DOI QR코드

DOI QR Code

Sexual Maturity Time of Reproductive Organ Development and Mating in the Korean Native Bumblebee, Bombus ignitus

생식기관과 교미에 의한 국내산 호박벌(Bombus ignitus)의 성적 성숙시기

  • Yoon, Hyung Joo (Department of Agricultural Biology, The National Academy of Agricultural Science, RDA) ;
  • Lee, Kyeong Yong (Department of Agricultural Biology, The National Academy of Agricultural Science, RDA) ;
  • Ko, Hyeon-Jin (Department of Agricultural Biology, The National Academy of Agricultural Science, RDA)
  • 윤형주 (농촌진흥청 국립농업과학원 농업생물부 곤충산업과) ;
  • 이경용 (농촌진흥청 국립농업과학원 농업생물부 곤충산업과) ;
  • 고현진 (농촌진흥청 국립농업과학원 농업생물부 곤충산업과)
  • Received : 2018.10.23
  • Accepted : 2018.11.14
  • Published : 2018.12.01

Abstract

To increase the mating rate of Bombus ignitus used as insect pollinator, we investigated the sexual maturity time of B. ignitus. In investigating ovary development such as the number of eggs per ovariole and spermatheca size, the time of sexual maturity of queen was 10 days after eclosion. In case of male, the number of sperm was 246 thousand at immediately after eclosion, and was highest as 480 thousand at 9 days, and tended to show a dramatic decline at 35 days (87 thousand). The more mating time, the less the number of sperm. In consideration of number of sperms, the time of sexual maturity of male was 3-15 days after eclosion. In the sexual maturity time of queen in mating, the queen was not mated at immediately after eclosion, and showed a decrease in 20 days. In terms of the rate of mating and oviposition, the favorable time for mating of queen was 9-20 days. On the other hand, the male showed 3.3% of mating at immediately after ecolosion, showed the highest of 43.3% at 6 days after eclosion, and tended to decrease in 25 days. The sexual maturity time for mating of male was 6-20 days. In summary, our results indicate that sexual maturity time of B. ignitus in reproductive organs and mating is most favorable in 9-12 days after eclosion for queen and 6-9 days for male.

화분매개곤충인 호박벌(B. ignitus)의 교미율을 높이기 위하여 생식기관 발육과 교미에 의한 성적 성숙시기를 조사하였다. 난소 소관 당 알수와 수정낭 크기 등 난소 발육으로 볼 때, 여왕벌의 성적 성숙시기는 우화 10일 이내이었다. 수벌의 정자수는 우화당일에 24.6만개이었고, 우화 9일째가 48.0만개 정도로 가장 많았으며, 우화 35일(8.7만개) 이후 정자수가 감소하는 경향을 보였다. 또한 교미횟수가 증가함에 따라 정자수가 줄어드는 것을 알 수 있었다. 수벌의 정자수에 의한 성적 성숙시기는 우화 3~15일이었다. 교미에 의한 성적 성숙시기 조사결과, 여왕벌은 우화직후에는 전혀 교미를 하지 않았으며, 우화 20일 이후에는 교미율이 떨어지는 경향을 보였다. 교미율과 산란율 등으로 볼 때 여왕벌의 교미에 적합한 시기는 우화 9~20일이었다. 반면에 수벌은 우화 직후에도 3.3% 교미하였으며, 우화 6일째가 43.3%로 가장 높았으며, 우화 25일 이후부터는 감소하는 경향이었다. 교미율과 산란율 등으로 볼 때, 수벌의 교미 성숙시기는 우화 6~20일이었다. 이상의 생식기관 발육과 교미에 의한 봉세발달 등으로 볼 때 호박벌 여왕벌의 최적 성적 성숙시기는 우화 9~12일, 수벌은 우화 6~9일로 판단된다.

Keywords

OOGCBV_2018_v57n4_329_f0001.png 이미지

Fig. 1. Ovarioles (A) and eggs (B) of mated B. ignitus queen.

OOGCBV_2018_v57n4_329_f0002.png 이미지

Fig. 2. Comparison of spermatheca of non-mated (A) and mated (B) B. ignitus queen.

OOGCBV_2018_v57n4_329_f0003.png 이미지

Fig. 3. The sperm of non-mated B. ignitus male. Arrow, sperm; scale bar, 20 μm.

OOGCBV_2018_v57n4_329_f0004.png 이미지

Fig. 4. The number of sperm at age of non-mated B. ignitus males. The testes of three non-mated B. ignitus males were alloted for each experimental age of male regime. There was significant difference in sperm number at age of non-mated males at P < 0.0001 using the oneway ANOVA test.

