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火炬松树种 Rhus chinensis Mill. 幼苗对 Pb 的耐受性:生理生化响应。

Woody species Rhus chinensis Mill. seedlings tolerance to Pb: Physiological and biochemical response.

机构信息

Research Institute of Subtropical Forestry, Key Laboratory of Tree Breeding of Zhejiang Province, Chinese Academy of Forestry, Hangzhou 311400, China; Research Institute of Forestry, Chinese Academy of Forestry, Beijing 100091, China.

Research Institute of Subtropical Forestry, Key Laboratory of Tree Breeding of Zhejiang Province, Chinese Academy of Forestry, Hangzhou 311400, China.

出版信息

J Environ Sci (China). 2019 Apr;78:63-73. doi: 10.1016/j.jes.2018.07.003. Epub 2018 Jul 19.

Abstract

Screening potential plant species is a crucial consideration in phytoremediation technology. Our previous study demonstrated that Rhus chinensis Mill. seedlings had potentials for phytoremediation of Pb contaminated soil. However, its bioaccumulation and tolerance characteristics remain unclear. Seedling growth, LMWOAs secreted by roots, Pb subcellular distribution and chemical forms, and mineral elements in R. chinensis tissues were evaluated under different Pb concentrations (0, 25, 50, 100, 200 and 400 mg/L) in culture solution at 14 days after planting. R. chinensis did not show visual symptoms of Pb toxicity under lower Pb treatments; however, Pb significantly declined the growth of seedlings under higher Pb treatments. Higher Pb stress also decreased the concentrations of nitrogen in leaves, but increased the concentrations of P and K in roots. Pb stress also decreased Mn concentrations in leaves. A great quantity of Pb was uptake and mostly retained in R. chinensis roots. Nonetheless, R. chinensis can still concentrate 459.3 and 1102.7 mg/kg Pb in leaves and stems, respectively. Most of Pb in R. chinensis tissues was stored in the cell wall with HAc-, HCl-, and NaCl-extractable form. LMWOAs secreted by R. chinensis roots showed a strong positive correlation with Pb concentrations in all plant tissues and with P in roots. Our results suggested that Pb deposited in the cell wall and integration with phosphate or oxalate might be responsible for the tolerance of R. chinensis under Pb stress in short period.

摘要

筛选潜在的植物物种是植物修复技术的一个关键考虑因素。我们之前的研究表明,盐肤木(Rhus chinensis Mill.)幼苗具有修复 Pb 污染土壤的潜力。然而,其生物积累和耐受特性尚不清楚。在种植后 14 天,在培养液中不同 Pb 浓度(0、25、50、100、200 和 400 mg/L)下,评价了幼苗生长、根系分泌的低分子量有机酸、Pb 亚细胞分布和化学形态以及盐肤木组织中的矿物质元素。在较低 Pb 处理下,盐肤木没有出现 Pb 毒性的明显症状;然而,较高 Pb 处理显著降低了幼苗的生长。较高的 Pb 胁迫还降低了叶片中氮的浓度,但增加了根部 P 和 K 的浓度。Pb 胁迫还降低了叶片中的 Mn 浓度。大量的 Pb 被盐肤木吸收,大部分保留在根部。尽管如此,盐肤木仍能在叶片和茎中分别积累 459.3 和 1102.7 mg/kg 的 Pb。盐肤木组织中的大部分 Pb 以细胞壁结合态和 HAc-、HCl-和 NaCl 可提取态存在。盐肤木根系分泌的低分子量有机酸与所有植物组织中的 Pb 浓度以及根中的 P 呈强烈正相关。我们的研究结果表明,Pb 沉积在细胞壁中并与磷酸盐或草酸盐结合可能是盐肤木在短时间内耐受 Pb 胁迫的原因。

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