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РИС. 2. Раковины Opisthorchophorus, Paraelona и Boreoelona иЗ водоемов Тюменской области: A. Opisthorchophorus troscheli иЗ оЗ. Кривое, 30.07.2015. B. O. abacumovae иЗ р. Ирюм, 25.08.2015. C. O. baudonianus иЗ р. Ирюм, 02.07.2015. D. Paraelona socialis иЗ р. Ирюм, 02.07.2015. E. Paraelona milachevitchi иЗ р. Ирюм, 02.07.2015. F. Boreoelona sp. иЗ беЗымЯнного оЗера в пойме р. БольШой Балык, 02.06.2019. G. B. contortrix иЗ беЗымЯнного оЗера в пойме р. БольШой Балык, 02.06.2019. H. B. sibirica иЗ беЗымЯнного оЗера в пойме р. БольШой Балык, 02.06.2019. МасШтаб: 1 мм. Фото Н.И. Андреева. FIG. 2. Shells of Opisthorchophorus, Paraelona and Boreoelona species of the Tyumen Region waterbodies. A. Opisthorchophorus troscheli, Krivoye Lake, 30.07.2015. B. O. abacumovae, Iryum River, 25.08.2015. C. O. baudonianus, Iryum River, 02.07.2015. D. Paraelona socialis иЗ р. Ирюм 02.07.2015. E. Paraelona milachevitchi, Iryum River, 02.07.2015. F. Boreoe - lona sp., an unnamed lake in the Bolshoy Balyk River floodplain 02.06.2019, G. B. contortrix, Iryum River, 15.07.2012. H. B. sibirica, an unnamed lake in the Bolshoy Balyk River floodplain, 02.06.2019. Scale bars: 1 mm. Photos: N.I. Andreyev. in Моллюски семейства Bithyniidae (Mollusca, Gastropoda) Тюменской области
РИС. 2. Раковины Opisthorchophorus, Paraelona и Boreoelona иЗ водоемов Тюменской области: A. Opisthorchophorus troscheli иЗ оЗ. Кривое, 30.07.2015. B. O. abacumovae иЗ р. Ирюм, 25.08.2015. C. O. baudonianus иЗ р. Ирюм, 02.07.2015. D. Paraelona socialis иЗ р. Ирюм, 02.07.2015. E. Paraelona milachevitchi иЗ р. Ирюм, 02.07.2015. F. Boreoelona sp. иЗ беЗымЯнного оЗера в пойме р. БольШой Балык, 02.06.2019. G. B. contortrix иЗ беЗымЯнного оЗера в пойме р. БольШой Балык, 02.06.2019. H. B. sibirica иЗ беЗымЯнного оЗера в пойме р. БольШой Балык, 02.06.2019. МасШтаб: 1 мм. Фото Н.И. Андреева. FIG. 2. Shells of Opisthorchophorus, Paraelona and Boreoelona species of the Tyumen Region waterbodies. A. Opisthorchophorus troscheli, Krivoye Lake, 30.07.2015. B. O. abacumovae, Iryum River, 25.08.2015. C. O. baudonianus, Iryum River, 02.07.2015. D. Paraelona socialis иЗ р. Ирюм 02.07.2015. E. Paraelona milachevitchi, Iryum River, 02.07.2015. F. Boreoe - lona sp., an unnamed lake in the Bolshoy Balyk River floodplain 02.06.2019, G. B. contortrix, Iryum River, 15.07.2012. H. B. sibirica, an unnamed lake in the Bolshoy Balyk River floodplain, 02.06.2019. Scale bars: 1 mm. Photos: N.I. Andreyev.
