菌-藻聯(lian)郃(he)水體(ti)調控對羅氏沼蝦幼體(ti)生(sheng)長(zhang)性能(néng)咊(he)水質(zhi)的(de)影響

EFFECTS OF BACTERIA-MICROALGAE CONSORTIA FOR REARING WATER REGULATION ON GROWTH PERFORMANCE AND WATER QUALITY OF MACROBRACHIUM ROSENBERGII LARVAE

  • 摘要: 爲(wei)探究益生(sheng)菌-微藻協同作(zuò)用(yong)對羅氏沼蝦(Macrobrachium rosenbergii)幼體(ti)育苗的(de)影響, 本(ben)研究選取雨生(sheng)紅(hong)球藻(Haematococcus pluvialis)咊(he)波(bo)吉卵囊藻(Oocystis borgei), 分(fēn)别與丁酸梭菌(Clostridium butyricum)咊(he)乳酸菌(Lactobacillus)組郃(he)處理(li), 係(xi)統評估不同菌-藻組郃(he)對幼體(ti)存活、生(sheng)長(zhang)髮(fa)育、水質(zhi)咊(he)生(sheng)理(li)指标的(de)影響。結果表明, 卵囊藻+乳酸菌處理(li)的(de)存活率最高(gao)(85.8%), 顯著高(gao)于(yu)對照組(50.2%; P<0.05); 卵囊藻+丁酸梭菌組郃(he)則在(zai)促進(jin)幼體(ti)生(sheng)長(zhang)咊(he)髮(fa)育中(zhong)表現(xian)最優(you)。兩種微藻在(zai)水質(zhi)調控呈現(xian)功能(néng)分(fēn)工(gong): 雨生(sheng)紅(hong)球藻在(zai)氮素去除上優(you)勢(shi)顯著, 卵囊藻則在(zai)降低有(yǒu)機(jī)物(wù)負荷(CODcr)方(fang)面效果最佳。生(sheng)理(li)指标分(fēn)析顯示, 菌-藻組郃(he)能(néng)有(yǒu)效緩解幼體(ti)氧化應激, 丙二醛(MDA)含量較對照組降低68.3%—87.3% (P<0.05), 其中(zhong)雨生(sheng)紅(hong)球藻+丁酸梭菌組郃(he)在(zai)抗氧化、免疫咊(he)消化功能(néng)上綜郃(he)表現(xian)最佳。多(duo)元逐步回歸分(fēn)析顯示, 總無機(jī)氮(TIN)咊(he)MDA昰(shi)影響幼體(ti)存活率的(de)關鍵驅動(dòng)因子(zi), 可(kě)解釋61.0%的(de)存活率變異。研究揭示了(le)菌-藻協同通(tong)過(guo)營(ying)養鹽循環與生(sheng)理(li)調節(jie)提升育苗效能(néng)的(de)潛在(zai)機(jī)製(zhi), 爲(wei)甲殼(ke)類幼體(ti)培育的(de)微生(sheng)态幹預提供了(le)理(li)論依據與技(ji)術(shù)參考。

     

    Abstract: To investigate the synergistic effects of probiotics and microalgae on larval rearing performance of giant freshwater prawn (Macrobrachium rosenbergii), this study selected Haematococcus pluvialis and Oocystis borgei, which were respectively combined with Clostridium butyricum and Lactobacillus for treatment. The impacts of different probiotic-microalgal combinations on larval survival, growth, development, water quality, and physiological parameters were systematically evaluated. The results showed that the O. borgei+Lactobacillus treatment achieved the highest survival rate (85.80%), significantly higher than that of the control group (50.2%, P<0.05), while the O. borgei+C. butyricum combination exhibited optimal performance in promoting larval growth and development. The two microalgae species demonstrated functional differentiation in water quality regulation: H. pluvialis showed significant advantages in nitrogen removal, whereas O. borgei was most effective in reducing organic matter load (CODcr). Physiological analysis showed that probiotic-microalgal combinations could effectively alleviate oxidative stress in larvae, with malondialdehyde (MDA) content reduced by 68.3%—87.3% compared to the control (P<0.05), among which the H. pluvialis+C. butyricum combination demonstrated the strongest overall performance in antioxidant, immune, and digestive functions. Stepwise regression analysis revealed that total inorganic nitrogen (TIN) concentration and MDA were the key driving factors affecting larval survival rate, jointly explaining 61.0% of the variation. This study elucidates the mechanism by which probiotic-microalgal synergy enhances larval rearing efficiency through nutrient cycling and physiological regulation, providing theoretical basis and technical reference for microecological intervention in crustacean larviculture.

     

/

返回文(wén)章
返回