CAREER: Holobionts Unfiltered: integrated comparative and experimental examination of the role of cnidarian innate immunity on microbiome structure and stability
CAREER: Holobionts Unfiltered: integrated comparative and experimental examination of the role of cnidarian innate immunity on microbiome structure and stability
批准号:
1942647
负责人:
Jesse Zaneveld
金额:
$94.05万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2020
资助国家:
美国
项目状态:
未结题
起止时间:
2020-03-01 至 2025-02-28
中文摘要
热带珊瑚礁是生物多样性的热点。对许多沿海社区来说,它们是一种收入来源、抵御风暴破坏的屏障,也是一种文化象征。2.4亿多年来,石珊瑚的生长塑造了这些生态系统。在那段时间里,石珊瑚分成了两个主要群体,有1500多种。但珊瑚并不孤单;利用分子工具在微观尺度上鉴定共生关系。每个珊瑚虫体内都有鞭毛藻、细菌和古细菌群落,它们一起被称为珊瑚微生物群。珊瑚微生物群可以帮助或伤害受到压力的珊瑚。这可能会影响珊瑚疾病和大规模珊瑚白化造成的珊瑚礁衰退。人们认为,拥有更多先天免疫基因的珊瑚物种的微生物群落多样性较低。然而,这还没有经过测试。该项目将使用一种具有成本效益的“基因组略读”方法来测试这一想法,以比较128种珊瑚物种的珊瑚微生物和免疫基因。这种比较将表明不同的先天免疫基因如何塑造珊瑚微生物群。该项目将使用Karenina,一种新的统计方法,来测试关于在压力下免疫如何改变微生物组动态的想法。最后,该项目将在实验室实验中验证这些预测。这些研究目标与一项教育计划相配合,该计划将在本科课程中使用项目数据,开发新的在线交互式生物信息学教科书,并制作珊瑚礁情景,这是一种学习产品,可以让高中生和本科生在课堂练习中模拟珊瑚礁生态。硬核珊瑚(“石质”)在许多生态压力下生存的能力——从大型藻类竞争到白化——被认为取决于珊瑚与微生物和环境相互作用的结果。因此,了解珊瑚如何调节其微生物群对于了解珊瑚对环境压力的反应非常重要。珊瑚的先天免疫被认为在调节微生物群方面起着关键作用。然而,珊瑚先天免疫与微生物群落丰富度、组成和稳定性之间的关系尚不清楚。本项目实施综合研究和教育计划,研究刺胞动物先天免疫的进化如何影响微生物组结构,以及微生物组中细菌和古细菌部分的变化如何影响热应激下的生存。该方法将结合不同珊瑚基因组中先天免疫基因库的全球跨物种调查及其微生物组丰富度和组成,并在模型刺胞动物中进行实验室实验,该实验可以证实或证伪调查中提出的免疫-微生物组相互作用。一种新的建模方法将用于仔细区分先天免疫和热应激对微生物组动力学影响的竞争时间序列模型。通过将测序方法与可处理的刺胞动物模型系统结合起来,该项目将测试刺胞动物宿主-微生物共生,生态学和进化的关键假设。这些研究目标与教育和推广计划相结合,包括在本科课程中使用项目数据,开发新的交互式在线生物信息学文本,以及制作模拟珊瑚礁生态的课堂产品“珊瑚礁情景”。该奖项反映了美国国家科学基金会的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
Tropical coral reefs are biodiversity hotspots. For many coastal communities, they are a source of income, a shield against storm damage, and a cultural icon. For more than 240 million years, the growth of stony corals engineered these ecosystems. Over that time, stony corals split into two main groups with more than 1500 species. But corals are not alone; the use of molecular tools identified symbiosis on microscopic scale. Inside each coral polyp are communities of dinoflagellates, bacteria, and archaea that are together called the coral microbiome. Coral microbiomes can help or harm stressed corals. This can affect reef decline due to coral disease and mass coral bleaching. It is thought that coral species with more innate immunity genes have less diverse microbiomes. However, this has not yet been tested. This project will test this idea using a cost-effective ‘genome skimming’ approach to compare coral microbes and immunity genes across 128 coral species. This comparison will suggest how different innate immunity genes shape coral microbiomes. The project will use Karenina, a new statistical method, to test ideas about how immunity changes microbiome dynamics during stress. Finally, the project will test those predictions in laboratory experiments. These research aims are paired with an education plan that will use project data in undergraduate classes, develop a new online interactive bioinformatics textbook, and produce Reef Scenarios, a learning product that will let high school and undergraduate students simulate reef