nal; E', F', internal, G'-J', Pal. 1341 (peripheral 8); G', H', external; I', J', internal; K'-N', Pal. 1343 (peripheral 9); K', L', external; M', N', internal; O'-R', Pal. 1345 (peripheral 10); O', P', external; Q', R', internal; S'-V', Pal. 1348 (peripheral 11); S', T', external; U', V', internal views; W', reconstruction of carapace Thick lines correspond to scute sulci, dotted lines denote plate sutures, and oblique lines indicate missing plate portions. Abbreviations: Ce, cervical; co, costal; Ma, marginal; ne, neural; nu, nuchal; per, peripheral; Pl, pleural; py, pygal; sp, suprapygal; Spr, supracaudal; Ve, vertebral. Scale bars: A-V', 1 cm; W', 2.5 cm. in Fossil turtles from the early Miocene localities of Mokrá-Quarry (Burdigalian, MN4), South Moravian Region, Czech Republic
nal; E', F', internal, G'-J', Pal. 1341 (peripheral 8); G', H', external; I', J', internal; K'-N', Pal. 1343 (peripheral 9); K', L', external; M', N', internal; O'-R', Pal. 1345 (peripheral 10); O', P', external; Q', R', internal; S'-V', Pal. 1348 (peripheral 11); S', T', external; U', V', internal views; W', reconstruction of carapace Thick lines correspond to scute sulci, dotted lines denote plate sutures, and oblique lines indicate missing plate portions. Abbreviations: Ce, cervical; co, costal; Ma, marginal; ne, neural; nu, nuchal; per, peripheral; Pl, pleural; py, pygal; sp, suprapygal; Spr, supracaudal; Ve, vertebral. Scale bars: A-V', 1 cm; W', 2.5 cm.
sal; W, visceral; X-Z, Pal. 1308 (costal 5); X, Y, dorsal; Z, visceral; A'-C', Pal. 1309 (costal 6); A', B', dorsal; C', visceral; D'-F', Pal. 1310 (costal 8); D', E', dorsal; F', visceral; G'-J', Pal. 1312 (peripheral 1); G', H', dorsal; I', J', visceral; K'-N', Pal. 1313 (peripheral 7); K', L', dorsal; M', N', visceral; O'-R', Pal. 1314 (peripheral 8); O', P', dorsal; Q', R', visceral views; S', reconstruction of carapace. Thick lines indicate to scute sulci, dotted lines sutures and oblique lines denote missing plate portions. Abbreviations: Ce, cervical; co, costal; Ma, marginal; ne, neural; nu, nuchal; per, peripheral; Pl, pleural; py, pygal; sp, suprapygal; Ve, vertebral. Scale bars: 1 cm. in Fossil turtles from the early Miocene localities of Mokrá-Quarry (Burdigalian, MN4), South Moravian Region, Czech Republic
sal; W, visceral; X-Z, Pal. 1308 (costal 5); X, Y, dorsal; Z, visceral; A'-C', Pal. 1309 (costal 6); A', B', dorsal; C', visceral; D'-F', Pal. 1310 (costal 8); D', E', dorsal; F', visceral; G'-J', Pal. 1312 (peripheral 1); G', H', dorsal; I', J', visceral; K'-N', Pal. 1313 (peripheral 7); K', L', dorsal; M', N', visceral; O'-R', Pal. 1314 (peripheral 8); O', P', dorsal; Q', R', visceral views; S', reconstruction of carapace. Thick lines indicate to scute sulci, dotted lines sutures and oblique lines denote missing plate portions. Abbreviations: Ce, cervical; co, costal; Ma, marginal; ne, neural; nu, nuchal; per, peripheral; Pl, pleural; py, pygal; sp, suprapygal; Ve, vertebral. Scale bars: 1 cm.
