Author:
D’Antonio Carla M.,Rehm Evan,Elgersma Cheryl,Yelenik Stephanie G.
Abstract
AbstractWhile the influence of canopy trees on soils in natural and restored forest environments is well studied, the influence of understory species is not. Here, we evaluate the effects of outplanted native woody understory on invasive grass biomass and soil nutrient properties in heavily grass-invaded 30 + year-old plantations of a native N-fixing tree Acacia koa in Hawai‘i. We analyze soils from under A. koa trees with versus without planted woody understory and compare these to soils from under remnant pasture trees of the pre-deforestation dominant, Metrosideros polymorpha where passive recruitment of native woody understory has occurred since the cessation of grazing. Simultaneously, we experimentally planted understory species at three times the density used by managers to see if this could quickly decrease grass biomass and change soil nutrient dynamics. We found that invasive grass biomass declined with understory planting in surveyed and experimental sites. Yet, woody understory abundance had no effect on N cycling. Short-term N availability and nitrification potential were higher under A. koa than M. polymorpha trees regardless of understory. Net N mineralization either did not differ (~ 1 mo) between canopy species or was higher (171 day incubations) under remnant M. polymorpha where organic matter was also higher. The only influence of understory on soil was a positive correlation with loss-on-ignition (organic matter) under M. polymorpha. We also demonstrate differential controls over N cycling under the two canopy tree species. Overall, understory restoration has not changed soil characteristics even as invasive grass biomass declines.
Funder
National Science Foundation
Publisher
Springer Science and Business Media LLC
Reference91 articles.
1. Adler PB, D’Antonio CM, Tunison JT. 1998. Understory succession following a dieback of Myrica faya in Hawai‘i Volcanoes National Park. Pac Sci 52:69.
2. Aide TM, Zimmerman JK, Pascarella JB, Rivera L, Marcano-Vega H. 2000. Forest regeneration in a chronosequence of tropical abandoned pastures: implications for restoration ecology. Restor Ecol 8:328–338.
3. Allison SD, Nielsen C, Hughes RF. 2006. Elevated enzyme activities in soils under the invasive nitrogen-fixing tree Falcataria moluccana. Soil Biol Biochem 38:1537–1544.
4. Arnold J, Corre MD, Veldkamp E. 2008. Cold storage and laboratory incubation of intact soil cores do not reflect in-situ nitrogen cycling rates of tropical forest soils. Soil Biol Biochem 40:2480–2483.
5. August-Schmidt E. 2018. Mechanisms of community assembly beneath N-fixing trees in a Hawaiian dry woodland. University of California, Santa Barbara ProQuest Dissertation Publishing, 13423031.