海洋科学
海洋科學
해양과학
MARINE SCIENCES
2013年
10期
104-110
,共7页
李倩倩%黄鹤忠%张群英%王小林%朱茂晓%沈振华%袁文成%陆建明
李倩倩%黃鶴忠%張群英%王小林%硃茂曉%瀋振華%袁文成%陸建明
리천천%황학충%장군영%왕소림%주무효%침진화%원문성%륙건명
东太湖%浮游生物%多样性%食性
東太湖%浮遊生物%多樣性%食性
동태호%부유생물%다양성%식성
the East Taihu Lake%plankton%diversity%feeding habits
2012年2~11月对东太湖不同水域浮游生物组成、数量、水质情况及水生植物密度进行了调查,并对9月份太湖鲢、鳙的食性进行了研究。结果表明:浮游动物和浮游植物多样性指数均为保护区>余山>老鼠山>漫山岛。水体浮游生物数量和综合营养状态指数均为漫山岛>老鼠山>余山>保护区。浮游植物总数量与蓝藻总数量、浮游动物总数量、富营养化因子呈正相关,与水生植物密度呈负相关。9月份太湖鲢、鳙的肠内含物中浮游植物和浮游动物分别占食物数量的89.1%、70.6%和10.9%、29.4%,其中蓝藻分别占74.5%、56%,枝角类和轮虫分别占3.7%、13.4%和1.5%、11.5%;鲢、鳙对蓝藻的选择性指数分别为1.42和1.07,对轮虫和原生动物的选择性指数分别为0.13、1.27和1.30、0.40。本研究结果对揭示影响太湖浮游生物周年变化的环境因素以及通过鲢、鳙控制蓝藻具有一定的理论价值和指导意义。
2012年2~11月對東太湖不同水域浮遊生物組成、數量、水質情況及水生植物密度進行瞭調查,併對9月份太湖鰱、鳙的食性進行瞭研究。結果錶明:浮遊動物和浮遊植物多樣性指數均為保護區>餘山>老鼠山>漫山島。水體浮遊生物數量和綜閤營養狀態指數均為漫山島>老鼠山>餘山>保護區。浮遊植物總數量與藍藻總數量、浮遊動物總數量、富營養化因子呈正相關,與水生植物密度呈負相關。9月份太湖鰱、鳙的腸內含物中浮遊植物和浮遊動物分彆佔食物數量的89.1%、70.6%和10.9%、29.4%,其中藍藻分彆佔74.5%、56%,枝角類和輪蟲分彆佔3.7%、13.4%和1.5%、11.5%;鰱、鳙對藍藻的選擇性指數分彆為1.42和1.07,對輪蟲和原生動物的選擇性指數分彆為0.13、1.27和1.30、0.40。本研究結果對揭示影響太湖浮遊生物週年變化的環境因素以及通過鰱、鳙控製藍藻具有一定的理論價值和指導意義。
2012년2~11월대동태호불동수역부유생물조성、수량、수질정황급수생식물밀도진행료조사,병대9월빈태호련、용적식성진행료연구。결과표명:부유동물화부유식물다양성지수균위보호구>여산>로서산>만산도。수체부유생물수량화종합영양상태지수균위만산도>로서산>여산>보호구。부유식물총수량여람조총수량、부유동물총수량、부영양화인자정정상관,여수생식물밀도정부상관。9월빈태호련、용적장내함물중부유식물화부유동물분별점식물수량적89.1%、70.6%화10.9%、29.4%,기중람조분별점74.5%、56%,지각류화륜충분별점3.7%、13.4%화1.5%、11.5%;련、용대람조적선택성지수분별위1.42화1.07,대륜충화원생동물적선택성지수분별위0.13、1.27화1.30、0.40。본연구결과대게시영향태호부유생물주년변화적배경인소이급통과련、용공제람조구유일정적이론개치화지도의의。
The composition, quantity of the plankton and the density of aquatic plant in different water area of the East Taihu Lake were investigated from February to November in 2012, and the feeding habits of Hypophalmichthy molitrix and Aristichthys nobilis in September in the Taihu Lake were studied. The results showed that the order of phytoplankton and zooplankton’s diversity index in four water areas was Protection Zone>Yushan>Mouse Moun-tain>Manshandao. The order of quantity of plankton and trophic lever index in the four water areas was Manshan-dao>Mouse Mountain>Yushan>Protection Zone. The total quantity of phytoplankton had a positive correlation with the total quantity of cyanobacteria. The total quantity of zooplankton and the eutrophication factors, however, has a negative correlation with the aquatic plant density. In September, the percentages of the phytoplankton and zoo-plankton in total fed quantity contained in the intestinal of H. molitrix or A. nobilis in the Taihu Lake were 89.1%or 70.6% and 10.9% or 29.4%, respectively, and the percentage of cyanobacteria was 74.5% or 56%, and that of cladocerans and rotifers were 3.7%or 13.4%and 1.5%or 11.5%, respectively. The selective index of cyanobacteria for H. molitrix or A. nobilis was 1.42 or 1.07, and that of cladocerans and rotifers was 0.13 or 1.27 and 1.3 or 0.4, respectively. The results of this study have theoretical value and great significance to reveal the effect of environ-mental factors on annual variation of plankton and to control cyanobacteria through H. molitrix and A.nobilis in the Taihu Lake.