| Literature DB >> 30980216 |
Kyohei Yamashita1, Takafumi Yagi1, Takumi Isono1, Yusuke Nishiyama1, Masafumi Hashimoto1, Koji Yamada2, Kengo Suzuki2, Eiji Tokunaga3.
Abstract
Euglena gracilis has an organelle resembling hematochrome, with an appearance similar to the eyespot and the absorption band spectrally overlapped with that of the carotenoid. To discriminate the hematochrome-like granules and eyespot, scan-free, non-invasive, absorbance spectral imaging A(x, y, λ) microscopy of single live cells, where A(x, y, λ) means absorbance at a position (x, y) on a two-dimensional image at a specific wavelength λ was applied. This technique was demonstrated to be a powerful tool for basic research on intracellular structural analysis. By this method, characteristic absorption spectra specific to the hematochrome-like granule or eyespot were identified among a variety of spectra observed depending on the location inside the organelles. The hematochrome-like granule was dark orange and deep green in its outline and had a characteristic absorption peak at 620 nm as well as at 676 to 698 nm, suggesting that its origin is a component of chloroplast including chlorophyll a. Furthermore, the representative spectra of these organelles were derived by principal component analysis of the absorbance and its position in absorbance image, indicating that they can be distinguished from each other and other regions. It was also confirmed that even in areas where these organelles and chloroplasts overlap, one can distinguish them from each other. The present research clarified the absorption spectra of the eyespot with 1 × 1 µm spatial resolution and those unpublished of hematochrome-like granules of E. gracilis, and indicated that one can statistically distinguish these organelles by this method.Entities:
Keywords: Absorbance spectral imaging; Alga; Carotenoid; Chloroplast; Euglena; Eyespot; Hematochrome-like granule; Microscopy; Photosynthesis; Principal component analysis
Mesh:
Year: 2019 PMID: 30980216 DOI: 10.1007/s10265-019-01102-0
Source DB: PubMed Journal: J Plant Res ISSN: 0918-9440 Impact factor: 2.629