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CARD-FISH in the Sequencing Era: Opening a New Universe of Protistan Ecology

机译:排序时代的卡片:开设新宇宙生态学宇宙

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摘要

Phagotrophic protists are key players in aquatic food webs. Although sequencing-based studies have revealed their enormous diversity, ecological information on in situ abundance, feeding modes, grazing preferences, and growth rates of specific lineages can be reliably obtained only using microscopy-based molecular methods, such as Catalyzed Reporter Deposition-Fluorescence in situ Hybridization (CARD-FISH). CARD-FISH is commonly applied to study prokaryotes, but less so to microbial eukaryotes. Application of this technique revealed that Paraphysomonas or Spumella-like chrysophytes, considered to be among the most prominent members of protistan communities in pelagic environments, are omnipresent but actually less abundant than expected, in contrast to little known groups such as heterotrophic cryptophyte lineages (e.g., CRY1), cercozoans, katablepharids, or the MAST lineages. Combination of CARD-FISH with tracer techniques and application of double CARD-FISH allow visualization of food vacuole contents of specific flagellate groups, thus considerably challenging our current, simplistic view that they are predominantly bacterivores. Experimental manipulations with natural communities revealed that larger flagellates are actually omnivores ingesting both prokaryotes and other protists. These new findings justify our proposition of an updated model of microbial food webs in pelagic environments, reflecting more authentically the complex trophic interactions and specific roles of flagellated protists, with inclusion of at least two additional trophic levels in the nanoplankton size fraction. Moreover, we provide a detailed CARD-FISH protocol for protists, exemplified on mixo- and heterotrophic nanoplanktonic flagellates, together with tips on probe design, a troubleshooting guide addressing most frequent obstacles, and an exhaustive list of published probes targeting protists.
机译:吞噬原型是水生食品网的关键球员。虽然基于排序的研究已经揭示了它们的巨大分集,但可以仅使用基于显微镜的分子方法可靠地获得诸如原位丰度,饲养模式,放牧偏好和生长速率的生态信息,例如催化的报告沉积荧光原位杂交(卡片)。贺卡通常应用于研究原核生物,但对微生物真核生物较少。这种技术的应用揭示了Paraphysomonas或稻草样菊花,被认为是Pelagic环境中最突出的植物社区中最突出的成员之一,是无所不在的,但实际上比预期的少于预期,与诸如异养的加密谱系(例如,cry1),cercozoans,katablepharids或桅杆谱系。用示踪剂技术的组合和双张鱼类的应用允许可视化食物液泡含量的特定鞭毛组,从而大大挑战我们的目前,简单的观点,它们主要是诱导的诱导。具有自然社区的实验操纵揭示了较大的鞭毛实际上是摄取原基和其他原权的难事性。这些新发现证明了我们在骨质环境中的微生物食品网的更新模型的主张,反映了更加真实的营养性相互作用和鞭打原样的特定作用,其中包含至少两种额外的促进营养水平。此外,我们提供了一种用于保护探针设计的尖端和异养的纳米射鞭液的详细的基因鱼类,示例,探测器设计的提示,解决了最常见的障碍物的故障排除指南,以及针对原样的公开探针的详尽列表。

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