Latitudinal constraints in responsiveness of plants to arbuscular mycorrhiza: the 'sun-worshipper' hypothesis.

Latitudinal constraints in responsiveness of plants to arbuscular mycorrhiza: the 'sun-worshipper' hypothesis.
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DOI:
10.1111/nph.15918
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发表时间:
2019-06
期刊:
The New phytologist
影响因子:
--
通讯作者:
S. Veresoglou;Baodong Chen;M. Fischer;T. Helgason;A. Mamolos;M. Rillig;A. Roldán;David Johnson
S. Veresoglou;Baodong Chen;M. Fischer;T. Helgason;A. Mamolos;M. Rillig;A. Roldán;David Johnson
中科院分区:
其他
文献类型:
--
作者:
S. Veresoglou;Baodong Chen;M. Fischer;T. Helgason;A. Mamolos;M. Rillig;A. Roldán;David Johnson

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大多数陆生植物强烈依赖于与丛枝菌根(AM)真菌(球囊菌亚门:球囊菌亚门)的结合来建立和存活(贝弗,2002;货车der Heijden等人,1998; Klironomos等人,2011; Veresoglou等人,2017),并已演变成一种营养互惠。在这种互利共生中,植物为真菌提供碳,通常受光的可用性的影响(Hayman 1970; Heinemeyer等人,2003; Shi et al. 2014; Konvalinkova & Jansa,2016),真菌为植物提供从土壤中获得的矿物质营养。由于光照的限制,预计纬度对菌根植物和真菌之间的资源交换产生强烈的影响,这可能会对植物对菌根真菌的反应产生影响。本文受版权保护。All rights reserved.
Most terrestrial plants depend strongly on associations with arbuscular mycorrhizal (AM) fungi (Subphylum: Glomeromycotina) to establish and survive (Bever, 2002; van der Heijden et al., 1998; Klironomos et al., 2011; Veresoglou et al., 2017), and have evolved a nutritional mutualism. In this mutualism, the plant provides carbon to the fungus, usually subject to the availability of light (Hayman 1970; Heinemeyer et al., 2003; Shi et al. 2014; Konvalinkova & Jansa, 2016), and the fungus provides the plant with mineral nutrients acquired from soil. Because of light constraints, it is expected that latitude exerts a strong influence on reciprocal exchange of resources between mycorrhizal plants and fungi, and this could have consequences on the responsiveness of plants to mycorrhizal fungi. This article is protected by copyright. All rights reserved.