Finding boundaries in the sea: The Main and Small Gap of the Emperor Seamount Chain as a biogeographic boundary for bathyal benthic fauna

IF 2.3 3区 地球科学 Q2 OCEANOGRAPHY Deep-sea Research Part Ii-topical Studies in Oceanography Pub Date : 2024-05-27 DOI:10.1016/j.dsr2.2024.105394
Les Watling , John R. Smith , Scott C. France , Amy Baco , Henrietta Dulai , Glenn S. Carter , E. Brendan Roark
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Abstract

Studies on the bathyal fauna of northern Pacific waters suggested that a transition or boundary between the North Pacific Province and Central Pacific Provinces would be found somewhere along the Emperor Seamount Chain. Strong currents flow west to east across the seamount chain in a region known as the Main Gap and it was proposed that any larvae produced either north or south of the Main Gap would not be capable of crossing the gap. An expedition to test the hypothesis that a faunal change would be found in the vicinity of the Main Gap was conducted in 2019. Eleven ROV dives were conducted, one on an unnamed seamount at the southern edge of Hess Rise, and 10 dives on seven seamounts along the Emperor Seamount Chain. Six dives were on seamounts north of the Main Gap, while four (including the dive on Hess Rise) were on the southern side. Of the six northern dives, three were at deeper depths (∼2000–1800 m) and three were shallower (∼1500–1100 m); of the southern dives two were at the deeper depths and two were shallower. One shallower dive occurred on Jingu Seamount, situated on the southern edge of the Main Gap. Analysis of the fauna from both collected specimens and annotations of the dive video produced four clusters: a, the four dives south of the Main Gap; b, the three deeper dives north of the Main Gap; c, the shallower dive at Jingu Seamount; and d, the four shallower bathyal dives north of the Main Gap. It was concluded that the bathyal fauna underwent a significant change from north to south across the area of the Main Gap and the adjacent Small Gap, in the area of 37–39 °N, covering distances as small as 75 km or as much as 400 km.

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在海洋中寻找边界:帝王海山链的大缺口和小缺口是海底底栖动物的生物地理边界
对北太平洋水域水底动物群的研究表明,北太平洋省和中太平洋省之间的过渡或边界将出现在皇帝海山链的某处。强烈的洋流自西向东流经海山链上一个被称为 "主峡 "的区域,因此有人认为,在 "主峡 "以北或以南产生的任何幼体都无法穿越 "主峡"。2019 年进行了一次考察,以验证在主峡附近会发现动物变化的假设。共进行了 11 次遥控潜水器潜水,其中一次是在赫斯隆起南缘的一座无名海山,另外 10 次是在皇帝海山链沿线的七座海山。六次下潜在主峡以北的海山,四次(包括在赫斯隆起的下潜)在南侧。在北面的六次下潜中,三次在较深海域(2000-1800 米),三次在较浅海域(1500-1100 米);在南面的下潜中,两次在较深海域,两次在较浅海域。一次较浅的下潜发生在位于主峡南缘的神宫海山。通过对采集到的标本和潜水录像的注释进行动物群分析,得出了四组数据:a, 主峡以南的四次潜水;b, 主峡以北的三次较深潜水;c, 神宫海山的一次较浅潜水;d, 主峡以北的四次较浅的水底潜水。得出的结论是,在北纬 37-39 度地区,主海沟和邻近小海沟一带的水深动物群从北到南发生了显著变化,距离小至 75 公里,大至 400 公里。
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来源期刊
CiteScore
6.40
自引率
16.70%
发文量
115
审稿时长
3 months
期刊介绍: Deep-Sea Research Part II: Topical Studies in Oceanography publishes topical issues from the many international and interdisciplinary projects which are undertaken in oceanography. Besides these special issues from projects, the journal publishes collections of papers presented at conferences. The special issues regularly have electronic annexes of non-text material (numerical data, images, images, video, etc.) which are published with the special issues in ScienceDirect. Deep-Sea Research Part II was split off as a separate journal devoted to topical issues in 1993. Its companion journal Deep-Sea Research Part I: Oceanographic Research Papers, publishes the regular research papers in this area.
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