Grassland and Forage Division, National Institute of Animal Science, Rural Development Administration, Cheonan 31000, Korea.
Molecular Plant Physiology Laboratory, Department of Botany, University of Rajshahi, Rajshahi 6205, Bangladesh.
Int J Mol Sci. 2020 Mar 23;21(6):2219. doi: 10.3390/ijms21062219.
Iron (Fe)-deficiency is one of the major constraints affecting growth, yield and nutritional quality in plants. This study was performed to elucidate how arbuscular mycorrhizal fungi (AMF) alleviate Fe-deficiency retardation in alfalfa ( L.). AMF supplementation improved plant biomass, chlorophyll score, Fv/Fm (quantum efficiency of photosystem II), and Pi_ABS (photosynthesis performance index), and reduced cell death, electrolyte leakage, and hydrogen peroxide accumulation in alfalfa. Moreover, AMF enhanced ferric chelate reductase activity as well as Fe, Zn, S and P in alfalfa under Fe-deficiency. Although Fe-transporters ( and ) did not induce in root but significantly induced by AMF under Fe deficiency in roots, suggesting that AMF-mediated Fe enhancement is related to the bioavailability of Fe at rhizosphere/root apoplast rather than the upregulation of Fe transporters under Fe deficiency in alfalfa. Several S-transporters (, , and ) markedly increased following AMF supplementation with or without Fe-deficiency alfalfa. Our study further suggests that Fe uptake system is independently influenced by AMF regardless of the S status in alfalfa. However, the increase of S in alfalfa is correlated with the elevation of GR and S-metabolites (glutathione and cysteine) associated with antioxidant defense under Fe deficiency.
缺铁是影响植物生长、产量和营养品质的主要限制因素之一。本研究旨在阐明丛枝菌根真菌(AMF)如何缓解苜蓿( L.)缺铁的生长迟缓。AMF 补充提高了植物生物量、叶绿素评分、Fv/Fm(光系统 II 的量子效率)和 Pi_ABS(光合作用性能指数),并降低了苜蓿的细胞死亡、电解质渗漏和过氧化氢积累。此外,AMF 在缺铁条件下增强了苜蓿中铁螯合还原酶活性以及 Fe、Zn、S 和 P。虽然 Fe 转运蛋白(和)没有在根中诱导,但在根中 Fe 缺乏时 AMF 显著诱导,这表明 AMF 介导的 Fe 增强与根际/根质外体的 Fe 生物利用度有关,而不是在 Fe 缺乏的苜蓿中上调 Fe 转运蛋白。一些 S 转运蛋白(、、和)在添加 AMF 或缺乏 Fe 的苜蓿中明显增加。我们的研究进一步表明,无论苜蓿的 S 状态如何,AMF 独立地影响 Fe 摄取系统。然而,苜蓿中 S 的增加与 Fe 缺乏下与抗氧化防御相关的 GR 和 S 代谢物(谷胱甘肽和半胱氨酸)的升高有关。