Transcriptomic analysis of metabolic function in the giant kelp, Macrocystis pyrifera, across depth and season
نویسندگان
چکیده
To increase knowledge of transcript diversity for the giant kelp, Macrocystis pyrifera, and assess gene expression across naturally occurring depth gradients in light, temperature and nutrients, we sequenced four cDNA libraries created from blades collected at the sea surface and at 18 m depth during the winter and summer. Comparative genomics cluster analyses revealed novel gene families (clusters) in existing brown alga expressed sequence tag data compared with other related algal groups, a pattern also seen with the addition of M. pyrifera sequences. Assembly of 228 Mbp of sequence generated c. 9000 isotigs and c. 12,000 open reading frames. Annotations were assigned using families of hidden Markov models for c. 11% of open reading frames; M. pyrifera had highest similarity to other members of the Phaeophyceae, namely Ectocarpus siliculosus and Laminaria digitata. Quantitative polymerase chain reaction of transcript targets verified depth-related differences in gene expression; stress response and light-harvesting transcripts, especially members of the LI818 (also known as LHCSR) family, showed high expression in the surface compared with 18 m depth, while some nitrogen acquisition transcripts (e.g. nitrite reductase) were upregulated at depth compared with the surface, supporting a conceptual biological model of depth-dependent physiology.
منابع مشابه
Factors determining the upper limit of giant kelp, Macrocystis pyrifera Agardh, along the Monterey Peninsula, central California, USA
Abiotic and biotic factors determining the upper (shallow or nearshore) limit of giant kelp, Macrocystis pyrifera Agardh, were examined along a wave exposure gradient on the Monterey Peninsula, central California, USA. Wave modeling, analysis of aerial photographs from 1986 to 1989 and SCUBA surveys from 1993 to 1995 indicated a significant positive relationship between wave intensity and depth...
متن کاملBiomass loss reduces growth and resource translocation in giant kelp Macrocystis pyrifera
The biomass dynamics of primary producers have important implications for the structure and function of ecosystems. Along the wave-swept coastline of central California, USA, biomass removal by wave action is a key driver in the primary productivity of giant kelp forests, yet the mechanisms of regrowth within giant kelp Macrocystis pyrifera are not well understood. To examine the physiological ...
متن کاملData Set 10: Water Motion Across a Kelp Bed
Shannon Fairres (ex-Botany grad student) wanted to determine how the amount of water flow varied in various parts of beds of giant kelp (Macrocystis pyrifera). Giant kelp is a marine brown alga found along the Pacific coast of North America. Buoyant fronds grow from an attachment (“holdfast”) on the sea floor, reaching lengths of up to 60 m. The upper parts of the fronds often form a dense cano...
متن کاملEffects of climate change on the physiology of giant kelp, Macrocystis pyrifera, and grazing by purple urchin, Strongylocentrotus purpuratus
Copyright © 2014 The Korean Society of Phycology 203 http://e-algae.kr pISSN: 1226-2617 eISSN: 2093-0860 Effects of climate change on the physiology of giant kelp, Macrocystis pyrifera, and grazing by purple urchin, Strongylocentrotus purpuratus Matthew B. Brown*, Matthew S. Edwards and Kwang Young Kim Department of Biology, San Diego State University, San Diego, CA 92182, USA Department of Oce...
متن کاملIn Situ Growth and Chemical Composition of the Giant Kelp, Macrocystis pyrifera: Response to Temporal Changes in Ambient Nutrient Availability
Temporal variations in growth of the giant kelp Macrocystis pyrifera were examined in relation to ambient nutrient availability and chemical composition of mature blades, the primary site of nutrient and carbohydrate storage in M. pyrifera. The effect of nutrient availability on growth was well approximated by a Monod rectangular hyperbola, with growth saturating at ambient nitrate concentratio...
متن کامل