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首页> 外文期刊>The Plant Cell >Root system architecture in Arabidopsis grown in culture is regulated by sucrose uptake in the aerial tissues
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Root system architecture in Arabidopsis grown in culture is regulated by sucrose uptake in the aerial tissues

机译:培养的拟南芥根系体系结构受空中组织蔗糖吸收的调节。

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This article presents a detailed model for the regulation of lateral root formation in Arabidopsis thaliana seedlings grown in culture. We demonstrate that direct contact between the aerial tissues and sucrose in the growth media is necessary and sufficient to promote emergence of lateral root primordia from the parent root. Mild osmotic stress is perceived by the root, which then sends an abscisic acid-dependent signal that causes a decrease in the permeability of aerial tissues; this reduces uptake of sucrose from the culture media, which leads to a repression of lateral root formation. Osmotic repression of lateral root formation in culture can be overcome by mutations that cause the cuticle of a plant's aerial tissues to become more permeable. Indeed, we report here that the previously described lateral root development2 mutant overcomes osmotic repression of lateral root formation because of a point mutation in Long Chain Acyl-CoA Synthetase2, a gene essential for cutin biosynthesis. Together, our findings (1) impact the interpretation of experiments that use Arabidopsis grown in culture to study root system architecture; (2) identify sucrose as an unexpected regulator of lateral root formation; (3) demonstrate mechanisms by which roots communicate information to aerial tissues and receive information in turn; and (4) provide insights into the regulatory pathways that allow plants to be developmentally plastic while preserving the essential balance between aboveground and belowground organs.
机译:本文提供了一个详细的模型,用于调节培养中生长的拟南芥幼苗侧根的形成。我们证明生长组织中的气生组织和蔗糖之间的直接接触是必要的,并且足以促进从母本根出现侧根原基。根部会感觉到轻度的渗透压,然后发出脱落酸依赖性信号,导致空中组织的通透性降低。这减少了培养基中蔗糖的吸收,从而抑制了侧根的形成。可以通过使植物的气生组织的表皮变得更具渗透性的突变来克服培养物中侧根形成的渗透压制。实际上,我们在这里报告说,先前描述的侧根发育2突变体克服了侧根形成的渗透抑制,因为长链酰基辅酶A合成酶2(角质生物合成所必需的一个基因)中存在点突变。在一起,我们的发现(1)影响使用在文化中生长的拟南芥研究根系结构的实验的解释; (2)确定蔗糖是侧根形成的意想不到的调节剂; (3)演示根部将信息传递到空中组织并依次接收信息的机制; (4)提供有关调节途径的见解,使植物在保持地上和地下器官之间的基本平衡的同时,具有可塑性。

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