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丛枝菌根在降低酸性土壤中铝的植物毒性中的作用:综述。

The role of arbuscular mycorrhizas in decreasing aluminium phytotoxicity in acidic soils: a review.

机构信息

Departamento de Ciencias Químicas y Recursos Naturales, Universidad de La Frontera, P.O. Box 54-D, Temuco, Chile.

出版信息

Mycorrhiza. 2013 Apr;23(3):167-83. doi: 10.1007/s00572-013-0479-x. Epub 2013 Jan 18.

Abstract

Soil acidity is an impediment to agricultural production on a significant portion of arable land worldwide. Low productivity of these soils is mainly due to nutrient limitation and the presence of high levels of aluminium (Al), which causes deleterious effects on plant physiology and growth. In response to acidic soil stress, plants have evolved various mechanisms to tolerate high concentrations of Al in the soil solution. These strategies for Al detoxification include mechanisms that reduce the activity of Al3+ and its toxicity, either externally through exudation of Al-chelating compounds such as organic acids into the rhizosphere or internally through the accumulation of Al-organic acid complexes sequestered within plant cells. Additionally, root colonization by symbiotic arbuscular mycorrhizal (AM) fungi increases plant resistance to acidity and phytotoxic levels of Al in the soil environment. In this review, the role of the AM symbiosis in increasing the Al resistance of plants in natural and agricultural ecosystems under phytotoxic conditions of Al is discussed. Mechanisms of Al resistance induced by AM fungi in host plants and variation in resistance among AM fungi that contribute to detoxifying Al in the rhizosphere environment are considered with respect to altering Al bioavailability.

摘要

土壤酸度是全球范围内大量可耕地农业生产的障碍。这些土壤的低生产力主要是由于养分限制和高水平铝(Al)的存在,这对植物的生理和生长造成有害影响。为了应对酸性土壤胁迫,植物已经进化出各种机制来耐受土壤溶液中高浓度的 Al。这些 Al 解毒策略包括降低 Al3+活性及其毒性的机制,要么通过将 Al 螯合化合物(如有机酸)分泌到根际外部,要么通过在植物细胞内积累被隔离的 Al-有机酸复合物内部来实现。此外,共生丛枝菌根(AM)真菌对根的定殖增加了植物对酸性和土壤中 Al 毒性水平的抗性。在这篇综述中,讨论了 AM 共生体在增加植物在自然和农业生态系统中对 Al 毒性条件下的抗性中的作用。考虑到改变 Al 的生物利用度,讨论了 AM 真菌在宿主植物中诱导 Al 抗性的机制以及 AM 真菌之间抗性的变化,这些变化有助于在根际环境中解毒 Al。

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