果蝇的造血生态位是通过邻近组织和Slit-Robo信号控制的集体细胞迁移来组装的。

IF 6.4 1区 生物学 Q1 BIOLOGY
eLife Pub Date : 2025-01-03 DOI:10.7554/eLife.100455
Kara A Nelson, Kari F Lenhart, Lauren Anllo, Stephen DiNardo
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引用次数: 0

摘要

相对于它们所支持的干细胞,小生境通常位于组织中的特定位置。生态位位置的一致性表明,生态位的位置对生态位功能很重要。然而,大多数利基市场的复杂性使我们无法彻底理解如何建立合适的定位。为了解决这个问题,我们研究了一个遗传上可处理的生态位的形成,果蝇后信号中心(PSC),其组装以前没有被探索过。这个生态位控制着淋巴腺(LG)的造血祖细胞。先前的研究表明,PSC细胞在胚胎中被指定在外侧,但最终位于背侧,位于LG后部。在这里,通过实时成像,我们发现PSC细胞作为一个紧密的集体迁移,并在向LG后部移动的过程中与多个组织结合。我们发现,来自内脏中胚层和成心细胞两个外部来源的Slit是PSC保持集体以及在迁移过程中附着于成心细胞所必需的。如果没有适当的Slit-Robo信号,PSC细胞分散,形成异常接触,最终无法到达其靠近祖细胞的典型位置。我们的工作描述了生态位形成的一个新例子,并确定了控制精确生态位定位的外部信号中继。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Drosophila hematopoietic niche assembles through collective cell migration controlled by neighbor tissues and Slit-Robo signaling.

Niches are often found in specific positions in tissues relative to the stem cells they support. Consistency of niche position suggests that placement is important for niche function. However, the complexity of most niches has precluded a thorough understanding of how their proper placement is established. To address this, we investigated the formation of a genetically tractable niche, the Drosophila Posterior Signaling Center (PSC), the assembly of which had not been previously explored. This niche controls hematopoietic progenitors of the lymph gland (LG). PSC cells were previously shown to be specified laterally in the embryo, but ultimately reside dorsally, at the LG posterior. Here, using live-imaging, we show that PSC cells migrate as a tight collective and associate with multiple tissues during their trajectory to the LG posterior. We find that Slit emanating from two extrinsic sources, visceral mesoderm and cardioblasts, is required for the PSC to remain a collective, and for its attachment to cardioblasts during migration. Without proper Slit-Robo signaling, PSC cells disperse, form aberrant contacts, and ultimately fail to reach their stereotypical position near progenitors. Our work characterizes a novel example of niche formation and identifies an extrinsic signaling relay that controls precise niche positioning.

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来源期刊
eLife
eLife BIOLOGY-
CiteScore
12.90
自引率
3.90%
发文量
3122
审稿时长
17 weeks
期刊介绍: eLife is a distinguished, not-for-profit, peer-reviewed open access scientific journal that specializes in the fields of biomedical and life sciences. eLife is known for its selective publication process, which includes a variety of article types such as: Research Articles: Detailed reports of original research findings. Short Reports: Concise presentations of significant findings that do not warrant a full-length research article. Tools and Resources: Descriptions of new tools, technologies, or resources that facilitate scientific research. Research Advances: Brief reports on significant scientific advancements that have immediate implications for the field. Scientific Correspondence: Short communications that comment on or provide additional information related to published articles. Review Articles: Comprehensive overviews of a specific topic or field within the life sciences.
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