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在 Allogromia laticollaris 菌株 CSH(有孔虫)中,基因组动态受食物来源的影响。

Genome dynamics are influenced by food source in Allogromia laticollaris strain CSH (Foraminifera).

机构信息

University of Massachusetts, MA, USA.

出版信息

Genome Biol Evol. 2010;2:678-85. doi: 10.1093/gbe/evq051. Epub 2010 Aug 13.

Abstract

Across the eukaryotic tree of life, genomes vary within populations and within individuals during their life cycle. Understanding intraspecific genome variation in diverse eukaryotes is key to elucidating the factors that underlie this variation. Here, we characterize genome dynamics during the life cycle of Allogromia laticollaris strain CSH, a member of the Foraminifera, using fluorescence microscopy and reveal extensive variation in nuclear size and DNA content. Both nuclear size and DNA content are tightly correlated across a 700-fold range in cell volume. In contrast to models in yeast where nuclear size is determined solely by cell size, the relationship in A. laticollaris CSH differs according to both life cycle stage and food source. Feeding A. laticollaris CSH a diet that includes algae results in a 2-fold increase in DNA content in reproductive cells compared with a diet of bacteria alone. This difference in DNA content likely corresponds to increased fecundity, as reproduction occurs through segregation of the polyploid nucleus into numerous daughter nuclei. Environmentally mediated variation in DNA content may be a widespread phenomenon, as it has been previously reported in the plant flax and the flagellate Euglena. We hypothesize that DNA content is influenced by food in other single-celled eukaryotes with ploidy cycles and that this genome flexibility may enable these eukaryotes to maximize fitness across changing environmental conditions.

摘要

在真核生物的生命树中,基因组在种群内和个体的生命周期内发生变化。了解不同真核生物的种内基因组变异对于阐明导致这种变异的因素至关重要。在这里,我们使用荧光显微镜描述了有孔虫 Allogromia laticollaris 菌株 CSH 生命周期中的基因组动态,并揭示了细胞核大小和 DNA 含量的广泛变化。细胞核大小和 DNA 含量在细胞体积 700 倍的范围内紧密相关。与酵母中核大小仅由细胞大小决定的模型不同,A. laticollaris CSH 的关系根据生命周期阶段和食物来源而有所不同。用包含藻类的饮食喂养 A. laticollaris CSH,与仅用细菌喂养相比,生殖细胞中的 DNA 含量增加了 2 倍。这种 DNA 含量的差异可能对应于更高的繁殖力,因为多倍体核通过分裂成许多子核进行繁殖。环境介导的 DNA 含量变化可能是一种普遍现象,因为先前已经在植物亚麻和鞭毛原生动物 Euglena 中报道过。我们假设在具有倍性周期的其他单细胞真核生物中,DNA 含量受食物影响,这种基因组灵活性可能使这些真核生物能够在不断变化的环境条件下最大限度地提高适应性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5191/2940327/f2a69d7f0bfb/gbeevq051f01_3c.jpg

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