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首页> 外文期刊>Aquatic Microbial Ecology >Karlodinium veneficum feeding responses and effects on larvae of the eastern oyster Crassostrea virginica under variable nitrogen: phosphorus stoichiometry
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Karlodinium veneficum feeding responses and effects on larvae of the eastern oyster Crassostrea virginica under variable nitrogen: phosphorus stoichiometry

机译:Karlodinium veneficum在可变氮气下东部牡蛎鲫鱼幼虫的哺乳酸反应和影响:磷化学计量

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Mixotrophic feeding can be promoted by nutrient-enriched prey, a nutritional strategy which can provide benefits to some toxic microalgae under nutrient-imbalanced conditions. However, it is unclear how the nutritional condition of the predator or the prey affects the mixo trophy and toxicity of toxin-producing mixotrophs. Laboratory experiments were conducted to measure growth and feeding rates of Karlodinium veneficum with addition of Rhodomonas salina as prey under varied nitrogen (N):phosphorus (P) stoichiometry (molar N:P of 4, 16 and 32) of both predator and prey and with K. veneficum initially in different growth phases (exponential and stationary). Growth rates of initially exponential-and stationary-phase K. veneficum were enhanced in the presence of prey with reciprocal nutrient conditions. Feeding rates (measured as prey death rates) were highest for low-NP K. veneficum initially growing exponentially and mixed with N-rich prey. Maximum feeding rates of low-NP K. veneficum on N-rich prey during exponential growth were similar to 4-fold higher than the rates of high-NP K. veneficum on N-rich prey. The nutritionally different K. veneficum were tested with larvae of the eastern oyster Crassostrea virginica to compare putative toxicity. Larval mortality was significantly increased in 2 d exposures to high-NP K. veneficum monocultures in both growth phases. When mixed with N-rich prey, the presence of K. veneficum resulted in significantly enhanced larval mortality, but this was not the case for low-NP K. veneficum in exponential phase. Enhanced growth of K. veneficum and increased negative effects of K. veneficum on larval survival appeared to be highest when fed prey with higher N:P content.
机译:营养饲料可以通过营养素培养的营养策略来促进混纺喂养,该营养策略可以在营养 - 不平衡条件下为某些有毒微藻提供益处。然而,目前尚不清楚捕食者或猎物的营养状况如何影响产生毒素的混纺萎缩的混合奖杯和毒性。进行了实验室实验,以测量卡尔替尼瓦菲姆的生长和饲养率,并在捕食者和捕食者和猎物的不同氮气(n)下的捕食性(n):磷(p)化学计量(p)化学计量(摩尔N:p为4,16和32)最初在不同的生长阶段(指数和静止),viteficum。最初指数和静止相K的生长速率在捕食性营养条件下提高了捕食性的viseficum。低NP K. veneficum最初呈指数增长并与N-富含纯猎物混合,饲料率(测量为猎物死亡率)最高。低NP K.Veficum在指数增长期间N-富含N-Rich的最大喂养速率与高NP K.Vireficum的N-富含猎物的速率高相似。营养不同的K.Veficum用东牡蛎克士斯科西亚·弗吉尼察的幼虫测试,以比较推定的毒性。在两种生长阶段的高NP K.Veneficum单篇文献中,2 d暴露的幼虫死亡率显着增加。当与富含N-富株的猎物混合时,K.Veficum的存在导致幼虫死亡率显着增强,但对于指数阶段的低NP K.Veficum而言,这并非如此。增强K.Veneficum的生长和增加K.Veneficum对幼虫存活的增加的负面影响似乎是喂养饲料饲料较高的N:P含量最高。

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