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一种用于评估细菌对拟南芥耐热性影响的快速检测方法。

A rapid assay for assessing bacterial effects on Arabidopsis thermotolerance.

作者信息

Lee Jun Hyung, Burdick Leah H, Piatkowski Bryan, Carrell Alyssa A, Doktycz Mitchel J, Pelletier Dale A, Weston David J

机构信息

Biosciences Division, Oak Ridge National Laboratory, 1 Bethel Valley Rd Bldg. 1507, Rm. 214, Oak Ridge, TN, 37831, USA.

出版信息

Plant Methods. 2023 Jun 29;19(1):63. doi: 10.1186/s13007-023-01022-0.

Abstract

BACKGROUND

The role of beneficial microbes in mitigating plant abiotic stress has received considerable attention. However, the lack of a reproducible and relatively high-throughput screen for microbial contributions to plant thermotolerance has greatly limited progress in this area, this slows the discovery of novel beneficial isolates and the processes by which they operate.

RESULTS

We designed a rapid phenotyping method to assess the effects of bacteria on plant host thermotolerance. After testing multiple growth conditions, a hydroponic system was selected and used to optimize an Arabidopsis heat shock regime and phenotypic evaluation. Arabidopsis seedlings germinated on a PTFE mesh disc were floated onto a 6-well plate containing liquid MS media, then subjected to heat shock at 45 °C for various duration. To characterize phenotype, plants were harvested after four days of recovery to measure chlorophyll content. The method was extended to include bacterial isolates and to quantify bacterial contributions to host plant thermotolerance. As an exemplar, the method was used to screen 25 strains of the plant growth promoting Variovorax spp. for enhanced plant thermotolerance. A follow-up study demonstrated the reproducibility of this assay and led to the discovery of a novel beneficial interaction.

CONCLUSIONS

This method enables rapid screening of individual bacterial strains for beneficial effects on host plant thermotolerance. The throughput and reproducibility of the system is ideal for testing many genetic variants of Arabidopsis and bacterial strains.

摘要

背景

有益微生物在减轻植物非生物胁迫方面的作用已受到广泛关注。然而,缺乏一种可重复且相对高通量的筛选方法来评估微生物对植物耐热性的贡献,这极大地限制了该领域的进展,减缓了新型有益菌株及其作用机制的发现。

结果

我们设计了一种快速表型分析方法来评估细菌对植物宿主耐热性的影响。在测试了多种生长条件后,选择了水培系统并用于优化拟南芥热激方案和表型评估。在聚四氟乙烯网盘上萌发的拟南芥幼苗漂浮在含有液体MS培养基的6孔板上,然后在45℃下进行不同时长的热激处理。为了表征表型,在恢复四天后收获植物以测量叶绿素含量。该方法扩展到包括细菌分离株,并量化细菌对宿主植物耐热性的贡献。作为一个例子,该方法用于筛选25株促进植物生长的贪铜菌属菌株,以提高植物耐热性。后续研究证明了该测定方法的可重复性,并导致发现了一种新的有益相互作用。

结论

该方法能够快速筛选单个细菌菌株对宿主植物耐热性的有益影响。该系统的通量和可重复性非常适合测试拟南芥和细菌菌株的许多遗传变体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b16/10308788/b1faad04c192/13007_2023_1022_Fig1_HTML.jpg

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