Search Results - "Nature Genetics"

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  1. 1

    Natural genetic variation in zinc (Zn) accumulation in Brassicaceae by Ó Lochlainn, Seosamh

    Published 2011
    “…Most plant species have a shoot Zn concentration ([Zn]shoot) <0.1 mg Zn g-1 dry weight (DW), but extensive natural genetic variation occurs. For example, within the Brassicaceae, some Noccaea (Thlaspi) and Arabidopsis species hyperaccumulate [Zn]shoot >10 mg Zn g-1 DW. …”
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  2. 2

    USM RESEARCH ENTRIES IN HIGH-IMPACT JOURNALS STAMP THEIR MARK ON THE WORLD STAGE by MPRC, Pusat Media & Perhubungan Awam

    Published 2016
    “…Omar Osman was delighted with the achievements of two USM academicians in publishing their research outcomes in two highimpact factor journals, namely Lancet Journal and Nature Genetics Journal recently.…”
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    HASIL PENYELIDIKAN USM DALAM JURNAL BERIMPAK FAKTOR - LETAK NAMA DI PERSADA DUNIA by MPRC, Pusat Media & Perhubungan Awam

    Published 2016
    “…Omar Osman gembira dengan pencapaian dua pensyarah yang berjaya menerbitkan hasil penyelidikan dalam jurnal berimpak faktor tinggi iaitu Lancet Journal dan Nature Genetics Journal baru-baru ini.…”
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    Mutational signatures in esophageal adenocarcinoma define etiologically distinct subgroups with therapeutic relevance by Secrier, Maria, Li, Xiaodun, de Silva, Nadeera, Eldridge, Matthew D., Contino, Gianmarco, Bornschein, Jan, MacRae, Shona, Grehan, Nicola, O'Donovan, Maria, Miremadi, Ahmad, Yang, Tsun-Po, Bower, Lawrence, Chettouh, Hamza, Crawte, Jason, Galeano-Dalmau, Núria, Grabowska, Anna, Saunders, John, Underwood, Tim, Waddell, Nicola, Barbour, Andrew P., Nutzinger, Barbara, Achilleos, Achilleas, Edwards, Paul A.W., Lynch, Andy G., Tavaré, Simon, Fitzgerald, Rebecca C., Noorani, Ayesha, Elliott, Rachael Fels, Weaver, Jamie, Ross-Innes, Caryn, Smith, Laura, Abdullahi, Zarah, de la Rue, Rachel, Cluroe, Alison, Malhotra, Shalini, Hardwick, Richard, Ford, Hugo, Smith, Mike L., Davies, Jim, Turkington, Richard, Hayes, Stephen J., Ang, Yeng, Preston, Shaun R., Oakes, Sarah, Bagwan, Izhar, Save, Vicki, Skipworth, Richard J.E., Hupp, Ted R., O'Neill, J. Robert, Tucker, Olga, Taniere, Philippe, Noble, Fergus, Owsley, Jack, Lovat, Laurence, Haidry, Rehan, Eneh, Victor, Crichton, Charles, Barr, Hugh, Shepherd, Neil, Old, Oliver, Lagergren, Jesper, Gossage, James, Davies, Andrew, Chang, Fuju, Zylstra, Janine, Sanders, Grant, Berrisford, Richard, Harden, Catherine, Bunting, David, Lewis, Mike, Cheong, Ed, Kumar, Bhaskar, Parsons, Simon L., Soomro, Irshad, Kaye, Philip, Collier, Pamela, Igali, Laszlo, Welch, Ian, Scott, Michael, Sothi, Shamila, Suortamo, Sari, Lishman, Suzy, Beardsmore, Duncan, Francies, Hayley E., Garnett, Mathew J., Pearson, John V., Nones, Katia, Patch, Ann-Marie, Grimmond, Sean M.

