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沙氏硫杆菌 WF 对凡纳滨对虾幼体养殖的有益影响。

Beneficial effects of Ectothiorhodospira shaposhnikovii WF on larval cultivation of Litopenaeus vannamei.

机构信息

1 Fisheries College, Guangdong Ocean University, 40 East Jiefang Road, Zhanjiang, 524025, China P.R.

出版信息

Benef Microbes. 2015;6(4):525-33. doi: 10.3920/BM2014.0116. Epub 2015 Apr 22.

DOI:10.3920/BM2014.0116
PMID:25869277
Abstract

To develop high quality probiotics for shrimp larviculture, the effects of a photosynthetic purple sulphur bacterium WF identified as Ectothiorhodospira shaposhnikovii on survival and development of Litopenaeus vannamei larvae were evaluated in vivo. The larvae exhibited a better survival rate after administration of strain WF compared to the probiotic Rhodopseudomonas palustris. To investigate the effect of dose and dosing frequency, strain WF was added to larvae, stages nauplius 6 to zoea 3, at three different doses and dosing frequencies. Larval treatment with strain WF twice at 10(6) cfu/ml exhibited significantly higher survival compared to the other doses and dosing frequencies as well as the control. The effect on water quality was assessed by applying strain WF to larvae, stages nauplius 6 to postlarvae 1, under conditions of zero water exchange and one-third water exchange. The larvae exhibited higher survival and faster growth when treated under conditions of zero water exchange. No significant difference was detected in the levels of three water quality parameters and in vibrio counts between these two conditions. Therefore, E. shaposhnikovii WF acts both as a bioremediation agent and nutrient source and can benefit shrimp larvae if given at an appropriate dose and dosing frequency. Strain WF, a moderate halophile, shows great promise as a water additive in improving water quality and providing nutrition for shrimp larviculture.

摘要

为了开发高质量的虾类幼体养殖益生菌,我们评估了一种光合紫硫细菌 WF(鉴定为沙氏着色菌)对凡纳滨对虾幼体存活和发育的影响。与益生菌沼泽红假单胞菌相比,幼体在施用 WF 菌株后表现出更高的存活率。为了研究剂量和给药频率的影响,我们将 WF 菌株添加到幼体(无节幼体 6 期至幼体 3 期)中,采用三种不同的剂量和给药频率。两次以 10(6) cfu/ml 的剂量处理 WF 菌株的幼体,与其他剂量和给药频率以及对照组相比,存活率显著提高。通过在零换水和三分之一换水条件下将 WF 菌株应用于幼体(无节幼体 6 期至后期幼体 1 期)来评估其对水质的影响。在零换水条件下处理幼体时,幼体的存活率更高,生长速度更快。在这两种条件下,三个水质参数的水平和弧菌计数均无显著差异。因此,如果给予适当的剂量和给药频率,沙氏着色菌 WF 既可以作为生物修复剂,也可以作为营养源,对虾类幼体有益。该菌株 WF 是一种中度嗜盐菌,作为一种水质添加剂,具有改善水质和为虾类幼体养殖提供营养的巨大潜力。

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