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硅藻减数分裂工具包的鉴定以及有性物种多列拟菱形藻和粗壮半海链藻中减数分裂特异性SPO11和RAD51同源物的探索。

Identification of the meiotic toolkit in diatoms and exploration of meiosis-specific SPO11 and RAD51 homologs in the sexual species Pseudo-nitzschia multistriata and Seminavis robusta.

作者信息

Patil Shrikant, Moeys Sara, von Dassow Peter, Huysman Marie J J, Mapleson Daniel, De Veylder Lieven, Sanges Remo, Vyverman Wim, Montresor Marina, Ferrante Maria Immacolata

机构信息

Stazione Zoologica Anton Dohrn, Villa Comunale 1, 80121, Naples, Italy.

Department of Biology, Protistology and Aquatic Ecology, Ghent University, 9000, Ghent, Belgium.

出版信息

BMC Genomics. 2015 Nov 14;16:930. doi: 10.1186/s12864-015-1983-5.

Abstract

BACKGROUND

Sexual reproduction is an obligate phase in the life cycle of most eukaryotes. Meiosis varies among organisms, which is reflected by the variability of the gene set associated to the process. Diatoms are unicellular organisms that belong to the stramenopile clade and have unique life cycles that can include a sexual phase.

RESULTS

The exploration of five diatom genomes and one diatom transcriptome led to the identification of 42 genes potentially involved in meiosis. While these include the majority of known meiosis-related genes, several meiosis-specific genes, including DMC1, could not be identified. Furthermore, phylogenetic analyses supported gene identification and revealed ancestral loss and recent expansion in the RAD51 family in diatoms. The two sexual species Pseudo-nitzschia multistriata and Seminavis robusta were used to explore the expression of meiosis-related genes: RAD21, SPO11-2, RAD51-A, RAD51-B and RAD51-C were upregulated during meiosis, whereas other paralogs in these families showed no differential expression patterns, suggesting that they may play a role during vegetative divisions. An almost identical toolkit is shared among Pseudo-nitzschia multiseries and Fragilariopsis cylindrus, as well as two species for which sex has not been observed, Phaeodactylum tricornutum and Thalassiosira pseudonana, suggesting that these two may retain a facultative sexual phase.

CONCLUSIONS

Our results reveal the conserved meiotic toolkit in six diatom species and indicate that Stramenopiles share major modifications of canonical meiosis processes ancestral to eukaryotes, with important divergences in each Kingdom.

摘要

背景

有性生殖是大多数真核生物生命周期中的一个必经阶段。减数分裂在不同生物中存在差异,这反映在与该过程相关的基因集的变异性上。硅藻是属于不等鞭毛类的单细胞生物,具有独特的生命周期,其中可能包括有性阶段。

结果

对五个硅藻基因组和一个硅藻转录组的探索导致鉴定出42个可能参与减数分裂的基因。虽然这些基因包括了大多数已知的与减数分裂相关的基因,但几个减数分裂特异性基因,包括DMC1,未能被鉴定出来。此外,系统发育分析支持基因鉴定,并揭示了硅藻中RAD51家族的祖先基因丢失和近期扩张。利用两种有性物种多列拟菱形藻和强壮半盘藻来探索减数分裂相关基因的表达:RAD21、SPO11-2、RAD51-A、RAD51-B和RAD51-C在减数分裂期间上调,而这些家族中的其他旁系同源基因没有显示出差异表达模式,这表明它们可能在营养分裂过程中发挥作用。多列拟菱形藻和圆柱脆杆藻之间,以及尚未观察到有性生殖的两种物种三角褐指藻和假微型海链藻之间共享几乎相同的基因工具包,这表明后两者可能保留了兼性有性阶段。

结论

我们的结果揭示了六种硅藻物种中保守的减数分裂基因工具包,并表明不等鞭毛类共享真核生物祖先典型减数分裂过程的主要修饰,在每个界中存在重要差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9db4/4647503/5c2497e98975/12864_2015_1983_Fig1_HTML.jpg

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