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10901por Lacombe, Séverine, Nagasaki, Hiroshi, Santi, Carole, Duval, David, Piégu, Benoît, Bangratz, Martine, Breitler, Jean-Christophe, Guiderdoni, Emmanuel, Brugidou, Christophe, Hirsch, Judith, Cao, Xiaofeng, Brice, Claire, Panaud, Olivier, Karlowski, Wojciech M, Sato, Yutaka, Echeverria, Manuel“…We show that this dual osa-miR159a.2-osa-miR159a.1 structure is conserved in distant rice species and maize. Finally we show that the predicted mRNA target of osa-miR159a.2 encoding a GT-like transcription factor is cleaved in vivo at the expected site. …”
Publicado 2008
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10902Genome-wide association studies of seven agronomic traits under two sowing conditions in bread wheatpor Jamil, Muhammad, Ali, Aamir, Gul, Alvina, Ghafoor, Abdul, Napar, Abdul Aziz, Ibrahim, Amir M. H., Naveed, Naima Huma, Yasin, Nasim Ahmad, Mujeeb-Kazi, Abdul“…A set of 125 spring wheat genotypes from International Maize and Wheat Improvement Centre (CIMMYT-Mexico) was evaluated for phenological and yield related traits at three locations in Pakistan under normal sowing time and late sowing time for expose to prolonged high temperature. …”
Publicado 2019
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10903por Folberth, Christian, Elliott, Joshua, Müller, Christoph, Balkovič, Juraj, Chryssanthacopoulos, James, Izaurralde, Roberto C., Jones, Curtis D., Khabarov, Nikolay, Liu, Wenfeng, Reddy, Ashwan, Schmid, Erwin, Skalský, Rastislav, Yang, Hong, Arneth, Almut, Ciais, Philippe, Deryng, Delphine, Lawrence, Peter J., Olin, Stefan, Pugh, Thomas A. M., Ruane, Alex C., Wang, Xuhui“…This study explores differences in maize yield estimates from five GGCMs based on the public domain field-scale model Environmental Policy Integrated Climate (EPIC) that participate in the AgMIP Global Gridded Crop Model Intercomparison initiative. …”
Publicado 2019
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10904por Khan, Nadeem, You, Frank M., Datla, Raju, Ravichandran, Sridhar, Jia, Bosen, Cloutier, Sylvie“…Nine of these genes, i.e., LuABCC9, LuABCC10, LuABCG58, LuABCG59, LuABCG71, LuABCG72, LuABCG73, LuHMA3, and LuHMA4, were orthologous with the Cd associated genes in Arabidopsis, rice and maize. Ten motifs were identified from all ABC transporter and HMA genes. …”
Publicado 2020
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10905por Headley, Samuel A., Chapman, Donna J., Germain, Michael J., Evans, Elizabeth E., Hutchinson, Jasmin, Madsen, Karen L., Ikizler, Talat Alp, Miele, Emily M., Kirton, Kristyn, O’Neill, Elizabeth, Cornelius, Allen, Martin, Brian, Nindl, Bradley, Vaziri, Nosratola D.“…Supplementation with high amylose maize resistant starch type 2 (RS-2) can change the composition of the gut microbiota, and reduce markers of inflammation and oxidative stress in patients with end-stage renal disease. …”
Publicado 2020
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10906“…CONCLUSION: Based on rice circRNA and lncRNA data, a machine learning model for plant circRNA recognition was constructed in this study using random forest algorithm, and the model can also be applied to plant circRNA recognition such as Arabidopsis thaliana and maize. At the same time, after the completion of model construction, the machine learning model constructed and the programming scripts used in this study are packaged into a localized circRNA prediction software Pcirc, which is convenient for plant circRNA researchers to use.…”
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10907por Mondo, Elisabetta, Rinnovati, Riccardo, Spadari, Alessandro, Giacometti, Federica, Serraino, Andrea, Savini, Federica, Piva, Silvia“…Klebsiella variicola is a Gram-negative bacterium that was initially identified as an endophyte in soil and plants such as bananas, rice, sugar cane and maize but recent studies have identified this microorganism as an emerging pathogen in humans (Rodríguez-Medina et al., Emerg Microbes Infect 8:973–988, 2019; Fontana et al., J Clin Microbiol 57:e00825–18, 2019; Rosenblueth et al., Syst Appl Microbiol 27:27–35, 2004). …”
Publicado 2021
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10908por Qamar, Zahida, Nasir, Idrees Ahmad, Abouhaidar, Mounir G., Hefferon, Kathleen L., Rao, Abdul Qayyum, Latif, Ayesha, Ali, Qurban, Anwar, Saima, Rashid, Bushra, Shahid, Ahmad Ali“…In current study two problems were better addressed through the genetic modification of sugarcane for provision of resistance against insects and weedicide via the expression of two modified cane borer resistant CEMB-Cry1Ac (1.8 kb), CEMB-Cry2A (1.9 kb) and one glyphosate tolerant CEMB-GTGene (1.4 kb) genes, driven by maize Ubiquitin Promoter and nos terminator. Insect Bio-toxicity assays were carried out for the assessment of Cry proteins through mortality percent of shoot borer Chilo infuscatellus at 2nd instar larvae stage. …”
Publicado 2021
