Exploring the growth dynamics of ๐˜”๐˜ฐ๐˜ณ๐˜ช๐˜ฏ๐˜จ๐˜ข ๐˜ฐ๐˜ญ๐˜ฆ๐˜ช๐˜ง๐˜ฆ๐˜ณ๐˜ข Lam. and its invasive potential in New Zealand : a thesis presented in partial fulfilment of the requirements for the degree of Doctor of Philosophy in Agriculture and Horticulture at Massey University, Palmerston North, New Zealand

dc.contributor.advisorCartmill, Donita
dc.contributor.authorKamanga, Blair Moses
dc.date.accessioned2026-08-13T03:23:55Z
dc.date.issued2026-08-12
dc.description.abstractAs global agricultural systems pursue climate resilience and multifunctional crops, ๐˜”๐˜ฐ๐˜ณ๐˜ช๐˜ฏ๐˜จ๐˜ข ๐˜ฐ๐˜ญ๐˜ฆ๐˜ช๐˜ง๐˜ฆ๐˜ณ๐˜ข Lam. (moringa) has gained attention as a resource-efficient crop with potential for agricultural diversification, sustainable weed management, and high-value bioproduct development. This thesis assessed the feasibility and environmental implications of introducing moringa into New Zealand (NZ) farming systems through integrated climatic and ecological suitability, invasive risk assessments, and adaptation mechanisms through physiological and metabolomic analyses. Climate suitability and invasive risk assessments indicated that moringa establishment in NZ is limited to warm, frost-free regions, particularly Northland and selected North Island microclimates. Most of the countryโ€™s locations were classified as unsuitable due to low winter temperatures and frost frequency. Combined with poor cold tolerance and the lack of a persistent soil seed bank, moringa was classified as a low invasive-risk species under current and projected climates. Allelopathic studies showed that moringa root extracts exert species-specific and concentration-dependent effects. White clover (๐˜›๐˜ณ๐˜ช๐˜ง๐˜ฐ๐˜ญ๐˜ช๐˜ถ๐˜ฎ ๐˜ณ๐˜ฆ๐˜ฑ๐˜ฆ๐˜ฏ๐˜ด L.), a key pasture species in NZ was strongly inhibited, whereas perennial ryegrass (๐˜“๐˜ฐ๐˜ญ๐˜ช๐˜ถ๐˜ฎ ๐˜ฎ๐˜ถ๐˜ญ๐˜ต๐˜ช๐˜ง๐˜ญ๐˜ฐ๐˜ณ๐˜ถ๐˜ฎ Lam.) and mฤnuka (๐˜“๐˜ฆ๐˜ฑ๐˜ต๐˜ฐ๐˜ด๐˜ฑ๐˜ฆ๐˜ณ๐˜ฎ๐˜ถ๐˜ฎ ๐˜ด๐˜ค๐˜ฐ๐˜ฑ๐˜ข๐˜ณ๐˜ช๐˜ถ๐˜ฎ) were minimally unaffected. At higher concentrations, it significantly suppressed major weed species i.e., fathen (๐˜Š๐˜ฉ๐˜ฆ๐˜ฏ๐˜ฐ๐˜ฑ๐˜ฐ๐˜ฅ๐˜ช๐˜ถ๐˜ฎ ๐˜ข๐˜ญ๐˜ฃ๐˜ถ๐˜ฎ L.) and crabgrass (๐˜‹๐˜ช๐˜จ๐˜ช๐˜ต๐˜ข๐˜ณ๐˜ช๐˜ข ๐˜ด๐˜ข๐˜ฏ๐˜จ๐˜ถ๐˜ช๐˜ฏ๐˜ข๐˜ญ๐˜ช๐˜ด L. Scop.), supported by metabolomic evidence of bioactive phenylpropanoids, flavonoids, and benzenoids. Physiological and biochemical analyses confirmed that although moringa activates stress-defence mechanisms under cold conditions, these responses are insufficient to prevent severe declines in photosynthesis and membrane integrity at low temperatures. Overall, moringa cultivation in NZ is feasible only in frost-free zones or under protected systems, supporting a controlled, site-specific introduction framework. Through science-based regulation, regional targeting, and adaptive management, moringa could contribute to NZโ€™s transition towards more sustainable and diversified agricultural systems.
dc.identifier.urihttps://mro.massey.ac.nz/handle/10179/74638
dc.publisherMassey University
dc.rightsยฉ The Author
dc.subjectAdaptation mechanisms
dc.subjectAllelopathic potential
dc.subjectInvasive potential
dc.subjectClimate suitability
dc.subjectMoringa oleifera
dc.subjectPlant metabolomics
dc.subjectPlant introductions
dc.subject.anzsrc300404 Crop and pasture biochemistry and physiology
dc.titleExploring the growth dynamics of ๐˜”๐˜ฐ๐˜ณ๐˜ช๐˜ฏ๐˜จ๐˜ข ๐˜ฐ๐˜ญ๐˜ฆ๐˜ช๐˜ง๐˜ฆ๐˜ณ๐˜ข Lam. and its invasive potential in New Zealand : a thesis presented in partial fulfilment of the requirements for the degree of Doctor of Philosophy in Agriculture and Horticulture at Massey University, Palmerston North, New Zealand
thesis.degree.disciplineAgriculture and Horticulture
thesis.degree.nameDoctor of Philosophy (Ph.D.)
thesis.description.doctoral-citation-abridgedMoses' research assessed the potential for introducing Moringa oleifera, a multifunctional crop, into New Zealand agricultural systems. The study identified suitable cultivation regions, low invasive risk, selective weed-suppressive effects, and physiological and metabolic constraints to cold tolerance. The findings provide a scientific framework for site-specific moringa introduction to support sustainable agricultural diversification in New Zealand.
thesis.description.doctoral-citation-longMoses investigated whether Moringa oleifera, a nutritious and multipurpose tropical crop, could be sustainably introduced into New Zealand agriculture. The research combined climatic and environmental assessments with experiments examining interactions with other plants and responses to cold temperatures. His study identified Northland and other frost-free areas as most suitable for cultivation and found that moringa posed a low risk of becoming invasive. Moringa also showed potential for suppressing some agricultural weeds, although effects varied among pasture species i.e., White clover. While moringa activated protective responses to chilling, these were insufficient under severe cold, identifying low temperature as a major constraint to cultivation. His research provided an integrated framework for evaluating moringaโ€™s sustainable introduction into New Zealand farming systems.
thesis.description.name-pronunciationBle-ya Mo-ze-si Kah-mang-ga

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