中国环境科学
中國環境科學
중국배경과학
CHINA ENVIRONMENTAL SCIENCE
2014年
3期
727-733
,共7页
王海霞%刘瑀%关春江%路琳%鲍惠铭%刘保占
王海霞%劉瑀%關春江%路琳%鮑惠銘%劉保佔
왕해하%류우%관춘강%로림%포혜명%류보점
微藻%稳定同位素%营养盐%指数生长期%稳定生长期
微藻%穩定同位素%營養鹽%指數生長期%穩定生長期
미조%은정동위소%영양염%지수생장기%은정생장기
microalgae%stable isotope%nutrients%exponential phase%stationary phase
以5种微藻(甲藻3种,硅藻、绿藻各1种)为试验材料,探讨了不同营养条件对微藻不同生长阶段碳氮稳定同位素组成的影响.结果表明,不同纲微藻的δ13C 值和δ15Ν值在稳定生长期高于指数生长期,且与生长速率没有相关性(P>0.05).硅藻的δ13C 值低于甲藻和绿藻,绿藻和甲藻的δ13C值比较相近;甲藻的δ15N值低于硅藻和绿藻,绿藻和硅藻的δ15N值比较相近,且同属甲藻纲的海洋原甲藻、塔玛亚历山大藻和强壮前沟藻的δ15N值有较大的差异.5种微藻在不同营养条件(营养盐充足、缺氮、缺磷)下培养,氮限制和磷限制导致微藻具有更正的δ13C和δ15N,磷限制的影响不明显,且弱于氮抑制.
以5種微藻(甲藻3種,硅藻、綠藻各1種)為試驗材料,探討瞭不同營養條件對微藻不同生長階段碳氮穩定同位素組成的影響.結果錶明,不同綱微藻的δ13C 值和δ15Ν值在穩定生長期高于指數生長期,且與生長速率沒有相關性(P>0.05).硅藻的δ13C 值低于甲藻和綠藻,綠藻和甲藻的δ13C值比較相近;甲藻的δ15N值低于硅藻和綠藻,綠藻和硅藻的δ15N值比較相近,且同屬甲藻綱的海洋原甲藻、塔瑪亞歷山大藻和彊壯前溝藻的δ15N值有較大的差異.5種微藻在不同營養條件(營養鹽充足、缺氮、缺燐)下培養,氮限製和燐限製導緻微藻具有更正的δ13C和δ15N,燐限製的影響不明顯,且弱于氮抑製.
이5충미조(갑조3충,규조、록조각1충)위시험재료,탐토료불동영양조건대미조불동생장계단탄담은정동위소조성적영향.결과표명,불동강미조적δ13C 치화δ15Ν치재은정생장기고우지수생장기,차여생장속솔몰유상관성(P>0.05).규조적δ13C 치저우갑조화록조,록조화갑조적δ13C치비교상근;갑조적δ15N치저우규조화록조,록조화규조적δ15N치비교상근,차동속갑조강적해양원갑조、탑마아력산대조화강장전구조적δ15N치유교대적차이.5충미조재불동영양조건(영양염충족、결담、결린)하배양,담한제화린한제도치미조구유경정적δ13C화δ15N,린한제적영향불명현,차약우담억제.
With five microalgae (dinoflagellates, diatoms, green algae species) as test materials, the effect of different nutrient conditions had been explored on the stable carbon and nitrogen isotopic throughout the growth phases. The result showed that among different classes of microalgae theδ13C andδ15N at the exponential phase were lower than those at the stable phase, indicating no correlation with growth velosity (P>0.05). Bacillariophyceae presented a higher δ13C than dinophyceae and chlorophyceae, while theδ13C of dinophyceae was nearly identical to that of chlorophyceae. In terms ofδ15N, the dinophyceae falls behind both bacillariophyceae and chlorophyceae, with bacillariophyceae approximating to chlorophyceae. In addition, significantδ15N differences have been discovered among Prorocentrum micans, Alexandrium tamarense and Amphidinium carterae Hulburt. In this study, all five classes were grown under three distinctive cultures-nutrient sufficiency, nitrogen deficiency and phosphorus deficiency;either nitrogen or phosphorus limitation contributed to a more positive δ13C and δ15N, yet less obvious effect was observed in phosphorus-deficiency culture than in nitrogen-deficiency condition.