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一个生长素运输网络是半寄生植物和宿主之间木质桥形成的基础。

An auxin transport network underlies xylem bridge formation between the hemi-parasitic plant and host .

机构信息

RIKEN Center for Sustainable Resource Science, Yokohama, Kanagawa 230-0045, Japan.

Graduate School of Science, The University of Tokyo, Bunkyo, Tokyo 113-0033, Japan.

出版信息

Development. 2020 Jul 17;147(14):dev187781. doi: 10.1242/dev.187781.

Abstract

Parasitic plants form vascular connections with host plants for efficient material transport. The haustorium is the responsible organ for host invasion and subsequent vascular connection. After invasion of host tissues, vascular meristem-like cells emerge in the central region of the haustorium, differentiate into tracheary elements and establish a connection, known as a xylem bridge, between parasite and host xylem systems. Despite the importance of this parasitic connection, the regulatory mechanisms of xylem bridge formation are unknown. Here, we show the role of auxin and auxin transporters during the process of xylem bridge formation using an Orobanchaceae hemiparasitic plant, The auxin response marker DR5 has a similar expression pattern to tracheary element differentiation genes in haustoria. Auxin transport inhibitors alter tracheary element differentiation in haustoria, but biosynthesis inhibitors do not, demonstrating the importance of auxin transport during xylem bridge formation. The expression patterns and subcellular localization of PIN family auxin efflux carriers and AUX1/LAX influx carriers correlate with DR5 expression patterns. The cooperative action of auxin transporters is therefore responsible for controlling xylem vessel connections between parasite and host.

摘要

寄生植物与宿主植物形成维管连接,以实现高效的物质运输。吸器是负责宿主入侵和随后的维管连接的器官。在入侵宿主组织后,在吸器的中央区域出现类似于维管束分生组织的细胞,分化为导管分子,并在寄生虫和宿主木质部系统之间建立连接,称为木质部桥。尽管这种寄生连接很重要,但木质部桥形成的调节机制尚不清楚。在这里,我们使用列当科半寄生植物来展示生长素和生长素转运蛋白在木质部桥形成过程中的作用,生长素响应标记物 DR5 的表达模式与吸器中导管分子分化基因相似。生长素运输抑制剂改变吸器中导管分子的分化,但生物合成抑制剂则不会,这表明生长素运输在木质部桥形成过程中的重要性。PIN 家族生长素外排载体和 AUX1/LAX 内流载体的表达模式和亚细胞定位与 DR5 的表达模式相关。因此,生长素转运蛋白的协同作用负责控制寄生虫和宿主之间木质部导管的连接。

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