Quantitative raw data for "Large scale regional citizen surveys report" (D1.4)
<p>This dataset presents the quantitative raw data that was collected under the H2020 RRI2SCALE project for the D1.4 - “Large scale regional citizen surveys report”. The dataset includes the answers that were provided by almost 8,000 participants from 4 pilot European regions (Kriti, Vestland, Galicia, and Overijssel) regarding the general public's views, concerns, and moral issues about the current and future trajectories of their RTD&I ecosystem. The original survey questionnaire was created by White Research SRL and disseminated to the regions through supporting pilot partners. Data collection took place from June 2020 to September 2020 through 4 different waves – one for each region. Based on the conclusion of a consortium vote during the kick-off meeting, it was decided that instead of resource-intensive methods that would render data collection unduly expensive, to fill in the quotas responses were collected through online panels by survey companies that were used for each region. For the statistical analysis of the data and the conclusions drawn from the analysis, you can access the "Large scale regional citizen surveys report" (D1.4).</p>
Lightning Assimilation in the Weather Research and Forecasting (WRF) Model: Technique Updates and Assessment of the Applications from Regional to Hemispheric Scales
<p>Figure 1. The data is proprietary, but it can be purchased from Vaisala Inc. (https:// <a href="http://www.vaisala.com/en/products/systems/lightning-detection">www.vaisala.com/en/products/systems/lightning-detection</a>), and the WWLLN raw data are also available for purchase at <a href="http://wwlln.net">http://wwlln.net</a>.</p> <p>Figure 2. Maps, data is not applicable.</p> <p>Figure 3. Data file: NLDN_WWLLN_Prism_Rainfall_Analysis.xlsx</p> <p>Figure 4. Data file: NLDN_WWLLN_METVARS_T2_Jul_2016.xlsx</p> <p>Figure 5. Data file: CONUSall_METOBS_q_Jul_2016.xlsx</p> <p>Figure 6. Data file: CONUSall_METOBS_ws_Jul_2016.xlsx</p> <p>Figure 7. Created using the R script: Hemi_Rain_ModelOnlyWGPM.R based on the R object files: AnnualRainFall_CFC_WRF_Hemi_BASE_*.rds, AnnualRainFall_CFC_WRF_Hemi_LTA_*.rds, and GPM_WRF_Paired_rain2Hemispheric_July2016.rds.</p> <p>Figure 8. Created using the R script: Hemi_Rain_Aanlysis.R based on the R object files: AnnualRainFall_CFC_WRF_Hemi_BASE_*.rds and AnnualRainFall_CFC_WRF_Hemi_LTA_*.rds.</p> <p>Figure 9. Data file: CPC_Model_Monthly_Prep_Hemi_Stats.xlsx</p> <p>Figure 10. Data file: CPC_Model_Monthly_Prep_Hemi_Stats.xlsx</p> <p>Figure 11. Data file: CPC_Model_Monthly_Prep_Hemi_Stats.xlsx</p> <p>Figure 12. Created using the R script: CreateCPCdataforUSdomain_vs_Prism.R based on the R oject files: Prism_CFC_WRF*.rds</p> <p>Figure 13. Data file: Hemi_lta_METOBS_T2_Jul_2016.xlsx</p> <p>Figure 14. Data file: Hemi_lta_METOBS_q_Jul_2016.xlsx</p> <p> </p>
Data from: Chromosome-scale assembly with a phased sex-determining region resolves features of early Z and W chromosome differentiation in a wild octoploid strawberry
<p>Abstract: When sex chromosomes stop recombining, they start to accumulate differences. The sex-limited chromosome (Y or W) especially is expected to degenerate via the loss of nucleotide sequence and the accumulation of repetitive sequences. However, how early signs of degeneration can be detected in a new sex chromosome is still unclear. The sex determining region (SDR) of the octoploid strawberries is young, small, and dynamic. Using PacBio HiFi reads, we obtained a chromosome scale assembly of a female (ZW) <em>Fragaria chiloensis</em> plant carrying the youngest and largest of the known SDR on the W in strawberries. We fully characterized the previously incomplete SDR, confirming its gene content, genomic location and evolutionary history. Resolution of gaps in the previous characterization of the SDR added 