    Published 2016
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    Genetic loci associated with chronic obstructive pulmonary disease overlap with loci for lung function and pulmonary fibrosis by Hobbs, Brian D., de Jong, Kim, Lamontagne, Maxime, Bossé, Yohan, Shrine, Nick, Artigas, María Soler, Wain, Louise V., Hall, Ian P., Jackson, Victoria E., Wyss, Annah B., London, Stephanie J., North, Kari E., Franceschini, Nora, Strachan, David P., Beaty, Terri H., Hokanson, John E., Crapo, James D., Castaldi, Peter J., Chase, Robert P., Bartz, Traci M., Heckbert, Susan R., Psaty, Bruce M., Gharib, Sina A., Zanen, Pieter, Lammers, Jan W., Oudkerk, Matthijs, Groen, H.J., Locantore, Nicholas, Tal-Singer, Ruth, Rennard, Stephen I., Vestbo, Jørgen, Timens, Wim, Paré, Peter D., Latourelle, Jeanne C., Dupuis, Josée, O'Connor, George T., Wilk, Jemma B., Kim, Woo Jin, Lee, Mi Kyeong, Oh, Yeon-Mok, Vonk, Judith M., de Koning, Harry J., Leng, Shuguang, Belinsky, Steven A., Tesfaigzi, Yohannes, Manichaikul, Ani, Wang, Xin-Qun, Rich, Stephen S., Barr, R. Graham, Sparrow, David, Litonjua, Augusto A., Bakke, Per, Gulsvik, Amund, Lahousse, Lies, Brusselle, Guy G., Stricker, Bruno H., Uitterlinden, André G., Ampleford, Elizabeth J., Bleecker, Eugene R., Woodruff, Prescott G., Meyers, Deborah A., Qiao, Dandi, Lomas, David A., Yim, Jae-Joon, Kim, Deog Kyeom, Hawrylkiewicz, Iwona, Sliwinski, Pawel, Hardin, Megan, Fingerlin, Tasha E., Schwartz, David A., Postma, Dirkje S., MacNee, William, Tobin, Martin D., Silverman, Edwin K., Boezen, H. Marike, Cho, Michael H.

    Published 2017
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  12. 12

    Genome-wide association analysis identifies six new loci associated with forced vital capacity by Loth, Daan W., Artigas, María Soler, Gharib, Sina A., Wain, Louise V., Franceschini, Nora, Koch, Beate, Pottinger, Tess D., Smith, Albert Vernon, Duan, Qing, Oldmeadow, Chris, Lee, Mi Kyeong, Strachan, David P., James, Alan L., Huffman, Jennifer E., Vitart, Veronique, Ramasamy, Adaikalavan, Wareham, Nicholas J., Kaprio, Jaakko, Wang, Xin-Qun, Trochet, Holly, Kähönen, Mika, Flexeder, Claudia, Albrecht, Eva, Lopez, Lorna M., de Jong, Kim, Thyagarajan, Bharat, Alves, Alexessander Couto, Enroth, Stefan, Omenaas, Ernst, Joshi, Peter K., Fall, Tove, Viñuela, Ana, Launer, Lenore J., Loehr, Laura R., Fornage, Myriam, Li, Guo, Wilk, Jemma B., Tang, Wenbo, Manichaikul, Ani, Lahousse, Lies, Harris, Tamara B., North, Kari E., Rudnicka, Alicja R., Hui, Jennie, Gu, Xiangjun, Lumley, Thomas, Wright, Alan F., Hastie, Nicholas D., Campbell, Susan, Kumar, Rajesh, Pin, Isabelle, Scott, Robert A., Pietiläinen, Kirsi H., Surakka, Ida, Liu, Yongmei, Holliday, Elizabeth G., Schulz, Holger, Heinrich, Joachim, Davies, Gail, Vonk, Judith M., Wojczynski, Mary, Pouta, Anneli, Johansson, Åsa, Wild, Sarah H., Ingelsson, Erik, Rivadeneira, Fernando, Völzke, Henry, Hysi, Pirro G., Eiriksdottir, Gudny, Morrison, Alanna C., Rotter, Jerome I., Gao, Wei, Postma, Dirkje S., White, Wendy B., Rich, Stephen S., Hofman, Albert, Aspelund, Thor, Couper, David, Smith, Lewis J., Psaty, Bruce M., Lohman, Kurt, Burchard, Esteban G., Uitterlinden, André G., Garcia, Melissa, Joubert, Bonnie R., McArdle, Wendy L., Musk, A Bill, Hansel, Nadia, Heckbert, Susan R., Zgaga, Lina, van Meurs, Joyce B.J., Navarro, Pau, Rudan, Igor, Oh, Yeon-Mok, Redline, Susan, Jarvis, Deborah L., Zhao, Jing Hua, Rantanen, Taina, O'Connor, George T., Ripatti, Samuli, Scott, Rodney J., Karrasch, Stefan, Grallert, Harald, Gaddis, Nathan C., Starr, John M., Wijmenga, Cisca, Minster, Ryan L., Lederer, David J., Pekkanen, Juha, Gyllensten, Ulf, Campbell, Harry, Morris, Andrew P., Gläser, Sven, Hammond, Christopher J., Burkart, Kristin M, Beilby, John, Kritchevsky, Stephen B., Gudnason, Vilmundur, Hancock, Dana B., Williams, O Dale, Polasek, Ozren, Zemunik, Tatijana, Kolcic, Ivana, Petrini, Marcy F., Wjst, Matthias, Kim, Woo Jin, Porteous, David J., Smith, Blair H., Viljanen, Anne, Heliövaara, Markku, Attia, John R., Sayers, Ian, Hampel, Regina, Gieger, Christian, Deary, Ian J, Boezen, H. Marike, Newman, Anne, Jarvelin, Marjo-Riitta, Wilson, James F, Lind, Lars, Stricker, Bruno H., Teumer, Alexander, Spector, Timothy D., Melén, Erik, Peters, Marjolein J., Lange, Leslie A., Barr, R. Graham, Bracke, Ken R., Verhamme, Fien M., Sung, Joohon, Hiemstra, Pieter S., Cassano, Patricia A., Sood, Akshay, Hayward, Caroline, Dupuis, Josée, Hall, Ian P., Brusselle, Guy G., Tobin, Martin D., London, Stephanie J.

