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Brundrett, M. C.

Publications and source records attributed to Brundrett, M. C..

2 recordsLinked to original sources

Nuances of floral mimicry in Queen of Sheba orchids

O_LIBackground and Aims Floral deception can range from finely tuned mimicry of specific rewarding plants (Batesian mimicry) to a general resemblance of the rewarding community (generalised food deception). We focused on two species in the deceptive Thelymitra variegata complex (Queen of Sheba orchids) to examine whether pollination is consistent with generalised food deception or with specific mimicry of co-flowering buzz-pollinated tinsel lilies (Calectasia spp.). C_LIO_LIMethods We assessed i) overlap in flower colour and scent between orchids, tinsel lilies, and other flowers in the rewarding community, ii) pollinator sharing between orchids, tinsel lilies and other species, and ii) quantified orchid reproductive success in relation to abundance of tinsel lilies and other rewarding species. C_LIO_LIKey Results We found that T. speciosa matches flower colour and scent of its co-flowering tinsel lily, C. gracilis, while T. porphyrosticta partly overlaps with co-flowering C. demarzii in both traits. The orchids and tinsel lilies shared flower visitors, and the only visitor observed to transfer orchid pollen was Anthoglossa plumata bee (Colletidae) that displayed a behaviour associated with buzz pollination. This species was also observed to buzz-pollinate tinsel lilies. In T. speciosa, fruit production increased with abundance of both tinsel lilies and other rewarding species with similar flower colour, suggesting a combination of mimicry and magnet effects. However, relationships were driven by a single population. There was no association between rewarding community and reproductive success in T. porphyrosticta. C_LIO_LIConclusions The results are partly consistent with mimicry towards the co-flowering tinsel lily for both orchids. Specific mimicry is strongly supported by a close resemblance involving multiple floral traits, and by bee behaviour associated with the buzz-pollinated model. However, this contrasts with the lack of consistent effects of tinsel lily abundance on orchid reproductive success. The findings further suggest that shared floral scent may reinforce visual similarity and highlight that scent may be important in food mimicry systems. More generally, the T. variegata complex offers an interesting system for studying nuances between specific mimicry and generalised deception. C_LI

ecology↗

Orchid losers and winners after fire in West Australian urban bushland: A response continuum deeply integrated with other traits

ContextThe Southwest Australia Floristic Region (SWAFR) is a global hotspot for plant taxonomic and functional diversity with 450 highly specialised orchids facing threats from habitat loss, grazing, weeds, fire and climate change. AimsTo develop fire history maps and effective monitoring tools to compare fire ecology of orchids with diverse ecological traits from an isolated urban banksia and eucalypt woodland. MethodsA 72-year fire history map was intersected with >1000 orchid locations and 4.5 km of transects to measure effects on abundance and diversity. Orchid survival, size, flowering, pollination and germination were measured post-fire relative to areas unburnt for >22 years. Key resultsThere were 58 overlapping major fires (1972-2024), averaging 8.7% of the 63-ha area annually. Correlating locations of 17 orchids with fire history revealed 5 fire-intolerant and 6 less productive species, while 6 benefited from fire-promoted flowering. Even the latter could be killed by unseasonal autumn fire. Fire decreased or increased pollination, with three orchids dependant on fire. Overall, fire impacts greatly out way benefits, as most orchids preferred long-unburnt areas, with maximum diversity and abundance three decades or more post-fire. Paradoxically, Pyrorchis nigricans required fire to flower, but only thrived in long-unburnt areas. ConclusionsOrchids had diverse fire outcomes from catastrophic to beneficial summarised by fire response indexes (FRI) and fire age safe thresholds (FAST). This continuum was correlated with tuber depth, clonality, dispersion and lifespans of orchids, so is deeply integrated with their biology and ecology. ImplicationsResearch in an urban nature reserve provided essential tools for sustainable management of orchids relevant to rare species, such as fire history maps, FRI and FAST. Many SWAFR orchids prefer long unburnt areas, are intolerant to fire, or can be harmed by aseasonal fires. Thus, fire must be carefully managed in their habitats. Data StatementAll data are provided as tables and figures or supplemental tables

ecology↗