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91.
Joseph R. Sara Wilmien J. Luus-Powell Susan B. Fogelson Hannes Botha Theresa C. Guillette Willem J. Smit Andre Hoffman Katlego D. Kunutu Jeremy P. Koelmel John A. Bowden 《Journal of fish diseases》2020,43(10):1185-1199
Pansteatitis is the leading cause for the decline in Nile crocodile populations and the sporadic mortality of fish in the Olifants River System, South Africa. To determine the prevalence of this disease in lentic systems, Mozambique tilapia, Oreochromis mossambicus, were collected from Lake Loskop, Lake Flag Boshielo, Phalaborwa Barrage and Lake Luphephe-Nwanedi. The former three impoundments are located within the main stem of the Olifants River, while the latter, which is geographically isolated and situated in the Limpopo River System, served as a reference site. Mesenteric adipose, liver, serosa of the swim bladder, gill and the skeletal muscle of fish sampled were examined for gross and microscopic evidence of pansteatitis. Microscopically observed changes were used to statistically compare pansteatitis prevalence between samples and sites. Based on histopathological evaluation, the adipose tissue in the liver, swim bladder serosa and coelom from severely debilitated individuals showed the most significant pathological changes. Lesions indicative of steatitis were observed in fish collected from Lake Loskop (75%), Lake Flag Boshielo (22%) and Lake Luphephe-Nwanedi (15%). Further investigation is warranted to understand the pervasiveness and mechanisms driving pathological changes of pansteatitis at Lake Flag Boshielo, Phalaborwa Barrage and Lake Luphephe-Nwanedi. 相似文献
92.
Lou Frotté Julien Ringelstein Dominique Monti Marie Robert Christophe Pécheyran Nadia Améziane Hélène Tabouret 《Ecology of Freshwater Fish》2020,29(1):132-144
All native fishes living in the Caribbean island rivers are considered diadromous but few species have been validated as diadromous. In Guadeloupe (Lesser Antilles) as well as in the other tropical islands, the riverine habitats are subject to strong anthropogenic pressure due to resource modifications or dams. The management of fish biodiversity requires knowledge concerning their life history traits and behaviour that are still unknown for most species at a local scale and at the whole distribution area of the species. In a Guadeloupe river, we inferred the migratory patterns of four freshwater fishes common to Caribbean rivers by the analysis of otolith microchemistry. We found two species Eleotris perniger (Eleotridae) and Sicydium plumieri (Gobiidae) to be completely amphidromous with a marine larval phase and a freshwater adult phase. Agonostomus monticola (Mugilidae) was also found to be amphidromous in this system. The fourth species Gobiesox cephalus (Gobiesocidae) showed elemental ratios suggesting an estuarine larval phase and was defined as “limited amphidromous”. The identification of such life history traits, with limited dispersion abilities, argues for specific management measures in tropical island rivers at a basin scale for the conservation of biodiversity. 相似文献
93.
为三七绿紫茎三萜皂苷合成转录调控机理提供参考,将彻底长成的绿紫茎均分为18段,用实时荧光定量PCR检测茎段的三七碱性螺旋-环-螺旋蛋白基因(bHLH)、乙烯响应因子基因(ERF)、v-myb骨髓母细胞增多症病毒癌基因同源物基因(MYB)和WRKY1蛋白基因(WRKY1)的转录水平,用香草醛-高氯酸比色法检测茎段的总三萜皂苷含量(TTSC),分析转录水平与TTSC间的Pearson相关性。结果表明:从三七绿紫茎的顶部到基部,三七bHLH、ERF、MYB和WRKY1的转录水平分别呈一条波动式平缓上升、7峰、波动幅度逐渐增大的6峰和具2个主峰的6峰曲线;TTSC呈V型曲线,最低TTSC出现在茎上部的黄金分割点处;4种转录因子基因的转录水平和TTSC在不同茎段间的差异均达到极显著水平,且转录水平与TTSC之间的Pearson相关系数分别为0.371、0.130、-0.169和-0.195。因此,与三七绿紫茎三萜皂苷合成相关的主要转录因子应为三七的碱性螺旋-环-螺旋蛋白,其次为乙烯响应因子。 相似文献
94.
