SYMBIOSIS共生

SYMBIOSIS(英文缩写 SYMBIOSIS),ISSN 0334-5114,eISSN 1878-7665,中文译名:共生 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。

2026 年数据 · 影响因子
2.900
JCR 分区
Q3
CAS 分区
B4
近一年发文量
0
本站 PubMed 收录统计

发文量统计区间:2025-09-27 至 2026-09-27,按本站收录文献的发表日期统计。

ISSN: 0334-5114 · eISSN: 1878-7665 · 缩写: SYMBIOSIS ·中文: 共生

期刊介绍

选择期刊介绍栏目

期刊简介

《SYMBIOSIS》是一本专注于共生生物学领域的国际期刊,涵盖微生物、植物、动物间共生关系的生态学、进化、生理与分子机制。读者群包括生态学家、微生物学家、进化生物学家及环境科学家,旨在促进对共生现象的多学科理解。

研究方向

主要研究方向包括共生关系的建立与维持、共生体互作机制、共生在生态系统中的作用、进化与适应、以及共生在农业和医学中的应用。论文类型涵盖原创研究、综述、短通讯和方法学文章。

期刊特色

期刊强调实验与理论结合,注重机制性发现和跨学科研究。论文通常要求有明确的生态或进化意义,适合从事共生、微生物组、菌根、内共生等方向的研究人员投稿。

投稿难度

投稿难度中等偏上,对研究的创新性和完整性有一定要求。建议在投稿前确保实验设计严谨、数据充分,并清晰阐述共生机制的普遍意义,同时注意语言表达和格式规范。

历年影响因子趋势

JCR 数据年份影响因子JCR 分区
20213.109Q3
20222.500Q4
20232.100Q3
20242.000Q3
20252.900Q3

SYMBIOSIS 最新收录文献

  1. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    1. A review of the venom microbiome and its utility in ecology and evolution including future directions for emerging research.

    作者:
    Marina E De León, Eduardo G P Fox, Sara Dunaj, Ronald A Jenner, Carl N Keiser, Jason Macrander, Samantha A Nixon, Clarissa J Nobile, Daniel Petras, Eduardo Rodriguez-Roman, Anthony J Saviola, Steven A Trim, Natascha S Varona, Justin Yeager, Sabah Ul-Hasan, Volker Herzig, Timothy J Colston
    日期:
    2025-01-01

    Microbes play vital roles in ecological systems, yet their presence and functions within venom environments of venomous organisms remain understudied. Despite the prevalent belief in the sterility of venoms, recent findings reveal diverse microbial communities within venom systems. This review aims to explore the relationships between venoms and microbes, highlighting their potential roles in evolutionary processes, ecological interactions, and therapeutic advancements. Venoms, composed of toxins utilized in hunting or defense, represent a rich source of natural products with applications in drug discovery and therapy, exemplified by FDA-approved venom toxin-derived drugs. Understanding microbial resistance mechanisms against antimicrobial peptides can illuminate coevolutionary processes and guide therapeutic development. Integrating hologenomic evolution and microbial ecology frameworks will facilitate comprehensive research on venom-microbiome interactions, and reveal the evolutionary drivers of venom diversification. Investigating and investing in these relationships promises advancements in understanding evolution, ecology, and biotechnology, with implications for human health and ecological conservation. This review synthesizes existing knowledge, identifies many gaps in literature, and investigates critical unanswered questions in the field of venom microbiology, encouraging ongoing and future collaborative research.

  2. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    2. The impacts of host association and perturbation on symbiont fitness.

    作者:
    Kim L Hoang, Roberto Salguero-Gómez, Victoria L Pike, Kayla C King
    日期:
    2024-01-01

    Symbiosis can benefit hosts in numerous ways, but less is known about whether interactions with hosts benefit symbionts-the smaller species in the relationship. To determine the fitness impact of host association on symbionts in likely mutualisms, we conducted a meta-analysis across 91 unique host-symbiont pairings under a range of spatial and temporal contexts. Specifically, we assess the consequences to symbiont fitness when in and out of symbiosis, as well as when the symbiosis is under suboptimal or varying environments and biological conditions (e.g., host age). We find that some intracellular symbionts associated with protists tend to have greater fitness when the symbiosis is under stressful conditions. Symbionts of plants and animals did not exhibit this trend, suggesting that symbionts of multicellular hosts are more robust to perturbations. Symbiont fitness also generally increased with host age. Lastly, we show that symbionts able to proliferate in- and outside host cells exhibit greater fitness than those found exclusively inside or outside cells. The ability to grow in multiple locations may thus help symbionts thrive. We discuss these fitness patterns in light of host-driven factors, whereby hosts exert influence over symbionts to suit their own needs. The online version contains supplementary material available at 10.1007/s13199-024-00984-6.

  3. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    3. Secondary metabolites from endophytic fungi: Production, methods of analysis, and diverse pharmaceutical potential.

