Proteome Analysis of Hemolymph Changes during the Larval to Pupal Development Stages of Honeybee Workers (Apis mellifera ligustica)

文献类型: 外文期刊

第一作者: Woltedji, Dereje

作者: Woltedji, Dereje;Fang, Yu;Han, Bin;Feng, Mao;Li, Rongli;Lu, Xiaoshan;Li, Jianke

作者机构:

关键词: honeybee;Apis mellifera;larvae;pupae;hemolymph;proteome

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: 2013 年 12 卷 11 期

页码:

收录情况: SCI

摘要: Hemolymph is vital for the flow and transportation of nutrients, ions, and hormones in the honey bee and plays role in innate immune defense. The proteome of the hemolymph changes over the life of a honey bee, but many of these changes are not well characterized, including changes during the life cycle transition from the larval to pupal stages of workers. We used two-dimensional gel electrophoresis, mass spectrometry, bioinformatics, and Western blot to analyze the proteome changes of the honeybee hemolymph during the transition from newly hatched larvae to five-day-old pupae. Of the 49 nonredundant proteins that changed in abundance (identified by 80 protein spots), 29 (59.2%) and 20 (40.8%) were strongly expressed in the larvae and the pupae, respectively. The larval hemolymph had high expressions of major royal jelly proteins and proteins related to metabolism of carbohydrates and energy, folding activities, development, and the cytoskeleton and antioxidant systems. Proteins involved in food storage and the metabolism of fatty acids and amino acids were abundantly expressed during the late larval to pupal development stages. The proteins expressed by the young larvae are used to enhance their development process and as a temporal innate immune protection mechanism until they gain immunity with age development. The pupae use more energy storage related proteins as they prepare for their non-diet-driven pupation. Our data provide new evidence that changes in the hemolymph at the proteome level match the processes during life transitions in the honeybee.

分类号:

  • 相关文献

[1]Hemolymph proteome changes during worker brood development match the biological divergences between western honey bees (Apis mellifera) and eastern honey bees (Apis cerana). Feng, Mao,Ramadan, Haitham,Han, Bin,Fang, Yu,Li, Jianke. 2014

[2]Proteome Analysis of the Hemolymph, Mushroom Body, and Antenna Provides Novel Insight into Honeybee Resistance against Varroa Infestation. Hu, Han,Hao, Yue,Feng, Mao,Han, Bin,Fang, Yu,Wubie, Abebe Jenberie,Li, Jianke,Bienefeld, Kaspar,Wegener, Jakob,Zautke, Fred.

[3]Acute toxicity of five pesticides to Apis mellifera larvae reared in vitro. Dai, Pingli,Dai, Pingli,Jack, Cameron J.,Mortensen, Ashley N.,Ellis, James D..

[4]Proteome Comparisons between Hemolymph of Two Honeybee Strains (Apis mellifera ligustica) Reveal Divergent Molecular Basis in Driving Hemolymph Function and High Royal Jelly Secretion. Ararso, Zewdu,Ma, Chuan,Qi, Yuping,Feng, Mao,Han, Bin,Hu, Han,Meng, Lifeng,Li, Jianke. 2018

[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]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.

[7]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.

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

[9]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.

[10]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.

[11]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

[12]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.

[13]Reflectance-based determination of age and species of blowfly puparia. Voss, Sasha C.,Magni, Paola,Dadour, Ian,Nansen, Christian,Nansen, Christian. 2017

[14]Presence of prophenoloxidase in the humoral fluid of amphioxus Branchiostoma belcheri tsingtauense. Pang, QX,Zhang, SC,Wang, CF,Shi, XD,Sun, YN.

[15]Nucleopolyhedrovirus infection and/or parasitism by Microplitis pallidipes Szepligeti affect hemocyte apoptosis of Spodoptera exigua (Hubner) larvae. Wan, Nian-Feng,Ji, Xiang-Yun,Zhang, Hao,Yang, Jun-Hua,Jiang, Jie-Xian.

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

[17]Proteome Comparison of Hypopharyngeal Gland Development between Italian and Royal Jelly-Producing Worker Honeybees (Apis mellifera L). Li Jianke,Feng Mao,Begna, Desalegn,Fang Yu,Zheng Aijuan. 2010

[18]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.

[19]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.

[20]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.

作者其他论文 更多>>