Heterotrophic Carbon Fixation in a Salamander-Alga Symbiosis

Author:

Burns John A.,Kerney Ryan,Duhamel Solange

Abstract

AbstractThe unique symbiosis between a vertebrate salamander,Ambystoma maculatum, and unicellular green alga,Oophila amblystomatis, involves multiple modes of interaction. These include an ectosymbiotic interaction where the alga colonizes the egg capsule, and an intracellular interaction where the alga enters tissues and cells of the salamander. One common interaction in mutualist photosymbioses is the transfer of photosynthate from the algal symbiont to the host animal. In theA. maculatum-O. amblystomatisinteraction, there is conflicting evidence regarding whether the algae in the egg capsule transfer chemical energy captured during photosynthesis to the developing salamander embryo. In experiments where we took care to separate the carbon fixation contributions of the salamander embryo and algal symbionts, we show that inorganic carbon fixed byA. maculatumembryos reaches 2% of the inorganic carbon fixed byO. amblystomatisalgae within an egg capsule after 2 hours in the light. After 2 hours in the dark, inorganic carbon fixed byA. maculatumembryos is 800% of the carbon fixed byO. amblystomatisalgae within an egg capsule. Using photosynthesis inhibitors we show thatA. maculatumembryos and O.amblystomatisalgae compete for available inorganic carbon within the egg capsule environment. Our results confirm earlier studies suggesting a role of heterotrophic carbon fixation during vertebrate embryonic development. Our results also show that the considerable capacity of developingA. maculatumembryos for inorganic carbon fixation precludes our ability to distinguish any minor role of photosynthetically transferred carbon from algal symbionts to host salamanders using bicarbonate introduced to the egg system as a marker.

Publisher

Cold Spring Harbor Laboratory

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Heterotrophic Carbon Fixation in a Salamander-Alga Symbiosis;Frontiers in Microbiology;2020-08-04

2. Physiological benefits and latent effects of an algal-salamander symbiosis;Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology;2020-08

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