Effects of ecdysterone on growth and metabolism of aquaculture animals

The effects of ecdysterone on the growth and metabolism of aquaculture animals are double-sided.On the one hand,ecdysterone can promote the molting process of farmed animals,remove the molting obstacles,remove harmful parasites,and thus improve the efficiency of breeding.On the other hand,ecdysterone can also promote protein synthesis,enhance the ability of farmed animals to adapt to the environment,and improve the rate of weight gain and feed conversion.

Effects of ecdysterone on growth and metabolism of aquaculture animals

Specifically,ecdysterone can promote molting and growth of farmed animals by regulating their endocrine system.In shrimp and crab culture,the addition of molting hormone can promote their molting,improve commodity specifications and breeding efficiency.At the same time,ecdysterone can also remove harmful parasites and improve the efficiency of aquaculture.

In addition,ecdysterone can also promote the metabolic level of farmed animals,improve the speed of weight gain and feed conversion.In fish culture,the addition of ecdysterone can promote the growth and protein synthesis of fish,and improve the efficiency of aquaculture.In turtle culture,ecdysterone can promote its growth,improve reproductive performance and enhance immunity.

However,it is important to note that excessive or improper use of ecdysterone can have a negative effect on farmed animals.Therefore,when using ecdysterone,the dosage and usage should be appropriately adjusted according to different breeding varieties and environmental conditions to ensure safe use.

In summary,ecdysterone has a two-sided effect on the growth and metabolism of aquaculture animals,which can not only promote growth and metabolism,but also remove harmful parasites and improve breeding efficiency.When using,it is necessary to pay attention to properly adjust the dosage and usage to avoid negative effects on cultured animals.

Note:The potential benefits and applications presented in this article are derived from the published literature.

 


Post time: Sep-06-2023