Published November 29, 2023 | Version v1
Dataset Open

Salpa genome and developmental transcriptome analyses reveal molecular flexibility enabling reproductive success in a rapidly changing environment

  • 1. University of Connecticut

Description

Ocean warming favors pelagic tunicates, such as salps, that exhibit increasingly frequent and rapid population blooms, impacting trophic dynamics and composition and human marine-dependent activities. Salp blooms are a result of their successful reproductive life history, alternating seasonally between asexual and sexual protogynous (i.e. sequential) hermaphroditic stages. While predicting future salp bloom frequency and intensity relies on an understanding of the transitions during the sexual stage from female through parturition and subsequent sex change to male, these transitions have not been explored at the molecular level. Here we report the development of the first complete genome of S. thompsoni and the North Atlantic sister species S. aspera. Genome and comparative analyses reveal an abundance of repeats and G-quadruplex (G4) motifs, a highly stable secondary structure, distributed throughout both salp genomes, a feature shared with other tunicates that perform alternating sexual-asexual reproductive strategies. Transcriptional analyses across sexual reproductive stages for S. thompsoni revealed genes associated with male sex differentiation and spermatogenesis are expressed as early as birth and before parturition, inconsistent with previous descriptions of sequential sexual differentiation in salps. Our findings suggest salp are poised for reproductive success at birth, increasing the potential for bloom formation as ocean temperatures rise.

Files

Files (860.4 MB)

Name Size Download all
md5:56c65a2c6b5038e13265ffbad66175ce
3.1 MB Download
md5:9cbcee440ffc9b2ddec1c26fc02b790f
1.2 MB Download
md5:7eff616b759d3f6965c9890f67e72993
95.1 kB Download
md5:97d459ad4c7c61ade6bd45293cdb571f
1.8 MB Download
md5:197d314d4977c9b763cca5bf811094cc
11.3 MB Download
md5:d701e2c6a6ff301ecacd2642e4db55d8
285.5 MB Download
md5:304225e5caaf2ac1099421289942297c
160.4 MB Download
md5:65e10adc1bb0ab39cc69511e215f850b
2.0 kB Download
md5:e50bb4ff7653174522bb7c556eaa96af
6.7 MB Download
md5:013ae6cf900cfc988bc7a73c0e8947ef
6.0 MB Download
md5:8d982f1ca6a0709a8e9111e4d72259ec
3.4 MB Download
md5:ea5539ce63c1420f15f5b4bdcc0482fa
240.2 MB Download
md5:9c0b75ce401cdf6c01c2ab0f9d6a800e
140.7 MB Download
md5:270dc331d5aee5ffb3ea58353a87da15
2.0 kB Download