    作者:
    Vivek Kumar Singh, Awanish Kumar
    日期:
    2023-06-08

    The synthesis of secondary metabolites is a constantly functioning metabolic pathway in all living systems. Secondary metabolites can be broken down into numerous classes, including alkaloids, coumarins, flavonoids, lignans, saponins, terpenes, quinones, xanthones, and others. However, animals lack the routes of synthesis of these compounds, while plants, fungi, and bacteria all synthesize them. The primary function of bioactive metabolites (BM) synthesized from endophytic fungi (EF) is to make the host plants resistant to pathogens. EF is a group of fungal communities that colonize host tissues' intracellular or intercellular spaces. EF serves as a storehouse of the above-mentioned bioactive metabolites, providing beneficial effects to their hosts. BM of EF could be promising candidates for anti-cancer, anti-malarial, anti-tuberculosis, antiviral, anti-inflammatory, etc. because EF is regarded as an unexploited and untapped source of novel BM for effective drug candidates. Due to the emergence of drug resistance, there is an urgent need to search for new bioactive compounds that combat resistance. This article summarizes the production of BM from EF, high throughput methods for analysis, and their pharmaceutical application. The emphasis is on the diversity of metabolic products from EF, yield, method of purification/characterization, and various functions/activities of EF. Discussed information led to the development of new drugs and food additives that were more effective in the treatment of disease. This review shed light on the pharmacological potential of the fungal bioactive metabolites and emphasizes to exploit them in the future for therapeutic purposes.

  4. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    4. Spatial, temporal and network analyses provide insights into the dynamics of the bacterial communities associated with two species of Caribbean octocorals and indicate possible key taxa.

    作者:
    M Monti, A Giorgi, D W Kemp, J B Olson
    日期:
    2023-06-03

    Despite the current decline of scleractinian coral populations, octocorals are thriving on reefs in the Caribbean Sea and western North Atlantic Ocean. These cnidarians are holobiont entities, interacting with a diverse array of microorganisms. Few studies have investigated the spatial and temporal stability of the bacterial communities associated with octocoral species and information regarding the co-occurrence and potential interactions between specific members of these bacterial communities remain sparse. To address this knowledge gap, this study investigated the stability of the bacterial assemblages associated with two common Caribbean octocoral species, and across time and geographical locations and performed network analyses to investigate potential bacterial interactions. Results demonstrated that general inferences regarding the spatial and temporal stability of octocoral-associated bacterial communities should not be made, as host-specific characteristics may influence these factors. In addition, network analyses revealed differences in the complexity of the interactions between bacteria among the octocoral species analyzed, while highlighting the presence of genera known to produce bioactive secondary metabolites in both octocorals that may play fundamental roles in structuring the octocoral-associated bacteriome. The online version contains supplementary material available at 10.1007/s13199-023-00923-x.

  5. JCR分区: Q3 CAS分区: B4 影响因子: 2.9
  6. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    6. {"_":"Wild herbivorous mammals (genus ) host a diverse but transient assemblage of fungi.","i":["Neotoma"]}

    作者:
    Sara B Weinstein, W Zac Stephens, Robert Greenhalgh, June L Round, M Denise Dearing
    日期:
    2022-05-01

    Fungi are often overlooked in microbiome research and, as a result, little is known about the mammalian mycobiome. Although frequently detected in vertebrate guts and known to contribute to digestion in some herbivores, whether these eukaryotes are a persistent part of the mammalian gut microbiome remains contentious. To address this question, we sampled fungi from wild woodrats ( spp.) collected from 25 populations across the southwestern United States. For each animal, we collected a fecal sample in the wild, and then re-sampled the same individual after a month in captivity on a controlled diet. We characterized and quantified fungi using three techniques: ITS metabarcoding, shotgun metagenomics and qPCR. Wild individuals contained diverse fungal assemblages dominated by plant pathogens, widespread molds, and coprophilous taxa primarily in Ascomycota and Mucoromycota. Fungal abundance, diversity and composition differed between individuals, and was primarily influenced by animal geographic origin. Fungal abundance and diversity significantly declined in captivity, indicating that most fungi in wild hosts came from diet and environmental exposure. While this suggests that these mammals lack a persistent gut mycobiome, natural fungal exposure may still impact fungal dispersal and animal health.

  7. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    7. A peptidoglycan-recognition protein orchestrates the first steps of symbiont recruitment in the squid-vibrio symbiosis.

    作者:
    Caleb-Matthew Olaso, Joani Viliunas, Margaret McFall-Ngai
    日期:
    2022-05-01

    In symbioses established through horizontal transmission, evolution has selected for mechanisms that promote the recruitment of symbionts from the environment. Using the binary association between the Hawaiian bobtail squid, , and its symbiont, , we explored the first step of symbiont enrichment around sites where cells will enter host tissues. Earlier studies of the system had shown that, within minutes of hatching in natural seawater, ciliated epithelia of the nascent symbiotic tissue secrete a layer of mucus in response to exposure to the cell-wall biomolecule peptidoglycan (PGN) from non-specific bacterioplankton. We hypothesized that a peptidoglycan recognition protein, EsPGRP4, is the receptor that mediates host mucus secretion by sensing the environmental PGN; earlier studies of this protein family had shown that this is the only member predicted to behave as a membrane receptor. Immunocytochemistry localized EsPGRP4 to the superficial ciliated fields of the juvenile organ. We found that production of EsPGRP4 increased over the first 48 h after hatching if the light organ remained uncolonized. When colonized by , the levels of the protein in light-organ tissue remained similar to that of hatchling organs. Pharmacologically curing the initially colonized light organ with antibiotics resulted in return of EsPGRP4 production to levels similar to light organs that had remained uncolonized since hatching. Furthermore, we found that preincubation of the tissues with an EsPGRP4 antibody decreased light organ mucus production and colonization. These findings provide evidence of an innate mechanism that underlies a crucial first step in the horizontal recruitment of bacterial symbionts.

