Young Diana, Joshi Akshay, Huang Liren, Munk Bernhard, Wurzbacher Christian, Youssef Noha H, Elshahed Mostafa S, Moon Christina D, Ochsenreither Katrin, Griffith Gareth W, Callaghan Tony M, Sczyrba Alexander, Lebuhn Michael, Flad Veronika
Micro and Molecular Biology, Central Department for Quality Assurance and Analytics, Bavarian State Research Center for Agriculture, 85354 Freising, Germany.
Biocatalysis, Environment and Process Technology Unit, Life Science and Facility Management, ZHAW, 8820 Wadenswil, Switzerland.
Microorganisms. 2022 Aug 30;10(9):1749. doi: 10.3390/microorganisms10091749.
Anaerobic fungi from the herbivore digestive tract () are primary lignocellulose modifiers and hold promise for biotechnological applications. Their molecular detection is currently difficult due to the non-specificity of published primer pairs, which impairs evolutionary and ecological research with environmental samples. We developed and validated a -specific PCR primer pair targeting the D2 region of the ribosomal large subunit suitable for screening, quantifying, and sequencing. We evaluated this primer pair in silico on sequences from all known genera, in vitro with pure cultures covering 16 of the 20 known genera, and on environmental samples with highly diverse microbiomes. The amplified region allowed phylogenetic differentiation of all known genera and most species. The amplicon is about 350 bp long, suitable for short-read high-throughput sequencing as well as qPCR assays. Sequencing of herbivore fecal samples verified the specificity of the primer pair and recovered highly diverse and so far unknown anaerobic gut fungal taxa. As the chosen barcoding region can be easily aligned and is taxonomically informative, the sequences can be used for classification and phylogenetic inferences. Several new clades were obtained, some of which represent putative novel lineages such as a clade from feces of the rodent (mara).
来自食草动物消化道的厌氧真菌是主要的木质纤维素修饰剂,在生物技术应用方面具有潜力。由于已发表引物对的非特异性,目前对它们进行分子检测较为困难,这影响了对环境样本的进化和生态研究。我们开发并验证了一对针对核糖体大亚基D2区域的特异性PCR引物对,适用于筛选、定量和测序。我们在计算机上对所有已知属的序列评估了该引物对,在体外对涵盖20个已知属中16个属的纯培养物进行了评估,并在具有高度多样化微生物群落的环境样本上进行了评估。扩增区域能够对所有已知属和大多数物种进行系统发育分化。扩增子长度约为350 bp,适用于短读高通量测序以及定量PCR分析。对食草动物粪便样本进行测序验证了引物对的特异性,并发现了高度多样化且迄今未知的厌氧肠道真菌类群。由于所选的条形码区域易于比对且具有分类学信息,这些序列可用于分类和系统发育推断。获得了几个新的分支,其中一些代表了推测的新谱系,例如来自啮齿动物(马驼鹿)粪便的一个分支。