丛枝菌根真菌和暗隔内生菌共存可协同提高玉米的耐镉能力

Zhaodi Wang, Lei Wang, Xinran Liang, Guangqun Zhang, Zuran Li, Zhixin Yang, F. Zhan
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摘要

丛枝菌根真菌(AMF)和暗隔内生真菌(DSE)通常共存于植物根部。本研究探讨了在 25 mg-kg-1 Cd 胁迫下,AMF 和 DSE 的单接种和双接种对玉米生长、光合生理、谷胱甘肽(GSH)代谢、内源激素和镉(Cd)含量的影响。与未接种处理相比,AMF+DSE 共培养显著提高了玉米叶片的光合速率(Pn);促进了根系的 GSH 代谢;提高了根系 GSH 浓度和γ-谷氨酰半胱氨酸合成酶(γ-GCS)、ATP 硫酸酶(ATPS)和亚硫酸盐还原酶(SIR)的活性,分别提高了 215%、117%、50% 和 36%;提高根中内源激素的浓度,玉米素(ZR)、吲哚-3-乙酸(IAA)和脱落酸(ABA)分别增加 81%、209% 和 72%。AMF接种、DSE接种和AMF+DSE联合接种都能显著提高玉米的生物量,单一接种AMF或DSE能使根中的镉浓度分别提高104%或120%。此外,ZR、IAA 和 ABA 的含量与γ-GCS、ATPS 和 SIR 的活性以及谷胱甘肽(GSH)的含量之间存在明显或极明显的正相关。经双向方差分析,AMF和DSE对叶片Pn、根系GSH代谢和内源激素含量有明显或极明显的正交互作用。因此,AMF 和 DSE 的共存协同增强了玉米对镉的耐受性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The coexistence of arbuscular mycorrhizal fungi and dark septate endophytes synergistically enhanced the cadmium tolerance of maize
Arbuscular mycorrhizal fungi (AMF) and dark septate endophytic fungi (DSEs) generally coexist in the roots of plants. However, our understanding of the effects of their coexistence on plant growth and stress resistance is limited.In the present study, the effects of single and dual inoculation of AMF and DSE on the growth, photosynthetic physiology, glutathione (GSH) metabolism, endogenous hormones, and cadmium (Cd) content of maize under 25 mg•kg-1 Cd stress were investigated.Compared with that after the non-inoculation treatment, AMF+DSE co-inoculation significantly increased the photosynthetic rate (Pn) of maize leaves; promoted root GSH metabolism; increased the root GSH concentration and activity of γ-glutamyl cysteine synthase (γ-GCS), ATP sulfatase (ATPS) and sulfite reductase (SIR) by 215%, 117%, 50%, and 36%, respectively; and increased the concentration of endogenous hormones in roots, with increases in zeatin (ZR), indole-3 acetic acid (IAA), and abscisic acid (ABA) by 81%, 209%, and 72%, respectively. AMF inoculation, DSE inoculation and AMF+DSE co-inoculation significantly increased maize biomass, and single inoculation with AMF or DSE increased the Cd concentration in roots by 104% or 120%, respectively. Moreover, significant or highly significant positive correlations were observed between the contents of ZR, IAA, and ABA and the activities of γ-GCS, ATPS, and SIR and the glutathione (GSH) content. There were significant or highly significant positive interactions between AMF and DSE on the Pn of leaves, root GSH metabolism, and endogenous hormone contents according to two-way analysis of variance. Therefore, the coexistence of AMF and DSE synergistically enhanced the Cd tolerance of maize.
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