10 kbp of sequence including a non-canonical LTR-retrotransposon; whereas the Z sequence revealed a <em>Harbinger</em> transposable element adjoining the SDR insertion site. Limited genetic differentiation of the sex chromosomes coupled with structural variation may indicate an early stage of W degeneration. The sex chromosomes have a similar percentage of repeats but differ in their repeat distribution. Differences in the pattern of repeats (transposable element polymorphism) apparently precede sex chromosome differentiation, thus potentially contributing to recombination cessation as opposed to being a consequence of it.</p> <p>Repository content: data (sequence alignments, phylogenetic trees, genome assembly, and vcf files) and scripts associated with the manuscript "Chromosome-scale assembly with a phased sex-determining region resolves features of early Z and W chromosome differentiation in a wild octoploid strawberry"</p>
Data collection for article "Regional scale mapping of ecosystem services supply, demand, flow and mismatches in Southern Myanmar"
<p>This dataset contains supply, demand, and flow maps from nine ecosystem service models (as layer files in .tif format) underlying the publication "Regional scale mapping of ecosystem services supply, demand, flow and mismatches in Southern Myanmar". </p>
Soil information on a regional scale: Two machine learning based approaches for predicting saturated hydraulic conductivity
<p><strong>Version 1.0 - This version is the final revised one.</strong></p> <p>This is the dataset accompanying the paper: Zeitfogel et al., Soil information on a regional scale: Two machine learning based approaches for predicting saturated hydraulic conductivity, published at Geoderma, 2023 (https://doi.org/10.1016/j.geoderma.2023.116418).</p> <p>Soil property and Ksat maps for Austria. The digital soil maps were generated based on a Machine Learning and PTF-based approach (indirect approach) and a pure Machine Learning based approach (direct approach). By downloading the datasets, you agree that we nor the provider of the used source datasets cannot be liable for the data provided.</p> <p>This study was funded by the Austrian Federal Ministry of Agriculture, Regions and Tourism (Project InfCapAT), the Austrian Academy of Science (Project RechAUT) and the Austrian Science Fund project P 31213.</p> <p> </p>
Text-fig. 3. Litho- and biostratigraphic position of fossil floras treated herein, based on lithostratigraphic standard section of upper Oligocene and Miocene in central and eastern Germany (Standke et al. 2010, Escher et al. 2020); only exception from standard section: ** – Thierbach Member restricted to central Germany, replaces Branitz Member in eastern Germany; correlated to global scale of International Chronostratigraphic Chart 2022/02 (Cohen et al. 2013); maximum age ranges of sites/floras indicated by black bars; floristic complexes according to definitions by Mai and Walther 1991 for upper Oligocene, Mai 2000b, 2001b for Miocene; age range of MCO from Steinthorsdottir et al. 2021. in Assessment Of Phytogeographic Reference Regions For Cenozoic Vegetation: A Case Study On The Miocene Flora Of Wiesa (Germany)
Text-fig. 3. Litho- and biostratigraphic position of fossil floras treated herein, based on lithostratigraphic standard section of upper Oligocene and Miocene in central and eastern Germany (Standke et al. 2010, Escher et al. 2020); only exception from standard section: ** – Thierbach Member restricted to central Germany, replaces Branitz Member in eastern Germany; correlated to global scale of International Chronostratigraphic Chart 2022/02 (Cohen et al. 2013); maximum age ranges of sites/floras indicated by black bars; floristic complexes according to definitions by Mai and Walther 1991 for upper Oligocene, Mai 2000b, 2001b for Miocene; age range of MCO from Steinthorsdottir et al. 2021.
