Photosynthate accumulation in solar-powered sea slugs - starving slugs survive due to accumulated starch reserves

被引:25
作者
Laetz, Elise M. J. [1 ,2 ]
Moris, Victoria C. [1 ]
Moritz, Leif [1 ]
Haubrich, Andre N. [1 ]
Waegele, Heike [1 ]
机构
[1] Zool Res Museum Alexander Koenig, 162 Adenauerallee, D-53113 Bonn, Germany
[2] Univ Bonn, Inst Evolutionary Biol & Ecol, Immenburg 1, D-53121 Bonn, Germany
关键词
Sacoglossa; Amylose; Elysia; Lugol's Iodine; Kleptoplast; Starch; ELYSIA-TIMIDA MOLLUSCA; CODIUM-FRAGILE; SACOGLOSSAN OPISTHOBRANCHS; FUNCTIONAL CHLOROPLASTS; SYMBIOTIC CHLOROPLASTS; DIGESTIVE GLAND; VIRIDIS; GASTROPODA; ACETABULARIA; KLEPTOPLASTS;
D O I
10.1186/s12983-016-0186-5
中图分类号
Q95 [动物学];
学科分类号
071002 ;
摘要
Background: Solar-powered sea slugs are famed for their ability to survive starvation due to incorporated algal chloroplasts. It is well established that algal-derived carbon can be traced in numerous slug-derived compounds, showing that slugs utilize the photosynthates produced by incorporated plastids. Recently, a new hypothesis suggests that the photosynthates produced are not continuously made available to the slug. Instead, at least some of the plastid's photosynthetic products are stored in the plastid itself and only later become available to the slug. The long-term plastid-retaining slug, Elysia timida and its sole food source, Acetabularia acetabulum were examined to determine whether or not starch, a combination of amylose and amylopectin and the main photosynthate produced by A. acetabulum, is produced by the stolen plastids and whether it accumulates within individual kleptoplasts, providing an energy larder, made available to the slug at a later time. Results: Histological sections of Elysia timida throughout a starvation period were stained with Lugol's Iodine solution, a well-known stain for starch granules in plants. We present here for the first time, an increase in amylose concentration, within the slug's digestive gland cells during a starvation period, followed by a sharp decrease. Chemically blocking photosynthesis in these tissues resulted in no observable starch, indicating that the starch in untreated animals is a product of photosynthetic activity. Conclusion: This suggests that kleptoplasts function as both, a nutritive producer and storage device, holding onto the polysaccharides they produce for a certain time until they are finally available and used by the starving slug to withstand extended starvation periods.
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页数:9
相关论文
共 39 条
[1]  
[Anonymous], P R SOC LONDON B
[2]  
[Anonymous], P R SOC LONDON B
[3]  
[Anonymous], 2014, ENDOSYMBIOSIS, DOI DOI 10.1007/978-3-7091-1303-5_14
[4]   The role of kleptoplasts in the survival rates of Elysia timida (Risso, 1818):: (Sacoglossa: Opisthobranchia) during periods of food shortage [J].
Casalduero, F. Gimenez ;
Muniain, C. .
JOURNAL OF EXPERIMENTAL MARINE BIOLOGY AND ECOLOGY, 2008, 357 (02) :181-187
[5]   Functional kleptoplasty in a limapontioidean genus: phylogeny, food preferences and photosynthesis in Costasiella, with a focus on C. ocellifera (Gastropoda: Sacoglossa) [J].
Christa, Gregor ;
Gould, Sven B. ;
Franken, Johanna ;
Vleugels, Manja ;
Karmeinski, Dario ;
Haendeler, Katharina ;
Martin, William F. ;
Waegele, Heike .
JOURNAL OF MOLLUSCAN STUDIES, 2014, 80 :499-507
[6]  
GREENE RW, 1972, MAR BIOL, V14, P253
[7]   SYMBIOSIS IN SACOGLOSSAN OPISTHOBRANCHS - FUNCTIONAL CAPACITY OF SYMBIOTIC CHLOROPLASTS [J].
GREENE, RW .
MARINE BIOLOGY, 1970, 7 (02) :138-&
[8]   Functional chloroplasts in metazoan cells - a unique evolutionary strategy in animal life [J].
Haendeler, Katharina ;
Grzymbowski, Yvonne P. ;
Krug, Patrick J. ;
Waegele, Heike .
FRONTIERS IN ZOOLOGY, 2009, 6
[9]   PERSISTENCE OF FUNCTIONAL CHLOROPLASTS IN ELYSIA-VIRIDIS (OPISTHOBRANCHIA, SACOGLOSSA) [J].
HINDE, R ;
SMITH, DC .
NATURE-NEW BIOLOGY, 1972, 239 (88) :30-&
[10]   ROLE OF PHOTOSYNTHESIS IN NUTRITION OF MOLLUSK ELYSIA-VIRIDIS [J].
HINDE, R ;
SMITH, DC .
BIOLOGICAL JOURNAL OF THE LINNEAN SOCIETY, 1975, 7 (02) :161-171