A low-cost open-source imaging platform reveals spatiotemporal insight into leaf elongation and movement

Publication date

2024-07

Authors

Oskam, LisaISNI 0000000493077460
Snoek, Basten LISNI 0000000419527486
Pantazopoulou, Chrysoula K.ORCID 0000-0001-5412-6029ISNI 0000000492917325
van Veen, HansISNI 0000000396570835
Matton, Sanne E. A.ISNI 0000000524184585
Dijkhuizen, RISNI 0000000518136632
Pierik, RonaldISNI 0000000394604341

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Plant organs move throughout the diurnal cycle, changing leaf and petiole positions to balance light capture, leaf temperature, and water loss under dynamic environmental conditions. Upward movement of the petiole, called hyponasty, is one of several traits of the shade avoidance syndrome (SAS). SAS traits are elicited upon perception of vegetation shade signals such as far-red light (FR) and improve light capture in dense vegetation. Monitoring plant movement at a high temporal resolution allows studying functionality and molecular regulation of hyponasty. However, high temporal resolution imaging solutions are often very expensive, making this unavailable to many researchers. Here, we present a modular and low-cost imaging setup, based on small Raspberry Pi computers that can track leaf movements and elongation growth with high temporal resolution. We also developed an open-source, semiautomated image analysis pipeline. Using this setup, we followed responses to FR enrichment, light intensity, and their interactions. Tracking both elongation and the angle of the petiole, lamina, and entire leaf in Arabidopsis (Arabidopsis thaliana) revealed insight into R:FR sensitivities of leaf growth and movement dynamics and the interactions of R:FR with background light intensity. The detailed imaging options of this system allowed us to identify spatially separate bending points for petiole and lamina positioning of the leaf.

Keywords

Physiology, Genetics, Plant Science

Citation

Oskam, L, Snoek, BL, Pantazopoulou, CK, van Veen, H, Matton, SEA, Dijkhuizen, R & Pierik, R 2024, 'A low-cost open-source imaging platform reveals spatiotemporal insight into leaf elongation and movement', Plant Physiology, vol. 195, no. 3, pp. 1866-1879. https://doi.org/10.1093/plphys/kiae097