Рис. 2. Фотографии Viscosia orientalis sp. nov., гоΛотип самца (А, В, Г, Е, З, И) и паратип самки (Б, Á, Ж, К). А, Б — общий виΑ; В — переΑний конец теΛа; Г, Á, Е — гоΛова; Ж — теΛо в обΛасти вуΛьвы; З — теΛо в обΛасти кΛоаки; И, К — заΑний конец теΛа. Масштаб: А, Б — 100 мкм; В, Ж — 50 мкм; И, К — 20 мкм; Á, З — 10 мкм; Г, Е — 5 мкм Fig. 2. Light micrograph of Viscosia sp. nov., male holotype (А, В, Г, Е, З, И) and female paratype (Б, Á, Ж, К). А, Б — general view; В — anterior body end; Г, Á, Е — head; Ж — vulva region; З — cloaca region; И, К — posterior body end. Scale bars: А, Б — 100 μm; В, Ж — 50 μm; И, К — 20 μm; Á, З — 10 μm; Г, К — 5 μm in Sp. Nov. And Sp. Nov. (Nematoda, Enoplida) From The Mouth Of The Cam River In Vietnam
Рис. 2. Фотографии Viscosia orientalis sp. nov., гоΛотип самца (А, В, Г, Е, З, И) и паратип самки (Б, Á, Ж, К). А, Б — общий виΑ; В — переΑний конец теΛа; Г, Á, Е — гоΛова; Ж — теΛо в обΛасти вуΛьвы; З — теΛо в обΛасти кΛоаки; И, К — заΑний конец теΛа. Масштаб: А, Б — 100 мкм; В, Ж — 50 мкм; И, К — 20 мкм; Á, З — 10 мкм; Г, Е — 5 мкм Fig. 2. Light micrograph of Viscosia sp. nov., male holotype (А, В, Г, Е, З, И) and female paratype (Б, Á, Ж, К). А, Б — general view; В — anterior body end; Г, Á, Е — head; Ж — vulva region; З — cloaca region; И, К — posterior body end. Scale bars: А, Б — 100 μm; В, Ж — 50 μm; И, К — 20 μm; Á, З — 10 μm; Г, К — 5 μm
Рис. 1. Viscosia orientalis sp. nov., гоΛотип самца (А, Б, Á) и паратипа самки (В, Г). А — гоΛова; Б — переΑний конец теΛа; В, Á — заΑний конец теΛа; Г — теΛо в обΛасти вуΛьвы. Масштаб: А — 15 мкм; В — 25 мкм; Á — 30 мкм; Г — 60 мкм; Б — 80 мкм Fig. 1. Viscosia orientalis sp. nov., male holotype (А, Б, Á) and female paratype (В, Г). А — head; Б — anterior body end; В, Á — posterior body end; Г — vulva region. Scale bars: А — 15 μm; В — 25 μm; Á — 30 μm; Г — 60 μm; Б — 80 μm in Sp. Nov. And Sp. Nov. (Nematoda, Enoplida) From The Mouth Of The Cam River In Vietnam
Рис. 1. Viscosia orientalis sp. nov., гоΛотип самца (А, Б, Á) и паратипа самки (В, Г). А — гоΛова; Б — переΑний конец теΛа; В, Á — заΑний конец теΛа; Г — теΛо в обΛасти вуΛьвы. Масштаб: А — 15 мкм; В — 25 мкм; Á — 30 мкм; Г — 60 мкм; Б — 80 мкм Fig. 1. Viscosia orientalis sp. nov., male holotype (А, Б, Á) and female paratype (В, Г). А — head; Б — anterior body end; В, Á — posterior body end; Г — vulva region. Scale bars: А — 15 μm; В — 25 μm; Á — 30 μm; Г — 60 μm; Б — 80 μm
