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甘蓝型油菜韧皮部小RNA的鉴定与表征

Identification and characterization of small RNAs from the phloem of Brassica napus.

作者信息

Buhtz Anja, Springer Franziska, Chappell Louise, Baulcombe David C, Kehr Julia

机构信息

Department Lothar Willmitzer, Max Planck Institute of Molecular Plant Physiology, 14 476 Potsdam, Germany.

出版信息

Plant J. 2008 Mar;53(5):739-49. doi: 10.1111/j.1365-313X.2007.03368.x. Epub 2007 Nov 14.

Abstract

Systemic signalling is indispensable for the coordination of diverse physiological processes during development, defence and nutrient allocation. Indirect evidence suggests that plant small RNAs (smRNAs) could be involved in long-distance information transfer via the vasculature of the plant. Analyses of the smRNA complements of vascular exudates from oilseed rape (Brassica napus) showed that xylem sap is devoid of RNA, whereas phloem sap contained a large number of smRNAs. In addition to 32 annotated microRNAs (miRNAs) from 18 different families that could be identified and approved, a set of unknown smRNAs, predominantly of 21 and 24 nucleotides in length, was obtained, and selected candidates were found to be highly abundant in phloem sap. Moreover, we could demonstrate that the levels of three miRNAs known to respond to nutrient deprivation in non-vascular tissue, miR395 (sulphate), miR398 (copper) and miR399 (phosphate), were increased in phloem sap during the growth of plants under the respective starvation conditions. Interestingly, only mature miRNA molecules were found to be stress responsive, demonstrating that single-stranded sense miRNAs are most likely to represent the physiologically relevant molecules. The strong responses in the phloem suggest a role of miRNAs in systemic information transfer via this long-distance transport system.

摘要

系统信号传导对于发育、防御和养分分配过程中多种生理过程的协调至关重要。间接证据表明,植物小RNA(smRNA)可能通过植物的维管系统参与长距离信息传递。对油菜(Brassica napus)维管渗出液中smRNA互补序列的分析表明,木质部汁液不含RNA,而韧皮部汁液含有大量smRNA。除了可以鉴定和确认的来自18个不同家族的32个注释微小RNA(miRNA)外,还获得了一组未知的smRNA,其长度主要为21和24个核苷酸,并且发现选定的候选物在韧皮部汁液中高度丰富。此外,我们可以证明,已知在非维管组织中对养分缺乏作出反应的三种miRNA,即miR395(硫酸盐)、miR398(铜)和miR399(磷酸盐),在相应饥饿条件下植物生长期间韧皮部汁液中的水平升高。有趣的是,仅发现成熟的miRNA分子具有应激反应性,这表明单链有义miRNA最有可能代表生理相关分子。韧皮部中的强烈反应表明miRNA在通过这种长距离运输系统进行的系统信息传递中发挥作用。

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