Widespread distribution of bacteria containing PETases with a functional motif across global oceans.

IF 10.8 1区 环境科学与生态学 Q1 ECOLOGY
Intikhab Alam, Ramona Marasco, Afaque A Momin, Nojood Aalismail, Elisa Laiolo, Cecilia Martin, Isabel Sanz-Sáez, Begoña Baltá Foix, Elisabet L Sá, Allan Kamau, Francisco J Guzmán-Vega, Tahira Jamil, Silvia G Acinas, Josep M Gasol, Takashi Gojobori, Susana Agusti, Daniele Daffonchio, Stefan T Arold, Carlos M Duarte
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引用次数: 0

Abstract

Accumulating evidence indicates that microorganisms respond to the ubiquitous plastic pollution by evolving plastic-degrading enzymes. However, the functional diversity of these enzymes and their distribution across the ocean, including the deep sea, remain poorly understood. By integrating bioinformatics and artificial intelligence-based structure prediction, we developed a structure- and function-informed algorithm to computationally distinguish functional polyethylene terephthalate-degrading enzymes (PETases) from variants lacking PETase activity (pseudo-PETase), either due to alternative substrate specificity or pseudogene origin. Through in vitro functional screening and in vivo microcosm experiments, we verified that this algorithm identified a high-confidence, searchable sequence motif for functional PETases capable of degrading PET. Metagenomic analysis of 415 ocean samples revealed 23 PETase variants, detected in nearly 80% of the samples. These PETases mainly occur between 1000 and 2000 m deep and at the surface in regions with high plastic pollution. Metatranscriptomic analysis further identified PETase variants that were actively transcribed by marine microorganisms. In contrast to their terrestrial counterparts-where PETases are taxonomically diverse-those in marine ecosystems were predominantly encoded and transcribed by members of the Pseudomonadales order. Our study underscores the widespread distribution of PETase-containing bacteria across carbon-limited marine ecosystems, identifying and distinguishing the PETase motif that underpins the functionality of these specialised cutinases.

含有具有功能基序的petase的细菌在全球海洋中的广泛分布。
越来越多的证据表明,微生物通过进化塑料降解酶来应对无处不在的塑料污染。然而,这些酶的功能多样性及其在海洋中的分布,包括深海,仍然知之甚少。通过整合生物信息学和基于人工智能的结构预测,我们开发了一种结构和功能信息的算法,以计算区分功能性聚对苯二甲酸乙二醇酯降解酶(PETase)和缺乏PETase活性的变体(伪PETase),无论是由于替代底物特异性还是假基因起源。通过体外功能筛选和体内微观实验,我们验证了该算法为能够降解PET的功能性PETases确定了高置信度、可搜索的序列基序。对415个海洋样本的宏基因组分析显示,在近80%的样本中检测到23种PETase变体。这些酶主要发生在1000 ~ 2000 m深和塑料污染严重地区的表层。亚转录组学分析进一步确定了海洋微生物积极转录的PETase变体。与陆地上的同类相比——在陆地上,petase在分类上是多样化的——海洋生态系统中的petase主要是由假单胞目成员编码和转录的。我们的研究强调了在碳限制的海洋生态系统中含有PETase的细菌的广泛分布,识别和区分了支撑这些特殊表皮酶功能的PETase基元。
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来源期刊
ISME Journal
ISME Journal 环境科学-生态学
CiteScore
22.10
自引率
2.70%
发文量
171
审稿时长
2.6 months
期刊介绍: The ISME Journal covers the diverse and integrated areas of microbial ecology. We encourage contributions that represent major advances for the study of microbial ecosystems, communities, and interactions of microorganisms in the environment. Articles in The ISME Journal describe pioneering discoveries of wide appeal that enhance our understanding of functional and mechanistic relationships among microorganisms, their communities, and their habitats.
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