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丛枝菌根在田间和温室条件下提高了不同小麦基因型在高盐水平下的养分吸收。

Arbuscular mycorrhizas enhance nutrient uptake in different wheat genotypes at high salinity levels under field and greenhouse conditions.

机构信息

Department of Soil Science, College of Agriculture, Tarbiat Modares University, Tehran, Iran.

出版信息

C R Biol. 2011 Jul;334(7):564-71. doi: 10.1016/j.crvi.2011.05.001. Epub 2011 Jun 22.

Abstract

Since most experiments regarding the symbiosis between arbuscular mycorrhizal (AM) fungi and their host plants under salinity stress have been performed only under greenhouse conditions, this research work was also conducted under field conditions. The effects of three AM species including Glomus mosseae, G. etunicatum and G. intraradices on the nutrient uptake of different wheat cultivars (including Roshan, Kavir and Tabasi) under field and greenhouse (including Chamran and Line 9) conditions were determined. At field harvest, the concentrations of N, Ca, Mg, Fe, Cu, and Mn, and at greenhouse harvest, plant growth, root colonization and concentrations of different nutrients including N, K, P, Ca, Mg, Mn, Cu, Fe, Zn, Na and Cl were determined. The effects of wheat cultivars on the concentrations of N, Ca, and Mn, and of all nutrients were significant at field and greenhouse conditions, respectively. In both experiments, AM fungi significantly enhanced the concentrations of all nutrients including N, K, P, Ca, Mg, Mn, Cu, Fe, Zn, Na and Cl. The synergistic and enhancing effects of co-inoculation of AM species on plant growth and the inhibiting effect of AM species on Na(+) rather than on Cl(-) uptake under salinity are also among the important findings of this research work.

摘要

由于大多数关于丛枝菌根(AM)真菌及其宿主植物在盐胁迫下共生的实验仅在温室条件下进行,因此本研究工作也在田间条件下进行。本研究测定了三种 AM 物种(摩西球囊霉、厚垣球囊霉和内养根串珠霉)对不同小麦品种(罗山、卡维尔和塔巴斯)在田间和温室(包括 Chamran 和 Line 9)条件下养分吸收的影响。在田间收获时,测定了 N、Ca、Mg、Fe、Cu 和 Mn 的浓度,在温室收获时,测定了植物生长、根系定殖和 N、K、P、Ca、Mg、Mn、Cu、Fe、Zn、Na 和 Cl 等不同养分的浓度。在田间和温室条件下,小麦品种对 N、Ca 和 Mn 的浓度以及所有养分的影响均具有显著意义。在这两项实验中,AM 真菌均显著提高了 N、K、P、Ca、Mg、Mn、Cu、Fe、Zn、Na 和 Cl 等所有养分的浓度。本研究工作的另一个重要发现是,AM 物种的共同接种对植物生长具有协同和增强作用,而对 Na(+)的抑制作用大于对 Cl(-)的抑制作用。

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