Literature DB >> 22108852

Legumes mitigate ecological consequences of a topographic gradient in a northern Mongolian steppe.

Brenda B Casper1, Robert Goldman, Ariuntsetseg Lkhagva, Brent R Helliker, Alain F Plante, Laura A Spence, Pierre Liancourt, Bazartseren Boldgiv, Peter S Petraitis.   

Abstract

Topography should create spatial variation in water and nutrients and play an especially important role in the ecology of water-limited systems. We use stable isotopes to discern how plants respond both to ecological gradients associated with elevation and to neighboring legumes on a south-facing slope in the semi-arid, historically grazed steppe of northern Mongolia. Out of three target species, Potentilla acaulis, Potentilla sericea, and Festuca lenensis, when >30 cm from a legume, all showed a decrease in leaf δ(15)N with increasing elevation. This, together with measures of soil δ(15)N, suggests greater N processing at the moister, more productive, lower elevation, and more N fixation at the upper elevation, where cover of legumes and lichens and plant-available nitrate were greater. Total soil N was greater at the lower elevation, but not lichen biomass or root colonization by AMF. Leaf δ(13)C values for P. acaulis and F. lenensis are consistent with increasing water stress with elevation; δ(13)C values indicated the greatest intrinsic water use efficiency for P. sericea, which is more abundant at the upper elevation. Nearby legumes (<10 cm) moderate the effect of elevation on leaf δ(15)N, confirming legumes' meaningful input of N, and affect leaf δ(13)C for two species, suggesting an influence on the efficiency of carbon fixation. Variation in leaf %N and %C as a function of elevation and proximity to a legume differs among species. Apparently, most N input is at upper elevations, pointing to the possible importance of grazers, in addition to hydrological processes, as transporters of N throughout this landscape.

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Year:  2011        PMID: 22108852     DOI: 10.1007/s00442-011-2183-x

Source DB:  PubMed          Journal:  Oecologia        ISSN: 0029-8549            Impact factor:   3.225


  13 in total

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Journal:  New Phytol       Date:  2009-06-26       Impact factor: 10.151

5.  Linking plant growth responses across topographic gradients in tallgrass prairie.

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Authors:  N L Toft; J E Anderson; R S Nowak
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Authors:  Edith Bai; Thomas W Boutton; Feng Liu; X Ben Wu; Steven R Archer; C Thomas Hallmark
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  3 in total

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Authors:  Anarmaa Sharkhuu; Alain F Plante; Orsoo Enkhmandal; Cédric Gonneau; Brenda B Casper; Bazartseren Boldgiv; Peter S Petraitis
Journal:  Geoderma       Date:  2016-02-04       Impact factor: 6.114

2.  Species specific and environment induced variation of δ(13)C and δ(15)N in alpine plants.

Authors:  Yang Yang; Rolf T W Siegwolf; Christian Körner
Journal:  Front Plant Sci       Date:  2015-06-05       Impact factor: 5.753

3.  Relative Roles of Soil Moisture, Nutrient Supply, Depth, and Mechanical Impedance in Determining Composition and Structure of Wisconsin Prairies.

Authors:  Robert W Wernerehl; Thomas J Givnish
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  3 in total

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