Literature DB >> 17722204

Wheat (Triticum aestivum L.) root proteome and differentially expressed root proteins between hybrid and parents.

Xiao Song1, Zhongfu Ni, Yingyin Yao, Chaojie Xie, Zhenxing Li, Haiyan Wu, Yinhong Zhang, Qixin Sun.   

Abstract

To better understand the development of wheat roots, a reference map of the major soluble proteins of wheat roots was established using a combination of 2-DE and MALDI TOF MS and MS/MS, and a total of 450 protein spots were detected with silver staining in a pH ranges of 4-7, of which 282 spots corresponding to 240 proteins were identified. These identified proteins were grouped into diverse functional categories. In comparison with a wheat leave proteome, in root, proteins involved in metabolism and transport were over-represented, whereas proteins involved in energy, disease and defense, transcription, and signal transduction were under-represented. To further get an insight into the molecular basis of wheat heterosis, differential proteome analysis between hybrid and parents were performed. A total of 45 differentially expressed protein spots were detected, and both quantitative and qualitative differences could be observed. Moreover, 25 of the 45 differentially expressed protein spots were identified, which were involved in metabolism, signal transduction, energy, cell growth and division, disease and defense, secondary metabolism. These results indicated that hybridization between two parental lines can cause expression differences between wheat hybrid and its parents not only at mRNA levels but also at protein abundances.

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Year:  2007        PMID: 17722204     DOI: 10.1002/pmic.200700147

Source DB:  PubMed          Journal:  Proteomics        ISSN: 1615-9853            Impact factor:   3.984


  15 in total

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4.  Identification of differentially expressed proteins between hybrid and parents in wheat (Triticum aestivum L.) seedling leaves.

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7.  Proteomics: a biotechnology tool for crop improvement.

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8.  Comparative proteomic analysis of embryos between a maize hybrid and its parental lines during early stages of seed germination.

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Review 9.  Molecular tools for exploring polyploid genomes in plants.

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10.  Quantitative Proteomic and Transcriptomic Study on Autotetraploid Paulownia and Its Diploid Parent Reveal Key Metabolic Processes Associated with Paulownia Autotetraploidization.

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Journal:  Front Plant Sci       Date:  2016-06-24       Impact factor: 5.753

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