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连接片段:揭示通过植物嫁接进行长距离通讯的分子基础。

Connecting the pieces: uncovering the molecular basis for long-distance communication through plant grafting.

机构信息

Plant Biology Section, School of Integrative Plant Science, Cornell University, Ithaca, NY, 14853, USA.

出版信息

New Phytol. 2019 Jul;223(2):582-589. doi: 10.1111/nph.15772. Epub 2019 Mar 30.

Abstract

Vascular plants are wired with a remarkable long-distance communication system. This network can span from as little as a few centimeters (or less) in species like Arabidopsis, up to 100 m in the tallest giant sequoia, linking distant organ systems into a unified, multicellular organism. Grafting is a fundamental technique that allows researchers to physically break apart and reassemble the long-distance transport system, enabling the discovery of molecular signals that underlie intraorganismal communication. In this review, we highlight how plant grafting has facilitated the discovery of new long-distance signaling molecules that function in coordinating developmental transitions, abiotic and biotic responses, and cross-species interactions. This rapidly expanding area of research offers sustainable approaches for improving plant performance in the laboratory, the field, the orchard, and beyond.

摘要

维管束植物配备了一套卓越的长距离通讯系统。这个网络的跨度可以小至数厘米(或更小),如拟南芥,也可以长达 100 米,连接远处的器官系统,形成一个统一的多细胞生物体。嫁接是一种基本技术,它允许研究人员物理上分离和重组长距离运输系统,从而发现内在生物体通讯的分子信号。在这篇综述中,我们强调了植物嫁接如何促进了新的长距离信号分子的发现,这些信号分子在协调发育转变、非生物和生物响应以及种间相互作用方面发挥作用。这个迅速发展的研究领域为提高植物在实验室、田间、果园和其他领域的性能提供了可持续的方法。

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