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土壤淹水及其对镉和养分吸收的影响会影响伊氏樟英植物的光合活性。

Soil flooding and its outcome on cadmium and nutrient uptake affect photosynthetic activity in Inga laurina plants.

作者信息

Lopes Namir G M, Kloss Rodrigo B, Dos Santos Ivanildes C, Souza Vânia L, Prasad Majeti N V, Mangabeira Pedro A O, França Marcel G C

机构信息

Departamento de Ciências Biológicas, Universidade Estadual de Santa Cruz, Campos Soane Nazaré de Andrade, Rodovia Jorge Amado, Km 16, Bairro Sobradinho, CEP 45662-900, Ilhéus, Ba, Brasil.

Departamento de Botânica, Universidade Federal de Minas Gerais, Av. Antônio Carlos, 6627, Pampulha, Belo Horizonte, MG, Brasil.

出版信息

Ecotoxicology. 2023 Jan;32(1):73-81. doi: 10.1007/s10646-022-02615-6. Epub 2023 Jan 10.

Abstract

Urban areas next to mangroves are subject to progressive heavy metal contamination. Treelets of Inga laurina were collected in this ecosystem and cultivated for 30 days in waterlogged conditions and closed pots (WC) and at field capacity (FC), while exposed to different Cd concentrations (0, 50 and 100 mg·kg). Soil water conditions did not affect total Cd in plants, with Cd accumulating in roots and WC inducing less leaf chlorophyll while increasing carotenoids and chlorophyll ratio. Higher net photosynthesis, stomatal conductance, transpiration, and Ci/Ca ratio were observed under the highest Cd concentration and WC, while being conservative in water consumption as shown by the reduction in both water use efficiencies. Nutritional uptake behaved differently for each element, with N, Mg and Ca not being affected by Cd under WC but K increasing with Cd. At FC, plants showed higher values than WC, with the highest Cd concentration at FC showing the highest values overall. Nutrient allocation in organs was affected by WC in N, Mg, K, P and Ca but only P by Cd, with WC reducing nutrients overall and N, Mg and Ca behaving the same in both soil conditions while K was lowered in leaves and increased in roots under WC. P allocation under WC was not hindered by Cd even showing higher values in it than FC in some treatments. Altogether, results indicate that I. laurina can be considered a Cd-tolerant species, especially in WC and it presents a potential to be used as a phytoremediator plant.

摘要

红树林附近的城市地区正遭受着日益严重的重金属污染。在这个生态系统中采集了月桂英加豆的树苗,并在淹水条件和封闭花盆(WC)以及田间持水量(FC)的条件下培养30天,同时使其暴露于不同的镉浓度(0、50和100 mg·kg)下。土壤水分条件对植物中的总镉含量没有影响,镉在根部积累,淹水条件下叶片叶绿素含量降低,而类胡萝卜素和叶绿素比率增加。在最高镉浓度和淹水条件下观察到较高的净光合作用、气孔导度、蒸腾作用和Ci/Ca比率,同时水分利用效率降低表明其在水分消耗方面较为保守。每种元素的营养吸收表现不同,在淹水条件下,氮、镁和钙不受镉的影响,但钾随镉含量增加。在田间持水量条件下,植物的值高于淹水条件,田间持水量下最高镉浓度总体上显示出最高值。器官中的养分分配受淹水条件影响的元素有氮、镁、钾、磷和钙,但仅磷受镉影响,淹水条件总体上降低了养分含量,氮、镁和钙在两种土壤条件下表现相同,而在淹水条件下,钾在叶片中降低,在根部增加。在淹水条件下,磷的分配不受镉的阻碍,甚至在某些处理中显示出比田间持水量更高的值。总之,结果表明月桂英加豆可被视为耐镉物种,尤其是在淹水条件下,它具有作为植物修复植物的潜力。

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