14 research outputs found
“Revisiting the Past”: A Redescription of \u3ci\u3ePhysaloptera retusa\u3c/i\u3e (Nemata, Physalopteridae) from Material Deposited in Museums and New Material from Amazon Lizards = “Revisitando o passado”: Uma redescrição de \u3ci\u3ePhysaloptera retusa\u3c/i\u3e (Nemata, Physalopteridae) a partir de material depositado em museus e novo material de lagartos amazônicos
Abstract
Physaloptera Rudolphi, 1819 is a genus of nematodes that includes approximately 100 species parasitic in vertebrates around the world. From these, approximately 30 occur in the Neotropical region, with nine reported from neotropical reptiles. Physaloptera spp. are recognized by their distinct morphology of the apical end and characters of the reproductive system. However, despite the fact that the morphological characters for species diagnosis have been firmly established, we frequently find identification problems regarding poorly detailed descriptions and poorly preserved specimens. These may lead to taxonomic incongruencies. Physaloptera retusa (Rudolphi, 1819) is the most common species of the genus and has been reported from several species of neotropical reptiles. Based on our reexaminations of nematode specimens identified as P. retusa from different museum collections, we provide a detailed redescription including the type material, voucher specimens and new specimens recovered currently and showed in this study with new morphological data obtained using light and scanning electron microscopy tools. Keywords: Helminths of reptiles, Amazon, taxonomical identification, morphology, scanning electron microscopy.
Resumo
Physaloptera Rudolphi, 1819 é um gênero de nematódeos que inclui aproximadamente 100 espécies parasitárias em vertebrados em todo o mundo. Destes, aproximadamente 30 ocorrem na região Neotropical, e nove foram reportados para répteis neotropicais. Physaloptera spp. são reconhecidas por sua morfologia distinta na extremidade apical e por caracteres do sistema reprodutivo, especialmente nos machos. No entanto, embora os caracteres morfológicos para o diagnóstico de espécies tenham sido estabelecidos, frequentemente são encontrados problemas de identificação em relação a descrições pouco detalhadas e espécimes mal preservados. Isto pode levar a incongruências taxonômicas e erros de identificação. Physaloptera retusa (Rudolphi, 1819) é a espécie mais comum do gênero e tem sido reportada para várias espécies de répteis neotropicais. Com base nos estudos das revisões de espécimes de nematódeos, identificados como P. retusa de diferentes coleções de museus, foi providenciada uma redescrição detalhada, incluindo-se o material-tipo, espécimes “voucher” e novos espécimes obtidos neste estudo com novos dados morfológicos, obtidos a partir de microscopia eletrônica de luz e varredura
Selection and characterization of Bacillus thuringiensis efficient strains against Diatraea saccharalis (Lepidoptera: Crambidae)
O objetivo deste trabalho foi selecionar e caracterizar estirpes nativas de Bacillus thuringiensis tóxicas a Diatraea saccharalis (Lepidoptera: Crambidae). Cento e seis estirpes pertencentes ao Banco de Bactérias de Invertebrados, da Embrapa Recursos Genéticos e Biotecnologia, foram testadas quanto à toxicidade a D. saccharalis, e, as mais tóxicas, caracterizadas por métodos bioquímicos e moleculares. Das 106 estirpes testadas, 16 causaram 100% de mortalidade em 24 horas. As três estirpes mais tóxicas apresentaram concentração letal média entre 8 e 43 ng cm-2. O perfil proteico das 16 estirpes mostrou a presença de proteínas de 130 e 65 kDa, e a caracterização molecular mostrou a presença dos genes tipo cry1 e cry2: cry1Aa, cry1Ab, cry1Ac e cry2Aa. A concentração letal média de esporos e cristais obtidos a partir de estirpes recombinantes, que expressavam individualmente os genes cry1Aa, cry1Ab, cry1Ac e cry2Aa, variou entre 222 e 610 ng cm-2, valores muito superiores aos das estirpes nativas mais tóxicas, que apresentavam possibilidade de expressão simultânea desses genes. Este resultado é indicativo de que há sinergia entre as toxinas. Há interação entre as toxinas de B. thuringiensis e seus receptores na broca-do-colmo da cana-de-açúcar.The objective of this work was to select and characterize native strains of Bacillus thuringiensis toxic to Diatraea saccharalis (Lepidoptera: Crambidae). A hundred-and-six strains, belonging to the bank of invertebrate bacteria (Brazil), of Embrapa Genetic Resources and Biotechnology, were tested as to their toxicity to D. saccharalis, and the most toxic ones were characterized by biochemical and molecular methods. Out of the 106 tested strains, 16 caused 100% mortality within 24 hours. The three most toxic strains showed median lethal concentrations between 8 and 43 ng cm-2. The protein profile of the 16 strains showed the presence of 130 and 65 kDa proteins, and the molecular characterization showed the presence of cry1and cry2 type genes: cry1Aa, cry1Ab, cry1Ac, and cry2Aa. The median lethal concentration of spores and crystals obtained from recombinant strains, which individually expressed the genes cry1Aa, cry1Ab, cry1Ac, and cry2Aa, varied between 222 and 610 ng cm-2, values much higher than the ones of the most toxic native strains, which have the possibility of simultaneously expressing these genes. This result indicates a synergy between the toxins. There are interactions between B. thuringiensis toxins and their receptors in the sugarcane borer
