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Physiological and biochemical responses to salt stress of mycorrhized and/or nodulated clover seedlings (Trifolium alexandrinum L.) [French]

机译:菌根和/或结瘤的三叶草幼苗(Trifolium alexandrinum L.)对盐胁迫的生理和生化响应[法语]

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摘要

Salt stress (0, 4, 6 and 8 g NaCl . L-1) effects on arbuscular mycorrhized and/or nodulated clover ( Trifolium alexandrinum L.) seedlings grown in greenhouse conditions under 75% field capacity were evaluated. The autochthonous mycorrhizal (AM) seedlings showed the best salt tolerance and biomass production improvement (+ 65%) for all the tested concentrations. AM root colonization was the highest (71%) and did not seem to be affected by salt doses. The double symbiosis ( mycorrhization and nodulation) was found to be less efficient than single inoculations and revealed some antagonism between the fungus and Rhizobium. Phosphate nutrition was improved, mainly in the cases of single mycorrhized plants; this nutritional effect seems to be the main mechanism involved in salt tolerance. The leaf protein content was also improved by both types of symbiosis. Proline accumulated especially in the doubly inoculated ( AM and Rhizobium) plants; meanwhile, sugars accumulated in the cases of single inoculations. However, the intensity of the salt stress showed a positive correlation with sugar accumulation for the plants which were only mycorrhized.
机译:评估了盐胁迫(0、4、6和8 g NaCl。L-1)对在温室条件下75%田间种植的丛枝菌根和/或结节三叶草(Trifolium alexandrinum L.)幼苗的影响。在所有测试浓度下,土生菌根(AM)幼苗均表现出最佳的耐盐性和生物量产量改善(+ 65%)。 AM根定殖最高(71%),似乎不受盐剂量的影响。发现双共生(菌根和结瘤)比单次接种效率低,并且显示了真菌和根瘤菌之间的拮抗作用。磷酸盐营养得到改善,主要是在单一菌根植物中;这种营养作用似乎是耐盐性的主要机制。两种共生类型均提高了叶片蛋白质含量。脯氨酸尤其在双重接种的植物(AM和根瘤菌)中积累;同时,单次接种会累积糖分。然而,盐胁迫的强度与仅被菌根的植物的糖积累呈正相关。

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