Moss beats human
Simple moss plants outperform us by gene number
© Plant Biotechnology, University of Freiburg, Germany
The moss Physcomitrella was chosen by Reski early on as the organism of choice and is now well established as a model species for basic biology, biotechnology, and synthetic biology on a worldwide scale. Consequently, the US Department of Energy Joint Genome Institute (US DoE JGI) has ennobled the Physcomitrella genome as a “flagship genome”. The experts believe that flagship genomes contain information that will help us cope with major challenges occurring during global climate change. The expectations include improved crop yields, disease and insect resistance, drought tolerance, and more efficient biofuel production.
For their recent study the scientists collected all available information on the moss genome as well as transcript evidence and used this data for a completely new bioinformatic analysis. The result is freely available on the community resource www.cosmoss.org, developed and maintained by the Chair of Plant Biotechnology in Freiburg. By combining all DNA and RNA data, the scientists were not only able to annotate the 32,275 genes that encode proteins but also to reveal the so-called “dark matter of the genome”, i.e. those genomic regions that are transcribed into small non-coding RNAs like microRNAs.
“One of our intriguing findings is that 13 per cent of the Physcomitrella genes have no clear relatives in any other sequenced organism so far. Analysing these orphan genes more deeply will reveal the hidden treasures of the moss genome”, Reski says. “Although it seems annoying that mosses outperform humans greatly by gene number, it is exactly this feature that may secure our future.”
Original publication
Andreas Zimmer, Daniel Lang et al., Reannotation and extended community resources of the non-seed plant Physcomitrella patens provide insights into the evolution of plant gene structures and functions. BMC Genomics 14, 498, 2013
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Original publication
Andreas Zimmer, Daniel Lang et al., Reannotation and extended community resources of the non-seed plant Physcomitrella patens provide insights into the evolution of plant gene structures and functions. BMC Genomics 14, 498, 2013
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