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大小很重要:通过图像分析估算蒺藜苜蓿菌根根中核大小的三种方法。

Size matters: three methods for estimating nuclear size in mycorrhizal roots of Medicago truncatula by image analysis.

机构信息

Department of Life Sciences and Systems Biology, University of Turin, 10125, Torino, Italy.

出版信息

BMC Plant Biol. 2019 May 4;19(1):180. doi: 10.1186/s12870-019-1791-1.

Abstract

BACKGROUND

The intracellular accommodation of arbuscular mycorrhizal (AM) fungi involves a profound molecular reprogramming of the host cell architecture and metabolism, based on the activation of a symbiotic signaling pathway. In analogy with other plant biotrophs, AM fungi are reported to trigger cell cycle reactivation in their host tissues, possibly in support of the enhanced metabolic demand required for the symbiosis.

RESULTS

We here compare the efficiency of three Fiji/ImageJ image analysis plugins in localizing and quantifying the increase in nuclear size - a hallmark of recursive events of endoreduplication - in M. truncatula roots colonized by the AM fungus Gigaspora margarita. All three approaches proved to be versatile and upgradeable, allowing the investigation of nuclear changes in a complex tissue; 3D Object Counter provided more detailed information than both TrackMate and Round Surface Detector plugins. On this base we challenged 3D Object Counter with two case studies: verifying the lack of endoreduplication-triggering responses in Medicago truncatula mutants with a known non-symbiotic phenotype; and analysing the correlation in space and time between the induction of cortical cell division and endoreduplication upon AM colonization. Both case studies revealed important biological aspects. Mutant phenotype analyses have demonstrated that the knock-out mutation of different key genes in the symbiotic signaling pathway block AM-associated endoreduplication. Furthermore, our data show that cell divisions occur during initial stages of root colonization and are followed by recursive activation of the endocycle in preparation for arbuscule accommodation.

CONCLUSIONS

In conclusion, our results indicate 3D Object Counter as the best performing Fiji/ImageJ image analysis script in plant root thick sections and its application highlighted endoreduplication as a major feature of the AM pre-penetration response in root cortical cells.

摘要

背景

丛枝菌根(AM)真菌的细胞内容纳涉及宿主细胞结构和代谢的深刻分子重编程,基于共生信号通路的激活。与其他植物生物营养体类似,据报道 AM 真菌会在其宿主组织中触发细胞周期重新激活,可能是为了支持共生所需的增强代谢需求。

结果

我们在这里比较了三种 Fiji/ImageJ 图像分析插件在定位和量化核大小增加的效率 - 这是内复制递归事件的标志 - 在被 AM 真菌 Gigarspora margarita 定殖的 M. truncatula 根中。所有三种方法都被证明是多功能和可升级的,允许在复杂组织中研究核变化;3D Object Counter 比 TrackMate 和 Round Surface Detector 插件提供了更详细的信息。在此基础上,我们用两个案例研究挑战了 3D Object Counter:验证具有已知非共生表型的 Medicago truncatula 突变体中缺乏内复制触发反应;并分析 AM 定殖时皮质细胞分裂和内复制之间的空间和时间相关性。这两个案例研究揭示了重要的生物学方面。突变体表型分析表明,共生信号通路中不同关键基因的敲除突变会阻止 AM 相关的内复制。此外,我们的数据表明,细胞分裂发生在根定殖的初始阶段,随后在准备容纳菌根时递归激活内周期。

结论

总之,我们的结果表明 3D Object Counter 是植物根厚切片中性能最佳的 Fiji/ImageJ 图像分析脚本,其应用突出了内复制作为根皮质细胞中 AM 预穿透反应的主要特征。

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