4.1 Article

Assessing environmental factors contributing to plant species richness in mountainous mesic grasslands

Journal

KOEDOE
Volume 65, Issue 1, Pages -

Publisher

AOSIS
DOI: 10.4102/koedoe.v65i1.1732

Keywords

mountains; subalpine; edaphic; topography; protected grasslands

Ask authors/readers for more resources

Southern African mountain ranges have rich and diverse plant species, but global biodiversity at the species level is declining due to environmental change. Mountainous grassland communities, with their specialized niches and sensitivity to global warming, are particularly vulnerable. This study identified soil bulk density and elevation as the significant environmental drivers influencing plant species richness in mountainous mesic grasslands.
Southern African mountain ranges are characterised by rich and diverse plant species thriving in different habitats with pronounced endemic species. However, globally, biodiversity at the species level is deteriorating rapidly because of environmental change leading to habitat degradation and fragmentation. Mountainous grassland communities are particularly vulnerable to rapid ecosystem changes because of their specialised niches and sensitivity to global warming. Understanding the determinants of vegetation is necessary for effective and efficient management. This study aimed to determine significant environmental drivers influencing plant species richness in mountainous mesic grasslands. Topographical variables (slope and elevation) were derived by using a 30 m resolution Digital Elevation Model. Soil variables such as bulk density, silt fragments, pH, coarse fragments, soil organic carbon, sand and nitrogen were acquired from the International Soil Conference and Information Centre (ISCI), and species richness and diversity were derived from vascular plant species inventory data compiled using a field survey. Species richness was influenced by soil bulk density, and the interaction between elevation and soil bulk density; higher species richness was associated with lower bulk density and higher elevations. Similarly, species composition changed as edaphic factors and elevation changed.Conservation implications: Species richness increased with soil bulk density, which decreased with elevation. Fire severity had little effect on species richness and diversity, which may indicate that management actions do not affect species. However, the impact of grazers still needs to be better understood at this time. Moreover, the strong positive relationship between species richness and diversity in this study shows that species richness can be used as a surrogate for diversity and conservation monitoring, especially in mesic highland grasslands.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.1
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available