DNA methylation dynamics, metabolic fluxes, gene splicing, and alternative phenotypes in honey bees

被引:271
作者
Foret, Sylvain [2 ,3 ]
Kucharski, Robert [2 ]
Pellegrini, Matteo [1 ]
Feng, Suhua [1 ]
Jacobsen, Steven E. [1 ,4 ,5 ]
Robinson, Gene E. [6 ,7 ]
Maleszka, Ryszard [2 ]
机构
[1] Univ Calif Los Angeles, Dept Mol Cell & Dev Biol, Los Angeles, CA 90095 USA
[2] Australian Natl Univ, Res Sch Biol, Canberra, ACT 0200, Australia
[3] James Cook Univ, Australian Res Council Ctr Excellence Coral Reef, Townsville, Qld 4811, Australia
[4] Univ Calif Los Angeles, Howard Hughes Med Inst, Los Angeles, CA 90095 USA
[5] Univ Calif Los Angeles, Eli & Edythe Broad Ctr Regenerat Med & Stem Cell, Los Angeles, CA 90095 USA
[6] Univ Illinois, Inst Genom Biol, Dept Entomol, Urbana, IL 61801 USA
[7] Univ Illinois, Inst Genom Biol, Neurosci Program, Urbana, IL 61801 USA
基金
澳大利亚研究理事会; 英国医学研究理事会; 美国国家卫生研究院;
关键词
polyphenism; ubiquitin; spliceosome; CASTE DIFFERENTIATION; EPIGENOMICS; EXPRESSION; EVOLUTION; REVEALS;
D O I
10.1073/pnas.1202392109
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
070301 [无机化学]; 070403 [天体物理学]; 070507 [自然资源与国土空间规划学]; 090105 [作物生产系统与生态工程];
摘要
In honey bees (Apis mellifera), the development of a larva into either a queen or worker depends on differential feeding with royal jelly and involves epigenomic modifications by DNA methyltransferases. To understand the role of DNA methylation in this process we sequenced the larval methylomes in both queens and workers. We show that the number of differentially methylated genes (DMGs) in larval head is significantly increased relative to adult brain (2,399 vs. 560) with more than 80% of DMGs up-methylated in worker larvae. Several highly conserved metabolic and signaling pathways are enriched in methylated genes, underscoring the connection between dietary intake and metabolic flux. This includes genes related to juvenile hormone and insulin, two hormones shown previously to regulate caste determination. We also tie methylation data to expressional profiling and describe a distinct role for one of the DMGs encoding anaplastic lymphoma kinase (ALK), an important regulator of metabolism. We show that alk is not only differentially methylated and alternatively spliced in Apis, but also seems to be regulated by a cis-acting, anti-sense non-protein-coding transcript. The unusually complex regulation of ALK in Apis suggests that this protein could represent a previously unknown node in a process that activates downstream signaling according to a nutritional context. The correlation between methylation and alternative splicing of alk is consistent with the recently described mechanism involving RNA polymerase II pausing. Our study offers insights into diet-controlled development in Apis.
引用
收藏
页码:4968 / 4973
页数:6
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