19.根端部位のオーキシン生合成による勾配に向かったシロイヌナズナ平面極性の調整(口頭発表)
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概要
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The coordination of cell polarity within the plane of a single tissue layer (planar polarity) is a crucial task during development of multicellular organisms. Mechanisms underlying establishment of planar polarity, however, differ substantially between plants and animals. In Arabidopsis thaliana, planar polarity of root-hair positioning along epidermal cells is coordinated towards maximum concentration of an auxin gradient in the root tip. This gradient has been hypothesized to be sink-driven and computational modeling suggests that auxin efflux carrier activity may be sufficient to generate the gradient in the absence of auxin biosynthesis in the root. Here, we demonstrate that the Raf-like kinase constitutive triple responsel (CTR1) acts as a concentration-dependent repressor of a biosynthesis-dependent auxin gradient that modulates planar polarity in the root tip. We analysed auxin biosynthesis and concentration gradients in a variety of root-hair-position mutants affected in CTR1 activity, auxin biosynthesis and transport. Our results reveal that planar polarity relies on influx- and efflux-carrier-mediated auxin redistribution from a local biosynthesis maximum. Thus, a local source of auxin biosynthesis contributes to gradient homeostasis during long-range coordination of cellular morphogenesis.
- 2009-10-06
著者
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池田 佳久
東北大・院・生命科学
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Karin Ljung
Umea Plant Science Centre (UPSC), Department of Forest Genetics and Plant Physiology, Swedish Univer
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Markus Grebe
Umea Plant Science Centre (UPSC), Department of Plant Physiology, Umea University
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Karin Ljung
Umea Plant Science Centre (upsc) Department Of Forest Genetics And Plant Physiology Swedish Universi
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Markus Grebe
Umea Plant Science Centre (upsc) Department Of Plant Physiology Umea University