ANALYSIS OF WATER SALINITY LEVEL OF FREQUENCY MOLTING IN VANNAMEI SHRIMP (LITOPENAEUS VANNAMEI) ABLATED

Mutiara Salsabiela
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Abstract

ABSTARCT Media salinity is a masking factor that plays an important role in controlling the process of shrimp molting and osmoregulation. Both of them are ecophysiological factors for shrimp life, so it is necessary to know the optimum level or range of media salinity for each phase of the molting phase changes in the stage and osmoregulation phase. This study was conducted to examine the molting frequency of adult L. vannamei which was ablated and cultivated at various levels of salinity. This research was carried out for 60 days. This study uses experimental laboratory methods with a systematic randomized design (RAS) with 4 treatments and 3 replications in each treatment. The treatments tested were salinity with S1 treatments (10 ppt, 289.20 mOsm / l postmolt H2O isosmotic), S2 (15 ppt, 432.80 mOsm / l H2O initial intermolt isosmotic), S3 (25 ± 1 ppt, 725, 15 mOsm / l H2O isosmotic final intermolt) and S4 (29 ± 1 ppt, 820.10 mOsm / l H2O isosmotic molt). Data were analyzed with ANOVA. Meanwhile, the difference in effect between treatments was obtained through Duncan's multiple area test. ANOVA results showed that various levels of isoosmotic media salinity at various molting phases had an influence (p <0.05) on molting frequency. The best value of molting frequency was in the S4 treatment (29 ± 1 ppt) (close to isoosmotic molt) 10 times. In the maintenance of L. vannamei which is affixed, it should pay attention to the needs of isoosmotic media, namely media with a salinity of 25 ± 1-29 ± 1 ppt (final intermolt isoosmotic range / premolt to molt). the difference in effect between treatments was obtained through Duncan's multiple region test. ANOVA results showed that various levels of isoosmotic media salinity at various molting phases had an influence (p <0.05) on molting frequency. The best value of molting frequency is in the treatment of S4 (29 ± 1 ppt) (close to isoosmotic molt) 10 times. In the maintenance of L. vannamei which is affixed, it is better to pay attention to the needs of isoosmotic media, ie media with a salinity of 25 ± 1-29 ± 1 ppt (final intermolt isoosmotic range / premolt to molt). the difference in effect between treatments was obtained through Duncan's multiple region test. ANOVA results showed that various levels of isoosmotic media salinity at various molting phases had an influence (p <0.05) on molting frequency. The best value of molting frequency is in the treatment of S4 (29 ± 1 ppt) (close to isoosmotic molt) 10 times. In the maintenance of L. vannamei which is affixed, it is better to pay attention to the needs of isoosmotic media, ie media with a salinity of 25 ± 1-29 ± 1 ppt (final intermolt isoosmotic range / premolt to molt). The best value of molting frequency was in the S4 treatment (29 ± 1 ppt) (close to isoosmotic molt) 10 times. In the maintenance of L. vannamei which is affixed, it is better to pay attention to the needs of isoosmotic media, ie media with a salinity of 25 ± 1-29 ± 1 ppt (final intermolt isoosmotic range / premolt to molt). The best value of molting frequency is in the treatment of S4 (29 ± 1 ppt) (close to isoosmotic molt) 10 times. In the maintenance of L. vannamei which is affixed, it is better to pay attention to the needs of isoosmotic media, ie media with a salinity of 25 ± 1-29 ± 1 ppt (final intermolt isoosmotic range / premolt to molt).
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凡纳滨对虾(litopenaeus vannamei)消融频率蜕皮的水盐度水平分析
培养基盐度是一个掩蔽因子,在控制虾的脱皮过程和渗透调节中起重要作用。两者都是影响虾寿命的生理生态因素,因此有必要了解换壳期和渗透调节期各阶段培养基盐度的最佳水平或范围。研究了在不同盐度条件下,凡纳梅成虫的脱皮频率。本研究进行了60天。本研究采用实验实验室方法,采用系统随机设计(RAS), 4个处理,每个处理3个重复。试验处理分别为:S1处理(10 ppt,脱皮后水等渗289.20 mOsm / l)、S2处理(15 ppt, 432.80 mOsm / l H2O初始等渗)、S3处理(25±1 ppt, 725, 15 mOsm / l H2O最终等渗)和S4处理(29±1 ppt, 820.10 mOsm / l H2O等渗)。数据采用方差分析。同时,通过Duncan’s多区试验得出不同处理间的效果差异。方差分析结果表明,不同水平的等渗介质盐度在不同的蜕皮阶段对蜕皮频率有影响(p <0.05)。在S4处理(29±1 ppt)(接近等渗蜕皮)10次时,蜕皮频率最高。在对贴敷的凡纳梅进行养护时,应注意等温介质的需要,即盐度为25±1-29±1 ppt(终蜕间等温范围/蜕前至蜕皮)的介质。不同处理间的效果差异通过Duncan’s多区域检验得到。方差分析结果表明,不同水平的等渗介质盐度在不同的蜕皮阶段对蜕皮频率有影响(p <0.05)。以S4处理(29±1 ppt) 10次(接近等渗脱皮)为最佳脱皮频率值。在对贴敷的凡纳梅进行养护时,最好注意等渗介质的需要,即盐度为25±1-29±1 ppt(最终蜕间等渗范围/蜕前至蜕皮)的介质。不同处理间的效果差异通过Duncan’s多区域检验得到。方差分析结果表明,不同水平的等渗介质盐度在不同的蜕皮阶段对蜕皮频率有影响(p <0.05)。以S4处理(29±1 ppt) 10次(接近等渗脱皮)为最佳脱皮频率值。在对贴敷的凡纳梅进行养护时,最好注意等渗介质的需要,即盐度为25±1-29±1 ppt(最终蜕间等渗范围/蜕前至蜕皮)的介质。在S4处理(29±1 ppt)(接近等渗蜕皮)10次时,蜕皮频率最高。在对贴敷的凡纳梅进行养护时,最好注意等渗介质的需要,即盐度为25±1-29±1 ppt(最终蜕间等渗范围/蜕前至蜕皮)的介质。以S4处理(29±1 ppt) 10次(接近等渗脱皮)为最佳脱皮频率值。在对贴敷的凡纳梅进行养护时,最好注意等渗介质的需要,即盐度为25±1-29±1 ppt(最终蜕间等渗范围/蜕前至蜕皮)的介质。
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