OOGCBV_2018_v57n4_329_f0005.png 이미지

Fig. 5. The number of sperm of B. ignitus male at number of mating. The testes of three B. ignitus males were alloted for each experimental number of mating regime. There was significant difference in sperm number at number of mating at P < 0.0001 using the oneway ANOVA test.

OOGCBV_2018_v57n4_329_f0006.png 이미지

Fig. 6. Mating rate at the age of B. ignitus queens and males. The mating rate was investigated 10:00 to 12:00 at the first day of mating periods. There was significant difference in mating rate at the age of queens at P < 0.05 using the Chi-square test.

OOGCBV_2018_v57n4_329_f0007.png 이미지

Fig. 7. Oviposition rate at the age of B. ignitus queens and males. There was significant difference in colony development at the age of queens at P < 0.05 using the Chi-square test.

OOGCBV_2018_v57n4_329_f0008.png 이미지

Fig. 8. Mating rate at the mating time zone of B. ignitus males. The mating rate was investigated 09:00 to 17:00 at the first day of mating periods. The mating age of queen and male were 6 days and 9 days, respectively. There was significant difference in mating rate at mating time zone of males at P < 0.0001 using the Chi-square test.

OOGCBV_2018_v57n4_329_f0009.png 이미지

Fig. 9. Mating duration at the age of B. ignitus males. The mating age of queen was 6 days. There was significant difference in mating rate at the age of queens at P < 0.05 using the oneway ANOVA test.

OOGCBV_2018_v57n4_329_f0010.png 이미지

Fig. 10. Mating rate at the number of mating of B. ignitus males. The mating ages of queen and male were 6 days and 9 days, respectively. There was significant difference in mating rate at the age of queens at P < 0.0001 using the Chi-square test.

OOGCBV_2018_v57n4_329_f0011.png 이미지

Fig. 11. Mating duration at the number of mating of B. ignitus males. The mating ages of queen and male were 6 days and 9 days, respectively. There was significant difference in mating rate at the age of queens at P < 0.0001 using the oneway ANOVA test.

Table 1. The number of eggs per ovariole at age of non-mated B. ignitus queen

OOGCBV_2018_v57n4_329_t0001.png 이미지

Table 2. The number of eggs per ovariole at age of mated B. ignitus queen

OOGCBV_2018_v57n4_329_t0002.png 이미지

Table 3. Comparison of spermatheca size at age of non-mated and mated B. ignitus queen

