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Aerial roots elevate indoor plant health: physiological and morphological responses of three high-humidity adapted Araceae species to indoor humidity levels

Sheeran, Laura; Rasmussen, Amanda

Aerial roots elevate indoor plant health: physiological and morphological responses of three high-humidity adapted Araceae species to indoor humidity levels Thumbnail


Authors

Laura Sheeran



Abstract

Heightened by the COVID-19 pandemic there has been a global increase in urban greenspace appreciation. Indoor plants are equally important for improving mental health and air quality but despite evolving in humid (sub)tropical environments with aerial root types, planting systems ignore aerial resource supply. This study directly compared nutrient uptake preferences of aerial and soil-formed roots of three common houseplant species under high and ambient relative humidities. Growth and physiology parameters were measured weekly for Anthurium andreanum, Epipremnum aureum and Philodendron scandens grown in custom made growth chambers. Both aerial and soil-formed roots were then fed mixtures of nitrate, ammonium and glycine, with one source labelled with 15N to determine uptake rates and maximum capacities. Aerial roots were consistently better at nitrogen uptake than soil roots but no species, root type or humidity condition showed a preference for a particular nitrogen source. All three species grew more in high humidity, with aerial roots demonstrating the greatest biomass increase. Higher humidities for indoor niches, together with fertiliser applications to aerial roots will support indoor plant growth, creating lush calming indoor environments for people inhabitants.

Citation

Sheeran, L., & Rasmussen, A. (2023). Aerial roots elevate indoor plant health: physiological and morphological responses of three high-humidity adapted Araceae species to indoor humidity levels. Plant, Cell and Environment, 46(6), 1873-1884. https://doi.org/10.1111/pce.14568

Journal Article Type Article
Acceptance Date Feb 12, 2023
Online Publication Date Feb 14, 2023
Publication Date 2023-06
Deposit Date Oct 9, 2023
Publicly Available Date Oct 10, 2023
Journal Plant, Cell & Environment
Print ISSN 0140-7791
Electronic ISSN 1365-3040
Publisher Wiley
Peer Reviewed Peer Reviewed
Volume 46
Issue 6
Pages 1873-1884
DOI https://doi.org/10.1111/pce.14568
Keywords Adventitious roots; indoor plant health; nitrogen preferences; relative humidity; tropical aroids; whole plant physiology
Public URL https://nottingham-repository.worktribe.com/output/17378519
Publisher URL https://onlinelibrary.wiley.com/doi/10.1111/pce.14568

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