Pahl Stephen L, Lewis David M, Chen Feng, King Keith D
J Appl Phycol. 2010 Apr;22(2):165-171. doi: 10.1007/s10811-009-9436-7. Epub 2009 Apr 22.
To investigate the nutritional value of the diatom Cyclotella cryptica as an alternative feed for aquaculture, its heterotrophic growth characteristics were studied. First, the proximate biochemical composition and fatty acid profiles were studied under a controlled heterotrophic growth condition. The approximate total ash, carbohydrate, lipid, and protein content were 245 mg g(-1) (dry weight), 360 mg g(-1), 165 mg g(-1) and 260 mg g(-1), respectively. Polyunsaturated fatty acids accounted for 24.5, 31.3, 45.1 and 17.3% of the total lipids in the phospholipid, sterol, free fatty acid and triglyceride classes. Secondly, the effect of aeration and agitation rates on the specific growth rate of C. cryptica under heterotrophic conditions was studied. The maximum specific growth rate was not significantly affected (P > 0.05) by the rate of agitation within the range of 100 to 160 rpm, but it was significantly affected (P > 0.05) by the rate of aeration. Optimal growth occurred when the aeration rate was within the range of 0.44 to 1.07 v/v/min. Viability measurements throughout the growth period showed that the C. cryptica cells remained viable in spite of the varied cultivation conditions. Hydrodynamic forces are an important parameter within biological systems, and optimisation is crucial for the successful scale-up of microalgal cultivation systems. Whilst the investigation was preliminary in nature, the information gained in this study will be useful for the continual development of an alternative and cost-effective feed for bivalve spat rations.
为研究隐环藻作为水产养殖替代饲料的营养价值,对其异养生长特性进行了研究。首先,在可控的异养生长条件下研究了其近似生化组成和脂肪酸谱。总灰分、碳水化合物、脂质和蛋白质含量的近似值分别为245 mg g(-1)(干重)、360 mg g(-1)、165 mg g(-1)和260 mg g(-1)。多不饱和脂肪酸在磷脂、甾醇、游离脂肪酸和甘油三酯类总脂质中分别占24.5%、31.3%、45.1%和17.3%。其次,研究了通气和搅拌速率对隐环藻在异养条件下比生长速率的影响。在100至160 rpm范围内,搅拌速率对最大比生长速率无显著影响(P > 0.05),但通气速率对其有显著影响(P > 0.05)。当通气速率在0.44至1.07 v/v/min范围内时,出现最佳生长。整个生长期间的活力测量表明,尽管培养条件不同,隐环藻细胞仍保持活力。流体动力是生物系统中的一个重要参数,优化对于微藻培养系统的成功放大至关重要。虽然本研究本质上是初步的,但本研究获得的信息将有助于持续开发一种替代且经济高效的双壳贝类幼体饲料。