Direct and indirect effects of glomalin, mycorrhizal hyphae and roots on aggregate stability in rhizosphere of trifoliate orange
To test direct and indirect effects of glomalin, mycorrhizal hyphae and roots on aggregate stability, perspex pots separated by 37-μm nylon mesh in the middle were used to form root-free hyphae and root/hyphae chambers, where trifoliate orange ( Poncirus trifoliata ) seedlings were colonized by Funn...
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Veröffentlicht in: | Scientific reports 2014-07, Vol.4 (1), p.5823-5823, Article 5823 |
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Sprache: | eng |
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Zusammenfassung: | To test direct and indirect effects of glomalin, mycorrhizal hyphae and roots on aggregate stability, perspex pots separated by 37-μm nylon mesh in the middle were used to form root-free hyphae and root/hyphae chambers, where trifoliate orange (
Poncirus trifoliata
) seedlings were colonized by
Funneliformis mosseae
or
Paraglomus
occultum
in the root/hyphae chamber. Both fungal species induced significantly higher plant growth, root total length, easily-extractable glomalin-related soil protein (EE-GRSP) and total GRSP (T-GRSP) and mean weight diameter (an aggregate stability indicator). The Pearson correlation showed that root colonization or soil hyphal length significantly positively correlated with EE-GRSP, difficultly-extractable GRSP (DE-GRSP), T-GRSP and water-stable aggregates in 2.00–4.00, 0.50–1.00 and 0.25–0.50 mm size fractions. The path analysis indicated that in the root/hyphae chamber, aggregate stability derived from a direct effect of root colonization, EE-GRSP or DE-GRSP. Meanwhile, the direct effect was stronger by EE-GRSP or DE-GRSP than by mycorrhizal colonization. In the root-free hyphae chamber, mycorrhizal-mediated aggregate stability was due to total effect but not direct effect of soil hyphal length, EE-GRSP and T-GRSP. Our results suggest that GRSP among these tested factors may be the primary contributor to aggregate stability in the citrus rhizosphere. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/srep05823 |