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  1. 1621

    Genetic diversity and reproductive trait selection signal analysis of Bohuai goats based on whole genome sequencing by Yuqiao Zhang, Hua He, Qinwei Yu, Xingya Song, Jun Ma, Jiamei Wang, Yongpan Wang, Yu Jiang, Zejun Xu, Xianwei Wang, Yongzhen Huang

    Published 2025-07-01
    “…The analysis of population structure showed that there was a close genetic relationship between Bohuai goat and Boer goat, which was significantly different from that of Chinese native breeds. …”
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  2. 1622

    Genetic diversity analysis of four Parabramis pekinensis populations based on microsatellite markers by Yuting Liu, Chunmei Yan, Haibo Li, Xiangqin Jin, Peng Liu, Weiqiang Chen, Huiji Liu, Ying Zhang, Jianan Liu

    Published 2025-07-01
    “…Abstract To investigate the germplasm differences between northern and southern populations of Parabramis pekinensis and analyze their genetic diversity and population structure, this study employed 10 developed microsatellite markers to analyze 133 individuals collected from the Yangtze River Basin (Jiangsu JS, Hunan HN) and the Amur River Basin (Jilin JL, Heilongjiang HLJ). …”
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  3. 1623
  4. 1624

    Landscape and variation of novel retroduplications in 26 human populations. by Yan Zhang, Shantao Li, Alexej Abyzov, Mark B Gerstein

    Published 2017-06-01
    “…Based solely on retroduplication variation, we built phylogenetic trees of human populations; these represent superpopulation structure well and indicate that variable retroduplications are effective population markers. …”
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  5. 1625

    Intraspecific Functional Trait Variation and Coordination in Schizachyrium scoparium by Jacob Zeldin, Tessa Dethlefs, Stacy Caeiro, Daniel Puga, Andrea Kramer

    Published 2025-07-01
    “…We asked (1) how regional populations of S. scoparium differ in their functional traits, (2) how functional trait variation in S. scoparium is structured among and within populations, and (3) how above‐ and below‐ground functional traits of S. scoparium coordinate and describe axes of functional trade‐offs. …”
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  6. 1626

    REPRESENTATION OF THE STRATEGY OF INTERCEPTION BY PITCH VARIATIONS IN POLITICAL DEBATES by Aytan Musa Аllahverdiyeva

    Published 2024-12-01
    “…Interruptions disrupt the prosodic structure of the statement and conflict with phonetic signals of role switching, such as high/low pitch or terminal tone variations. …”
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  7. 1627

    Chloroplast genome features and intraspecific variation of Rosa praelucens by WANG Qigang1, CAO Shirui1,2, WANG Huichun1, MA Changle2, YAN Huijun1, QIU Xianqin1, JING Weikun1, JIAN Hongying1*

    Published 2025-01-01
    “…These results indicate that the chloroplast genomes are highly conserved in size, sequence and structure within R. praelucens. The rich intraspecific phenotypic diversity is not caused by the variation of chloroplast genomes among different individual plants.…”
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  8. 1628
  9. 1629
  10. 1630

    Seasonal variations in public perceptions of diphtheria in Northern Nigeria by Abara Erim, Habibat Ohunene Lawal, Chizaram Anselm Onyeaghala, Chinenye Claire Chukwu-Mba, Olufunke Olayemi Ajibade, Ukamaka Gladys Okafor, Okechi Eberechukwu Nzedibe

    Published 2025-06-01
    “…Data were collected by trained fieldworkers over 12 months via structured questionnaires divided into four sections: demographics, public awareness, perceived risk, and vaccination attitudes. …”
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  11. 1631

    Genome-wide analysis of Schistosoma mansoni reveals limited population structure and possible praziquantel drug selection pressure within Ugandan hot-spot communities. by Tushabe John Vianney, Duncan J Berger, Stephen R Doyle, Geetha Sankaranarayanan, Joel Serubanja, Prossy Kabuubi Nakawungu, Fred Besigye, Richard E Sanya, Nancy Holroyd, Fiona Allan, Emily L Webb, Alison M Elliott, Matthew Berriman, James A Cotton

    Published 2022-08-01
    “…The impact of PZQ treatment on schistosome genetics remains poorly understood, and is limited by a lack of high-resolution genetic data on the population structure of parasites within these control areas. …”
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  12. 1632

