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首页> 外文期刊>Journal of phycology >Inter- and intraspecific relationships between nuclear DNA content and cell size in selected members of the centric diatom genus Thalassiosira (Bacillariophyceae)
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Inter- and intraspecific relationships between nuclear DNA content and cell size in selected members of the centric diatom genus Thalassiosira (Bacillariophyceae)

机译:中心硅藻属Thalassiosira(Bacillariophyceae)选定成员的核DNA含量与细胞大小之间的种间和种内关系

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摘要

The enormous species diversity of diatoms correlates with the remarkable range of cell sizes in this group. Nuclear DNA content relates fundamentally to cell volume in other eukaryotic cells. The relationship of cell volume to G1 DNA content was determined among selected members of the genus Thalassiosira, one of the most species-rich and well-studied centric diatom genera. Both minimum and maximum species-specific cell volume correlated positively with G1 DNA content. Phylogeny based on 5.8 S and ITS rDNA sequences indicated that multiple changes in G1 DNA content and cell volume occurred in Thalassiosira evolution, leading to a 1,000-fold range in both parameters in the group. Within the Thalassiosira weissflogii (Grunow) G. A. Fryxell et Grunow species complex, G1 DNA content varied 3-fold: differences related to geographic origin and time since isolation; doubling and tripling of G1 DNA content occurred since isolation in certain T. weissflogii isolates; and subcultures of T. weissflogii CCMP 1336 diverged in DNA content by 50% within 7 years of separation. Actin, beta-tubulin, and Spo11/TopVIA genes were selected for quantitative PCR estimation of haploid genome size in subclones of selected T. weissflogii isolates because they occur only once in the T. pseudonana Hasle et Heimdal genome. Comparison of haploid genome size estimates with G1 DNA content suggested that the most recent T. weissflogii isolate was diploid, whereas other T. weissflogii isolates appeared to be polyploid and/or aneuploid. Aberrant meiotic and mitotic cell divisions were observed, which might relate to polyploidization. The structural flexibility of diatom genomes has important implications for their evolutionary diversification and stability during laboratory maintenance.
机译:硅藻的巨大物种多样性与该组细胞大小的显着范围相关。核DNA含量从根本上与其他真核细胞中的细胞体积有关。确定了细胞物种与G1 DNA含量之间的关系,该物种属于Thalassiosira属的一部分,该物种是物种最多,研究最深入的中心硅藻属之一。最小和最大物种特异性细胞体积均与G1 DNA含量呈正相关。基于5.8 S和ITS rDNA序列的系统发育研究表明,在Thalassiosira进化过程中,G1 DNA含量和细胞体积发生了多次变化,导致该组中两个参数的变化范围均为1,000倍。在Thalassiosira weissflogii(Grunow)G. A. Fryxell等人的Grunow物种复合物中,G1 DNA含量变化了3倍:与地理起源和分离后的时间有关;自从在某些T. weissflogii分离物中分离出以来,G1 DNA的含量增加了一倍和三倍。 T. weissflogii CCMP 1336和亚培养物在分离后7年内的DNA含量相差50%。选择肌动蛋白,β-微管蛋白和Spo11 / TopVIA基因用于定量PCR筛选选定的T. weissflogii分离株亚克隆中的单倍体基因组大小,因为它们在T. pseudonana Hasle et Heimdal基因组中仅出现一次。单倍体基因组大小估计值与G1 DNA含量的比较表明,最新的魏斯木霉分离株是二倍体,而其他魏斯木霉分离株似乎是多倍体和/或非整倍体。观察到异常的减数分裂和有丝分裂细胞分裂,这可能与多倍体化有关。硅藻基因组的结构灵活性对其在实验室维护过程中的进化多样性和稳定性具有重要意义。

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