Farid Menaa P. A. U. I. Wijesinghe Gobika Thiripuranathar Bushra Uzair Haroon Iqbal Barkat Ali Khan Bouzid Menaa 《Marine drugs》2020,18(12)
Seaweeds are broadly distributed and represent an important source of secondary metabolites (e.g., halogenated compounds, polyphenols) eliciting various pharmacological activities and playing a relevant ecological role in the anti-epibiosis. Importantly, host (as known as basibiont such as algae)–microbe (as known as epibiont such as bacteria) interaction (as known as halobiont) is a driving force for coevolution in the marine environment. Nevertheless, halobionts may be fundamental (harmless) or detrimental (harmful) to the functioning of the host. In addition to biotic factors, abiotic factors (e.g., pH, salinity, temperature, nutrients) regulate halobionts. Spatiotemporal and functional exploration of such dynamic interactions appear crucial. Indeed, environmental stress in a constantly changing ocean may disturb complex mutualistic relations, through mechanisms involving host chemical defense strategies (e.g., secretion of secondary metabolites and antifouling chemicals by quorum sensing). It is worth mentioning that many of bioactive compounds, such as terpenoids, previously attributed to macroalgae are in fact produced or metabolized by their associated microorganisms (e.g., bacteria, fungi, viruses, parasites). Eventually, recent metagenomics analyses suggest that microbes may have acquired seaweed associated genes because of increased seaweed in diets. This article retrospectively reviews pertinent studies on the spatiotemporal and functional seaweed-associated microbiota interactions which can lead to the production of bioactive compounds with high antifouling, theranostic, and biotechnological potential. 相似文献
95.
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97.
Marilia Barreca Virginia Span Alessandra Montalbano Mercedes Cueto Ana R. Díaz Marrero Irem Deniz Ayegül Erdoan Lada Luki Bilela Corentin Moulin Elisabeth Taffin-de-Givenchy Filippo Spriano Giuseppe Perale Mohamed Mehiri Ana Rotter Olivier P. Thomas Paola Barraja Susana P. Gaudêncio Francesco Bertoni 《Marine drugs》2020,18(12)
The marine environment is a rich source of biologically active molecules for the treatment of human diseases, especially cancer. The adaptation to unique environmental conditions led marine organisms to evolve different pathways than their terrestrial counterparts, thus producing unique chemicals with a broad diversity and complexity. So far, more than 36,000 compounds have been isolated from marine micro- and macro-organisms including but not limited to fungi, bacteria, microalgae, macroalgae, sponges, corals, mollusks and tunicates, with hundreds of new marine natural products (MNPs) being discovered every year. Marine-based pharmaceuticals have started to impact modern pharmacology and different anti-cancer drugs derived from marine compounds have been approved for clinical use, such as: cytarabine, vidarabine, nelarabine (prodrug of ara-G), fludarabine phosphate (pro-drug of ara-A), trabectedin, eribulin mesylate, brentuximab vedotin, polatuzumab vedotin, enfortumab vedotin, belantamab mafodotin, plitidepsin, and lurbinectedin. This review focuses on the bioactive molecules derived from the marine environment with anticancer activity, discussing their families, origin, structural features and therapeutic use. 相似文献
98.
Mark P. Polinski Niccoló Vendramin Argelia Cuenca Kyle A. Garver 《Journal of fish diseases》2020,43(11):1331-1352
Piscine orthoreovirus (PRV) is a common and widely distributed virus of salmonids. Since its discovery in 2010, the virus has been detected in wild and farmed stocks from North America, South America, Europe and East Asia in both fresh and salt water environments. Phylogenetic analysis suggests three distinct genogroups of PRV with generally discrete host tropisms and/or regional patterns. PRV-1 is found mainly in Atlantic (Salmo salar), Chinook (Oncorhynchus tshawytscha) and Coho (Oncorhynchus kisutch) Salmon of Europe and the Americas; PRV-2 has only been detected in Coho Salmon of Japan; and PRV-3 has been reported primarily in Rainbow Trout (Oncorhynchus mykiss) in Europe. All three genotypes can establish high-load systemic infections by targeting red blood cells for principal replication. Each genotype has also demonstrated potential to cause circulatory disease. At the same time, high-load PRV infections occur in non-diseased salmon and trout, indicating a complexity for defining PRV's role in disease aetiology. Here, we summarize the current body of knowledge regarding PRV following 10 years of study. 相似文献
99.
100.