Main conclusion: Gymnosperms respond differently to light intensity and R:FR; although some aspects of shade response appear conserved, yet underlying mechanisms seem to be diverse in gymnosperms as compared to angiosperms. Shade avoidance syndrome (SAS) is well-characterized in the shade intolerant model species Arabidopsis thaliana whereas much less is known about shade tolerance response (STR), yet regulation of SAS and STR with reference to conifers remains poorly understood. We conducted a comparative study of two conifer species with contrasting responses to shade, Scots pine (shade-intolerant) and Norway spruce (shade-tolerant), with the aim to understand mechanisms behind SAS and STR in conifers. Pine and spruce seedlings were grown...
Main conclusionTranscriptomic and exome capture analysis reveal an adaptive cline for shade toleranc...
Main conclusionTranscriptomic and exome capture analysis reveal an adaptive cline for shade toleranc...
Main conclusionTranscriptomic and exome capture analysis reveal an adaptive cline for shade toleranc...
Main conclusion: Gymnosperms respond differently to light intensity and R:FR; although some aspects ...
Main conclusion: Gymnosperms respond differently to light intensity and R:FR; although some aspects ...
Main conclusion: Transcriptomic and exome capture analysis reveal an adaptive cline for shade tolera...
Main conclusion: Transcriptomic and exome capture analysis reveal an adaptive cline for shade tolera...
Main conclusion: Transcriptomic and exome capture analysis reveal an adaptive cline for shade tolera...
Main conclusion: Transcriptomic and exome capture analysis reveal an adaptive cline for shade tolera...
Plants can deal with shade in different ways. Sun-adapted species express a set of growth traits to ...
Plants can deal with shade in different ways. Sun-adapted species express a set of growth traits to ...
Shade from neighboring plants limits light for photosynthesis; as a consequence, plants have a varie...
Main conclusionTranscriptomic and exome capture analysis reveal an adaptive cline for shade toleranc...
Main conclusionTranscriptomic and exome capture analysis reveal an adaptive cline for shade toleranc...
Main conclusionTranscriptomic and exome capture analysis reveal an adaptive cline for shade toleranc...
Main conclusionTranscriptomic and exome capture analysis reveal an adaptive cline for shade toleranc...
Main conclusionTranscriptomic and exome capture analysis reveal an adaptive cline for shade toleranc...
Main conclusionTranscriptomic and exome capture analysis reveal an adaptive cline for shade toleranc...
Main conclusion: Gymnosperms respond differently to light intensity and R:FR; although some aspects ...
Main conclusion: Gymnosperms respond differently to light intensity and R:FR; although some aspects ...
Main conclusion: Transcriptomic and exome capture analysis reveal an adaptive cline for shade tolera...
Main conclusion: Transcriptomic and exome capture analysis reveal an adaptive cline for shade tolera...
Main conclusion: Transcriptomic and exome capture analysis reveal an adaptive cline for shade tolera...
Main conclusion: Transcriptomic and exome capture analysis reveal an adaptive cline for shade tolera...
Plants can deal with shade in different ways. Sun-adapted species express a set of growth traits to ...
Plants can deal with shade in different ways. Sun-adapted species express a set of growth traits to ...
Shade from neighboring plants limits light for photosynthesis; as a consequence, plants have a varie...
Main conclusionTranscriptomic and exome capture analysis reveal an adaptive cline for shade toleranc...
Main conclusionTranscriptomic and exome capture analysis reveal an adaptive cline for shade toleranc...
Main conclusionTranscriptomic and exome capture analysis reveal an adaptive cline for shade toleranc...
Main conclusionTranscriptomic and exome capture analysis reveal an adaptive cline for shade toleranc...
Main conclusionTranscriptomic and exome capture analysis reveal an adaptive cline for shade toleranc...
Main conclusionTranscriptomic and exome capture analysis reveal an adaptive cline for shade toleranc...