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  4. Lamelloplasts and minichloroplasts in Begoniaceae: iridescence and photosynthetic functioning
 
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Lamelloplasts and minichloroplasts in Begoniaceae: iridescence and photosynthetic functioning

Journal
Journal of Plant Research
Journal Volume
131
Journal Issue
4
Pages
655-670
Date Issued
2018
Author(s)
Pao S.-H.
Tsai P.-Y.
Peng C.-I.
Chen P.-J.
Tsai C.-C.
EN-CHENG YANG  
Shih M.-C.
Chen J.
Yang J.-Y.
Chesson P.
Sheue C.-R.
DOI
10.1007/s10265-018-1020-2
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/453127
URL
https://www2.scopus.com/inward/record.uri?eid=2-s2.0-85045043312&doi=10.1007%2fs10265-018-1020-2&partnerID=40&md5=3e3f769e1911847b4e3454f87f66ff47
Abstract
Iridoplasts (modified plastids in adaxial epidermal cells) reported from Begonia were originally hypothesized to cause iridescence, which was broadly accepted for decades. However, several species of Begonia with iridoplasts are not iridescent causing confusion. Here chloroplast ultrastructure was observed in 40 taxa of Begoniaceae to explore the phenomenon of iridescence. However, 22 Begonias and Hillebrandia were found to have iridoplasts, but only nine display visually iridescent blue to blue-green leaves. Unexpectedly, a new type of plastid, a 'minichloroplast,' was found in the abaxial epidermal cells of all taxa, but was present in adaxial epidermal cells only if iridoplasts were absent. Comparative ultrastructural study of iridoplasts and a shading experiment of selected taxa show that a taxon with iridoplasts does not inevitably have visual iridescence, but iridescence is greatly affected by the spacing between thylakoid lamellae (stoma spacing). Thus, we propose instead the name 'lamelloplast' for plastids filled entirely with regular lamellae to avoid prejudging their function. To evaluate photosynthetic performance, chlorophyll fluorescence (F v /F m ) was measured separately from the chloroplasts in the adaxial epidermis and lower leaf tissues by using leaf dermal peels. Lamelloplasts and minichloroplasts have much lower photosynthetic efficiency than mesophyll chloroplasts. Nevertheless, photosynthetic proteins (psbA protein of PSII, RuBisCo and ATPase) were detected in both plastids as well as mesophyll chloroplasts in an immunogold labeling. Spectrometry revealed additional blue to blue-green peaks in visually iridescent leaves. Micro-spectrometry detected a blue peak from single blue spots in adaxial epidermal cells confirming that the color is derived from lamelloplasts. Presence of lamelloplasts or minichloroplasts is species specific and exclusive. High prevalence of lamelloplasts in Begoniaceae, including the basal clade Hillebrandia, highlights a unique evolutionary development. These new findings clarify the association between iridescence and lamelloplasts, and with implications for new directions in the study of plastid morphogenesis.
SDGs

[SDGs]SDG15

Type
journal article

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