Studies of the Life History of the Blue Crab (Callinectes sapidus Rathbun) in Louisiana Waters

Author(s):  
Rezneat M. Darnell
2012 ◽  
Vol 98 (1) ◽  
pp. 73-84 ◽  
Author(s):  
Katrina M. Pagenkopp Lohan ◽  
Kimberly S. Reece ◽  
Terrence L. Miller ◽  
Kersten N. Wheeler ◽  
Hamish J. Small ◽  
...  

2021 ◽  
Vol 14 (1) ◽  
Author(s):  
Lydia Png-Gonzalez ◽  
Vanesa Papiol ◽  
Rosa Balbín ◽  
Joan Enric Cartes ◽  
Aina Carbonell

AbstractThe invasive blue crab Callinectes sapidus has been frequently recorded during the last years along the NW Mediterranean Sea, leading to established populations. Two megalopae of C. sapidus were found during two different oceanographic surveys in open waters of the Balearic Archipelago, in July 2005 and October 2011, previous to the first reference of adult specimens documented in the Balearic sub-basin. The analyzed environmental conditions of the sampling periods allowed us to hypothesize the likely introduction pathways, namely by maritime transport and surface currents. Furthermore, the recorded megalopae seem to enlarge the life history of C. sapidus in regard to its native area, where spawning peaks occur in late July and early August.


2020 ◽  
Vol 647 ◽  
pp. 123-133
Author(s):  
M Zhao ◽  
DC Behringer ◽  
J Bojko ◽  
AS Kough ◽  
L Plough ◽  
...  

Among the many Callinectes spp. across the western Atlantic, the blue crab C. sapidus has the broadest latitudinal distribution, encompassing both tropical and temperate climates. Its life history varies latitudinally, from extended overwintering at high latitudes to year-round activity in tropical locations. Callinectes sapidus reovirus 1 (CsRV1) is a pathogenic virus first described in North Atlantic C. sapidus and has recently been detected in southern Brazil. Little information exists about CsRV1 prevalence at intervening latitudes or in overwintering blue crabs. Using a quantitative reverse transcription PCR (RT-qPCR) method, this study investigated CsRV1 prevalence in C. sapidus across latitudinal differences in temperature and crab life history, as well as in additional Callinectes spp. and within overwintering C. sapidus. CsRV1 prevalence in C. sapidus was significantly correlated with high water temperature and blue crab winter dormancy. Prevalence of CsRV1 in C. sapidus on the mid-Atlantic coast was significantly lower in winter than in summer. CsRV1 infections were not detected in other Callinectes spp. These findings revealed that CsRV1 is present in C. sapidus across their range, but not in other Callinectes species, with prevalence associated with temperature and host life history. Such information helps us to better understand the underlying mechanisms that drive marine virus dynamics under changing environmental conditions.


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