Functional chloroplasts in metazoan cells - a unique evolutionary strategy in animal life

被引:133
作者
Haendeler, Katharina [1 ]
Grzymbowski, Yvonne P. [1 ]
Krug, Patrick J. [2 ]
Waegele, Heike [1 ]
机构
[1] Zool Forsch Museum Alexander Koenig, D-53113 Bonn, Germany
[2] Calif State Univ Los Angeles, Dept Biol Sci, Los Angeles, CA 90032 USA
基金
美国国家科学基金会;
关键词
ANCESTRAL CHARACTER STATES; SYMBIOTIC CHLOROPLASTS; SACOGLOSSA MOLLUSCA; ELYSIA-VIRIDIS; GEOGRAPHIC-VARIATION; ALGAL CHLOROPLASTS; LIGHT-INTENSITY; HOST RACES; OPISTHOBRANCHIA; GASTROPODA;
D O I
10.1186/1742-9994-6-28
中图分类号
Q95 [动物学];
学科分类号
071002 ;
摘要
Background: Among metazoans, retention of functional diet-derived chloroplasts (kleptoplasty) is known only from the sea slug taxon Sacoglossa (Gastropoda: Opisthobranchia). Intracellular maintenance of plastids in the slug's digestive epithelium has long attracted interest given its implications for understanding the evolution of endosymbiosis. However, photosynthetic ability varies widely among sacoglossans; some species have no plastid retention while others survive for months solely on photosynthesis. We present a molecular phylogenetic hypothesis for the Sacoglossa and a survey of kleptoplasty from representatives of all major clades. We sought to quantify variation in photosynthetic ability among lineages, identify phylogenetic origins of plastid retention, and assess whether kleptoplasty was a key character in the radiation of the Sacoglossa. Results: Three levels of photosynthetic activity were detected: (1) no functional retention; (2) short-term retention lasting about one week; and (3) long-term retention for over a month. Phylogenetic analysis of one nuclear and two mitochondrial loci revealed reciprocal monophyly of the shelled Oxynoacea and shell-less Plakobranchacea, the latter comprising a monophyletic Plakobranchoidea and paraphyletic Limapontioidea. Only species in the Plakobranchoidea expressed short-or long-term kleptoplasty, most belonging to a speciose clade of slugs bearing parapodia (lateral flaps covering the dorsum). Bayesian ancestral character state reconstructions indicated that functional short-term retention arose once in the last common ancestor of Plakobranchoidea, and independently evolved into long-term retention in four derived species. Conclusion: We propose a sequential progression from short-to long-term kleptoplasty, with different adaptations involved in each step. Short-term kleptoplasty likely arose as a deficiency in plastid digestion, yielding additional energy via the release of fixed carbon. Functional short-term retention was an apomorphy of the Plakobranchoidea, but the subsequent evolution of parapodia enabled slugs to protect kleptoplasts against high irradiance and further prolong plastid survival. We conclude that functional short-term retention was necessary but not sufficient for an adaptive radiation in the Plakobranchoidea, especially in the genus Elysia which comprises a third of all sacoglossan species. The adaptations necessary for long-term chloroplast survival arose independently in species feeding on different algal hosts, providing a valuable study system for examining the parallel evolution of this unique trophic strategy.
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页数:18
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共 104 条
[1]  
BARRABIN JD, 2000, LIMNETICA, V91, P167
[2]   Plant-animal mutualistic networks: The architecture of biodiversity [J].
Bascompte, Jordi ;
Jordano, Pedro .
ANNUAL REVIEW OF ECOLOGY EVOLUTION AND SYSTEMATICS, 2007, 38 :567-593
[3]  
Bass Anna L., 2006, Records of the Western Australian Museum, P61
[4]   Insects on plants: Macroevolutionary chemical trends in host use [J].
Becerra, JX .
SCIENCE, 1997, 276 (5310) :253-256
[5]  
BRANDLEY BK, 1984, B MAR SCI, V34, P207
[6]  
Burghardt Ingo, 2006, Records of the Western Australian Museum, P1
[7]   Specialized feeding behavior influences both ecological specialization and assortative mating in sympatric host races of pea aphids [J].
Caillaud, MC ;
Via, S .
AMERICAN NATURALIST, 2000, 156 (06) :606-621
[8]   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
[9]   Chemical defense and evolutionary trends in biosynthetic capacity among dorid nudibranchs (Mollusca: Gastropoda: Opisthobranchia) [J].
Cimino, Guido ;
Ghiselin, Michael T. .
CHEMOECOLOGY, 1999, 9 (04) :187-207
[10]   CHLOROPLAST SYMBIOSIS IN A NON-ELYSIID MOLLUSK, COSTASIELLA-LILIANAE MARCUS (HERMAEIDAE, ASCOGLOSSA (=SACOGLOSSA) - EFFECTS OF TEMPERATURE, LIGHT-INTENSITY, AND STARVATION ON CARBON FIXATION RATE [J].
CLARK, KB ;
JENSEN, KR ;
STIRTS, HM ;
FERMIN, C .
BIOLOGICAL BULLETIN, 1981, 160 (01) :43-54