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Rice actin binding protein RMD controls crown root angle in response to external phosphate

机译:水稻肌动蛋白结合蛋白RMD响应外部磷酸盐控制冠根角

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Root angle has a major impact on acquisition of nutrients like phosphate that accumulate in topsoil and in many species; low phosphate induces shallower root growth as an adaptive response. Identifying genes and mechanisms controlling root angle is therefore of paramount importance to plant breeding. Here we show that the actin-binding protein Rice Morphology Determinant (RMD) controls root growth angle by linking actin filaments and gravity-sensing organelles termed statoliths. RMD is upregulated in response to low external phosphate and mutants lacking of RMD have steeper crown root growth angles that are unresponsive to phosphate levels. RMD protein localizes to the surface of statoliths, and rmd mutants exhibit faster gravitropic response owing to more rapid statoliths movement. We conclude that adaptive changes to root angle in response to external phosphate availability are RMD dependent, providing a potential target for breeders.
机译:根角对积累在表土和许多物种中的磷酸盐等营养物质的获取有重要影响;低磷酸盐会诱导较浅的根部生长,作为适应性反应。因此,鉴定控制根角的基因和机制对植物育种至关重要。在这里,我们显示肌动蛋白结合蛋白水稻形态决定因素(RMD)通过连接肌动蛋白丝和重力感应细胞器(称为石质)来控制根的生长角度。 RMD响应低的外部磷酸盐而上调,而缺少RMD的突变体具有较陡的冠根生长角度,而该角度对磷酸盐水平无响应。 RMD蛋白定位在石阶表面,并且rmd突变体由于石阶运动更快而表现出更快的重力响应。我们得出的结论是,响应外部磷酸盐可用性,对根角的适应性变化取决于RMD,为育种者提供了潜在的目标。

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