    Published 2014
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    Load flow method using genetic algorithm by Lok, C. W., Zin, A. A. M., Mustafa, M. W., Lo, Kueiming Lun

    Published 2003
    “…Genetic algorithms (GAs) are search methods based on the natural selection and natural genetics, while power flow studies, commonly known as load flow, form an important part of power system analysis. …”
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  14. 14

    A genetic local tuning algorithm for a class of combinatorial networks design problems by Sayoud, H., Takahashi, K., Vaillant, B.

    Published 2001
    “…This letter presents a genetic local search (GALS) mechanism applied on two stages on the initial genetic population, An elite nondominated set of solutions is selected, an intermediate population (IP) composed of the elite and the improved solutions by natural genetic operators is constructed and then a Nelder and Mead simplex downhill method (SDM) is applied to some solutions of the IF. …”
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    Design of digital circuit structure based on evolutionary algorithm method by Chong, Kok Hen, Aris, Ishak, Bashi, Senan Mahmood, Koh, Johnny Siaw Paw

    Published 2008
    “…This method is based on randomized search techniques mimicking natural genetic evolution. The proposed method is an iterative procedure that consists of a constant-size population of individuals, each one encoding a possible solution in a given problem space. …”
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  17. 17

    A review: improved iron and zinc contents in rice through biofortification techniques / Raihana Nadhirah Mohd Zahid by Mohd Zahid, Raihana Nadhirah

    Published 2019
    “…Conventional breeding is the development or improvement of cultivars using conservative tools for manipulating plant genome within the natural genetic boundaries of the species. Meanwhile, transgenic strategies is rice contain foreign gene to get the better characteristics of rice. …”
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  18. 18

    Identification and characterization of resistance to cowpea aphid (Aphis craccivora Koch) in Medicago truncatula by Kamphuis, L., Gao, L., Singh, Karambir

    Published 2012
    “…In many of these crops there is no natural genetic resistance to this sap-sucking insect or resistance genes have been overcome by newly emerged CPA biotypes. …”
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    The improvement of drought tolerance in rice by Mohammed, Umar

    Published 2017
    “…The use of existing natural genetic variation in African genotypes has been shown to be another promising route, especially because drought tolerance is a complex multi-gene trait. …”
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