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丛枝菌根真菌的存在是否会影响野生型番茄品种和菌根缺陷型突变体在根系共享相同土壤体积的情况下的生长和养分吸收?

Does the presence of arbuscular mycorrhizal fungi influence growth and nutrient uptake of a wild-type tomato cultivar and a mycorrhiza-defective mutant, cultivated with roots sharing the same soil volume?

作者信息

Neumann Elke, George Eckhard

机构信息

Institute of Plant Nutrition (330), Hohenheim University, 70593 Stuttgart, Germany.

出版信息

New Phytol. 2005 May;166(2):601-9. doi: 10.1111/j.1469-8137.2005.01351.x.

DOI:10.1111/j.1469-8137.2005.01351.x
PMID:15819922
Abstract

We investigated the growth and nutrient uptake of the Lycopersicon esculentum symbiosis mycorrhiza-defective plant mutant rmc, challenged with arbuscular mycorrhiza (AM) fungal propagules, in the presence or absence of roots of the commercial wild-type tomato cv. Golden Queen (GQ). Two plants shared the middle (combi) compartment of a horizontal three-compartment split-root pot with one part of their root system; the other part was grown separately in an outer (solo) pot. Combinations of rmc and GQ plants were grown together in soil that was either mycorrhiza-free (-M) or prepared with AM fungal inoculum (+M). Surface colonization of rmc roots was strongly increased in the presence of (+M) GQ roots. AM fungal inoculation increased phosphorus uptake of GQ plants, but decreased growth and P uptake of rmc plants. Growth and P uptake of (+M) GQ plants were reduced when plants were grown in combination with rmc rather than another GQ plant. AM fungi in the (combi) compartment may have preferentially formed hyphae spreading infection rather than functioning in P uptake in (+M) GQ plants grown in combination with rmc. Surface colonization of (+M) rmc roots, in the presence of GQ roots, was probably established at the expense of carbohydrates from associated GQ plants. Possible reasons for a decreased P uptake of rmc plants in response to AM fungal inoculation are proposed.

摘要

我们研究了番茄菌根缺陷型植物突变体rmc在接种丛枝菌根(AM)真菌繁殖体的情况下,在有或没有商业野生型番茄品种金皇后(GQ)根系存在时的生长和养分吸收情况。两株植物将其根系的一部分共享在一个水平三室分根盆的中间(组合)隔室中;另一部分则分别种植在外部(单独)盆中。rmc和GQ植物的组合在无菌根(-M)或接种AM真菌接种物(+M)的土壤中共同生长。在有(+M)GQ根系存在的情况下,rmc根系的表面定殖显著增加。AM真菌接种增加了GQ植物的磷吸收,但降低了rmc植物的生长和磷吸收。当与rmc而不是另一株GQ植物组合种植时,(+M)GQ植物的生长和磷吸收减少。在与rmc组合种植的(+M)GQ植物中,(组合)隔室中的AM真菌可能优先形成菌丝体进行传播感染,而不是在磷吸收中发挥作用。在有GQ根系存在的情况下,(+M)rmc根系的表面定殖可能是以相关GQ植物的碳水化合物为代价建立的。文中提出了rmc植物接种AM真菌后磷吸收减少的可能原因。

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引用本文的文献

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