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新英格兰潮间带栖息地中具有天然和人工结构的非本地螃蟹数量众多。

Abundance of non-native crabs in intertidal habitats of New England with natural and artificial structure.

作者信息

Lovely Christina M, O'Connor Nancy J, Judge Michael L

机构信息

Department of Biology, University of Massachusetts Dartmouth , N. Dartmouth, MA , USA.

Department of Biology, Manhattan College , Riverdale, NY , USA.

出版信息

PeerJ. 2015 Sep 10;3:e1246. doi: 10.7717/peerj.1246. eCollection 2015.

Abstract

Marine habitats containing complex physical structure (e.g., crevices) can provide shelter from predation for benthic invertebrates. To examine effects of natural and artificial structure on the abundance of intertidal juvenile crabs, 2 experiments were conducted in Kingston Bay, Massachusetts, USA, from July to September, 2012. In the first experiment, structure was manipulated in a two-factor design that was placed in the high intertidal for 3 one-week periods to test for both substrate type (sand vs. rock) and the presence or absence of artificial structure (mesh grow-out bags used in aquaculture, ∼0.5 m(2) with 62 mm(2) mesh openings). The Asian shore crab, Hemigrapsus sanguineus, and small individuals of the green crab, Carcinus maenas, were observed only in the treatments of rocks and mesh bag plus rocks. Most green crabs were small (<6 mm in carapace width) whereas H. sanguineus occurred in a wide range of sizes. In the second experiment, 3 levels of oyster-shell treatments were established using grow-out bags placed on a muddy sand substrate in the low intertidal zone: mesh grow-out bags without shells, grow-out bags with oyster shells, and grow-out bags containing live oysters. Replicate bags were deployed weekly for 7 weeks in a randomized complete block design. All crabs collected in the bags were juvenile C. maenas (1-15 mm carapace width), and numbers of crabs differed 6-fold among treatments, with most crabs present in bags with live oysters (29.5 ± 10.6 m(-2) [mean ± S.D.]) and fewest in bags without shells (4.9 ± 3.7 m(-2)). Both C. maenas and H. sanguineus occurred in habitats with natural structure (cobble rocks). The attraction of juvenile C. maenas to artificial structure consisting of plastic mesh bags containing both oyster shells and living oysters could potentially impact oyster aquaculture operations.

摘要

包含复杂物理结构(如裂缝)的海洋栖息地可为底栖无脊椎动物提供躲避捕食的场所。为研究天然结构和人工结构对潮间带幼蟹数量的影响,2012年7月至9月在美国马萨诸塞州金斯顿湾进行了两项实验。在第一个实验中,采用双因素设计对结构进行操控,将其置于高潮间带,为期3个一周时段,以测试底物类型(沙子与岩石)以及人工结构的有无(水产养殖中使用的网箱,约0.5平方米,网眼开口为62平方毫米)。仅在岩石以及网箱加岩石的处理组中观察到了亚洲滨蟹(Hemigrapsus sanguineus)和小青蟹(Carcinus maenas)的小个体。大多数青蟹体型较小(头胸甲宽度小于6毫米),而亚洲滨蟹的体型大小范围较广。在第二个实验中,在低潮间带的泥质沙地底物上使用网箱设置了3个水平的牡蛎壳处理组:无壳网箱、装有牡蛎壳的网箱以及装有活牡蛎的网箱。采用随机完全区组设计,每周投放一次重复网箱,持续7周。网箱中收集到的所有螃蟹均为小青蟹幼体(头胸甲宽度1 - 15毫米),不同处理组中的螃蟹数量相差6倍,大多数螃蟹出现在装有活牡蛎的网箱中(29.5 ± 10.6只/平方米[平均值±标准差]),而无壳网箱中的螃蟹数量最少(4.9 ± 3.7只/平方米)。小青蟹和亚洲滨蟹都出现在具有天然结构(卵石)的栖息地中。小青蟹幼体对由装有牡蛎壳和活牡蛎的塑料网箱组成的人工结构的吸引力可能会对牡蛎养殖作业产生潜在影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31e1/4579033/71efa5490398/peerj-03-1246-g001.jpg

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