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应激诱导的胚性烟草小孢子的转录和代谢谱

Transcriptional and metabolic profiles of stress-induced, embryogenic tobacco microspores.

作者信息

Hosp Julia, Tashpulatov Alisher, Roessner Ute, Barsova Ekaterina, Katholnigg Heidrun, Steinborn Ralf, Melikant Balázs, Lukyanov Sergey, Heberle-Bors Erwin, Touraev Alisher

机构信息

Max F. Perutz Laboratories, University Departments at the Campus Vienna Biocenter, Department of Plant Molecular Biology, Vienna University, A-1030, Vienna, Austria,

出版信息

Plant Mol Biol. 2007 Jan;63(1):137-49. doi: 10.1007/s11103-006-9078-y. Epub 2006 Oct 3.

Abstract

Higher plant microspores, when subjected to various stress treatments in vitro, are able to reprogram their regular gametophytic development towards the sporophytic pathway to form haploid embryos and plants. Suppression subtractive hybridization (SSH) and metabolic profiling were used to characterize this developmental switch. Following differential reverse Northern hybridizations 90 distinct up-regulated sequences were identified in stressed, embryogenic microspores (accessible at www.univie.ac.at/ntsm). Sequence analyses allowed the classification of these genes into functional clusters such as metabolism, chromosome remodeling, signaling, transcription and translation, while the putative functions of half of the sequences remained unknown. A comparison of metabolic profiles of non-stressed and stressed microspores using gas chromatography/mass spectrometry (GC/MS) identified 70 compounds, partly displaying significant changes in metabolite levels, e.g., highly elevated levels of isocitrate and isomaltose in stressed microspores compared to non-stressed microspores. The formation of embryogenic microspores is discussed on the basis of the identified transcriptional and metabolic profiles.

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