Рис. 4. Фотографии Halalaimus borealis sp. nov., гоΛотип самца (А, В, Á, Ж, З) и паратип самки (Б, Г, Е, И). А, Б — общий виΑ; Á, Г — гоΛова; Á — переΑний конец теΛа; Е — теΛо в обΛасти вуΛьвы; Ж — теΛо в обΛасти кΛоаки; З, И — заΑний конец теΛа. Масштаб: А, Б — 200 мкм; Á, И — 50 мкм; З — 20 мкм; Е — 10 мкм; В, Г, Ж — 5 мкм Fig. 4. Light micrograph of Halalaimus borealis sp. nov., male holotype (А, В, Á, Ж, З) and female paratype (Б, Г, Е, И). А, Б — general view; В, Г — head; Á — anterior body end; Е — vulva region; Ж — cloaca region; З, И — posterior body end. Scale bars: А, Б — 200 μm; Á, И — 50 μm; З — 20 μm; Е — 10 μm; В, Г, Ж — 5 μm in Sp. Nov. And Sp. Nov. (Nematoda, Enoplida) From The Mouth Of The Cam River In Vietnam
Рис. 4. Фотографии Halalaimus borealis sp. nov., гоΛотип самца (А, В, Á, Ж, З) и паратип самки (Б, Г, Е, И). А, Б — общий виΑ; Á, Г — гоΛова; Á — переΑний конец теΛа; Е — теΛо в обΛасти вуΛьвы; Ж — теΛо в обΛасти кΛоаки; З, И — заΑний конец теΛа. Масштаб: А, Б — 200 мкм; Á, И — 50 мкм; З — 20 мкм; Е — 10 мкм; В, Г, Ж — 5 мкм Fig. 4. Light micrograph of Halalaimus borealis sp. nov., male holotype (А, В, Á, Ж, З) and female paratype (Б, Г, Е, И). А, Б — general view; В, Г — head; Á — anterior body end; Е — vulva region; Ж — cloaca region; З, И — posterior body end. Scale bars: А, Б — 200 μm; Á, И — 50 μm; З — 20 μm; Е — 10 μm; В, Г, Ж — 5 μm
Рис. 3. Halalaimus borealis sp. nov., гоΛотип самца (А, В, Е) и паратип самки (Б, Г). А — переΑний конец теΛа; Б — теΛо в обΛасти вуΛьвы; В, Г — заΑний конец теΛа; Е — спикуΛы и руΛек. Масштаб: А, Б — 20 мкм; В, Г, Á — 30 мкм Fig. 3. Halalaimus borealis sp. nov., male holotype (А, В, Е) and female paratype (Б, Г). А — anterior body end; Б — vulva region; В, Г — posterior body end; Е — spicules and gubernaculum. Scale bars: А, Б — 20 μm; В, Г Á — 30 μm in Sp. Nov. And Sp. Nov. (Nematoda, Enoplida) From The Mouth Of The Cam River In Vietnam
Рис. 3. Halalaimus borealis sp. nov., гоΛотип самца (А, В, Е) и паратип самки (Б, Г). А — переΑний конец теΛа; Б — теΛо в обΛасти вуΛьвы; В, Г — заΑний конец теΛа; Е — спикуΛы и руΛек. Масштаб: А, Б — 20 мкм; В, Г, Á — 30 мкм Fig. 3. Halalaimus borealis sp. nov., male holotype (А, В, Е) and female paratype (Б, Г). А — anterior body end; Б — vulva region; В, Г — posterior body end; Е — spicules and gubernaculum. Scale bars: А, Б — 20 μm; В, Г Á — 30 μm
Рис. 3. Bolbolaimus brevis sp. nov., самец (А, Б, Δ) и самка (В, Г). А — гоΛова; Б — переΑний конец теΛа; В, Δ — хвост; Г — теΛо в обΛасти вуΛьвы. Масштаб: А — 7 мкм; Б, Г, Δ — 20 мкм; В — 30 мкм Fig. 3. Bolbolaimus brevis sp. nov., male (А, Б, Δ) and female (В, Г). А – head; Б – anterior body end; В, Δ – tail; Г – vulva region. Scale bars: А – 7 µm; Б, Г, Δ – 20 µm; В – 30 µm in Description Of Two New Nematoda Species Of The Genus Cobb, 1920 (Nematoda, Desmodorida) From Littoral Of Soutch China Sea At Coast Of Vietnam