Pervasive gaps in Amazonian ecological research
Biodiversity loss is one of the main challenges of our time,1,2 and attempts to address it require a clear un derstanding of how ecological communities respond to environmental change across time and space.3,4
While the increasing availability of global databases on ecological communities has advanced our knowledge
of biodiversity sensitivity to environmental changes,5–7 vast areas of the tropics remain understudied.8–11 In
the American tropics, Amazonia stands out as the world’s most diverse rainforest and the primary source of
Neotropical biodiversity,12 but it remains among the least known forests in America and is often underrepre sented in biodiversity databases.13–15 To worsen this situation, human-induced modifications16,17 may elim inate pieces of the Amazon’s biodiversity puzzle before we can use them to understand how ecological com munities are responding. To increase generalization and applicability of biodiversity knowledge,18,19 it is thus
crucial to reduce biases in ecological research, particularly in regions projected to face the most pronounced
environmental changes. We integrate ecological community metadata of 7,694 sampling sites for multiple or ganism groups in a machine learning model framework to map the research probability across the Brazilian
Amazonia, while identifying the region’s vulnerability to environmental change. 15%–18% of the most ne glected areas in ecological research are expected to experience severe climate or land use changes by
2050. This means that unless we take immediate action, we will not be able to establish their current status,
much less monitor how it is changing and what is being lostinfo:eu-repo/semantics/publishedVersio
Pervasive gaps in Amazonian ecological research
Biodiversity loss is one of the main challenges of our time,1,2 and attempts to address it require a clear understanding of how ecological communities respond to environmental change across time and space.3,4 While the increasing availability of global databases on ecological communities has advanced our knowledge of biodiversity sensitivity to environmental changes,5,6,7 vast areas of the tropics remain understudied.8,9,10,11 In the American tropics, Amazonia stands out as the world's most diverse rainforest and the primary source of Neotropical biodiversity,12 but it remains among the least known forests in America and is often underrepresented in biodiversity databases.13,14,15 To worsen this situation, human-induced modifications16,17 may eliminate pieces of the Amazon's biodiversity puzzle before we can use them to understand how ecological communities are responding. To increase generalization and applicability of biodiversity knowledge,18,19 it is thus crucial to reduce biases in ecological research, particularly in regions projected to face the most pronounced environmental changes. We integrate ecological community metadata of 7,694 sampling sites for multiple organism groups in a machine learning model framework to map the research probability across the Brazilian Amazonia, while identifying the region's vulnerability to environmental change. 15%–18% of the most neglected areas in ecological research are expected to experience severe climate or land use changes by 2050. This means that unless we take immediate action, we will not be able to establish their current status, much less monitor how it is changing and what is being lost
Pervasive gaps in Amazonian ecological research
Biodiversity loss is one of the main challenges of our time,1,2 and attempts to address it require a clear understanding of how ecological communities respond to environmental change across time and space.3,4 While the increasing availability of global databases on ecological communities has advanced our knowledge of biodiversity sensitivity to environmental changes,5,6,7 vast areas of the tropics remain understudied.8,9,10,11 In the American tropics, Amazonia stands out as the world's most diverse rainforest and the primary source of Neotropical biodiversity,12 but it remains among the least known forests in America and is often underrepresented in biodiversity databases.13,14,15 To worsen this situation, human-induced modifications16,17 may eliminate pieces of the Amazon's biodiversity puzzle before we can use them to understand how ecological communities are responding. To increase generalization and applicability of biodiversity knowledge,18,19 it is thus crucial to reduce biases in ecological research, particularly in regions projected to face the most pronounced environmental changes. We integrate ecological community metadata of 7,694 sampling sites for multiple organism groups in a machine learning model framework to map the research probability across the Brazilian Amazonia, while identifying the region's vulnerability to environmental change. 