20 research outputs found

    Sequences alignment of candidate HarmCSPs and HassCSPs.

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    <p>All these CSPs were characteristic of four conserved cysteine residues marked with “▽”.</p

    Phylogenetic tree of CSPs <i>H</i>. <i>armigera</i>, <i>H</i>. <i>assulta</i> and other Lepidoptera insects.

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    <p>Harm: <i>H</i>. <i>armigera</i> (red), Hass: <i>H</i>. <i>assulta</i> (blue), Hvir: <i>H</i>. <i>virescens</i> (black), Bm: <i>B</i>. <i>mori</i> (aquamarine), Csup: <i>C</i>. <i>suppressalis</i> (cyan). The red and blue pentastars represented newly identified HarmCSPs and HassCSPs respectively.</p

    Phylogenetic tree of OBPs from <i>H</i>. <i>armigera</i>, <i>H</i>. <i>assulta</i> and other Lepidoptera insects.

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    <p>Harm: <i>H</i>. <i>armigera</i> (red), Hass: <i>H</i>. <i>assulta</i> (blue), Hvir: <i>H</i>. <i>virescens</i> (black), Bm: <i>B</i>. <i>mori</i> (aquamarine), Msex: <i>M</i>. <i>sexta</i> (cyan) The whole tree can be divided into six branches including GOBP/PBP, CRLBP, Plus-C, Minus-C, ABPI and ABPII. The red and blue circles represented newly identified HarmOBPs and HassOBPs respectively.</p

    Sequences alignment of candidate HarmOBPs and HassOBPs.

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    <p>The conserved cysteine residues were marked with “▽”. All these OBPs were assignment into CRLBP with six conserved cysteine residues, Minus-C with four conserved cysteine residues and Plus-C with more than more than six conserved cysteine residues.</p

    Unigenes of candidate chemosensory proteins in larval chemosensory tissues of <i>H</i>. <i>armigera</i> and <i>H</i>. <i>assulta</i>.

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    <p>Unigenes of candidate chemosensory proteins in larval chemosensory tissues of <i>H</i>. <i>armigera</i> and <i>H</i>. <i>assulta</i>.</p

    Effect of Surface Modifying Biopolymers on Sand Cohesion

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    Coastal erosion is a substantial problem in the United States and throughout the world. A novel approach to mitigating this problem is through the application of surface-modifying biopolymers to sand on beaches. Field research conducted by Dr. Amine Dahmani has shown that these organic complexes can coat granular sediments and increase sediment cohesion, thereby decreasing the erodability of the sediment. The goal of this thesis is to quantify the impact of proprietary surface-modifying biopolymer formulations on sand cohesion in order to better engineer this innovative solution for sand retention and potentially contaminated sediment sand cap stabilization. The impact of the biopolymer treatment on sand cohesion was evaluated with the use of the direct shear test (ASTM D3080). Testing was performed on both untreated control sand samples and sand samples treated with various dosages of biopolymer. Several variations of the testing method were evaluated in order to develop an appropriate testing protocol. The results indicate that treating sand with biopolymers can significantly increase sand cohesion. In addition, it was determined that this increased cohesion is directly related to the concentration of biopolymer

    The Duty to Disclose and the Prisoner\u27s Dilemma: Laidlaw v. Organ

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    <p>The shown tree was constructed using FastTree based on alignment results of MAFFT. Harm: <i>H. armigera</i> (black), Hass: <i>H. assulta</i> (red), Bmor: <i>B. mori</i> (blue), Hvir: <i>H. virescens</i> (purple).</p
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