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污染土壤条件下植物中脯氨酸的积累——我们观点一致吗?

Accumulation of Proline in Plants under Contaminated Soils-Are We on the Same Page?

作者信息

Spormann Sofia, Nadais Pedro, Sousa Filipa, Pinto Mafalda, Martins Maria, Sousa Bruno, Fidalgo Fernanda, Soares Cristiano

机构信息

GreenUPorto-Sustainable Agrifood Production Research Centre & Inov4Agro, Faculty of Sciences, University of Porto, Rua do Campo Alegre s/n, 4169-007 Porto, Portugal.

Biology Department, Faculty of Sciences, University of Porto, Rua do Campo Alegre s/n, 4169-007 Porto, Portugal.

出版信息

Antioxidants (Basel). 2023 Mar 8;12(3):666. doi: 10.3390/antiox12030666.

Abstract

Agricultural soil degradation is occurring at unprecedented rates, not only as an indirect effect of climate change (CC) but also due to intensified agricultural practices which affect soil properties and biodiversity. Therefore, understanding the impacts of CC and soil degradation on plant physiology is crucial for the sustainable development of mitigation strategies to prevent crop productivity losses. The amino acid proline has long been recognized for playing distinct roles in plant cells undergoing osmotic stress. Due to its osmoprotectant and redox-buffering ability, a positive correlation between proline accumulation and plants' tolerance to abiotic stress has been pointed out in numerous reviews. Indeed, proline quantification is used systematically by plant physiologists as an indicator of the degree of tolerance and a measurement of the antioxidant potential in plants under stressful conditions. Moreover, the exogenous application of proline has been shown to increase resilience to several stress factors, including those related to soil degradation such as salinity and exposure to metals and xenobiotics. However, recent data from several studies often refer to proline accumulation as a signal of stress sensitivity with no clear correlation with improved antioxidant activity or higher stress tolerance, including when proline is used exogenously as a stress reliever. Nevertheless, endogenous proline levels are strongly modified by these stresses, proving its involvement in plant responses. Hence, one main question arises-is proline augmentation always a sign of improved stress resilience? From this perspective, the present review aims to provide a more comprehensive understanding of the implications of proline accumulation in plants under abiotic stress induced by soil degradation factors, reinforcing the idea that proline quantification should not be employed as a sole indicator of stress sensitivity or resilience but rather complemented with further biochemical and physiological endpoints.

摘要

农业土壤退化正以前所未有的速度发生,这不仅是气候变化(CC)的间接影响,也是由于强化农业实践影响了土壤性质和生物多样性所致。因此,了解气候变化和土壤退化对植物生理的影响对于制定缓解策略以防止作物生产力损失的可持续发展至关重要。长期以来,人们一直认识到氨基酸脯氨酸在经历渗透胁迫的植物细胞中发挥着独特作用。由于其渗透保护和氧化还原缓冲能力,众多综述指出脯氨酸积累与植物对非生物胁迫的耐受性之间存在正相关。事实上,植物生理学家系统地将脯氨酸定量用作耐受性程度的指标以及压力条件下植物抗氧化潜力的度量。此外,脯氨酸的外源施用已被证明可以提高对几种胁迫因素的恢复力,包括与土壤退化相关的因素,如盐度以及接触金属和外源性物质。然而,最近几项研究的数据常常将脯氨酸积累视为胁迫敏感性的信号,与抗氧化活性的提高或更高的胁迫耐受性没有明显关联,包括当脯氨酸作为外源缓解胁迫剂使用时。尽管如此,这些胁迫会强烈改变内源性脯氨酸水平,证明其参与了植物反应。因此,出现了一个主要问题——脯氨酸增加总是胁迫恢复力提高的标志吗?从这个角度来看,本综述旨在更全面地了解土壤退化因素诱导的非生物胁迫下脯氨酸积累对植物的影响,强化这样一种观点,即脯氨酸定量不应仅用作胁迫敏感性或恢复力的唯一指标,而应辅以进一步的生化和生理终点指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc4a/10045403/c4dc60bc39d2/antioxidants-12-00666-g001.jpg

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