de Pós-Graduação em Agrobiologia, Universidade Federal de Santa Maria, Santa Maria, Brazil.

Programa de Pós-Graduação em Agronomia, Universidade Federal de Santa Maria, Santa Maria, Brazil.

出版信息

Plant Physiol Biochem. 2021 Jan;158:113-124. doi: 10.1016/j.plaphy.2020.11.051. Epub 2020 Nov 30.

DOI:10.1016/j.plaphy.2020.11.051
PMID:33307423
Abstract

Copper (Cu) is an essential element for plants, especially in photosynthesis, as it is required for plastocyanin function in electron transfer reactions at thylakoid membranes. In Arabidopsis thaliana, Cu deficiency leads to the Cu economy response, in which plants prioritize Cu usage by plastocyanin in detriment of non-essential cupric proteins. In rice (Oryza sativa), however, this response has not been characterized. Rice OsHMA5 is a Cu xylem-loading transporter involved in Cu translocation from roots to shoots, as suggested by the analysis of oshma5 mutant plants. Aiming to understand how rice plants respond to Cu deficiency and how decreased Cu translocation to shoots can affect this response, we characterized the physiological and molecular responses of WT and oshma5 plants under control and Cu deficiency treatments. We found evidence that shoots of oshma5 plants are more prone to Cu deficiency compared to shoots of WT plants, as demonstrated by decreased chlorophyll and Cu concentrations, and electron transport rate. Gene expression analysis revealed that Cu high-affinity transporters OsCOPT1 and OsCOPT5, along with a set of miRNAs and three Cu/Zn superoxide dismutases are responsive to Cu deficiency in both WT and oshma5 plants, suggesting their involvement in the Cu economy response. However, Fe superoxide dismutase was not up-regulated in rice, indicating a difference compared to the A. thaliana Cu economy model. Therefore, we provide evidence for a partially conserved Cu economy response in rice, in comparison to A. thaliana.

摘要

铜(Cu)是植物必需的元素,特别是在光合作用中,因为它是类囊体膜电子传递反应中质体蓝素功能所必需的。在拟南芥中,Cu 缺乏会导致 Cu 经济响应,其中植物通过质体蓝素优先使用 Cu,而牺牲非必需的铜蛋白。然而,在水稻(Oryza sativa)中,这种反应尚未被描述。水稻 OsHMA5 是一种 Cu 木质部装载转运蛋白,参与 Cu 从根部向地上部的转运,这一点可以通过分析 oshma5 突变体植物得到证实。为了了解水稻植物如何应对 Cu 缺乏,以及减少 Cu 向地上部的转运如何影响这种反应,我们对 WT 和 oshma5 植物在对照和 Cu 缺乏处理下的生理和分子反应进行了表征。我们发现证据表明,与 WT 植物的地上部相比,oshma5 植物的地上部更容易受到 Cu 缺乏的影响,这表现为叶绿素和 Cu 浓度以及电子传递速率的降低。基因表达分析表明,Cu 高亲和力转运蛋白 OsCOPT1 和 OsCOPT5,以及一组 miRNAs 和三种 Cu/Zn 超氧化物歧化酶,对 WT 和 oshma5 植物的 Cu 缺乏均有反应,表明它们参与了 Cu 经济响应。然而,在水稻中,Fe 超氧化物歧化酶没有上调,这表明与拟南芥的 Cu 经济模型存在差异。因此,我们提供了证据表明,与拟南芥相比,水稻中存在部分保守的 Cu 经济响应。

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