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CO2 浓度增加会使生长在镉污染土壤中的水稻籽粒中必需和非必需氨基酸浓度产生差异。

Increasing CO2 differentially affects essential and non-essential amino acid concentration of rice grains grown in cadmium-contaminated soils.

机构信息

Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agricultural Sciences/Key Laboratory of Agro-Environment, Ministry of Agriculture of China, Beijing 100081, PR China; Centre for Research in Ecotoxicology and Environmental Remediation, Agro-Environmental Protection Institute, Tianjin 300191, PR China.

Centre for Research in Ecotoxicology and Environmental Remediation, Agro-Environmental Protection Institute, Tianjin 300191, PR China.

出版信息

Environ Pollut. 2016 Sep;216:86-94. doi: 10.1016/j.envpol.2016.05.049. Epub 2016 May 26.

DOI:10.1016/j.envpol.2016.05.049
PMID:27239692
Abstract

Environmental pollution by both ambient CO2 and heavy metals has been steadily increasing, but we do not know how fluctuating CO2 concentrations influence plant nutrients under high Cd pollution, especially in crops. Here, we studied the effects of elevated CO2 and Cd accumulation on proteins and amino acids in rice under Cd stress. In this pot experiment, we analyzed the amino-acid profile of 20 rice cultivars that accumulate Cd differently; the plants were grown in Cd-containing soils under ambient conditions and elevated CO2 levels. We found that although Cd concentrations appeared to be higher in most cultivars under elevated CO2 than under ambient CO2, the effect was significant only in seven cultivars. Combined exposure to Cd and elevated CO2 strongly decreased rice protein and amino acid profiles, including essential and non-essential amino acids. Under elevated CO2, the ratios of specific amino acids were either higher or lower than the optimal ratios provided by FAO/WHO, suggesting that CO2 may flatten the overall amino-acid profile, leading to an excess in some amino acids and deficiencies in others when the rice is consumed. Thus, Cd-tainted rice limits the concentration of essential amino acids in rice-based diets, and the combination with elevated CO2 further exacerbates the problem.

摘要

环境污染中的大气二氧化碳和重金属含量一直在稳步上升,但我们尚不清楚波动的二氧化碳浓度如何影响高镉污染下的植物养分,尤其是在农作物中。在这里,我们研究了在镉胁迫下,升高的二氧化碳和镉积累对水稻蛋白质和氨基酸的影响。在这项盆栽实验中,我们分析了 20 种不同积累镉的水稻品种的氨基酸谱;这些植物在含有镉的土壤中,处于大气条件和升高的二氧化碳水平下生长。我们发现,尽管在大多数品种中,升高的二氧化碳条件下的镉浓度似乎高于大气条件下,但这种影响仅在 7 个品种中显著。镉和升高的二氧化碳的联合暴露强烈降低了水稻蛋白质和氨基酸谱,包括必需氨基酸和非必需氨基酸。在升高的二氧化碳条件下,特定氨基酸的比例高于或低于 FAO/WHO 提供的最佳比例,这表明二氧化碳可能会使整体氨基酸谱变得平坦,导致在食用水稻时,某些氨基酸过量,而其他氨基酸不足。因此,受镉污染的水稻限制了以水稻为主的饮食中必需氨基酸的浓度,而与升高的二氧化碳相结合则进一步加剧了这一问题。

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引用本文的文献

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Elevated CO2 (free-air CO2 enrichment) increases grain yield of aluminium-resistant but not aluminium-sensitive wheat (Triticum aestivum) grown in an acid soil.大气 CO2 浓度升高(自由空气 CO2 富集)增加了在酸性土壤中生长的耐铝但不敏感的小麦(Triticum aestivum)的籽粒产量。
Ann Bot. 2019 Feb 15;123(3):461-468. doi: 10.1093/aob/mcy171.