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241.
ABSTRACT: Sporophyll formation in two alariaceous plants, Undaria pinnatifida and Alaria crassifolia , was studied in relation to the nutrient requirements. The sporophylls of U. pinnatifida formed zoosporangia when they had N and P contents greater than 1.4 kgN/m3 and 0.74 kgP/m3 . This indicates that these values are the critical nutrient levels for zoospore formation in U. pinnatifida . In the sporophytes of A. crassifolia , many sporophylls with zoosporangia showed nutrient contents higher than 6.25 kgN/m3 and 1.70 kgP/m3 . These results suggest that the U. pinnatifida can form zoospores at lower levels of N and P contents than A. crassifolia . Both species often formed zoosporangial sori on the blades in the late period of each reproductive season. The fertile parts of the blade showed N and P contents higher than the critical levels. This phenomenon indicates that the blades have the capability to form zoosporangial sori if there is a sufficient accumulation of nutrients for zoospore formation. The zoospore formation on the blade seems to be accomplished by an overflow of excess nutrients from sporophylls into the blade, or by accumulating sufficient nutrients to form sori even if the sporophylls are not formed. 相似文献
242.
2007年6月-2008年4月对南太湖近岸水域进行了4次生态环境调查,在此基础上,对叶绿素a含量(Chl.a)与总氮(TN)、总磷(TP)浓度及氮磷比(N/P)的关系进行了统计分析。结果表明:南太湖水体中Chl.a含量与TN浓度的关系存在显著的季节差异,在蓝藻水华大范围爆发的2007年6月和2008年4月2者呈极显著的正相关,而2007年10月和2008年1月2者无显著性关系;Chl.a含量与TP浓度在4次调查中皆无显著相关关系;岭回归分析显示,N/P 10~25是南太湖水体中附着藻类的最佳生长范围,此时总氮、总磷浓度及氮磷比与Chl.a含量呈显著的正相关,4者的多元回归关系为Chl.a=-0.0012+0.0064 TN+0.0215 TP+0.0005N/P(R=0.543,P〈0.023)。总体来说,南太湖水体中的总氮、总磷浓度及氮磷比皆在藻类生长的适宜范围内,氮磷浓度处于较高水平,已经不是藻类生长的限制因素,在不同水温、光照等环境因子的作用下,加上本水域复杂的水文和季风共同影响下形成了蓝藻水华爆发的季节性差异。 相似文献
243.
L. Gan Y.‐J. Liu L.‐X. Tian H.‐J. Yang Y.‐R. Yue Y.‐J. Chen J.‐J. Liang G.‐Y. Liang 《Aquaculture Nutrition》2012,18(6):589-598
A 63‐day growth trial was undertaken to estimate the effects of supplemented lysine and methionine with different dietary protein levels on growth performance and feed utilization in Grass Carp (Ctenopharyngodon idella). Six plant‐based practical diets were prepared, and 32CP, 30CP and 28CP diets were formulated to contain 320 g kg?1, 300 g kg?1 and 280 g kg?1 crude protein without lysine and methionine supplementation. In the supplementary group, lysine and methionine were added to formulate 32AA, 30AA and 28AA diets with 320 g kg?1, 300 g kg?1 and 280 g kg?1 dietary crude protein, respectively, according to the whole body amino acid composition of Grass Carp. In the groups without lysine and methionine supplementation, weight gain (WG, %) and specific growth rate (SGR, % day?1) of the fish fed 32CP diet were significantly higher than that of fish fed 30CP and 28CP diets, but no significant differences were found between 30CP‐ and 28CP‐diet treatments. WG and SGR of the fish fed 32AA and 30AA diets were significantly higher than that of fish fed 28AA diets, and the performance of grass carp was also significantly improved when fed diets with lysine and methionine supplementation (P < 0.05), and the interaction between dietary protein level and amino acid supplementation was noted between WG and SGR (P < 0.05). Feed intake (FI) was significantly increased with the increase in dietary protein level and the supplementation of lysine and methionine (P < 0.05), but feed conversion ratio (FCR) showed a significant decreasing trend (P < 0.05). Two days after total ammonia nitrogen (TAN) concentration test, the values of TAN discharged by the fish 8 h after feeding were 207.1, 187.5, 170.6, 157.3, 141.3 and 128.9 mg kg?1 body weight for fish fed 32CP, 32AA, 30CP, 30AA, 28CP and 28AA diets, respectively. TAN excretion by grass carp was reduced in plant‐based practical diets with the increase in dietary protein level and the supplementation of lysine and methionine (P < 0.05). The results indicated that lysine and methionine supplementation to the plant protein sources‐based practical diets can improve growth performance and feed utilization of grass carp, and the dietary crude protein can be reduced from 320 g kg?1 to 300 g kg?1 through balancing amino acids profile. The positive effect was not observed at 280 g kg?1 crude protein level. 相似文献
244.
