海洋渔业
海洋漁業
해양어업
Marine Fisheries
2015年
6期
510-516
,共7页
龚盼%侯俊利%庄平%张涛%刘鉴毅%黄晓荣%章龙珍
龔盼%侯俊利%莊平%張濤%劉鑒毅%黃曉榮%章龍珍
공반%후준리%장평%장도%류감의%황효영%장룡진
日本鳗鲡%鳗苗%行为%底质颜色%光照强度%长江口
日本鰻鱺%鰻苗%行為%底質顏色%光照彊度%長江口
일본만려%만묘%행위%저질안색%광조강도%장강구
Anguilla japonica%glass eel%behavior%substrate color%light intensity%Yangtze Estuary
采用个体和群体相结合的实验方法,研究了长江口日本鳗鲡(Anguilla japonica)鳗苗对底质颜色和光照强度的选择行为。结果表明:在室内光照(88 lx)和黑暗(0.3 lx)条件下,鳗苗在个体和群体实验中对黑、白底质颜色的选择均有显著性差异(P<0.05),其对黑色底质有明显偏好。鳗苗对4个光照强度梯度:6000~12000 lx(A区)、700~1400 lx(B区)、60~150 lx(C区)和5~10 lx(D区)的选择性也表现出显著性差异,实验中个体和群体在D区活动的时间和数量百分比均显著高于其它区域(P<0.05),表明日本鳗鲡鳗苗对5~10 lx的弱光有明显趋性。由长江口日本鳗鲡鳗苗趋向黑色底质和弱光环境的结果推测,长江口鳗苗可能营底栖生活,白天强光照期间栖息于河口区光照强度较低的底层,并于夜间借助潮汐能进行溯河洄游,同时具有躲避敌害、避免被捕食的作用,以尽快适应生态环境变化并成功快速进入淡水水域育肥。
採用箇體和群體相結閤的實驗方法,研究瞭長江口日本鰻鱺(Anguilla japonica)鰻苗對底質顏色和光照彊度的選擇行為。結果錶明:在室內光照(88 lx)和黑暗(0.3 lx)條件下,鰻苗在箇體和群體實驗中對黑、白底質顏色的選擇均有顯著性差異(P<0.05),其對黑色底質有明顯偏好。鰻苗對4箇光照彊度梯度:6000~12000 lx(A區)、700~1400 lx(B區)、60~150 lx(C區)和5~10 lx(D區)的選擇性也錶現齣顯著性差異,實驗中箇體和群體在D區活動的時間和數量百分比均顯著高于其它區域(P<0.05),錶明日本鰻鱺鰻苗對5~10 lx的弱光有明顯趨性。由長江口日本鰻鱺鰻苗趨嚮黑色底質和弱光環境的結果推測,長江口鰻苗可能營底棲生活,白天彊光照期間棲息于河口區光照彊度較低的底層,併于夜間藉助潮汐能進行溯河洄遊,同時具有躲避敵害、避免被捕食的作用,以儘快適應生態環境變化併成功快速進入淡水水域育肥。
채용개체화군체상결합적실험방법,연구료장강구일본만려(Anguilla japonica)만묘대저질안색화광조강도적선택행위。결과표명:재실내광조(88 lx)화흑암(0.3 lx)조건하,만묘재개체화군체실험중대흑、백저질안색적선택균유현저성차이(P<0.05),기대흑색저질유명현편호。만묘대4개광조강도제도:6000~12000 lx(A구)、700~1400 lx(B구)、60~150 lx(C구)화5~10 lx(D구)적선택성야표현출현저성차이,실험중개체화군체재D구활동적시간화수량백분비균현저고우기타구역(P<0.05),표명일본만려만묘대5~10 lx적약광유명현추성。유장강구일본만려만묘추향흑색저질화약광배경적결과추측,장강구만묘가능영저서생활,백천강광조기간서식우하구구광조강도교저적저층,병우야간차조조석능진행소하회유,동시구유타피활해、피면피포식적작용,이진쾌괄응생태배경변화병성공쾌속진입담수수역육비。
Purpose:The paper is to investigate selective behavior of Anguilla japonica glass eel for environmental factors,to offer a guide for management and protection of Japanese eel stock. <br> Materials:Anguilla japonica glass eel [(57.52 ±2.61)mm,(0.115 ±0.025)g ]captured from the Yangtze Estuary in April 2014 was kept for 2 weeks in an aquarium,and fed to satiation twice a day at 8∶00 am and 18∶00 pm.The temperature and dissolved oxygen of the breeding water was controlled at (25 ±1)℃and 7 mg·L-1 respectively,and water ammonia nitrogen was less than 0.01 mg·L-1 . <br> Methods:The experiment for preference of substrate color and light intensity used individual (30 ind) and population glass eel (30 ind ).Individual experiment index was defined as the percentage of glass eel active time in each area.Population experiment index was defined as the percentage of glass eel number active in each area.In preference for substrate color experiment,we set two light conditions as indoor illumination (88 lx)and dark (0.3 lx),which corresponded to black and white substrate color separately.In preference for light intensity experiment,we set four light intensities as 6 000 -12 000 lx (area A),700 -1 400 lx (area B),60-150 lx (area C),5 -10 lx (area D). <br> Results:The experiment of preference for substrate color results showed that whether in indoor light (88 lx)or dark (0.3 lx)light,individual and population glass eel showed significant (P<0.05)preference for black substrate.The results of individual light intensity preference showed that the percentage of glass eel active time in area A,B,C and D was (3.55 ±7.03)%,(7.31 ±9.34)%,(20.42 ±8.56)% and (68.72 ±17.17 )%,respectively.The results of population light intensity preference showed that the percentage of glass eel number active in area A,B,area C and area D was(2.00 ±4.00)%,(4.00 ± 4.90)%,(21.00 ±9.43)% and (73.00 ±13.45)%,respectively.The active time percentage and number percentage of glass eel active in area D were significantly higher (P<0.05 )than in other areas, which indicated that glass eel obviously selected low light intensity of 5 -10 lx area. <br> Conclusions:In this paper,glass eel showed obvious preference for black substrate and low light intensity of 5 -10 lx.It was speculated that glass eel may select benthic living in low light intensity when migrating upstream through the Yangtze Estuary.The behavior in this paper indicates that glass eel may migrate by tide at night avoid predators on day light for effective migrating to upstream.