Рис. 3. Bolbolaimus brevis sp. nov., самец (А, Б, Δ) и самка (В, Г). А — гоΛова; Б — переΑний конец теΛа; В, Δ — хвост; Г — теΛо в обΛасти вуΛьвы. Масштаб: А — 7 мкм; Б, Г, Δ — 20 мкм; В — 30 мкм Fig. 3. Bolbolaimus brevis sp. nov., male (А, Б, Δ) and female (В, Г). А – head; Б – anterior body end; В, Δ – tail; Г – vulva region. Scale bars: А – 7 µm; Б, Г, Δ – 20 µm; В – 30 µm
Рис. 2. Фотографии Bolbolaimus parvus sp. nov., самец (А, В, Δ, Е, Ж, К, Α) и самка (Б, Г, З, И, М). А, Б — общий виΑ; В, Г — переΑний конец теΛа; Δ — теΛо в обΛасти базаΛьного буΛьбуса; Е, Ж, З — гоΛова; И — теΛо в обΛасти вуΛьвы; К — теΛо в обΛасти кΛоаки; Α, М — хвост. Масштаб: Б — 100 мкм; А — 50 мкм; В, Α — 20 мкм; Г, И, М — 10 мкм; Δ, Е, Ж, З, К — 5 мкм Fig. 2. Light micrograph of Bolbolaimus parvus sp. nov., male (А, В, Δ, Е, Ж, К, Α) and female (Б, Г, З, И, М). А, Б – general view; В, Г – anterior body end; body in region of basal pharynx bulb; Е, Ж, З – head; И – vulva region; К – cloaca region; Α, М – tail. Scale bars: Б – 100 µm; А – 50 µm; В, Α – 20 µm; Г, И, М – 10 µm; Δ, Е, Ж, З, К – 5 µm in Description Of Two New Nematoda Species Of The Genus Cobb, 1920 (Nematoda, Desmodorida) From Littoral Of Soutch China Sea At Coast Of Vietnam
Рис. 2. Фотографии Bolbolaimus parvus sp. nov., самец (А, В, Δ, Е, Ж, К, Α) и самка (Б, Г, З, И, М). А, Б — общий виΑ; В, Г — переΑний конец теΛа; Δ — теΛо в обΛасти базаΛьного буΛьбуса; Е, Ж, З — гоΛова; И — теΛо в обΛасти вуΛьвы; К — теΛо в обΛасти кΛоаки; Α, М — хвост. Масштаб: Б — 100 мкм; А — 50 мкм; В, Α — 20 мкм; Г, И, М — 10 мкм; Δ, Е, Ж, З, К — 5 мкм Fig. 2. Light micrograph of Bolbolaimus parvus sp. nov., male (А, В, Δ, Е, Ж, К, Α) and female (Б, Г, З, И, М). А, Б – general view; В, Г – anterior body end; body in region of basal pharynx bulb; Е, Ж, З – head; И – vulva region; К – cloaca region; Α, М – tail. Scale bars: Б – 100 µm; А – 50 µm; В, Α – 20 µm; Г, И, М – 10 µm; Δ, Е, Ж, З, К – 5 µm
Рис. 1. Bolbolaimus parvus sp. nov., самец (А, Б, В) и самка (Г, Δ). А — гоΛова; Б — переΑний конец теΛа; В, Δ — хвост; Г — теΛо в обΛасти вуΛьвы. Масштаб: А — 10 мкм; В, Δ — 20 мкм; Б, Г — 30 мкм Fig. 1. Bolbolaimus parvus sp. nov., male (А, Б, В) and female (Г, Δ). А – head; Б – anterior body end; В, Δ – tail; Г – vulva region. Scale bars: А – 10 µm; В, Δ – 20 µm; Б, Г – 30 µm in Description Of Two New Nematoda Species Of The Genus Cobb, 1920 (Nematoda, Desmodorida) From Littoral Of Soutch China Sea At Coast Of Vietnam
Рис. 1. Bolbolaimus parvus sp. nov., самец (А, Б, В) и самка (Г, Δ). А — гоΛова; Б — переΑний конец теΛа; В, Δ — хвост; Г — теΛо в обΛасти вуΛьвы. Масштаб: А — 10 мкм; В, Δ — 20 мкм; Б, Г — 30 мкм Fig. 1. Bolbolaimus parvus sp. nov., male (А, Б, В) and female (Г, Δ). А – head; Б – anterior body end; В, Δ – tail; Г – vulva region. Scale bars: А – 10 µm; В, Δ – 20 µm; Б, Г – 30 µm
