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硼介导减轻甜橙[Citrus sinensis (L.) Osbeck cv. 雪柑]幼苗的铜毒性,这涉及减少对根系的损害以及改善营养和水分状况。

Boron-mediated amelioration of copper-toxicity in sweet orange [Citrus sinensis (L.) Osbeck cv. Xuegan] seedlings involved reduced damage to roots and improved nutrition and water status.

作者信息

Chen Xu-Feng, Hua Dan, Zheng Zhi-Chao, Zhang Jiang, Huang Wei-Tao, Chen Huan-Huan, Huang Zeng-Rong, Yang Lin-Tong, Ye Xin, Chen Li-Song

机构信息

College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

出版信息

Ecotoxicol Environ Saf. 2022 Apr 1;234:113423. doi: 10.1016/j.ecoenv.2022.113423. Epub 2022 Mar 17.

Abstract

'Xuegan' (Citrus sinensis) seedlings were fertilized 6 times weekly for 24 weeks with 0.5 or 350 μM CuCl and 2.5, 10 or 25 μM HBO. Cu-toxicity increased Cu uptake per plant (UPP) and Cu concentrations in leaves, stems and roots, decreased water uptake and phosphorus, nitrogen, calcium, magnesium, potassium, sulfur, boron and iron UPP, and increased the ratios of magnesium, potassium, calcium and sulfur UPP to phosphorus UPP and the ratios of leaf magnesium, potassium and calcium concentrations to leaf phosphorus concentration. Many decaying and dead fibrous roots occurred in Cu-toxic seedlings. Cu-toxicity-induced alterations of these parameters and root damage decreased with the increase of boron supply. These results demonstrated that B supplementation lowered Cu uptake and its concentrations in leaves, stems and roots and subsequently alleviated Cu-toxicity-induced damage to root growth and function, thus improving plant nutrient (decreased Cu uptake and efficient maintenance of the other nutrient homeostasis and balance) and water status. Further analysis indicated that the improved nutrition and water status contributed to the boron-mediated amelioration of Cu-toxicity-induced inhibition of seedlings, decline of leaf pigments, large reduction of leaf CO assimilation and impairment of leaf photosynthetic electron transport chain revealed by greatly altered chlorophyll a fluorescence (OJIP) transients, reduced maximum quantum yield of primary photochemistry (F/F), quantum yield for electron transport (ET/ABS) and total performance index (PI), and elevated dissipated energy per reaction center (DI/RC). To conclude, our findings corroborate the hypothesis that B-mediated amelioration of Cu-toxicity involved reduced damage to roots and improved nutrient and water status. Principal component analysis showed that Cu-toxicity-induced changes of above physiological parameters generally decreased with the increase of B supply and that B supply-induced alterations of above physiological parameters was greater in 350 μM Cu-treated than in 0.5 μM Cu-treated seedlings. B and Cu had a significant interactive influence on C. sinensis seedlings.

摘要

用0.5或350μM氯化铜和2.5、10或25μM硼对‘雪柑’(甜橙)幼苗每周施肥6次,共24周。铜毒性增加了单株铜吸收量(UPP)以及叶片、茎和根中的铜浓度,降低了水分吸收以及磷、氮、钙、镁、钾、硫、硼和铁的UPP,并增加了镁、钾、钙和硫的UPP与磷UPP的比率以及叶片镁、钾和钙浓度与叶片磷浓度的比率。铜中毒的幼苗出现许多腐烂和死亡的须根。随着硼供应量的增加,铜毒性引起的这些参数变化和根系损伤有所减轻。这些结果表明,补充硼降低了叶片、茎和根中的铜吸收及其浓度,随后减轻了铜毒性对根系生长和功能的损害,从而改善了植物营养状况(减少了铜吸收并有效维持了其他营养物质的稳态和平衡)以及水分状况。进一步分析表明,改善的营养和水分状况有助于硼介导的对铜毒性诱导的幼苗抑制、叶片色素下降、叶片CO2同化大幅降低以及叶片光合电子传递链损伤的改善,这些损伤通过叶绿素a荧光(OJIP)瞬变的极大改变、初级光化学最大量子产率(Fv/Fm)、电子传递量子产率(ET/ABS)和总性能指数(PI)的降低以及每个反应中心耗散能量(DI/RC)的升高得以揭示。总之,我们的研究结果证实了以下假设:硼介导的对铜毒性的改善涉及对根系损伤的减轻以及营养和水分状况的改善。主成分分析表明,随着硼供应量的增加,铜毒性引起的上述生理参数变化总体上有所降低,并且在350μM铜处理的幼苗中,硼供应引起的上述生理参数变化比在0.5μM铜处理的幼苗中更大。硼和铜对甜橙幼苗有显著的交互影响。

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