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首页> 外文期刊>Plant, Cell & Environment >Arbuscular mycorrhizal fungi native from a Mediterranean saline area enhance maize tolerance to salinity through improved ion homeostasis.
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Arbuscular mycorrhizal fungi native from a Mediterranean saline area enhance maize tolerance to salinity through improved ion homeostasis.

机译:来自地中海盐水区的丛枝菌根真菌通过改善离子稳态来增强玉米对盐分的耐受性。

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摘要

Soil salinity restricts plant growth and productivity. Na+ represents the major ion causing toxicity because it competes with K+ for binding sites at the plasma membrane. Inoculation with arbuscular mycorrhizal fungi (AMF) can alleviate salt stress in the host plant through several mechanisms. These may include ion selection during the fungal uptake of nutrients from the soil or during transfer to the host plant. AM benefits could be enhanced when native AMF isolates are used. Thus, we investigated whether native AMF isolated from an area with problems of salinity and desertification can help maize plants to overcome the negative effects of salinity stress better than non-AM plants or plants inoculated with non-native AMF. Results showed that plants inoculated with two out the three native AMF had the highest shoot dry biomass at all salinity levels. Plants inoculated with the three native AMF showed significant increase of K+ and reduced Na+ accumulation as compared to non-mycorrhizal plants, concomitantly with higher K+/Na+ ratios in their tissues. For the first time, these effects have been correlated with regulation of ZmAKT2, ZmSOS1 and ZmSKOR genes expression in the roots of maize, contributing to K+ and Na+ homeostasis in plants colonized by native AMF.
机译:土壤盐分限制了植物的生长和生产力。 Na + 代表引起毒性的主要离子,因为它与K + 竞争质膜上的结合位点。接种丛枝菌根真菌(AMF)可以通过几种机制缓解寄主植物中的盐胁迫。这些可能包括在从土壤中真菌吸收养分过程中或转移到宿主植物过程中进行离子选择。使用天然AMF分离株可以增强AM的益处。因此,我们调查了从存在盐碱化和沙漠化问题的地区分离出的天然AMF是否能比非AM植物或接种非本地AMF的植物更好地克服盐胁迫的不利影响。结果表明,在所有盐度水平下,接种三种天然AMF中的两种的植物均具有最高的茎干生物量。与非菌根植物相比,接种了三种天然AMF的植物显示K + 显着增加,Na + 的积累减少,同时K + / Na + 比。这些效应首次与玉米根中ZmAKT2,ZmSOS1和ZmSKOR基因表达的调节相关,从而促进了植物的K + 和Na + 体内稳态。由本地AMF殖民。

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