15%–18% of the most neglected areas in ecological research are expected to experience severe climate or land use changes by 2050. This means that unless we take immediate action, we will not be able to establish their current status, much less monitor how it is changing and what is being lost
Seleção e caracterização de estirpes de Bacillus thuringiensis eficientes contra a Diatraea saccharalis (Lepidoptera: Crambidae)
O objetivo deste trabalho foi selecionar e caracterizar estirpes nativas de Bacillus thuringiensis tóxicas a Diatraea saccharalis (Lepidoptera: Crambidae). Cento e seis estirpes pertencentes ao Banco de Bactérias de Invertebrados, da Embrapa Recursos Genéticos e Biotecnologia, foram testadas quanto à toxicidade a D. saccharalis, e, as mais tóxicas, caracterizadas por métodos bioquímicos e moleculares. Das 106 estirpes testadas, 16 causaram 100% de mortalidade em 24 horas. As três estirpes mais tóxicas apresentaram concentração letal média entre 8 e 43 ng cm-2. O perfil proteico das 16 estirpes mostrou a presença de proteínas de 130 e 65 kDa, e a caracterização molecular mostrou a presença dos genes tipo cry1 e cry2: cry1Aa, cry1Ab, cry1Ac e cry2Aa. A concentração letal média de esporos e cristais obtidos a partir de estirpes recombinantes, que expressavam individualmente os genes cry1Aa, cry1Ab, cry1Ac e cry2Aa, variou entre 222 e 610 ng cm-2, valores muito superiores aos das estirpes nativas mais tóxicas, que apresentavam possibilidade de expressão simultânea desses genes. Este resultado é indicativo de que há sinergia entre as toxinas. Há interação entre as toxinas de B. thuringiensis e seus receptores na broca-do-colmo da cana-de-açúcar
Seleção e caracterização de estirpes de Bacillus thuringiensis eficientes contra a Diatraea saccharalis (Lepidoptera: Crambidae) Selection and characterization of Bacillus thuringiensis efficient strains against Diatraea saccharalis (Lepidoptera: Crambidae)
O objetivo deste trabalho foi selecionar e caracterizar estirpes nativas de Bacillus thuringiensis tóxicas a Diatraea saccharalis (Lepidoptera: Crambidae). Cento e seis estirpes pertencentes ao Banco de Bactérias de Invertebrados, da Embrapa Recursos Genéticos e Biotecnologia, foram testadas quanto à toxicidade a D. saccharalis, e, as mais tóxicas, caracterizadas por métodos bioquímicos e moleculares. Das 106 estirpes testadas, 16 causaram 100% de mortalidade em 24 horas. As três estirpes mais tóxicas apresentaram concentração letal média entre 8 e 43 ng cm-2. O perfil proteico das 16 estirpes mostrou a presença de proteínas de 130 e 65 kDa, e a caracterização molecular mostrou a presença dos genes tipo cry1 e cry2: cry1Aa, cry1Ab, cry1Ac e cry2Aa. A concentração letal média de esporos e cristais obtidos a partir de estirpes recombinantes, que expressavam individualmente os genes cry1Aa, cry1Ab, cry1Ac e cry2Aa, variou entre 222 e 610 ng cm-2, valores muito superiores aos das estirpes nativas mais tóxicas, que apresentavam possibilidade de expressão simultânea desses genes. Este resultado é indicativo de que há sinergia entre as toxinas. Há interação entre as toxinas de B. thuringiensis e seus receptores na broca-do-colmo da cana-de-açúcar.The objective of this work was to select and characterize native strains of Bacillus thuringiensis toxic to Diatraea saccharalis (Lepidoptera: Crambidae). A hundred-and-six strains, belonging to the bank of invertebrate bacteria (Brazil), of Embrapa Genetic Resources and Biotechnology, were tested as to their toxicity to D. saccharalis, and the most toxic ones were characterized by biochemical and molecular methods. Out of the 106 tested strains, 16 caused 100% mortality within 24 hours. The three most toxic strains showed median lethal concentrations between 8 and 43 ng cm-2. The protein profile of the 16 strains showed the presence of 130 and 65 kDa proteins, and the molecular characterization showed the presence of cry1and cry2 type genes: cry1Aa, cry1Ab, cry1Ac, and cry2Aa. The median lethal concentration of spores and crystals obtained from recombinant strains, which individually expressed the genes cry1Aa, cry1Ab, cry1Ac, and cry2Aa, varied between 222 and 610 ng cm-2, values much higher than the ones of the most toxic native strains, which have the possibility of simultaneously expressing these genes. This result indicates a synergy between the toxins. There are interactions between B. thuringiensis toxins and their receptors in the sugarcane borer