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Effect of Inoculation with Glomus versiforme on Cadmium Accumulation Antioxidant Activities and Phytochelatins of Solanum photeinocarpum

机译:接种云母对光合作用茄中镉的积累抗氧化活性和植物螯合素的影响

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摘要

The plant growth, phosphate acquisition, Cd translocation, phytochelatins (PCs) production and antioxidant parameters [superoxide dismutase (SOD), catalase (CAT), guaiacol peroxidase (POD), ascorbate peroxidase (APX), glutathione reductase (GR), glutathione (GSH), ascorbate (ASA) and malonaldehyde (MDA)] were investigated in Cd-hyperaccumulator Solanum photeinocarpum inoculated with Glomus versiforme BGC GD01C (Gv) in Cd-added soils (0, 5, 10, 20, 40 mg Cd kg-1 soil). Mycorrhizal colonization rates were generally high (from 77% to 94%), and hardly affected by Cd. Gv colonization significantly enhanced P acquisition, growth and total Cd uptakes in both shoots and roots of S. photeinocarpum at all Cd levels. Meanwhile, Gv symbiosis significantly increased Cd concentration in the roots, and decreased Cd concentration in the shoots at all Cd levels, which indicates that Gv could promote phytostabilization by enhancing Cd accumulation in the roots to inhibit its translocation to shoots and the “dilution effects” linked to an increase in plant dry matter yield and a reduced Cd partitioning to shoots. Moreover, the improvement of CAT, POD and APX activities in the leaves of mycorrhizal plants infers that Gv symbiosis helped S. photeinocarpum to relieve oxidative damage to biomolecules in Cd-contaminated soil. The evident decline of MDA content in the leaves of mycorrhizal plants indicates that Gv symbiosis evidently improved antioxidant activities, and the enhancement of PCs production in the leaves of mycorrhizal plants suggests that Gv-inoculated plant may be more efficient to relieve Cd phytotoxicity. Therefore, the possible mechanisms of Cd phytotoxicity alleviation by Gv can be concluded as the decline of Cd concentration in the shoots and the improvement of P acquisition, PCs production and activities of CAT, POD, APX in mycorrhizal plants.
机译:植物生长,磷酸盐获取,镉易位,植物螯合素(PCs)的生产和抗氧化剂参数[超氧化物歧化酶(SOD),过氧化氢酶(CAT),愈创木酚过氧化物酶(POD),抗坏血酸过氧化物酶(APX),谷胱甘肽还原酶(GR),谷胱甘肽( GSH),抗坏血酸(ASA)和丙二醛(MDA)]在添加了Cd的土壤中(0、5、10、20、40 mg Cd kg 接种了Glomus versiforme BGC GD01C(Gv)的Cd-超蓄积性茄果茄中进行了研究。 > -1 土壤)。菌根定植率通常很高(从77%到94%),几乎不受Cd影响。在所有镉水平下,Gv定植显着提高了光生链霉菌茎和根中磷的吸收,生长和总镉吸收。同时,Gv共生显着增加了所有Cd水平下根中Cd的浓度,并降低了芽中Cd的浓度,这表明Gv可以通过增强根中Cd的积累,抑制其向芽的转移和“稀释效应”来促进植物稳定。与增加植物干物质产量和减少Cd分配到枝条有关。此外,菌根植物叶片中CAT,POD和APX活性的提高表明,Gv共生帮助S.photeinocarpum减轻了对Cd污染土壤中生物分子的氧化损伤。菌根植物叶片中MDA含量的明显下降表明,Gv共生作用明显改善了抗氧化活性,而菌根植物叶片中PCs产量的增加表明,接种Gv的植物可能更有效地减轻了镉的植物毒性。因此,Gv减轻Cd的植物毒性的可能机制可以归结为芽中Cd浓度的下降以及菌根植物中P的获取,PC的产生以及CAT,POD,APX活性的提高。

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