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Application of Nuclear Volume Measurements to Comprehend the Cell Cycle in Root-Knot Nematode-Induced Giant Cells

机译:核体积测量在理解根结线虫诱导的巨细胞细胞周期中的应用

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摘要

Root-knot nematodes induce galls that contain giant-feeding cells harboring multiple enlarged nuclei within the roots of host plants. It is recognized that the cell cycle plays an essential role in the set-up of a peculiar nuclear organization that seemingly steers nematode feeding site induction and development. Functional studies of a large set of cell cycle genes in transgenic lines of the model host Arabidopsis thaliana have contributed to better understand the role of the cell cycle components and their implication in the establishment of functional galls. Mitotic activity mainly occurs during the initial stages of gall development and is followed by an intense endoreduplication phase imperative to produce giant-feeding cells, essential to form vigorous galls. Transgenic lines overexpressing particular cell cycle genes can provoke severe nuclei phenotype changes mainly at later stages of feeding site development. This can result in chaotic nuclear phenotypes affecting their volume. These aberrant nuclear organizations are hampering gall development and nematode maturation. Herein we report on two nuclear volume assessment methods which provide information on the complex changes occurring in nuclei during giant cell development. Although we observed that the data obtained with AMIRA tend to be more detailed than Volumest (Image J), both approaches proved to be highly versatile, allowing to access 3D morphological changes in nuclei of complex tissues and organs. The protocol presented here is based on standard confocal optical sectioning and 3-D image analysis and can be applied to study any volume and shape of cellular organelles in various complex biological specimens. Our results suggest that an increase in giant cell nuclear volume is not solely linked to increasing ploidy levels, but might result from the accumulation of mitotic defects.
机译:根结线虫诱导gall虫,其gall虫含有巨大的进食细胞,这些细胞在寄主植物的根部内具有多个扩大的核。公认的是,细胞周期在独特的核组织的建立中起着至关重要的作用,该组织似乎指导线虫的觅食部位的诱导和发育。在模型寄主拟南芥转基因系中对大量细胞周期基因进行的功能研究有助于更好地理解细胞周期成分的作用及其在功能性胆囊建立中的意义。有丝分裂活动主要发生在胆汁发育的初始阶段,随后是强烈的核内复制阶段,必须产生巨大的摄食细胞,这对形成有力的胆汁至关重要。过表达特定细胞周期基因的转基因品系可以引起严重的细胞核表型改变,主要在饲养部位发育的后期阶段。这可能导致混乱的核表型影响其体积。这些异常的核组织阻碍了胆的发育和线虫的成熟。本文中,我们报告了两种核体积评估方法,它们提供了有关巨细胞发育过程中核中发生的复杂变化的信息。尽管我们观察到用AMIRA获得的数据往往比Volumest更详细(图J),但两种方法都被证明具有高度的通用性,可以访问复杂组织和器官的核中的3D形态变化。此处介绍的协议基于标准共聚焦光学切片和3-D图像分析,可用于研究各种复杂生物样本中细胞器的任何体积和形状。我们的结果表明,巨细胞核体积的增加不仅与倍性水平的提高有关,而且可能是有丝分裂缺陷的积累所致。

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