[1]曾志将. 养蜂学. 2版. 北京: 中国农业出版社, 2009.
Zeng Z J. Apiology. 2nd ed. Beijing: China Agriculture Press, 2009. (in Chinese)
[2]曾志将. 蜜蜂生物学. 北京: 中国农业出版社, 2007.
Zeng Z J. The Biology of the Honeybee. Beijing: China Agriculture Press, 2007. (in Chinese)
[3]Weaver N. Physiology of caste determination. Annual Review of Entomology, 1966, 11: 79-102.
[4]Kucharski R, Maleszka J, Foret S, Maleszka R. Nutritional control of reproductive status in honeybees via DNA methylation. Science, 2008, 319(5871): 1827-1830.
[5]Shi Y Y, Huang Z Y, Zeng Z J, Wang Z L, Wu X B, Yan W Y. Diet and cell size both affect queen-worker differentiation through DNA methylation in honey bees (Apis mellifera, Apidae). PLoS One, 2011, 6(4): e18808.
[6]石元元, 曾志将, 吴小波, 颜伟玉, 王子龙. 人工注射Dnmt3 siRNA对意大利蜜蜂雌性发育的影响. 昆虫学报, 2011, 54(3): 272-278.
Shi Y Y, Zeng Z J, Wu X B, Yan W Y, Wang Z L. Influence of injecting Dnmt3 siRNA on the development of females of the Italian honeybee, Apis mellifera ligustica. Acta Entomologica Sinica, 2011, 54(3): 272-278. (in Chinese)
[7]Smith C R, Toth A L, Suarez A V, Robinson G E. Genetic and genomic analyses of the division of labour in insect societies. Nature Reviews Genetics, 2008, 9: 735-748.
[8]Drapeau M D, Albert S, Kucharski R, Prusko C, Maleszka R. Evolution of the yellow/major royal jelly protein family and the emergence of social behavior in honeybees. Genome Research, 2006, 16: 1385-1394.
[9]Kamakura M. Royalactin induces queen differentiation in honeybees. Nature, 2011, 473(7348): 478-483.
[10]Wang Y, Jorda M, Jones P L, Maleszka R, Ling X, Robertson H M, Mizzen C A, Peinado M A, Robinson G E. Functional CpG methylation system in a social insect. Science, 2006, 314(5799): 645-647.
[11]Foret S, Kucharski R, Pellegrini M, Feng S, Jacobsen S E, Robinson G E, Maleszka R. DNA methylation dynamics, metabolic ?uxes, gene splicing, and alternative phenotypes in honey bees. Proceedings of the National Academy of Sciences of the United States of America, 2012, 109(13): 4968-4973.
[12]Lyko F, Foret S, Kucharski R, Wolf S, Falckenhayn C, Maleszka R. The honey bee epigenomes: differential methylation of brain DNA in queens and workers. PLoS Biology, 2010, 8(11): e1000506.
[13]刘光楠, 曾志将, 吴小波, 颜伟玉. 免移虫生产蜂王浆技术研究. 蜜蜂杂志, 2009, 10: 3-5.
Liu G N, Zeng Z J, Wu X B, Yan W Y. Study on the technique of royal jelly production without grafting larvae. Journal of Bee, 2009, 10: 3-5. (in Chinese)
[14]Ruttner F. Biogeography and Taxonomy of Honeybees. Springer-Verlag Berlin Heidelberg, 1988: 50-51.
[15]牛春艳, 申春玲, 李玉海, 苏艳林. 王浆核酸含量的测定和核糖核酸的提取. 中国养蜂, 1979(6): 17-19.
Niu C Y, Shen C L, Li Y H, Su Y L. The determination of the nucleic acids content and the extraction of RNA in royal jelly. Apiculture of China, 1979(6):17-19. (in Chinese)
[16]李淼生. 中意蜂营养杂交育种的探讨. 养蜂科技, 1982(1): 42-44.
Li M S. Discuss on breeding of cross-feeding between Apis cerana cerana and Apis mellifera ligustica. Apicultural Science and Technology, 1982(1): 42-44. (in Chinese)
[17]吴文光. 中意蜂无性杂变试探. 养蜂科技, 1985(1): 13-14.
Wu W G. Study on asexuality crossbreed between Apis cerana cerana and Apis mellifera ligustica. Apiculturcd Science and Technology, 1985(1): 13-14. (in Chinese)
[18]谢宪兵, 彭文君, 曾志将. 应用蜜蜂营养杂交技术培育抗螨蜂种. 中国农业科学, 2008, 41(5): 1530-1535.
Xie X B, Peng W J, Zeng Z J. Breeding of mite-resistant honeybee by using nutritional crossbreed technology. Scientia Agricultura Sinica, 2008, 41(5): 1530-1535. (in Chinese)
[19]Zeng Z J, Zou Y, Guo D S, Yan W Y. Comparison studies of DNA and RNA in royal jelly from Apis mellifera and Apis cerana. Indian Bee Journal, 2006, 68(1/4): 18-21.
[20]Fang Y, Feng M, Li J K. Royal jelly proteome comparison between A. mellifera ligustica and A. cerana cerana. Journal of Proteome Research, 2010, 9(5): 2207-2215.
[21]郭向前. 工蜂和蜂王发育、分化机制以及蜜蜂浆小RNA在工蜂和蜂王级型分化中的作用[D]. 北京: 中国科学院, 2010.
Guo X Q. The development and molecular mechanism of queen-worker differentiation, the miRNAs of royal jelly make a difference to queen-worker differentiation[D]. Beijing: Chinese Academy of Sciences, 2010. (in Chinese) |