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积累脯氨酸的转基因植物对镉胁迫具有更强的耐受性。

Transgenic Plants That Accumulate Proline Display Enhanced Tolerance to Cadmium Stress.

作者信息

García de la Torre Vanesa S, Coba de la Peña Teodoro, Lucas M Mercedes, Pueyo José J

机构信息

Instituto de Ciencias Agrarias, Consejo Superior de Investigaciones Cientiíficas (ICA-CSIC), Madrid, Spain.

Centro de Estudios Avanzados en Zonas Áridas (CEAZA), La Serena, Chile.

出版信息

Front Plant Sci. 2022 Jan 26;13:829069. doi: 10.3389/fpls.2022.829069. eCollection 2022.

Abstract

Cadmium (Cd) accumulation in agricultural soils constitutes a serious problem for crop yields and food safety. It is known that proline (Pro) can rapidly accumulate in plant tissues in response to abiotic stress. To analyze the potential protective effect of Pro accumulation against Cd toxicity, we compared the response to Cd stress of wild-type (WT) and a transgenic line that we had previously obtained and characterized (p18), which expressed the Δ gene from (), and accumulated high Pro levels. Cadmium significantly reduced germination of WT seeds compared to p18 seeds, and seedling relative root growth, a valid indicator of metal tolerance, was significantly higher for p18 than WT seedlings. We analyzed the relative expression of genes related to Pro metabolism, phytochelatin biosynthesis. antioxidant machinery, and NADPH recycling, which are relevant mechanisms in the response to Cd stress. They presented differential expression in the seedlings of both genotypes both under control conditions and under Cd stress, suggesting that the Cd response mechanisms might be constitutively activated in the transgenic line. Pro accumulation promoted higher survival, enhanced growth performance, and minor nutrient imbalance in transgenic p18 plants compared to WT plants. These facts, together with the recorded gluthatione levels, lipid peroxidation and antioxidant enzyme activities strongly suggested that expression and Pro accumulation conferred enhanced Cd tolerance to p18 plants, which was likely mediated by changes in Pro metabolism, increased phytochelatin biosynthesis and a more efficient antioxidant response. Moreover, p18 roots accumulated significantly higher Cd amounts than WT roots, while Cd translocation to the aerial part was similar to WT plants, thus suggesting that high Pro levels increased not only Cd tolerance, but also Cd phytostabilization by rhizosequestration.

摘要

农业土壤中的镉(Cd)积累对作物产量和食品安全构成严重问题。已知脯氨酸(Pro)可在植物组织中响应非生物胁迫而迅速积累。为了分析脯氨酸积累对镉毒性的潜在保护作用,我们比较了野生型(WT)和我们之前获得并鉴定的转基因系(p18)对镉胁迫的响应,该转基因系表达来自[具体来源]的Δ基因,并积累高水平的脯氨酸。与p18种子相比,镉显著降低了WT种子的萌发率,而作为金属耐受性有效指标的幼苗相对根生长,p18幼苗显著高于WT幼苗。我们分析了与脯氨酸代谢、植物螯合肽生物合成、抗氧化机制和NADPH循环相关的基因的相对表达,这些都是响应镉胁迫的相关机制。它们在两种基因型的幼苗中,无论是在对照条件下还是在镉胁迫下,都呈现出差异表达,这表明镉响应机制可能在转基因系中组成性激活。与WT植物相比,脯氨酸积累促进了转基因p18植物更高的存活率、增强的生长性能和较小的营养失衡。这些事实,连同记录的谷胱甘肽水平、脂质过氧化和抗氧化酶活性,强烈表明[具体基因]表达和脯氨酸积累赋予了p18植物增强的镉耐受性,这可能是由脯氨酸代谢的变化、植物螯合肽生物合成的增加和更有效的抗氧化反应介导的。此外,p18根中积累的镉量显著高于WT根,而镉向地上部分的转运与WT植物相似,因此表明高脯氨酸水平不仅增加了镉耐受性,还通过根际固定增加了镉的植物稳定作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f078/8826176/f86da8eba834/fpls-13-829069-g001.jpg

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