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The impact of arbuscular mycorrhizal fungi in mitigating salt-induced adverse effects in sweet basil (Ocimum basilicum L.)

机译:丛枝菌根真菌对减轻甜罗勒(Ocimum basilicum L.)盐诱导的不良反应的影响

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Salinity is one of the serious abiotic stresses adversely affecting the majority of arable lands worldwide, limiting the crop productivity of most of the economically important crops. Sweet basil (Osmium basilicum) plants were grown in a non-saline soil (EC=0.64dSm^-^1), in low saline soil (EC=5dSm^-^1), and in a high saline soil (EC=10dSm^-^1). There were differences between arbuscular mycorrhizal (Glomus deserticola) colonized plants (+AMF) and non-colonized plants (-AMF). Mycorrhiza mitigated the reduction of K, P and Ca uptake due to salinity. The balance between K/Na and between Ca/Na was improved in +AMF plants. Growth enhancement by mycorrhiza was independent from plant phosphorus content under high salinity levels. Different growth parameters, salt stress tolerance and accumulation of proline content were investigated, these results showed that the use of mycorrhizal inoculum (AMF) was able to enhance the productivity of sweet basil plants under salinity conditions. Mycorrhizal inoculation significantly increased chlorophyll content and water use efficiency under salinity stress. The sweet basil plants appeared to have high dependency on AMF which improved plant growth, photosynthetic efficiency, gas exchange and water use efficiency under salinity stress. In this study, there was evidence that colonization with AMF can alleviate the detrimental salinity stress influence on the growth and productivity of sweet basil plants.
机译:盐分是严重的非生物胁迫之一,不利地影响着全球大多数耕地,限制了大多数具有经济意义的农作物的作物生产力。甜罗勒(Osmium basilicum)植物在非盐渍土(EC = 0.64dSm ^-^ 1),低盐渍土(EC = 5dSm ^-^ 1)和高盐渍土(EC = 10dSm)中生长^-^ 1)。丛枝菌根(Glomus deserticola)定植植物(+ AMF)和非定殖植物(-AMF)之间存在差异。菌根减轻了盐度引起的钾,磷和钙的吸收减少。 + AMF植物可改善K / Na和Ca / Na之间的平衡。在高盐度条件下,菌根促进生长与植物磷含量无关。研究了不同的生长参数,耐盐胁迫和脯氨酸含量的积累,这些结果表明,在盐度条件下,使用菌根接种物(AMF)能够提高甜罗勒植物的生产力。在盐胁迫下,菌根接种显着增加了叶绿素含量和水分利用效率。甜罗勒植物似乎对AMF高度依赖,从而改善了盐分胁迫下的植物生长,光合效率,气体交换和水分利用效率。在这项研究中,有证据表明,AMF定植可以减轻盐分胁迫对甜罗勒植物生长和生产力的影响。

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