  8. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    8. Demonstrating the role of symbionts in mediating detoxification in herbivores.

    作者:
    M Denise Dearing, Martin Kaltenpoth, Jonathan Gershenzon
    日期:
    2022-01-01

    Plant toxins constitute an effective defense against herbivorous animals. However, many herbivores have evolved adaptations to cope with dietary toxins through detoxification, excretion, sequestration, target site insensitivity and/or via behavioral avoidance. While these adaptations are often directly encoded in herbivore genomes, evidence is accumulating that microbial symbionts can reduce the dose of plant toxins by metabolizing or sequestering them prior to absorption by the herbivore. Here, we describe a few well-studied examples to assess such symbiont-mediated detoxification and showcase different approaches that have been used for their analyses. These include: (i) a host phenotypic route in which the symbiotic association is manipulated to reveal host fitness costs upon toxin exposure in the presence/absence of detoxifying symbionts, including function restoration after symbiont re-infection, (ii) a molecular microbiological approach that focuses on the identification and characterization of microbial genes involved in plant toxin metabolism, and (iii) an analytical chemical route that aims to characterize the conversion of the toxin to less harmful metabolites in vivo and link conversion to the activities of a detoxifying symbiont. The advantages and challenges of each approach are discussed, and it is argued that a multi-pronged strategy combining phenotypic, molecular, and chemical evidence is needed to unambiguously demonstrate microbial contributions to plant toxin reduction and the importance of these processes for host fitness. Given the interdisciplinary nature of the topic, we aim to provide a guideline to researchers interested in symbiont-mediated detoxification and hope to encourage future studies that contribute to a more comprehensive and mechanistic understanding of detoxification in herbivores and their symbionts.

  9. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    9. From isolation to application: a case study of arbuscular mycorrhizal fungi of the Arabian Peninsula.

    作者:
    Mohamed N Al-Yahya'ei, Janusz Błaszkowski, Hamood Al-Hashmi, Khaled Al-Farsi, Ismail Al-Rashdi, Annette Patzelt, Thomas Boller, Andres Wiemken, Sarah Symanczik
    日期:
    2022-01-01

    The vegetation in the Arabian Peninsula experiences drought, heat, soil salinity, and low fertility, mainly due to low phosphorus (P) availability. The beneficial mycorrhizal symbiosis between plants and arbuscular mycorrhizal fungi (AMF) is a key factor supporting plant growth under such environmental conditions. Therefore, AMF strains isolated from these soils might be useful as biotechnological tools for agriculture and revegetation practices in the region. Here we present a pioneering program to isolate, identify, and apply AMF isolated from rhizosphere soils of agricultural and natural habitats, namely date palm plantations and five native desert plants, respectively in the Southern Arabian Peninsula. We established taxonomically unique AMF species as single-spore cultures as part of an expanding collection of AMF strains adapted to arid ecosystems. Preliminary experiments were conducted to evaluate the abilities of these AMF strains to promote seedling growth of a main crop L. and a common plant L. (Druce) in the Arabian Peninsula. The results showed that inoculation with certain AMF species enhanced the growth of both plants, highlighting the potential of these fungi as part of sustainable land use practices in this region.

  10. JCR分区: Q3 CAS分区: B4 影响因子: 2.9

    10. Symbiosis and the Anthropocene.

    作者:
    Erik F Y Hom, Alexandra S Penn
    日期:
    2021-01-01

    Recent human activity has profoundly transformed Earth biomes on a scale and at rates that are unprecedented. Given the central role of symbioses in ecosystem processes, functions, and services throughout the Earth biosphere, the impacts of human-driven change on symbioses are critical to understand. Symbioses are not merely collections of organisms, but co-evolved partners that arise from the synergistic combination and action of different genetic programs. They function with varying degrees of permanence and selection as emergent units with substantial potential for combinatorial and evolutionary innovation in both structure and function. Following an articulation of operational definitions of symbiosis and related concepts and characteristics of the Anthropocene, we outline a basic typology of anthropogenic change (AC) and a conceptual framework for how AC might mechanistically impact symbioses with select case examples to highlight our perspective. We discuss surprising connections between symbiosis and the Anthropocene, suggesting ways in which new symbioses could arise due to AC, how symbioses could be agents of ecosystem change, and how symbioses, broadly defined, of humans and "farmed" organisms may have launched the Anthropocene. We conclude with reflections on the robustness of symbioses to AC and our perspective on the importance of symbioses as ecosystem keystones and the need to tackle anthropogenic challenges as wise and humble stewards embedded within the system.

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指标接近的期刊