Grass species richness decreases along a woody plant encroachment gradient in a semi-arid savanna grassland, South Africa

被引:27
作者
Mogashoa, Regina [1 ]
Dlamini, Phesheya [1 ]
Gxasheka, Masibonge [1 ]
机构
[1] Univ Limpopo, Dept Plant Prod Soil Sci & Agr Engn, Sch Agr & Environm Sci, Private Bag X1106, ZA-0727 Sovenga, Limpopo, South Africa
关键词
Tree-grass system; Grass species composition; Richness; Diversity; Soil nutrients; Savanna; Vachellia species; Dichrostachys cinerea; NORTH-AMERICAN GRASSLANDS; SHRUB ENCROACHMENT; BUSH ENCROACHMENT; TREE; SOIL; VEGETATION; DENSITY; CARBON; COVER; NITROGEN;
D O I
10.1007/s10980-020-01150-1
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Context Savanna grasslands are undergoing rapid land cover transformation as a consequence of woody plant encroachment. It still remains unclear how increasing woody plant density and cover in savannas influences tree-grass-soil interactions. Objectives This study determined the effect of increasing tree density on grass species richness, evenness, diversity and assessed how nutrients change along an encroachment gradient of a shallow plinthic savanna soil. Methods Vegetation was quantified and soil samples analysed from eighteen randomly distributed 10 m x 10 m plots along a tree density gradient spanning from open, transitioning into intermediate and intensively encroached savanna grassland in northern South Africa. Results We found that an increase in tree density along the encroachment gradient decreased grass richness (GR) by 53% in the intensively woody-encroached grassland. Higher tree density and canopy cover led to a 90% dominance of Panicum maximum grass species. Conversely, higher tree density increased concentrations of carbon, nitrogen, phosphorus and exchangeable calcium and magnesium in the topsoil layer. Conclusions This study highlights that woody plant encroachment decreases grass species richness and composition, but increases nutrients in the uppermost layer of a plinthic savanna soil. Such information is critical to improve understanding of the mechanisms underlying tree-grass interactions in savannas.
引用
收藏
页码:617 / 636
页数:20
相关论文
共 97 条
[21]  
De Klerk J.N., 2004, BUSH ENCROACHMENT NA
[22]   Determinants of woody encroachment and cover in African savannas [J].
Devine, Aisling P. ;
McDonald, Robbie A. ;
Quaife, Tristan ;
Maclean, Ilya M. D. .
OECOLOGIA, 2017, 183 (04) :939-951
[23]   Chemical stabilisation of carbon stocks by polyvalent cations in plinthic soil of a shrub-encroached savanna grassland, South Africa [J].
Dlamini, Phesheya ;
Mbanjwa, Vusi ;
Gxasheka, Masibonge ;
Tyasi, Louis ;
Sekhohola-Dlamini, Lerato .
CATENA, 2019, 181
[24]  
DYE PJ, 1982, ZIMBABWE J AGR RES, V20, P103
[25]   Phylogenetic analyses reveal the shady history of C4 grasses [J].
Edwards, Erika J. ;
Smith, Stephen A. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2010, 107 (06) :2532-2537
[26]   Are shrubs really a sign of declining ecosystem function? Disentangling the myths and truths of woody encroachment in Australia [J].
Eldridge, David J. ;
Soliveres, Santiago .
AUSTRALIAN JOURNAL OF BOTANY, 2014, 62 (07) :594-608
[27]  
Fao, 2015, Reports
[28]   Major contribution of grass roots to soil carbon pools and CO2 fluxes in a mesic savanna [J].
February, Edmund ;
Pausch, Johanna ;
Higgins, Steven I. .
PLANT AND SOIL, 2020, 454 (1-2) :207-215
[29]   Influence of competition and rainfall manipulation on the growth responses of savanna trees and grasses [J].
February, Edmund C. ;
Higgins, Steven I. ;
Bond, William J. ;
Swemmer, Louise .
ECOLOGY, 2013, 94 (05) :1155-1164
[30]  
Frost P., 1986, Biology International, P1