Walleye pollock Theragra chalcogramma during transformation from the larval to juvenile stage: Otolith and osteological development

被引:0
|
作者
Brown A.L. [1 ]
Busby M.S. [1 ]
Mier K.L. [1 ]
机构
[1] Alaska Fisheries Science Center, Natl. Oceanic and Atmospheric Admin., National Marine Fisheries Service, Seattle, WA 98115-0700
关键词
Walleye Pollock; Neural Spine; Sagittal Otolith; Vertebral Centra; Ventral Edge;
D O I
10.1007/s002270100641
中图分类号
学科分类号
摘要
Walleye pollock [Theragra chalcogramma (Pallas, 1814)] were collected from the Gulf of Alaska from 1991 to 1998 to examine the relationship between otolith and osteological development during transformation from the larval to juvenile life stage. Five stages of otolith development were determined for walleye pollock in conjuriction with landmarks in osteological development during juvenile transformation. The first stage of otolith development (12-19 mm SL) is identified by the first accessory growth center (AGC) forming on sagittal otoliths. At this stage, the notochord is undergoing flexion as the teeth, jaws, branchiostegal rays, neural spines, and abdominal vertebral centra are ossifying. The second and third stages of otolith development (19-21 and 21-24 mm SL) are defined by the formation of the anterior, posterior, and dorsal AGCs on the otolith. This occurs during postflexion in conjunction with ossification of the principal caudal-fin rays, haemal spines, and caudal vertebral centra. The fourth stage of otolith development (24-37 mm SL) is defined by the AGCs on the ventral edge of the otolith. By this stage of development, the pelvic-, pectoral-, dorsal-, and anal-fin ray elements have started ossification and the fish has entered the transformation stage. The fifth stage of otolith development (36-48 mm SL) is identified by a completely formed sagittal otolith, which has AGCs that have grown together so that the otolith shape resembles an adult otolith, the ossification of all vertebrae and fin rays is complete, and the fish is a juvenile. By estimating what length a fish was, based solely on otolith development, would prove helpful for those who wish to reconstruct length frequencies of walleye pollock from otoliths of fish that have been damaged due to gear and/or poor handling during the preservation process.
引用
收藏
页码:845 / 851
页数:6
相关论文
共 33 条
  • [21] ANALYSIS OF PATTERNS IN LARVAL WALLEYE POLLOCK THERAGRA-CHALCOGRAMMA SURVIVAL AND WIND MIXING EVENTS IN SHELIKOF STRAIT, GULF OF ALASKA
    BAILEY, KM
    MACKLIN, SA
    MARINE ECOLOGY PROGRESS SERIES, 1994, 113 (1-2) : 1 - 12
  • [22] CONTRASTING YEARS OF PREY LEVELS, FEEDING CONDITIONS AND MORTALITY OF LARVAL WALLEYE POLLOCK THERAGRA-CHALCOGRAMMA IN THE WESTERN GULF OF ALASKA
    BAILEY, KM
    CANINO, MF
    NAPP, JM
    SPRING, SM
    BROWN, AL
    MARINE ECOLOGY PROGRESS SERIES, 1995, 119 (1-3) : 11 - 23
  • [23] Size-dependent, spatial, and temporal variability of juvenile walleye pollock (Theragra chalcogramma) feeding at a structural front in the Southeast Bering Sea
    Schabetsberger, R
    Sztatecsny, M
    Drozdowski, G
    Brodeur, RD
    Swartzman, GL
    Wilson, MT
    Winter, AG
    Napp, JM
    MARINE ECOLOGY-PUBBLICAZIONI DELLA STAZIONE ZOOLOGICA DI NAPOLI I, 2003, 24 (02): : 141 - 164
  • [24] Geographical variations in infection by larval Anisakis simplex and Contracaecum osculatum (Nematoda, Anisakidae) in walleye pollock Theragra chalcogramma stocks off Hokkaido, Japan
    Konishi, K
    Sakurai, Y
    FISHERIES SCIENCE, 2002, 68 (03) : 534 - 542
  • [25] Cold-adapted structural properties of trypsins from walleye pollock (Theragra chalcogramma) and Arctic cod (Boreogadus saida)
    Kanno, Gaku
    Kishimura, Hideki
    Yamamoto, Jun
    Ando, Seiichi
    Shimizu, Takeshi
    Benjakul, Soottawat
    Klomklao, Sappasith
    Nalinanon, Sitthipong
    Chun, Byung-Soo
    Saeki, Hiroki
    EUROPEAN FOOD RESEARCH AND TECHNOLOGY, 2011, 233 (06) : 963 - 972
  • [26] Cold-adapted structural properties of trypsins from walleye pollock (Theragra chalcogramma) and Arctic cod (Boreogadus saida)
    Gaku Kanno
    Hideki Kishimura
    Jun Yamamoto
    Seiichi Ando
    Takeshi Shimizu
    Soottawat Benjakul
    Sappasith Klomklao
    Sitthipong Nalinanon
    Byung-Soo Chun
    Hiroki Saeki
    European Food Research and Technology, 2011, 233 : 963 - 972
  • [27] The scavenging of free radical and oxygen species activities and hydration capacity of collagen hydrolysates from walleye pollock (Theragra chalcogramma) skin
    Zhuang Y.
    Li B.
    Zhao X.
    Journal of Ocean University of China, 2009, 8 (2) : 171 - 176
  • [28] Physicochemical properties of gelatin gels from walleye pollock (Theragra chalcogramma) skin cross-linked by gallic acid and rutin
    Yan, Mingyan
    Li, Bafang
    Zhao, Xue
    Yi, Jibing
    FOOD HYDROCOLLOIDS, 2011, 25 (05) : 907 - 914
  • [30] Age validation of walleye pollock (Theragra chalcogramma) from the Gulf of Alaska using the disequilibrium of Pb-210 and Ra-226
    Kastelle, Craig R.
    Kimura, Daniel K.
    ICES JOURNAL OF MARINE SCIENCE, 2006, 63 (08) : 1520 - 1529