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7篇 您的检索式:作者名="Rivera NI"
    题名 作者 年代 出处 被引量
1The transition metals copper and iron in neurodegenerative diseases显示文摘Rivera MS Perez NI Rios C 2010Chem Biol Interact2010,186,23:1
2The role of C-reactive protein as a prog-nostic indicator in advanced cancer显示文摘Mahmoud FA Rivera NI 2002Curr Oncol Rep2002,4,3:1
3The role of C-reactive protein as a prognostic indicator in advanced cancer 显示文摘Mahmoud FA Rivera NI 2007Current Oncology Reports2007,4,3:1
4The role of C-reactive protein as a prog-nos- tic indicator in advanced cancer 显示文摘Mahmoud FA Rivera NI 2002Curr Oncol Rep2002,4,3:1
5The role of C-reactive protein as a prognostic indicator in advanced cancer 显示文摘Mahmoud FA Rivera NI 2002Current Oncology Reports2002,4,3:1
6Grassy stunt disease of rice and its transmission by the planthopper Nilaparvata Lugens Stal显示文摘 Pinsker NI Rivera CT 1966Plant disease Report1966,50,:1
7GWAS identifies candidate genes controlling adventitious rooting in Populus trichocarpa显示文摘Adventitious rooting(AR)is critical to the propagation,breeding,and genetic engineering of trees.The capacity for plants to undergo this process is highly heritable and of a polygenic nature;however,the basis of its genetic variation is largely uncharacterized.To identify genetic regulators of AR,we performed a genome-wide association study(GWAS)using 1148 genotypes of Populus trichocarpa.GWASs are often limited by the abilities of researchers to collect precise phenotype data on a high-throughput scale;to help overcome this limitation,we developed a computer vision system to measure an array of traits related to adventitious root development in poplar,including temporal measures of lateral and basal root length and area.GWAS was performed using multiple methods and significance thresholds to handle non-normal phenotype statistics and to gain statistical power.These analyses yielded a total of 277 unique associations,suggesting that genes that control rooting include regulators of hormone signaling,cell division and structure,reactive oxygen species signaling,and other processes with known roles in root development.Numerous genes with uncharacterized functions and/or cryptic roles were also identified.These candidates provide targets for functional analysis,including physiological and epistatic analyses,to better characterize the complex polygenic regulation of AR.Michael F.Nagle Jialin Yuan Damanpreet Kaur Cathleen Ma Ekaterina Peremyslova Yuan Jiang Bahiya Zahl Alexa Niño de Rivera Wellington Muchero Li Fuxin Steven H.Strauss 2023Horticulture Research2023,10,8:0
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