盐度对接种了丛枝菌根真菌的 "Fino 95 "柠檬树的影响

Josefa M. Navarro, O. Pérez-Tornero, A. Morte
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摘要

为了研究盐度对接种了丛枝菌根真菌(AMF)的植株的影响,我们用嫁接在大叶柑橘(Citrus macrophylla Wester)上的两年生 "Fino 95 "柠檬植株(Citrus limon Burm.)一半接种(+AM)和未接种(-AM)的植物用半浓度的霍格兰溶液灌溉,其余接种半浓度的霍格兰溶液 + 30 mM NaCl。98 天后,结果显示 AMF 减轻了盐度对生长的负面影响。接种 AMF 能在一定程度上抵御盐分对细胞膜造成的损害,并改善植物在盐分条件下的水分状况和张力(Ψx 和 Π 分别增加了 16% 和 48%)。矿质营养对盐度和 AMF 处理的反应很复杂。+AM植株叶片和根中的 P 浓度低于-AM植株,但接种AMF能改善根中 Ca2+(20%)、Mg2+(24%)、Fe2+(21%)和 Zn2+(7%)的营养,还能改善叶片中 Mg2+/Na+ 的比例(33%),降低 Na+ 对盐处理植株 Mg2+ 营养的拮抗作用。AMF 可通过维持气体交换能力和更好的抗氧化反应来保护植物免受盐胁迫。AMF 的所有这些积极作用都有助于减轻盐胁迫对嫁接在大叶砧木上的柠檬树在盐分条件下的生长性能的有害影响。
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Effects of Salinity on ‘Fino 95’ Lemon Trees Inoculated with Arbuscular Mycorrhizal Fungi
An experiment was conducted with two-year-old ‘Fino 95’ lemon plants (Citrus limon Burm. f. cv. Fino) grafted on C. macrophylla (Citrus macrophylla Wester) to study the effects of salinity on plants inoculated with arbuscular mycorrhizal fungi (AMF). Half of the inoculated (+AM) and non-inoculated (−AM) plants were irrigated with half-strength Hoagland solution, and the remainder were inoculated with half-strength Hoagland solution + 30 mM NaCl. Ninety-eight days later, results showed that AMF had alleviated the negative effect of salinity on growth. Inoculation with AMF provided some protection against the damage that salinity caused on cellular membranes and improved the plant water status and turgor under saline conditions (Ψx and Π increased by 16% and 48%, respectively). The responses of mineral nutrition to salinity and AMF treatments were complex. P concentrations in the leaves and roots of +AM plants were lower than in those of −AM plants, but inoculation improved Ca2+ (by 20%), Mg2+ (24%), Fe2+ (21%), and Zn2+ (7%) nutrition in roots and also the Mg2+/Na+ ratio in leaves (33%), reducing the antagonistic effect of Na+ on Mg2+ nutrition in salt-treated plants. AMF could protect plants against salt stress through the maintenance of the gas exchange capacity and due to a better antioxidant response. All these positive effects of AMF contributed to mitigating the harmful effects of salinity stress on the plant growth performance of lemon trees grafted on C. macrophylla rootstock under salinity conditions.
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