The present work aimed to study metabolic utilization of energy and protein by juvenile European seabass reared at 25 °C and
to estimate maintenance requirements, based on indirect calorimetry and nitrogen excretion measurements. Duplicate groups
of fish (IBW = 22 g) were fed a practical diet, for 28 days, at ration levels of 0, 0.25, 0.5, 1 and 1.5% of body weight.
At the end of this period, oxygen consumption and ammonia nitrogen excretion were measured in fed and unfed fish. Weight gain
linearly increased with ration level. Feed efficiency significantly increased with nitrogen intake up to 0.68 g N/kg/day.
Nitrogen retention (% N intake) was positive at all feeding levels, being maximum at 0.5% BW and then decreased with increasing
ration levels. There was negative energy balance at the lowest ration level and significantly increased at higher ration levels.
Daily oxygen consumption (g/kg body mass) and ammonia excretion (mg N–NH4/kg body mass) significantly increased with ration level. Heat production and heat increment of feeding (kJ/kg/day) remained
low at low ration levels and significantly increased as ration level increased from 0.5 to 1.5% BW. Below maintenance, protein
energy represented 34% of total energy expenditure and significantly increased to 49–56% above maintenance. Based on indirect
calorimetry and ammonia excretion data, maintenance energy and protein requirements were estimated to be 56.8 kJ DE/kg/day
and 1.15 g DP/kg/day, respectively. The efficiencies of energy and protein utilization were estimated to be 0.83 and 0.66,
respectively. 相似文献
245.
分别研究了不同硝化细菌浓度(0、20、60、120 mL/100 L)和不同微生物滤料(珊瑚石、锅炉煤渣、牡蛎壳)对养殖水中氨氮处理效果的影响。结果显示,添加硝化细菌后,水体中的氨氮浓度呈现下降趋势,在8~12 h出现极低值后,开始上升,但上升速度较慢;随着水体中硝化细菌添加量的增加,水体中的氨氮浓度下降速度加快;水体中亚硝酸氮浓度呈现先上升后下降的趋势,并在4~6 h出现极高值,然后迅速下降,且硝化细菌添加量越高,下降速度越快。硝化细菌对以珊瑚石和锅炉煤渣为滤料的养殖水体中氨氮和亚硝酸氮的处理效果显著优于牡蛎壳,但珊瑚石和锅炉煤渣之间无显著差异。综合试验结果,应急水质处理时,硝化细菌菌剂的添加量以一次60 mL/100 L(或以活菌计数为1.2×109个/100 L)、间隔24 h添加1次为宜;经过脱硫筛选之后的锅炉煤渣可以作为循环水养殖用滤料。 相似文献
246.
为提供实际生产理论依据,改良系统水处理工艺,开展循环水养殖系统中吉富罗非鱼氮收支和对水质情况的初步研究。起始养殖密度8 kg/m3,投饲率2%,系统循环量1 m3/h,总水量0.8 m3。试验期间溶解氧大于6 mg/L,pH 7.0~7.2,水温23~25℃。每周监测水质2~3次,监测指标包括氨氮、亚硝酸盐氮、硝酸盐氮,每2周检测1次水中总氮。用凯氏定氮法测定实验前后饲料、试验鱼体、粪便、悬浮颗粒的氮含量。结果显示,摄食氮有50.00±1.50%转化为生长氮,32.61±1.38%转化为排泄氮,17.39±4.0%转化为粪氮;58%的粪氮为悬浮颗粒物,42%为可沉淀颗粒物。 相似文献
247.
