Proteome Comparison of Hypopharyngeal Gland Development between Italian and Royal Jelly-Producing Worker Honeybees (Apis mellifera L)

文献类型: 外文期刊

第一作者: Li Jianke

作者: Li Jianke;Feng Mao;Begna, Desalegn;Fang Yu;Zheng Aijuan

作者机构:

关键词: honeybee;hypopharyngeal gland;royal jelly;acini;proteomics

期刊名称:JOURNAL OF PROTEOME RESEARCH ( 影响因子:4.466; 五年影响因子:4.352 )

ISSN: 1535-3893

年卷期: 2010 年 9 卷 12 期

页码:

收录情况: SCI

摘要: The hypopharyngeal gland (HG) of the honeybee (Apis mellifera L) produces royal jelly (RJ) that is essential to feed and raise broods and queens A strain of bees (high royal jelly producing bee, RJb) has been selected for its high RJ production, but the mechanisms-of its higher yield are not understood In this study, we compared HG acini size RJ production, and protein differential expressions between the RJb and nonselected honeybee (Italian bee, ITb) using proteomics in combination with an electron microscopy, Western blot and quantitative real-time PCR (qRT-PCR) Generally the HG of both bees showed age-dependent changes in acini sizes and protein expression as worker behaviors changed from brood nursing to nectar ripening foraging, and storage activities The electron microscopic analysis revealed that the HG acini diameter of the RJb strain was large and produced 5 times more RJ than the ITb, demonstrating a positive correlation between the yield and HG acini size In addition, the proteomic analysis showed that RJb significantly upregulated a large group of proteins involved in carbohydrate metabolism and energy production those involved in protein biosynthesis development amino acid metabolism, nucleotide and fatty acid transporter, protein folding, cytoskeleton, and antioxidation, which coincides with the fact that the HGs of the RJb strain produce more RJ than the ITb strain that is owing to selection pressure We also observed age-dependent major royal jelly proteins (MRJPs) changing both-in form and expressional intensity concurrent with task-switching In addition to MRJPs, the RJb overexpressed proteins such as enolase and transitional endoplasmic reticulum ATPase, protein biosynthesis, and development proteins compared to the ITb strain to support its large HG growth and RJ secretion Because of selection pressure, RJb pursued a different strategy of increased RJ production by involving additional proteins compared to its original counterpart ITb To our knowledge, this morphological and proteomic comparison study on the HG of the two strains of worker honeybees associated with their age dependent division of labor is the first of its kind The study provided not only the quantity and quality differences in the HG from the RJb and the ITb but also addressed the cellular and behavioral biology development question of how the RJb strain can produce RJ more efficiently than its wild type strain (ITb)

分类号:

  • 相关文献

[1]Phosphoproteomic Analysis of Protein Phosphorylation Networks in the Hypopharyngeal Gland of Honeybee Workers (Apis mellifera ligustica). Qi, Yuping,Fan, Pei,Hao, Yue,Han, Bin,Fang, Yu,Feng, Mao,Cui, Ziyou,Li, Jianke,Fan, Pei,Cui, Ziyou,Cui, Ziyou.

[2]Quantitative Neuropeptidome Analysis Reveals Neuropeptides Are Correlated with Social Behavior Regulation of the Honeybee Workers. Han, Bin,Fang, Yu,Feng, Mao,Hu, Han,Qi, Yuping,Huo, Xinmei,Meng, Lifeng,Wu, Bin,Li, Jianke.

[3]Brain Membrane Proteome and Phosphoproteome Reveal Molecular Basis Associating with Nursing and Foraging Behaviors of Honeybee Workers. Han, Bin,Fang, Yu,Feng, Mao,Hu, Han,Hao, Yue,Ma, Chuan,Huo, Xinmei,Meng, Lifeng,Zhang, Xufeng,Wu, Fan,Li, Jianke.

[4]Proteomics analysis reveals protein expression differences for hypopharyngeal gland activity in the honeybee, Apis mellifera carnica Pollmann. Ji, Ting,Liu, Zhenguo,Shen, Jie,Shen, Fang,Chen, Guohong,Liang, Qin,Wu, Liming,Corona, Miguel. 2014

[5]Differential expressions of nuclear proteomes between honeybee (Apis mellifera L.) queen and worker larvae: A deep insight into caste pathway decisions. Begna, Desalegn,Han, Bin,Feng, Mao,Fang, Yu,Li, Jianke.

