2020
DOI: 10.1111/1440-1703.12129
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Genecology and ecophysiology of the maintenance of foliar phenotypic polymorphisms of Leptospermum recurvum (Myrtaceae) under oscillating atmospheric desiccation in the tropical‐subalpine zone of Mount Kinabalu, Borneo

Abstract: We investigated genecology and ecophysiological mechanisms of the polymorphism of leaf trichome density of Leptospermum recurvum Hook. f. (Myrtaceae) in the deglaciated summit zone above 3,000 m a.s.l. of Mt. Kinabalu, Borneo. Various phenotypes with variable foliar trichome densities occurred sympatrically in the same population, and the composition of coexisting phenotypes varied substantially among populations. We conducted a common garden experiment by sowing seeds from multiple maternal trees of different… Show more

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Cited by 2 publications
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“…In these species, a high number of trichomes maintains a large leaf boundary layer to reduce water loss. A great density of trichomes is linked to plants adjusted to xeric environments 51 , 52 and because pubescent individuals have lower mortality than glabrous individuals after climatic drought events, even within a species 53 . In this sense, trichomes are probably functioning more to increase the boundary zone thickness (/volume) of leaf surfaces and, therefore, reduce water loss.…”
Section: Discussionmentioning
confidence: 99%
“…In these species, a high number of trichomes maintains a large leaf boundary layer to reduce water loss. A great density of trichomes is linked to plants adjusted to xeric environments 51 , 52 and because pubescent individuals have lower mortality than glabrous individuals after climatic drought events, even within a species 53 . In this sense, trichomes are probably functioning more to increase the boundary zone thickness (/volume) of leaf surfaces and, therefore, reduce water loss.…”
Section: Discussionmentioning
confidence: 99%