首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >Both modular and single‐domain Type I polyketide synthases are expressed in the brevetoxin‐producing dinoflagellate Karenia brevis (Dinophyceae)
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Both modular and single‐domain Type I polyketide synthases are expressed in the brevetoxin‐producing dinoflagellate Karenia brevis (Dinophyceae)

机译:模块化和单域I型聚酮化合物合酶均在产生短杆菌毒素的鞭毛藻(短小Karenia(Dinophyceae)中表达

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摘要

Dinoflagellates are prolific producers of polyketide compounds, many of which are potent toxins with adverse impacts on human and marine animal health. To identify polyketide synthase (PKS) genes in the brevetoxin‐producing dinoflagellate, Karenia brevis, we assembled a transcriptome from 595 million Illumina reads, sampled under different growth conditions. The assembly included 125,687 transcripts greater than 300 nt in length, with over half having >100× coverage. We found 121 transcripts encoding Type I ketosynthase (KS) domains, of which 99 encoded single KS domains, while 22 contained multiple KS domains arranged in 1–3 protein modules. Phylogenetic analysis placed all single domain and a majority of multidomain KSs within a monophyletic clade of protist PKSs. In contrast with the highly amplified single‐domain KSs, only eight single‐domain ketoreductase transcripts were found in the assembly, suggesting that they are more evolutionarily conserved. The multidomain PKSs were dominated by trans‐acyltransferase architectures, which were recently shown to be prevalent in other algal protists. Karenia brevis also expressed several hybrid nonribosomal peptide synthetase (NRPS)/PKS sequences, including a burA‐like sequence previously reported in a wide variety of dinoflagellates. This contrasts with a similarly deep transcriptome of Gambierdiscus polynesiensis, which lacked NRPS/PKS other than the burA‐like transcript, and may reflect the presence of amide‐containing polyketides in K. brevis and their absence from G. polynesiensis. In concert with other recent transcriptome analyses, this study provides evidence for both single domain and multidomain PKSs in the synthesis of polyketide compounds in dinoflagellates.
机译:鞭毛藻是多酮化合物的多产者,其中许多是有效毒素,会对人类和海洋动物的健康产生不利影响。为了鉴定产生短杆菌毒素的鞭毛藻(Karenia brevis)中的聚酮化合物合酶(PKS)基因,我们从5.95亿个Illumina读物中组装了一个转录组,在不同的生长条件下进行了采样。该程序集包含长度超过300 nt的125,687个转录本,其中一半以上具有> 100x的覆盖率。我们发现121个转录本编码I型酮合酶(KS)域,其中99个编码单个KS域,而22个包含以1-3个蛋白质模块排列的多个KS域。系统发育分析将所有单域和多数多域KS置于原生PKS单系中。与高度扩增的单结构域KS相比,在装配中仅发现了8个单结构域酮还原酶转录物,表明它们在进化上更保守。多结构域PKSs以反式酰基转移酶结构为主导,最近被证明在其他藻类生物中普遍存在。短小Karenia还表达了几种杂合的非核糖体肽合成酶(NRPS)/ PKS序列,包括以前在各种各样的鞭毛鞭毛虫中报道的burA样序列。这与Gambierdiscus polynesiensis的类似深度转录组形成对比,该转录组除burA样转录本外缺乏NRPS / PKS,并且可能反映了短毛K.中存在含酰胺的聚酮化合物以及G.polynesiensis的缺失。与最近的其他转录组分析相结合,这项研究为单鞭毛酸酯中的聚酮化合物的合成提供了单域和多域PKS的证据。

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