ecology in engaging classroom exercises.The ability of scleractinian (‘stony’) corals to survive many ecological stressors – from macroalgal competition to bleaching – is thought to depend on the outcome of coral x microbe x environment interactions. Therefore, understanding how corals regulate their microbiome is important for understanding coral’s response to environmental stress. Coral innate immunity is thought to play a critical role in regulating the microbiome. Yet the relationship between coral innate immunity and microbiome richness, composition, and stability is not yet well understood. This project implements an integrated research and education plan to study how the evolution of cnidarian innate immunity has influenced microbiome structure, and how changes in the bacterial and archaeal portion of the microbiome may influence survival of thermal stress. This approach will combine a global cross-species survey relating innate immune gene repertoires in diverse coral genomes with their microbiome richness and composition and laboratory experiments in a model cnidarian that can confirm or falsify proposed immunity-microbiome interactions from the survey. A new modeling approach will be used to carefully distinguish competing time-series models of the effects of innate immunity and thermal stress on microbiome dynamics. By uniting sequencing approaches with a tractable cnidarian model system, this project will test key hypotheses in cnidarian host-microbe symbiosis, ecology and evolution. These research objectives are integrated with an education and outreach plan that includes use of project data in undergraduate classes, development of a new interactive online bioinformatics text, and production of Reef Scenarios, a classroom product for simulating reef ecology.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
期刊论文(4)
专著(0)
科研奖励(0)
会议论文
DOI:
10.3389/fevo.2021.618251
发表时间:
2022-01
期刊:
影响因子:
--
作者:
[M. Medina;D. Baker;David A. Baltrus;Gordon M. Bennett;U. Cardini;A. Correa;S. Degnan;G. Christa]
通讯作者:
M. Medina;D. Baker;David A. Baltrus;Gordon M. Bennett;U. Cardini;A. Correa;S. Degnan;G. Christa
DOI:
10.1038/s41564-022-01266-x
发表时间:
2022-12
期刊:
Nature microbiology
影响因子:
28.3
作者:
[Shaffer JP, Nothias LF, Thompson LR, Sanders JG, Salido RA, Couvillion SP, Brejnrod AD, Lejzerowicz F, Haiminen N, Huang S, Lutz HL, Zhu Q, Martino C, Morton JT, Karthikeyan S, Nothias-Esposito M, Dührkop K, Böcker S, Kim HW, Aksenov AA, Bittremieux W, Minich JJ, Marotz C, Bryant MM, Sanders K, Schwartz T, Humphrey G, Vásquez-Baeza Y, Tripathi A, Parida L, Carrieri AP, Beck KL, Das P, González A, McDonald D, Ladau J, Karst SM, Albertsen M, Ackermann G, DeReus J, Thomas T, Petras D, Shade A, Stegen J, Song SJ, Metz TO, Swafford AD, Dorrestein PC, Jansson JK, Gilbert JA, Knight R, Earth Microbiome Project 500 (EMP500) Consortium]
通讯作者:
Earth Microbiome Project 500 (EMP500) Consortium
DOI:
10.1038/nmicrobiol.2017.121
发表时间:
2017-09-01
期刊:
NATURE MICROBIOLOGY
影响因子:
28.3
作者:
[Zaneveld, Jesse R., McMinds, Ryan, Thurber, Rebecca Vega]
通讯作者:
Thurber, Rebecca Vega
海外基金