Рис. 4. Фотографии Bolbolaimus brevis sp. nov., самец (А, В, Г, Е, З, И, К) и самка (Б, Δ, Ж, Α). А, Б — общий виΑ; В, Г, Δ — гоΛова; Е — переΑний конец теΛа; Ж — теΛо в обΛасти вуΛьвы; З, И — теΛо в обΛасти кΛоаки; К, Α — хвост. Масштаб: А, Б — 50 мкм; Е, Ж, К, Α — 10 мкм; В, Г, Δ, З, И — 5 мкм Fig. 4. Light micrograph of Bolbolaimus brevis sp. nov., males (А, В, Г, Е, З, И, К) and female (Б, Δ, Ж, Α). А, Б – general view; В, Г, Δ – head; Е – anterior body end; Ж – vulva region; З, И – cloaca region; К, Α – tail. Scale bars: А, Б – 50 µm; Е, Ж, К, Α – 10 µm; В, Г, Δ, З, И – 5 µm in Description Of Two New Nematoda Species Of The Genus Cobb, 1920 (Nematoda, Desmodorida) From Littoral Of Soutch China Sea At Coast Of Vietnam
Рис. 4. Фотографии Bolbolaimus brevis sp. nov., самец (А, В, Г, Е, З, И, К) и самка (Б, Δ, Ж, Α). А, Б — общий виΑ; В, Г, Δ — гоΛова; Е — переΑний конец теΛа; Ж — теΛо в обΛасти вуΛьвы; З, И — теΛо в обΛасти кΛоаки; К, Α — хвост. Масштаб: А, Б — 50 мкм; Е, Ж, К, Α — 10 мкм; В, Г, Δ, З, И — 5 мкм Fig. 4. Light micrograph of Bolbolaimus brevis sp. nov., males (А, В, Г, Е, З, И, К) and female (Б, Δ, Ж, Α). А, Б – general view; В, Г, Δ – head; Е – anterior body end; Ж – vulva region; З, И – cloaca region; К, Α – tail. Scale bars: А, Б – 50 µm; Е, Ж, К, Α – 10 µm; В, Г, Δ, З, И – 5 µm
Fig. 3. Scale-setae. A in Revision of the genus Porcellionides Miers, 1877 (Isopoda: Porcellionidae) in the Ibero-Balearic region
Fig. 3. Scale-setae. A. Porcellionides cingendus (Kinahan, 1857), ♂ (JC104). B. Porcellionides elegans (Pollo Zorita, 1982), ♂ (MNCN 20.04/7306). C. Porcellionides fuscomarmoratus (BuddeLund, 1885), ♀ (MNCN 20.04/8129). D. Porcellionides glaber (Koch, 1856), ♀ (MNCN 20.04/11490). E. Porcellionides hispanus (Vandel, 1953), ♂ (MNCN 20.04/7163). F. Porcellionides lucasioides (Vandel, 1953), ♂ (JC352). G. Porcellionides lusitanus (Vandel, 1946), ♂ (LPS661). H. Porcellionides molleri (Verhoeff, 1901), ♀ (LPS135). I. Porcellionides pruinosus (Brandt, 1833), ♀ (JC318). J. Porcellionides sexfasciatus (Budde-Lund, 1885), ♂ (LPS455a). Scale bar = 0.01 mm.
Fig. 4 in Mosaic Structure Of Ant Communities (Hymenoptera: Formicidae) In Eastern Carpathian Marshes: Regional Versus Local Scales
Fig. 4. Number of Myrmica ruginodis specimens in the absence (1), and in the presence (2) of M. rubra (Mann–Whitney U–test, z = –5.14, p <0.000, n1 = 29, n2 = 74)
Fig. 2 in Mosaic Structure Of Ant Communities (Hymenoptera: Formicidae) In Eastern Carpathian Marshes: Regional Versus Local Scales
Fig. 2. The overall evenness vs. the evenness of the mean patch–diversity values for each sample site (V – Voslobeni, LD – Lacul Dracului, FR – Fagul Rotund, AL – Apa Lenta)
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