基于稳定同位素的口虾蛄食性分析 总被引:2,自引:0,他引:2
为了探讨口虾蛄的食物组成,利用稳定同位素方法对2015年5月在汕尾红海湾海域采集的口虾蛄及其饵料生物的碳、氮稳定同位素比值(δ~(13)C和δ~(15)N值)进行分析,定量研究不同饵料生物在口虾蛄食物中的贡献比率。结果表明,口虾蛄的δ~(13)C值为–18.1‰~–16.3‰,δ~(15)N值为10.9‰~13.5‰,平均值分别为–17.1‰±0.5‰和12.7‰±0.7‰。δ~(13)C和δ~(15)N值的变化范围均较大,表明口虾蛄的食物来源较多。口虾蛄的食物主要由鱼类、虾类、贝类、蟹类和桡足类组成。其中,贝类为口虾蛄的主要食物,平均贡献率为38.6%;其次为蟹类和桡足类,平均贡献率分别为22.9%和16.0%;虾类的平均贡献率为13.6%;鱼类的平均贡献率最低,仅为8.9%。根据δ~(15)N值及营养级的计算公式得出,口虾蛄的营养级为3.01±0.22,在其5类食物中,桡足类的营养级最低,仅为1.77±0.12;其次为贝类;蟹类和虾类的营养级分别为2.78±0.21和2.89±0.16;鱼类的最高,为2.98±0.15;它们的营养级均低于口虾蛄。此外相关分析显示,口虾蛄的δ~(15)N值与其个体体质量间存在极显著的正相关关系,说明不同大小的口虾蛄营养级有所差异。 相似文献
248.
本研究通过对2011~2014年间在黄海及东海北部采集的36种海洋鱼类进行碳、氮稳定同位素测定,利用碳稳定同位素比值(δ13C)计算底层饵料贡献比(Bp)来确定鱼类的食性,利用氮稳定同位素比值(δ15N)计算其营养级(TL)。结果显示,这36种鱼类的营养级范围为2.75~4.34,平均值为3.47。其中,4种为完全浮游生物食性,8种为底栖生物食性,完全底栖生物食性为12种,混合食性为12种。中(TL=3.5~4)、低(TL<3.5)营养级的种类占大多数(91.67%),而高营养级(TL>4)种类较少,仅为3种,且全部为混合食性。营养级的研究结果与1986、1992和2004年的研究对比发现,个别种类发生了改变。如蓝点马鲛(Sconberonorus niphonius)营养级有不同程度的下降;而黄鲫(Setipinna t)aty却有不同程度的上升。食性的研究结果与2004、2009和2011年的研究对比发现,有些种类食性发生了较大变化,如白姑鱼(Argyrosomus argentatus);有些种类食性几乎没有变化,如小黄鱼(Larimichthys polyactis)。 相似文献
249.
Evaluation of shrimp polyculture system in Thailand based on stable carbon and nitrogen isotope ratios 总被引:1,自引:0,他引:1
HISASHI YOKOYAMA JUNYA HIGANO a KUMIKO ADACHI YUKA ISHIHI YOSHIHIRO YAMADA b 《Fisheries Science》2002,68(4):745-750
ABSTRACT: To quantify the contribution by cocultured animals to waste assimilation in an intensive shrimp farm in Thailand, the food web structures of the macrobenthos in a reservoir pond, a shrimp culture pond and water treatment ponds were examined using the stable C and N isotope ratio technique. Seawater for aquaculture was drawn from a creek, and stored in a reservoir pond, used for farming the banana prawn Fenneropenaeus merguiensis in culture ponds, and then recycled through treatment ponds where the green mussel Perna viridis was cultured to remove organic wastes discharged from the farming. The clam worm Nereididae sp. and the mud creeper Cerithideopsilla cingulata in the culture pond had δ 13 C values of −21.0‰ and −18.4‰, respectively, suggesting that shrimp feed (mean δ 13 C = −20.7‰) was the main food source for these species. The δ 13 C analysis also suggested that sediments (−23.7‰) in the reservoir pond and particulate organic matter (POM) (−24.0‰) and/or sediments (−25.0‰) in the treatment pond supplied carbon for most macrobenthic animals. However, green mussels in the treatment pond had a mean δ 13 C value of −20.5‰, suggesting that shrimp feed was the main food source for this species. 相似文献
250.