Influence of Different Treatment Regimes of Phytoecdysteroid on Silkworm, Bombyx mori L.

  • Kumar S. Nirmal (Central Sericultural Research & Training Institute, Manandavadi Road) ;
  • Nair K. Sashindran (Central Sericultural Research & Training Institute, Manandavadi Road) ;
  • Mondal Sumana (Central Sericultural Research & Training Institute, Manandavadi Road)
  • Published : 2007.03.31

Abstract

The response of silkworm, Bombyx mori L. to phytoecdysteroid (PE) when administered at different ages of $5^{th}$ instar was studied in the popular bivoltine ($CSR2{\times}CSR4$) and multi${\times}$bivoltine ($PM{\times}CSR2$) silkworm hybrids, reared on the Victory-1 variety of mulberry leaves. PE was administered to $5^{th}$ instar silkworm per os at a rate of $250{\mu}g$ per 100 larvae to different batches of silkworm at 0, 24, 48, 72, 96, 120, 144 hrs and at the onset of cocoon spinning when a few larvae were ripe. The larval and mounting duration, cocoon yield and cocoon characters were influenced by PE. The intensity of influence was dependent on the time of application. The larvae treated at the beginning of the instar, improved the economic traits significantly with a marginal increase in larval duration. In the larvae treated at the middle of the instar, larval duration was shortened remarkably but the economic traits were adversely affected. This particular treatment can become a good management strategy in the case of mulberry leaf shortage or disease incidence. In the larvae treated at the onset of cocoon spinning, the mounting duration was substantially reduced without much effect on the cocoon traits which would be a big benefit in commercial sericulture. The physiological significance of varied response of silkworm to PE administration is discussed.

Keywords

References

  1. Chou, W. S. and H. S. Lu (1980) Growth regulation and silk production in Bombyx mori L. from phytogenous ecdyster-one; in Progress in Ecdysone Research Hoffman, J. A. (ed), pp. 281-297. Elsevier, North Holland
  2. Dai, Y. J., R. Li and Y. Q. Zhang (1985) Moulting hormone and silk protein synthesis: Effect of ecdysone on nucleic acid metabolism in the posterior portion of the silk gland in Bombyx mori. Acta. Entomol. Sinica. 28(1), 8-14
  3. Nair, K. S., K. Trivedy, S. Rele, G. J. Chintalwar, P. K. Chinya, R. K. Datta, S. Chattopadyay and A. Banerji (2002) Ecdysteroid from Sesuvium portulacastrum for synchronization of cocoon spinning in silkworm, Bombyx mori L; in Advance in Indian Seric. Res., Dandin, S. B. and V. P. Gupta (eds.), pp. 247-251, CSRTI, Mysore
  4. Nair, K.S., Y. Miao and S. Nirmal Kumar (2005) Differential response of silkworm, Bombyx mori L. to phytoecdysteroid depending on the time of administration. J. Appl. Sci. Environ. Mgmt. 9(3), 67-72
  5. Nirmal Kumar, S., K. S. Nair and J. Rabha (2005) Interaction of ambient temperature and time of treatment of phytoecdysteroid in the larval maturation process and crop performance of bivoltine hybrid $(CSR2\;{\times}\;CSR4)$ silkworm, Bombyx mori L. Indian J. Seric. 44(1), 118-124
  6. Nirmal Kumar, S., K. S. Nair and J. Rabha (2006) Role of phytoecdysteroid treatment time in the maturation process of $multi\;{\times}\;bivoltine\;(BL67\;{\times}\;CSR101)$ hybrid silkworm, Bombyx mori L. when maintained at low, medium and high temperature. Int. J. Indust. Entomol. 12(2), 65-68
  7. Sehnal, F. and H. Akai (1990) Insect silk glands: Their types development and function and effect of environmental factors and morphogenetic hormones on them. Int. J. Insect. Morphol. Embryol. 19, 79-132 https://doi.org/10.1016/0020-7322(90)90022-H
  8. Trivedy, K., K. S. Nair, M, Ramesh, Nisha Gopal and S. Nirmal Kumar (2003) Early and uniform maturation in silkworm, Bombyx mori L. by phytoecdysteroid extracted from a plant of family, Caryophyllacea. Int. J. Indust. Entomol. 7(1), 65-68