TY - JOUR
T1 - Examining the retention of functional kleptoplasts and digestive activity in sacoglossan sea slugs
AU - Laetz, Elise M.J.
AU - Rühr, Peter T.
AU - Bartolomaeus, Thomas
AU - Preisfeld, Angelika
AU - Wägele, Heike
PY - 2017/3/1
Y1 - 2017/3/1
N2 - © 2016, Gesellschaft für Biologische Systematik. Solar-powered sea slugs (Sacoglossa: Gastropoda) have long captured the attention of laymen and scientists alike due to their remarkable ability to steal functional chloroplasts from their algal food, enslaving them to withstand long starvation periods. Recently, a wealth of data has shed insight into this remarkable relationship; however, the cellular mechanisms governing this process are still completely unknown. This study explores these mechanisms, providing insight into the chloroplast retention and delayed digestion, occurring within the slug’s digestive gland. We examine the relationships between functional chloroplast and lysosome abundances during starvation, in live material, for the long-term retaining species Elysia timida, the ambiguous long/short-term retaining Elysia viridis, and the short-term retaining Thuridilla hopei, to elucidate digestive differences that contribute to the development of functional kleptoplasty. Functional chloroplast and lysosome abundance are measured using chlorophyll a autofluorescence and the pH-dependent stain acridine orange. In each species, the number of chloroplasts and lysosomes is indirectly proportional, with the plastid density decreasing when starvation begins. We also present a new FIJI/Image J Plugin, the 3D—Accounting and Measuring Plugin, 3D-AMP, which enables the reliable analysis of large image sets.
AB - © 2016, Gesellschaft für Biologische Systematik. Solar-powered sea slugs (Sacoglossa: Gastropoda) have long captured the attention of laymen and scientists alike due to their remarkable ability to steal functional chloroplasts from their algal food, enslaving them to withstand long starvation periods. Recently, a wealth of data has shed insight into this remarkable relationship; however, the cellular mechanisms governing this process are still completely unknown. This study explores these mechanisms, providing insight into the chloroplast retention and delayed digestion, occurring within the slug’s digestive gland. We examine the relationships between functional chloroplast and lysosome abundances during starvation, in live material, for the long-term retaining species Elysia timida, the ambiguous long/short-term retaining Elysia viridis, and the short-term retaining Thuridilla hopei, to elucidate digestive differences that contribute to the development of functional kleptoplasty. Functional chloroplast and lysosome abundance are measured using chlorophyll a autofluorescence and the pH-dependent stain acridine orange. In each species, the number of chloroplasts and lysosomes is indirectly proportional, with the plastid density decreasing when starvation begins. We also present a new FIJI/Image J Plugin, the 3D—Accounting and Measuring Plugin, 3D-AMP, which enables the reliable analysis of large image sets.
KW - Acridine orange
KW - FIJI Plugin
KW - Intracellular digestion
KW - Kleptoplast
KW - Lysosomes
KW - Sacoglossa
UR - http://www.mendeley.com/research/examining-retention-functional-kleptoplasts-digestive-activity-sacoglossan-sea-slugs
U2 - 10.1007/s13127-016-0308-0
DO - 10.1007/s13127-016-0308-0
M3 - Article
SN - 1439-6092
VL - 17
SP - 87
EP - 99
JO - Organisms diversity & evolution
JF - Organisms diversity & evolution
IS - 1
ER -