Literature DB >> 28105522

Response of aboveground carbon balance to long-term, experimental enhancements in precipitation seasonality is contingent on plant community type in cold-desert rangelands.

Kathryn McAbee1, Keith Reinhardt2, Matthew J Germino3, Andrew Bosworth4.   

Abstract

Semi-arid rangelands are important carbon (C) pools at global scales. However, the degree of net C storage or release in water-limited systems is a function of precipitation amount and timing, as well as plant community composition. In northern latitudes of western North America, C storage in cold-desert ecosystems could increase with boosts in wintertime precipitation, in which climate models predict, due to increases in wintertime soil water storage that enhance summertime productivity. However, there are few long-term, manipulative field-based studies investigating how rangelands will respond to altered precipitation amount or timing. We measured aboveground C pools and fluxes at leaf, soil, and ecosystem scales over a single growing season in plots that had 200 mm of supplemental precipitation added in either winter or summer for the past 21 years, in shrub- and exotic-bunchgrass-dominated garden plots. At our cold-desert site (298 mm precipitation during the study year), we hypothesized that increased winter precipitation would stimulate the aboveground C uptake and storage relative to ambient conditions, especially in plots containing shrubs. Our hypotheses were generally supported: ecosystem C uptake and long-term biomass accumulation were greater in winter- and summer-irrigated plots compared to control plots in both vegetation communities. However, substantial increases in the aboveground biomass occurred only in winter-irrigated plots that contained shrubs. Our findings suggest that increases in winter precipitation will enhance C storage of this widespread ecosystem, and moreso in shrub- compared to grass-dominated communities.

Entities:  

Keywords:  Agropyron cristatum; Artemisia tridentata; Net ecosystem exchange; Photosynthesis; Respiration

Mesh:

Substances:

Year:  2017        PMID: 28105522     DOI: 10.1007/s00442-017-3814-7

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


  4 in total

1.  Extensive summer water pulses do not necessarily lead to canopy growth of Great Basin and northern Mojave Desert shrubs.

Authors:  K A Snyder; L A Donovan; J J James; R L Tiller; J H Richards
Journal:  Oecologia       Date:  2003-10-24       Impact factor: 3.225

2.  Influence of shoot structure on light interception and photosynthesis in conifers.

Authors:  G A Carter; W K Smith
Journal:  Plant Physiol       Date:  1985-12       Impact factor: 8.340

3.  A framework for assessing ecosystem dynamics in response to chronic resource alterations induced by global change.

Authors:  Melinda D Smith; Alan K Knapp; Scott L Collins
Journal:  Ecology       Date:  2009-12       Impact factor: 5.499

Review 4.  Precipitation pulses and carbon fluxes in semiarid and arid ecosystems.

Authors:  Travis E Huxman; Keirith A Snyder; David Tissue; A Joshua Leffler; Kiona Ogle; William T Pockman; Darren R Sandquist; Daniel L Potts; Susan Schwinning
Journal:  Oecologia       Date:  2004-08-27       Impact factor: 3.225

  4 in total

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