An ecological assessment of the genus Cynodon for reclamation and restoration of disturbed areas in Southern Africa
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North-West University (South Africa)
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Abstract
A large section of landscape degradation in South Africa resulted from among
others, extensive mining activities. Usually these disturbed areas are plagued
with a combination of adverse conditions. Revegetation is the most efficient in
reducing negative impacts and helps to prevent air pollution, limits water
pollution, it is aesthetically pleasing, and sometimes land productivity can be
restored.
The erosion control effectiveness of Cynodon species is the combined result of a
high shoot density and root mass for surface soil stabilisation, plus a high
biomass matrix providing resistance to lateral surface water flow. Differences in
ecological performance and the high degree of morphological variation within the
genus Cynodon, its wide geographic distribution and the presence of different
reproductive modes within the genus, imply that an diverse genetic adaptability
for survival under fierce environmental conditions exists within this taxon.
Various populations belonging to the genus Cynodon was included in a study
aimed at acquiring hardier, more viable ecotypes and/or agronomic groups
suitable for restoration and reinforcement of degraded land.
A taxometric approach was followed w'hereby 23 vegetative morphological
characters were used in a Principal Components (PCA) and cluster analysis to
assist in the delimitation of five agronomic groups within the genus Cynodon and
eight C. dactylon ecotypes occurring in a distinct habitat. These delimited
groups and ecotypes were used for further study and in order to determine the
reproductive mode and degree of sexuality for each population, scion growth,
chromosome number, seed viability and embryo sac development studies v.,ere
conducted. It was concluded that three cytogenetic factors i.e. polyploidy,
apomixis and hybridisation are responsible for the variability generated and
maintained within this genus. All the populations studied had some means of
asexual reproduction, agronomic group Comsutus XX and ecotype Dae 13
proved to be best adapted for vegetative reproduction. The low percentages of
seed viability and excellent vegetative reproductive faculties is a indication that
stolon and/or rhizome scions should be used to establish Cynodon populations.
Finally, investigations aimed at determining the adaptability and resistance of
delimited ecotypes and/or agronomic groups were conducted (adaptability and
evaluation phase). Regarding drought resistance, the high degree of
correspondence and comparableness between data, qualitative and quantitative,
were prominent. Ecotypes Dae 16, Dae 116/113 and Dae SR and agronomic
groups lneompletus, Bradleyi and Comlemtus appeared to be superiorly
adapted for survival in arid environments. Agronomic group Comsutus XX and
ecotypes Dae SR and Dae 13 had the highest biomass production during
cultivation under uniform environmental conditions and as for pH tolerance
ecotype Dae 16 and agronomic groups Comdaetylon ZZ. and Bradleyi
displayed outstanding vigour throughout the experiment. Agronomic groups
Comdaetylon ZZ. and Bradleyi, and ecotypes Dae 13 and Dae 116/113
displayed superior tolerance to frost. It was concluded that no ecotype or
agronomic group were superiorly adapted to withstand all environmental
stresses. The selection of a ecotype or agronomic group for reclamation would
depend on the major environmental stress factors at the reclamation site. This
investigation quantified the tolerance ranges of the ecotypes and agronomic
groups and the implementation and rendering thereof must be evaluated by
means of field plantings in critical areas.
Sustainable Development Goals
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MSc (Plant and Soil Science), North-West University, Potchefstroom Campus