    Reconstruction of Typhoon Structure Using 3-Dimensional Doppler Radar Radial Velocity Data with the Multigrid Analysis: A Case Study in an Idealized Simulation Context by Hongli Fu, Xinrong Wu, Wei Li, Yuanfu Xie, Guijun Han, Shaoqing Zhang

    Published 2016-01-01
    “…These data are used to reconstruct the synthetic 3D “typhoon” structure by the STMAS and the traditional 3D variational (3D-Var) analysis. …”
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  13. 1633

    The Mitochondrial Genome of the Imperiled Goliath Grouper Epinephelus itajara: Selective Pressures in Protein Coding Genes, Secondary Structure of tRNA Genes, and Phylogenetic Plac... by Kyla Padgett, J. Antonio Baeza

    Published 2025-07-01
    “…Secondary structure analysis of the tRNA genes displayed typical cloverleaf secondary structures, except for trnS1, which lacked a complete D‐arm. …”
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  14. 1634

    A Single-Field Finite Difference Time-Domain Method Verified Using a Novel Antenna Design with an Artificial Magnetic Conductor Enhanced Structure by Yongjun Qi, Weibo Liang, Yilan Hu, Liang Zhang, Cheng You, Yuxiang Zhang, Tianrun Yan, Hongxing Zheng

    Published 2025-04-01
    “…A double-layer, dual-frequency AMC structure is designed to improve the isolation between the antenna and the human body. …”
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  15. 1635

    Fluid Force Reduction and Flow Structure at a Coastal Building with Different Outer Frame Openings Following Primary Defensive Alternatives: An Experiment-Based Review by Kannangara Dissanayakalage Charitha Rangana Dissanayaka, Norio Tanaka

    Published 2024-10-01
    “…Understanding a tsunami’s force and the flow structure variation across various building configurations are essential to engineering designs. …”
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  16. 1636

    Multi-year variability of summer phytoplankton biomass and size structure in the northern Chukchi and East Siberian Seas, Arctic Ocean: role of light and nutrient availability by Youngju Lee, Kyoung-Ho Cho, Jinyoung Jung, Jong Kuk Moon, Eun Jin Yang, Sung-Ho Kang

    Published 2023-08-01
    “…To investigate how local physical forcing affects phytoplankton biomass and communities in this area, the multi-year (2015-2020) distributions of summer (August) chlorophyll-a concentrations and size structures using data collected by the Korea-Arctic Ocean Observing System (K-AOOS) program were investigated. …”
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  17. 1637

    Seasonal Effects of Nakdong River Freshwater Inflow and Coastal Environmental Changes on Phytoplankton Community Structure, Including Harmful Species, in Eastern Jinhae Bay, Korea by Seung Ho Baek, Chung Hyeon Lee, Mungi Kim, Seongjin Hong, Young Kyun Lim

    Published 2025-03-01
    “…Rainfall-induced freshwater influx is a major nutrient source in estuarine and coastal waters, often driving changes in phytoplankton community structure and blooms. In Jinhae Bay of Korea, a critical area for shellfish aquaculture, the interaction between the Nakdong River discharge and the Tsushima Warm Current creates a frontal zone conducive to phytoplankton proliferation. …”
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  18. 1638

    Soil Properties and Rhizosphere Microbes Community Structure Reveal Nitrogen Uptake Preferences and Nitrogen Use Efficiency of Two Ecotypes of <i>Paphiopedilum micranthum</i> by Yin Li, Jiaxue Hu, Yuehong Ruan, Qian Wu, Yan Yue, Zongyan Li

    Published 2024-10-01
    “…A total of 73 samples from the core distribution areas in China, representing all habitats in two sites, were analyzed for soil differences by comparing edaphic properties and microbial community structure based on high-throughput sequencing of bacterial 16S rRNA genes and fungal ITS region sequences, alongside soil physiochemical data. …”
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  19. 1639
  20. 1640

    Resolved ALMA [C ii] 158 μm Observations at Cosmic Noon: Interstellar Medium Structure and Dynamics of the Starbursting QSO SDSS J1000 by Christopher Rooney, Bo Peng, Amit Vishwas, Gordon Stacey, Thomas Nikola, Cody Lamarche, Catie Ball, Carl Ferkinhoff, Drew Brisbin, Steven Hailey-Dunsheath

    Published 2025-01-01
    “…We present spatially resolved Atacama Large Millimeter/submillimeter Array Band 9 observations of the [C ii ] 158 μ m fine structure line from an optically selected quasar, SDSS J100038.01+020822.4 (J1 000 ), at z = 1.8275. …”
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