[6]Novel aspects of understanding molecular working mechanisms of salivary glands of worker honeybees (Apis mellifera) investigated by proteomics and phosphoproteomics. Feng, Mao,Fang, Yu,Han, Bin,Zhang, Lan,Lu, Xiaoshan,Li, Jianke.

[7]Changes of proteome and phosphoproteome trigger embryo-larva transition of honeybee worker (Apis mellifera ligustica). Gala, Alemayehu,Fang, Yu,Woltedji, Dereje,Zhang, Lan,Han, Bin,Feng, Mao,Li, Jianke.

[8]Differential antennal proteome comparison of adult honeybee drone, worker and queen (Apis mellifera L.). Fang, Yu,Song, Feifei,Zhang, Lan,Aleku, Dereje Woltedji,Han, Bin,Feng, Mao,Li, Jianke.

[9]Western honeybee drones and workers (Apis mellifera ligustica) have different olfactory mechanisms than eastern honeybees (Apis cerana cerana). Woltedji, Dereje,Song, Feifei,Zhang, Lan,Gala, Alemayehu,Han, Bin,Feng, Mao,Fang, Yu,Li, Jianke.

[10]Mitochondrial proteins differential expression during honeybee (Apis mellifera L.) queen and worker larvae caste determination. Begna, Desalegn,Fang, Yu,Feng, Mao,Li, Jianke.

[11]Managed honeybee colony losses of the Eastern honeybee (Apis cerana) in China (2011-2014). Chen, Chao,Liu, Zhiguang,Chen, Xiao,Guo, Haikun,Wang, Huihua,Tang, Jiao,Shi, Wei,Chen, Chao,Liu, Zhiguang,Shi, Wei,Luo, Yuexiong,Xu, Zheng,Wang, Shunhai,Zhang, Xuewen,Dai, Rongguo,Gao, Jinglin.

[12]High Concentrations of the Alarm Pheromone Component, Isopentyl Acetate, Reduces Foraging and Dancing in Apis mellifera Ligustica and Apis cerana Cerana. Gong, Zhiwen,Wang, Chao,Dong, Shihao,Tan, Ken,Zhang, Xuewen,Wang, Yanhui,Hu, Zongwen,Tan, Ken.

[13]Proteome and phosphoproteome analysis of honeybee (Apis mellifera) venom collected from electrical stimulation and manual extraction of the venom gland. Li, Rongli,Zhang, Lan,Fang, Yu,Han, Bin,Lu, Xiaoshan,Zhou, Tiane,Feng, Mao,Li, Jianke,Zhang, Lan. 2013

[14]Proteome Analysis of Hemolymph Changes during the Larval to Pupal Development Stages of Honeybee Workers (Apis mellifera ligustica). Woltedji, Dereje,Fang, Yu,Han, Bin,Feng, Mao,Li, Rongli,Lu, Xiaoshan,Li, Jianke. 2013

[15]Proteome Analysis Unravels Mechanism Underling the Embryogenesis of the Honeybee Drone and Its Divergence with the Worker (Apis mellifera lingustica). Fang, Yu,Feng, Mao,Han, Bin,Qi, Yuping,Hu, Han,Fan, Pei,Huo, Xinmei,Meng, Lifeng,Li, Jianke.

[16]Pollen phenolics and regulation of pollen foraging in honeybee colony. Liu, FL,Zhang, XW,Chai, JP,Yang, DR. 2006

[17]Novel Royal Jelly Proteins Identified by Gel-Based and Gel-free Proteomics. Han, Bin,Li, Chenxi,Zhang, Lan,Fang, Yu,Feng, Mao,Li, Jianke.

[18]Determination of melamine in royal jelly and lyophilized powder using ultrasonically assisted extraction by ion-pair HPLC with UV detection. Zhao, Jing,Zhou, Jinhui,Zhao, Jing,Xue, Xiaofeng,Chen, Fang,Zhang, Jinzhen,Li, Yi,Wu, Liming,Chen, Lanzhen.

[19]Royal jelly proteome comparison between A. mellifera ligustica and A. cerana cerana. Fang Yu,Feng Mao,Li Jianke.

[20]Hydrophilic interaction chromatography/tandem mass spectrometry for the determination of melamine in royal jelly and royal jelly lyophilized powder. Zhou, Jinhui,Zhao, Jing,Xue, Xiaofeng,Zhang, Jinzhen,Chen, Fang,Li, Yi,Wu, Liming,Li, Chenchen,Mi, Jianqiu.

作者其他论文 更多>>