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Integrated cage-cum-pond culture systems with high valued climbing perch (Anabas testudineus) in cages and low-valued carps in open ponds

机译:综合性网箱兼池塘养殖系统,网箱内有高价值的攀爬鲈鱼(Anabas testudineus),开阔池塘中有低价鲤鱼

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摘要

An on-farm trial was conducted over 150 days to determine appropriate stocking ratio, growth and production of climbing perch (Anabas testudineus) in cages and carps in open water of ponds in eighteen farmers' ponds from Haluaghat Upazila at Mymensingh district of Bangladesh. One or two 1 m super(3) cage was suspended in each of 12 earthen ponds and other 6 ponds served as control without cages. Climbing perch of 2-3 g in size were stocked in cages while fingerlings of silver carp (Hypophthalmicthys molitrix), catla (Catla catla), rohu (Labeo rohita), mirgal (Cirhinus cirrhosus), rajputi (Puntius sarana) and common carp (Cyprinus carpio) were stocked at 1 fish/m super(2) with a species ratio of 5:4:4:4:2:1 in open water of all ponds to give cage to open-pond fish ratios of 1:1 (T sub(1:1)) and 2:1 (T sub(2:1)) and 0:1 (T sub(0:1)) as three treatments with six replicates each. Survival of climbing perch was higher in T sub(1:1) (61.67%) than that of T sub(2:1) (29.5%) and was significantly different (p>0.05) between the treatments. Stocking of small size climbing perch fry increased the mortality rate in cages. The net yields of Thai koi were 0.13±0.01 (t/ha) and 0.10±0.01 (t/ha) in treatments T sub(1:1) and T sub(2:1), respectively and both were significantly different (p>0.05). Survival of-open-pond carps was high, ranging from 50 to 91.67% with significantly lower in T sub(0:1) than that of T sub(1:1) and T sub(2:1) treatment. Net and gross yield of each carp species were significantly higher in the T sub(1:1) and T sub(2:1) treatment than that in T sub(0:1) treatment. Net revenues were positive but low in all treatments. Therefore, bigger size climbing perch with lower stocking ratio (T sub(1:1)) is suitable for integrated cage-pond culture of climbing perch and carps. However, more on-farm trials in different ecosystem with scientific interventions are necessary to develop the technology for further dissemination among the rural farmers.
机译:进行了为期150天的农场试验,以确定孟加拉国Mymensingh区Haluaghat Upazila的18个农民池塘中池塘的开放水域的网箱和鲤鱼的适当放养率,生长和生产的栖息鲈鱼(Anabas testudineus)。在12个土池中分别悬挂一个或两个1 m的super(3)网箱,其他6个无网箱的池塘作为对照。笼中放有2-3 g的攀爬鲈鱼,而finger鱼的鱼种有H鱼(Hypophthalmicthys molitrix),cat鱼(Catla catla),ro鱼(Labeo rohita),海gal(Cirhinus cirrhosus),rajputi(Puntius sarana)和鲤鱼(在所有池塘的开阔水域中,按1鱼/米super(2)的比例放养鲤鱼(Syprinus carpio),物种比例为5:4:4:4:2:1,使网箱与开池鱼的比例为1:1( T sub(1:1))和2:1(T sub(2:1))和0:1(T sub(0:1))分为三个处理,每个处理重复六次。 Tsub(1:1)(61.67%)的爬高栖息率比Tsub(2:1)(29.5%)的高,并且两种处理之间的差异显着(p> 0.05)。放养小型攀缘鲈鱼苗会增加网箱的死亡率。在Tsub(1:1)和Tsub(2:1)处理中,泰国锦鲤的净产量分别为0.13±0.01(t / ha)和0.10±0.01(t / ha),两者均存在显着差异(p > 0.05)。开放性鲤鱼的存活率很高,在50%至91.67%之间,Tsub(0:1)明显低于Tsub(1:1)和Tsub(2:1)处理。在Tsub(1:1)和Tsub(2:1)处理中,每种鲤鱼的净产量和总产量均显着高于Tsub(0:1)处理。净收入为正,但所有治疗方法均较低。因此,较大放养比率(T sub(1:1))的大型攀爬鲈鱼适合用于攀爬鲈鱼和鲤鱼的网箱养殖。但是,有必要在不同的生态系统中通过科学干预进行更多的农场试验,以开发该技术,以便在农村农民中进一步传播。

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