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Concentrations of secondary metabolites in tissues and root exudates of wheat seedlings changed under elevated atmospheric CO2 and cadmium-contaminated soils

机译:大气CO2浓度升高和镉污染土壤下小麦幼苗组织和根系分泌物中次生代谢产物的浓度发生变化

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We investigated the short-term effects of elevated atmospheric CO2 and cadmium (Cd)-contaminated soils on wheat seedlings root exudates and secondary metabolites in tissues. On average, total soluble sugar, total free amino acid, total phenolic acid, and total organic acid in root exudates were 45.7%, 63.2%, 40.0%, and 89.5% higher (p < 0.01), respectively, under elevated CO2 + Cd when compared to ambient CO2 chambers + Cd, which were greater than those under either elevated CO2 or Cd stress. Total phenolic acid, condensed tannin, and total flavonoid in tissues of wheat seedlings were 18.1%, 15.7%, and 21.9% (p < 0.01) lower, respectively, on average under elevated CO2 combined with Cd stress, which were lower than those under either elevated CO2 or Cd stress. Furthermore, the content of indole alkaloids in tissues at 1.0, 5.0, and 10.0 Cd mg Cd kg soil(-1) levels differed by -11.8%, -4.2%, and 37.3% (p < 0.01), respectively, under elevated CO2. The combination of elevated CO2 and Cd stress significantly influenced free amino acid, total phenolic acid, and organic acid in root exudates and condensed tannin, total flavonoid, and indole alkloids in tissues; however, the effect on total soluble sugar in root exudates and total phenolic acid in tissues was insignificant. Overall, elevated CO2 improved the concentration of root exudates of wheat seedlings under Cd-stressed conditions. However, elevated CO2 inhibited the accumulation of total phenolic acid, total flavonoid, and condensed tanninin tissues under Cd-stressed conditions. In addition, there might be a threshold in the response of indole alkaloids in tissues to elevated CO2 with increasing Cd levels
机译:我们调查了大气中二氧化碳和镉(Cd)污染的土壤对小麦幼苗根系分泌物和组织中次生代谢产物的短期影响。在升高的CO2 + Cd下,根系分泌物中的总可溶性糖,总游离氨基酸,总酚酸和总有机酸分别高出45.7%,63.2%,40.0%和89.5%(p <0.01)。与环境CO2室+ Cd相比,该值要大于在CO2升高或Cd应力下的情况。在CO2浓度升高和Cd胁迫下,小麦幼苗组织中的总酚酸,缩合单宁和总类黄酮分别平均降低18.1%,15.7%和21.9%(p <0.01),低于Cd胁迫。二氧化碳或镉胁迫升高。此外,在CO2浓度升高的情况下,1.0、5.0和10.0 Cd mg Cd kg土壤(-1)水平下组织中吲哚生物碱的含量分别相差-11.8%,-4.2%和37.3%(p <0.01)。 。升高的CO2和Cd胁迫共同影响根分泌物中的游离氨基酸,总酚酸和有机酸,以及组织中缩合的单宁,总黄酮和吲哚类生物碱。然而,对根分泌液中总可溶性糖和组织中总酚酸的影响微不足道。总体而言,在镉胁迫条件下,升高的二氧化碳水平改善了小麦幼苗根系分泌物的浓度。但是,升高的CO2抑制了镉胁迫条件下总酚酸,总黄酮和单宁浓缩组织的积累。此外,随着镉水平的升高,组织中吲哚生物碱对二氧化碳浓度升高的响应可能存在阈值

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