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Root trait plasticity and plant nutrient acquisition in phosphorus limited soil

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dc.contributor.author Kumar A.
dc.contributor.author Shahbaz M.
dc.contributor.author Koirala M.
dc.contributor.author Blagodatskaya E.
dc.contributor.author Seidel S.
dc.contributor.author Kuzyakov Y.
dc.contributor.author Pausch J.
dc.date.accessioned 2020-01-15T21:47:42Z
dc.date.available 2020-01-15T21:47:42Z
dc.date.issued 2019
dc.identifier.issn 1436-8730
dc.identifier.uri https://dspace.kpfu.ru/xmlui/handle/net/155995
dc.description.abstract © 2019 The Authors. Journal of Plant Nutrition and Soil Science published by WILEY-VCH Verlag GmbH & Co. KGaA To overcome soil nutrient limitation, many plants have developed complex nutrient acquisition strategies including altering root morphology, root hair formation or colonization by arbuscular mycorrhizal fungi (AMF). The interactions of these strategies and their plasticity are, however, affected by soil nutrient status throughout plant growth. Such plasticity is decisive for plant phosphorus (P) acquisition in P-limited soils. We investigated the P acquisition strategies and their plasticity of two maize genotypes characterized by the presence or absence of root hairs. We hypothesized that in the absence of root hairs plant growth is facilitated by traits with complementary functions, e.g., by higher root mycorrhizal colonization. This dependence on complementary traits will decrease in P fertilized soils. At early growth stages, root hairs are of little benefit for nutrient uptake. Regardless of the presence or absence of root hairs, plants produced average root biomass of 0.14 g per plant and exhibited 23% root mycorrhizal colonization. At later growth stages of maize, contrasting mechanisms with functional complementarity explained similar plant biomass production under P limitation: the presence of root hairs versus higher root mycorrhizal colonization (67%) favored by increased fine root diameter in absence of root hairs. P fertilization decreased the dependence of plant on specific root traits for nutrient acquisition. Through root trait plasticity, plants can minimize trade-offs for developing and maintaining functional traits, while increasing the benefit in terms of nutrient acquisition and plant growth. The present study highlights the plasticity of functional root traits for efficient nutrient acquisition strategies in agricultural systems with low nutrient availability.
dc.relation.ispartofseries Journal of Plant Nutrition and Soil Science
dc.subject arbuscular mycorrhizal colonization
dc.subject nutrient acquisition
dc.subject root hairs
dc.subject root morphology
dc.subject root traits
dc.subject roothairless3 mutant
dc.title Root trait plasticity and plant nutrient acquisition in phosphorus limited soil
dc.type Article
dc.relation.ispartofseries-issue 6
dc.relation.ispartofseries-volume 182
dc.collection Публикации сотрудников КФУ
dc.relation.startpage 945
dc.source.id SCOPUS14368730-2019-182-6-SID85073924373


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  • Публикации сотрудников КФУ Scopus [24551]
    Коллекция содержит публикации сотрудников Казанского федерального (до 2010 года Казанского государственного) университета, проиндексированные в БД Scopus, начиная с 1970г.

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