Giant eggs in a deep‐sea squid.

Hoving, Henk-Jan T. , Haddock, Steven H. D., Robison, Bruce H. and Seibel, Brad A. (2024) Giant eggs in a deep‐sea squid. Open Access Ecology, 105 (7). Art.Nr. e4319. DOI 10.1002/ecy.4319.

[thumbnail of Ecology - 2024 - Hoving - Giant eggs in a deep‐sea squid.pdf]
Preview
Text
Ecology - 2024 - Hoving - Giant eggs in a deep‐sea squid.pdf - Published Version
Available under License Creative Commons: Attribution-Noncommercial-No Derivative Works 4.0.

Download (2MB) | Preview

Supplementary data:

Abstract

The deep-sea water column below 200 m is a vast three-dimensional habitat with an enormous but largely unexplored biodiversity (Robison, 2009). Cephalopod mollusks are abundant in the deep sea and are important prey for many kinds of predators. Still, most deep-sea cephalopods have never been observed alive in their natural habitat and their reproductive biology remains poorly documented. In March of 2015, at a depth of 2566 m, we observed a female squid of an undescribed species but likely belonging to the Gonatidae, carrying few but exceptionally large eggs in her arms. This raises questions as to how these and other related animals reproduce in the deep sea, an environment that is generally characterized by darkness, low temperature, reduced oxygen, limited food availability, and low population densities.

The authors were conducting dives with deep-sea robots (remotely operated vehicles or ROVs) equipped with cameras in the deep basins of the Gulf of California, to investigate how deep-sea fauna are distributed in relation to the extensive low-oxygen zones in the region (Gilly et al., 2013). The squid (Individual 1, Table 1) we observed with an ROV at 2566 m in the Gulf of California in 2015 was carrying 30–40 large eggs (average maximum diameter 11.2 mm, n = 5; measured eggs were 11.4, 10.4, 11.5, 11.7 and 11 mm maximum diameter) embedded in a small external egg sheet that did not extend beyond the arm tips. The size of the eggs was similar to those of two squid (Individuals 2 and 3, Table 1) that were observed close to the seafloor during earlier expeditions in the same region.

Document Type: Article
Funder compliance: DFG: 382101453
Keywords: bathypelagic zone; Cephalopoda; deep sea; Gulf of California; reproduction
Research affiliation: OceanRep > GEOMAR > FB3 Marine Ecology > FB3-EV Marine Evolutionary Ecology
Main POF Topic: PT6: Marine Life
Refereed: Yes
Open Access Journal?: No
Publisher: Wiley
Related URLs:
Projects: The role of pelagic foodfalls in subsidizing deep-sea bottom communities in a changing ocean
Date Deposited: 12 Jun 2024 11:44
Last Modified: 23 Aug 2024 09:38
URI: https://oceanrep.geomar.de/id/eprint/60425

Actions (login required)

View Item View Item