Uric acid spherulites in the reflector layer of firefly light organ.

BACKGROUND: In firefly light organs, reflector layer is a specialized tissue which is believed to play a key role for increasing the bioluminescence intensity through reflection. However, the nature of this unique tissue remains elusive. In this report, we investigated the role, fine structure and n...

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Main Authors: King-Siang Goh, Hwo-Shuenn Sheu, Tzu-En Hua, Mei-Hua Kang, Chia-Wei Li
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3575340?pdf=render
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author King-Siang Goh
Hwo-Shuenn Sheu
Tzu-En Hua
Mei-Hua Kang
Chia-Wei Li
author_facet King-Siang Goh
Hwo-Shuenn Sheu
Tzu-En Hua
Mei-Hua Kang
Chia-Wei Li
author_sort King-Siang Goh
collection DOAJ
description BACKGROUND: In firefly light organs, reflector layer is a specialized tissue which is believed to play a key role for increasing the bioluminescence intensity through reflection. However, the nature of this unique tissue remains elusive. In this report, we investigated the role, fine structure and nature of the reflector layer in the light organ of adult Luciola cerata. PRINCIPAL FINDINGS: Our results indicated that the reflector layer is capable of reflecting bioluminescence, and contains abundant uric acid. Electron microscopy (EM) demonstrated that the cytosol of the reflector layer's cells is filled with densely packed spherical granules, which should be the uric acid granules. These granules are highly regular in size (∼700 nm in diameter), and exhibit a radial internal structure. X-ray diffraction (XRD) analyses revealed that an intense single peak pattern with a d-spacing value of 0.320 nm is specifically detected in the light organ, and is highly similar to the diffraction peak pattern and d-spacing value of needle-formed crystals of monosodium urate monohydrate. However, the molar ratio evaluation of uric acid to various cations (K(+), Na(+), Ca(2+) and Mg(2+)) in the light organ deduced that only a few uric acid molecules were in the form of urate salts. Thus, non-salt uric acid should be the source of the diffraction signal detected in the light organ. CONCLUSIONS: In the light organ, the intense single peak diffraction signal might come from a unique needle-like uric acid form, which is different from other known structures of non-salt uric acid form. The finding of a radial structure in the granules of reflector layer implies that the spherical uric acid granules might be formed by the radial arrangement of needle-formed packing matter.
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spelling doaj.art-74d9e673a72b4523bdfad4f6129d8dc52022-12-21T17:31:03ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0182e5640610.1371/journal.pone.0056406Uric acid spherulites in the reflector layer of firefly light organ.King-Siang GohHwo-Shuenn SheuTzu-En HuaMei-Hua KangChia-Wei LiBACKGROUND: In firefly light organs, reflector layer is a specialized tissue which is believed to play a key role for increasing the bioluminescence intensity through reflection. However, the nature of this unique tissue remains elusive. In this report, we investigated the role, fine structure and nature of the reflector layer in the light organ of adult Luciola cerata. PRINCIPAL FINDINGS: Our results indicated that the reflector layer is capable of reflecting bioluminescence, and contains abundant uric acid. Electron microscopy (EM) demonstrated that the cytosol of the reflector layer's cells is filled with densely packed spherical granules, which should be the uric acid granules. These granules are highly regular in size (∼700 nm in diameter), and exhibit a radial internal structure. X-ray diffraction (XRD) analyses revealed that an intense single peak pattern with a d-spacing value of 0.320 nm is specifically detected in the light organ, and is highly similar to the diffraction peak pattern and d-spacing value of needle-formed crystals of monosodium urate monohydrate. However, the molar ratio evaluation of uric acid to various cations (K(+), Na(+), Ca(2+) and Mg(2+)) in the light organ deduced that only a few uric acid molecules were in the form of urate salts. Thus, non-salt uric acid should be the source of the diffraction signal detected in the light organ. CONCLUSIONS: In the light organ, the intense single peak diffraction signal might come from a unique needle-like uric acid form, which is different from other known structures of non-salt uric acid form. The finding of a radial structure in the granules of reflector layer implies that the spherical uric acid granules might be formed by the radial arrangement of needle-formed packing matter.http://europepmc.org/articles/PMC3575340?pdf=render
spellingShingle King-Siang Goh
Hwo-Shuenn Sheu
Tzu-En Hua
Mei-Hua Kang
Chia-Wei Li
Uric acid spherulites in the reflector layer of firefly light organ.
PLoS ONE
title Uric acid spherulites in the reflector layer of firefly light organ.
title_full Uric acid spherulites in the reflector layer of firefly light organ.
title_fullStr Uric acid spherulites in the reflector layer of firefly light organ.
title_full_unstemmed Uric acid spherulites in the reflector layer of firefly light organ.
title_short Uric acid spherulites in the reflector layer of firefly light organ.
title_sort uric acid spherulites in the reflector layer of firefly light organ
url http://europepmc.org/articles/PMC3575340?pdf=render
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