珊瑚生物学模型系统海葵遗传工具的开发。

IF 5.1 3区 生物学 Q2 GENETICS & HEREDITY
Genetics Pub Date : 2025-09-17 DOI:10.1093/genetics/iyaf194
Christian Renicke, Natalie Swinhoe, Catherine Henderson, Emily Meier, Lorraine Ling, Geraldine L Keat, Shumpei Maruyama, Maitri Rangarajan-Paul, John R Pringle, Phillip A Cleves
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引用次数: 0

摘要

造礁珊瑚可以在营养贫乏的水域茁壮成长,因为动物宿主和它们的光合鞭毛内共生体之间的共生关系。这种共生关系受到气候变化和其他人为压力因素的威胁,因此对其功能的更深入的机制理解不仅具有重要的基本生物学意义,而且对于制定合理的珊瑚保护方法至关重要。小海葵(Aiptasia)是研究这种共生关系的一个有吸引力的模型系统,但迄今为止由于缺乏有效的遗传方法而受到限制。在这里,我们描述了使用一种简单的电穿孔方案,将各种遗传结构[质粒dna, mrna和短发夹(sh) rna]引入无蚤受精卵。以质粒为基础的报告基因构建体在幼虫中的表达具有高度嵌合性。相比之下,将mrna电穿孔到受精卵中,在幼虫体内的表达一致,当引入单个或多个mrna时,成功率相似。shrna可以有效地抑制共电穿孔mrna和内源基因的表达。通过这种方式,我们可以证实先前报道的BRACHYURY在刺胞动物胚胎发育中的作用。此外,我们可以证明,敲低溶酶体相关膜蛋白1 (Lamp1)的Aiptasia同源物会干扰幼虫对共生相容藻类菌株的摄取和/或保留。利用Aiptasia幼虫进行这种反向遗传研究的能力将大大增强该模型系统的能力,并为进一步开发Aiptasia和其他刺胞动物的遗传工具提供起点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of genetic tools for the sea anemone Aiptasia, a model system for coral biology.

The reef-building corals can thrive in nutrient-poor waters because of the mutualistic symbiosis between the animal hosts and their photosynthetic dinoflagellate endosymbionts. This symbiosis is threatened by climate change and other anthropogenic stressors, so that a deeper mechanistic understanding of its function is not only of great basic biological interest but also crucial for developing rational approaches to coral conservation. The small sea anemone Aiptasia is an attractive model system for studies of this symbiosis but has been limited to date by a lack of effective genetic methods. Here, we describe the use of a simple electroporation protocol to introduce various genetic constructs [plasmid DNAs, mRNAs, and short-hairpin (sh) RNAs] into Aiptasia zygotes. Plasmid-based expression of reporter constructs in the resulting larvae was highly mosaic. In contrast, electroporation of mRNAs into zygotes resulted in uniform expression within the larvae, and success rates were similar when single or multiple mRNAs were introduced. The shRNAs were effective in knocking down expression of both co-electroporated mRNAs and endogenous genes. In this way, we could confirm the previously reported role of BRACHYURY in cnidarian embryonic development. In addition, we could show that knockdown of an Aiptasia homologue of the lysosomal-associated membrane protein 1 (Lamp1) interfered with larval uptake and/or retention of a symbiosis-compatible algal strain. The ability to use Aiptasia larvae for such reverse-genetic studies should greatly enhance the power of this model system and serve as a starting point for further development of genetic tools in Aiptasia and other cnidarians.

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来源期刊
Genetics
Genetics GENETICS & HEREDITY-
CiteScore
6.90
自引率
6.10%
发文量
177
审稿时长
1.5 months
期刊介绍: GENETICS is published by the Genetics Society of America, a scholarly society that seeks to deepen our understanding of the living world by advancing our understanding of genetics. Since 1916, GENETICS has published high-quality, original research presenting novel findings bearing on genetics and genomics. The journal publishes empirical studies of organisms ranging from microbes to humans, as well as theoretical work. While it has an illustrious history, GENETICS has changed along with the communities it serves: it is not your mentor''s journal. The editors make decisions quickly – in around 30 days – without sacrificing the excellence and scholarship for which the journal has long been known. GENETICS is a peer reviewed, peer-edited journal, with an international reach and increasing visibility and impact. All editorial decisions are made through collaboration of at least two editors who are practicing scientists. GENETICS is constantly innovating: expanded types of content include Reviews, Commentary (current issues of interest to geneticists), Perspectives (historical), Primers (to introduce primary literature into the classroom), Toolbox Reviews, plus YeastBook, FlyBook, and WormBook (coming spring 2016). For particularly time-sensitive results, we publish Communications. As part of our mission to serve our communities, we''ve published thematic collections, including Genomic Selection, Multiparental Populations, Mouse Collaborative Cross, and the Genetics of Sex.
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