Mollusc/algal chloroplast symbiosis: how can isolated chloroplasts continue to function for months in the cytosol of a sea slug in the absence of an algal nucleus?
about
Chloroplast incorporation and long-term photosynthetic performance through the life cycle in laboratory cultures of Elysia timida (Sacoglossa, Heterobranchia)Opisthobranchia (Mollusca, Gastropoda) - more than just slimy slugs. Shell reduction and its implications on defence and foragingIs ftsH the key to plastid longevity in sacoglossan slugs?Transcriptomic evidence that longevity of acquired plastids in the photosynthetic slugs Elysia timida and Plakobranchus ocellatus does not entail lateral transfer of algal nuclear genesHorizontal gene transfer of the algal nuclear gene psbO to the photosynthetic sea slug Elysia chloroticaEvaluating hypotheses for the origin of eukaryotesLipid accumulation during the establishment of kleptoplasty in Elysia chlorotica.The making of a photosynthetic animal.Kleptoplasty in an Antarctic dinoflagellate: caught in evolutionary transition?Mitochondrial genome of a tertiary endosymbiont retains genes for electron transport proteins.Characterization of the bacterial community of the chemically defended Hawaiian sacoglossan Elysia rufescens.Switching off photosynthesis: The dark side of sacoglossan slugs.Chemistry and biology of kahalalides.Molecular characterization of the Calvin cycle enzyme phosphoribulokinase in the stramenopile alga Vaucheria litorea and the plastid hosting mollusc Elysia chlorotica.What remains after 2 months of starvation? Analysis of sequestered algae in a photosynthetic slug, Plakobranchus ocellatus (Sacoglossa, Opisthobranchia), by barcoding.On Being the Right Size as an Animal with Plastids.Why It Is Time to Look Beyond Algal Genes in Photosynthetic SlugsChloroplast digestion and the development of functional kleptoplasty in juvenile Elysia timida (Risso, 1818) as compared to short-term and non-chloroplast-retaining sacoglossan slugs.How to Lose the Plasmalemma? Lessons From Ciliates, Dinoflagellates and Euglenids.LIGHT-REGULATED PHOTOSYNTHETIC GENE EXPRESSION AND PHOSPHORIBULOKINASE ENZYME ACTIVITY IN THE HETEROKONT ALGA VAUCHERIA LITOREA (XANTHOPHYCEAE) AND ITS SYMBIOTIC MOLLUSKAN PARTNER ELYSIA CHLOROTICA (GASTROPODA)(1).Plastid-bearing sea slugs fix CO2 in the light but do not require photosynthesis to survive.
P2860
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P2860
Mollusc/algal chloroplast symbiosis: how can isolated chloroplasts continue to function for months in the cytosol of a sea slug in the absence of an algal nucleus?
description
2001 nî lūn-bûn
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2001 թուականի Յունուարին հրատարակուած գիտական յօդուած
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2001 թվականի հունվարին հրատարակված գիտական հոդված
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2001年の論文
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2001年論文
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2001年論文
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2001年論文
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2001年論文
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2001年論文
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2001年论文
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name
Mollusc/algal chloroplast symb ...... e absence of an algal nucleus?
@ast
Mollusc/algal chloroplast symb ...... e absence of an algal nucleus?
@en
Mollusc/algal chloroplast symb ...... e absence of an algal nucleus?
@nl
type
label
Mollusc/algal chloroplast symb ...... e absence of an algal nucleus?
@ast
Mollusc/algal chloroplast symb ...... e absence of an algal nucleus?
@en
Mollusc/algal chloroplast symb ...... e absence of an algal nucleus?
@nl
prefLabel
Mollusc/algal chloroplast symb ...... e absence of an algal nucleus?
@ast
Mollusc/algal chloroplast symb ...... e absence of an algal nucleus?
@en
Mollusc/algal chloroplast symb ...... e absence of an algal nucleus?
@nl
P2093
P356
P1433
P1476
Mollusc/algal chloroplast symb ...... e absence of an algal nucleus?
@en
P2093
P304
P356
10.1078/0944-2006-00036
P577
2001-01-01T00:00:00Z