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Mn-CDF 家族基因增强了茶树(Camellia sinensis)在酸性条件下对锰的耐受性。

Mn-CDF family genes enhance the manganese tolerance of the tea plants (Camellia sinensis) under acidic condition.

机构信息

College of Horticulture, Nanjing Agricultural University, Nanjing 210095, PR China.

Tea Industry Development Service Center of Wen County, Longnan 746400, PR China.

出版信息

Plant Physiol Biochem. 2024 Nov;216:109179. doi: 10.1016/j.plaphy.2024.109179. Epub 2024 Oct 4.

Abstract

The tea plants cultivated in acidic soils are vulnerable to excessive manganese (Mn), which increases the risk of Mn toxicity to physiology and development. Mn-cation diffusion facilitator (CDF) family genes have been implicated in regulating Mn homeostasis and tolerance. However, the mechanism of Mn tolerance of tea plants in acidic environments is still unknown. In this study, we initially examined the phenotypic characteristics and Mn contents variability in different tissues of tea plants under various Mn concentration at pH 5 and 4. We observed that tea plants exhibited remarkably high Mn tolerance at pH 4, with Mn accumulation notably elevated in the aboveground tissues under pH 4 condition after 28-day treatment. We found the expression levels of Mn-CDF genes, had different subcellular localization, were tissue-specific and significantly induced by high Mn concentrations at pH 4 condition. Furthermore, the yeast complementation assays indicated that the heterologous expression of Mn-CDF genes restored the growth of a Mn sensitive yeast strain, Δpmr1. Taken together, these results suggest that Mn-CDF family genes function as Mn transporters to participate in Mn tolerance in acidic environments. This study provides reference for further study on the mechanism of maintaining Mn homeostasis in tea plants under soil acidification.

摘要

在酸性土壤中种植的茶树容易受到过量锰(Mn)的影响,这增加了锰毒性对生理和发育的风险。锰阳离子扩散促进剂(CDF)家族基因已被牵涉到调节锰的稳态和耐受性。然而,茶树在酸性环境下对锰的耐受性机制仍不清楚。在这项研究中,我们初步研究了在 pH 值为 5 和 4 时不同锰浓度下茶树在不同组织中的表型特征和锰含量的变化。我们观察到,茶树在 pH 值为 4 时表现出显著的高锰耐受性,在 pH 值为 4 条件下经过 28 天处理后,地上组织中的锰积累明显升高。我们发现,锰-CDF 基因的表达水平具有不同的亚细胞定位、组织特异性,并且在 pH 值为 4 时高浓度锰的条件下显著诱导。此外,酵母互补测定表明,Mn-CDF 基因的异源表达恢复了 Mn 敏感酵母菌株 Δpmr1 的生长。综上所述,这些结果表明,Mn-CDF 家族基因作为锰转运蛋白参与了酸性环境下的锰耐受性。本研究为进一步研究土壤酸化条件下茶树维持锰稳态的机制提供了参考。

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