OOGCBV_2018_v57n4_329_t0003.png 이미지

References

  1. Baer, B., Maile, R., Schmid-Hemple, P., Morgan, E.D., Jones, G.R., 2000. Chemistry of a mating plug in bumblebees. J. Chem. Ecol. 26, 1869-1875. https://doi.org/10.1023/A:1005596707591
  2. Baer, B., Morgan, E.D., Schmid-Hemple, P., 2001. A nonspecific fatty acid within the bumblebee mating plug prevent females form remating. Proc. Natl. Acad. Sci. USA. 98, 3926-3928. https://doi.org/10.1073/pnas.061027998
  3. Baer, B., Schmid-Hempel, P., 2000. The artificial insemination of bumble-bee queens. Insect. Soc. 47, 183-187. https://doi.org/10.1007/PL00001699
  4. Bergstom, G., 1981. Chemical composition, similarity and dissimilarity in volatile secretions: examples of indications of biological function, Les mediateurs chimiques agissant sur le comportment des insects, pp. 289-296. Les colloques de I'NRA.
  5. Buchmann, S.L., Hurley, J.P., 1978. A biophysical model for buzz pollination in angiosperms. J. Theor. Biol. 72, 639-657. https://doi.org/10.1016/0022-5193(78)90277-1
  6. De Ruijter, A., 1997. Commercial bumblebee rearing and its implications. Proc. 7th Int. Symp. Pollination, Acta Hort. 437, 261-269.
  7. Djegham, Y., Verhaeghe, J.C., Rasmout, P., 1994. Coupulation of Bombus terrestris L. (Hymenoptera: Apidae) in captivity. J. Apicul. Res. 33, 15-20. https://doi.org/10.1080/00218839.1994.11100844
  8. Duchateau, M.J., 1985. Analysis of some methods for rearing bumblebee colonies. Apidologie 16, 225-227.
  9. Duchateau, M.J., Marien, J., 1995. Sexual biology of haploid and diploid males in the bumblebee Bombus terrestris. Insect. Soc. 42, 255-266. https://doi.org/10.1007/BF01240420
  10. Duchateau, M.J., Velthuis, H.H.W., 1988. Development and reproductive strategies in Bombus terrestris colonies. Behavior 107, 186-207. https://doi.org/10.1163/156853988X00340
  11. Duvoisin, N., Boris, B., Schmid-Hemple, P., 1999. Sperm transfer and male competition in a bumblebee. Anim. Behav. 58, 743-749. https://doi.org/10.1006/anbe.1999.1196
  12. Free, J.B., 1993. Insect pollination of crops. 2nd ed., Academic Press, London, 684 pp.
  13. Hannan, M.A., Maeta, Y., Hoshikawa, K., 1998. Feeding behavior and food consumption in Bombus (Bombus) ignitus under artificial condition (Hymenoptera: Apidae). Entomol. Sci. 1, 27-32.
  14. Heinrich, B., 1979. Bumblebee economics. Harvard University Press. Cambridge, Massa, 245 pp.
  15. Iwasaki, M., 1995. Introduction of commercial bumblebees into Japan. Honeybee Sci. 16, 17-21.
  16. Masahiro, M., 2000. Pollination of crops with bumblebee colonies in Japan. Honeybee Sci. 21, 17-25.
  17. Medler, J.T., 1962. Development and absorption of eggs in bumblebee (Hymenoptera : Apidae). Can. Ent. 94, 825-833. https://doi.org/10.4039/Ent94825-8
  18. Roseler, P.F., 1973. Die anzahl der spermien im receptaculum seminis von hummelkoniginnen (Hymenoptera, Apoidea, Bombinae). Apidologie. 4, 267-274. https://doi.org/10.1051/apido:19730303
  19. Sauter, A., Brown, M.J.F., 2001. To copulate or not? The importance of female status and behavioural variation in predicting copulation in bumblebee. Anim. Behav. 62, 221-226. https://doi.org/10.1006/anbe.2001.1742
  20. SPSS PASW(R) Statistics 22.0. 2013. PASW(R) Core System User's Guide, SPSS inc. USA.
  21. Svensson, B.G., 1980. Species-isolating mechanisms in male bumble bees (Hymenoptera, Apidae), 176 pp. Acta Universitatis Upsaliensis.
  22. Tasei, J.N., Moinard, C., Moreau, L., Himpens, B., Guyonnaud, S., 1998. Relationship between aging, mating and sperm production in captive Bombus terrestris. J. Apicul. Res. 37, 107-113. https://doi.org/10.1080/00218839.1998.11100962
  23. Van Honk, C.G.J., Velthuis, H.H.W., Roseler, P.F., 1978. A sex pheromone from the mandibular glands in bumblebee queens. Experientia. 34, 838-839. https://doi.org/10.1007/BF01939651
  24. Velthuis H.H.W., Van Doorn, A., 2006. A century of advances in bumblebee domestication and the economic and environmental aspects of its commercialization for pollination. Apidologie 37, 421-451. https://doi.org/10.1051/apido:2006019
  25. Williams, P.H., 1991. The bumble bees of the Kashmir Himalaya (Hymenoptera: Apidae, Bombini). Bull. Nat. Hist. Mus. (Ent.). 60, 1-204.
  26. Williams, P.H., 1998. An annotated checklist of bumble bees with an analysis of patterns of description (Hymenoptera: Apidae, Bombini). Bull. Nat. Hist. Mus. (Ent.). 67, 79-152.
  27. Yoon, H.J., Kim, S.E., Lee, S.B., Park, I.G., 2003. Effect of $CO_2$-treatment on oviposition and colony development of the bumblebee, Bombus ignitus. Korean J. Appl. Entomol. 42, 139-144.
  28. Yoon, H.J., Kim, Y.S., Lee, S.B., Cho, Y.H., 2006. An easy method for collecting sperm of bumblebee. Korean J. Apicul. 21, 157-162.
  29. Yoon, H.J., Lee, K.Y., Shin, M., Kim, S.Y., 2016. Sexual Maturity and Mating Ability of the Bumblebees, Bombus terrestris. Korean J. Apicul. 21, 157-162.
  30. Yoon, H.J., Mah, Y.I., Lee, M.Y., Park, I.G., 1999. Studies on ovary development and mating of bumblebee, Bombus ignitus Smith. Korean J. Apicul. 14, 35-42.