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10909por Huang, Bin, Huang, Zhinuo, Ma, Ruifang, Ramakrishnan, Muthusamy, Chen, Jialu, Zhang, Zhijun, Yrjälä, Kim“…Synteny analysis indicated that LBDs in the moso bamboo genome showed greater collinearity with those of O. sativa (rice) and Zea mays (maize) than with those of Arabidopsis and Capsicum annuum (pepper). …”
Publicado 2021
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10910por Gimenez, Sylvie, Seninet, Imène, Orsucci, Marion, Audiot, Philippe, Nègre, Nicolas, Nam, Kiwoong, Streiff, Réjane, d’Alençon, Emmanuelle“…We compared sRNA-Seq and RNA-Seq data between two pairs of taxa of Ostrinia and Spodoptera frugiperda sharing maize as host-plant. For the latter, we had previously carried out a reciprocal transplant experiment by feeding of the larvae of the Corn strain (Sf-C) and the Rice strain (Sf-R) on corn versus rice and characterized the mRNA and miRNA responses. …”
Publicado 2021
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10911por Wang, Guanying, Xu, Zhongping, Wang, Fuqiu, Huang, Yuefan, Xin, Yanfeng, Liang, Sijia, Li, Bo, Si, Huan, Sun, Lin, Wang, Qiongqiong, Ding, Xiao, Zhu, Xiangqian, Chen, Luo, Yu, Lu, Lindsey, Keith, Zhang, Xianlong, Jin, Shuangxia“…BACKGROUND: Base editors (BEs) display diverse applications in a variety of plant species such as Arabidopsis, rice, wheat, maize, soybean, and cotton, where they have been used to mediate precise base pair conversions without the collateral generation of undesirable double-stranded breaks (DSB). …”
Publicado 2022
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10912por Girgis, Hani Z.“…On two real data sets obtained from human microbiome and maize transposons, MeShClust v3.0 outperformed the related tools by wide margins, achieving 55%–300% improvement in cluster quality. …”
Publicado 2022
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10913“…Employing data from published genetic crosses, we estimated the role of non-additive gene action in the modulation of transcriptional landscapes in three domesticated plants: maize, sunflower, and chili pepper. Using A. thaliana, we assessed the correlation between gene regulatory network (GRN) connectivity properties, transcript abundance variation, and gene action. …”
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10914por Mahmood, Mohsin, Wang, Yunting, Ahmed, Waqas, Mehmood, Sajid, Ayyoub, Anam, Elnahal, Ahmed S. M., Li, Weidong, Zhan, Xin“…A pot experiment with maize evaluated the transformation of P into inorganic (Pi) and organic (Po) fractions and their contribution to P uptake. …”
Publicado 2023
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10915por Kruszka, Katarzyna, Pacak, Andrzej, Swida-Barteczka, Aleksandra, Stefaniak, Agnieszka K, Kaja, Elzbieta, Sierocka, Izabela, Karlowski, Wojciech, Jarmolowski, Artur, Szweykowska-Kulinska, Zofia“…In the case of miR168a-5p/168a-3p, we found the generation of stable, mature molecules from both pre-miRNA arms, confirming evolutionary conservation of the stability of both species, as shown in rice and maize. We suggest that miR1120, located within the 3(′) UTR of a protein-coding gene and described as a functional miRNA in wheat, may represent a siRNA generated from a mariner-like transposable element. …”
Publicado 2013
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10916por Robertson, Laura, Mushati, Phyllis, Eaton, Jeffrey W, Dumba, Lovemore, Mavise, Gideon, Makoni, Jeremiah, Schumacher, Christina, Crea, Tom, Monasch, Roeland, Sherr, Lorraine, Garnett, Geoffrey P, Nyamukapa, Constance, Gregson, Simon“…Eligible households in all clusters, including control clusters, had access to parenting skills classes and received maize seed and fertiliser in December, 2009, and August, 2010. …”
Publicado 2013
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10917por Tako, Elad, Reed, Spenser M, Budiman, Jessica, Hart, Jonathan J, Glahn, Raymond P“…Because of its tolerance to difficult growing conditions, it can be grown in areas where other cereal crops, such as maize, would not survive. It accounts for approximately 50% of the total world-production of millet. …”
Publicado 2015
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10918por Myers, John Peterson, Antoniou, Michael N., Blumberg, Bruce, Carroll, Lynn, Colborn, Theo, Everett, Lorne G., Hansen, Michael, Landrigan, Philip J., Lanphear, Bruce P., Mesnage, Robin, Vandenberg, Laura N., vom Saal, Frederick S., Welshons, Wade V., Benbrook, Charles M.“…To accommodate changes in GBH use patterns associated with genetically engineered, herbicide-tolerant crops, regulators have dramatically increased tolerance levels in maize, oilseed (soybeans and canola), and alfalfa crops and related livestock feeds. …”
Publicado 2016
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10919por Nekiunaite, Laura, Arntzen, Magnus Ø., Svensson, Birte, Vaaje-Kolstad, Gustav, Abou Hachem, Maher“…This study explores the secretomes of Aspergillus nidulans grown on cereal starches from wheat and high-amylose (HA) maize, as well as legume starch from pea for 5 days. …”
Publicado 2016
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10920por Maziarz, Mindy Patterson, Preisendanz, Sara, Juma, Shanil, Imrhan, Victorine, Prasad, Chandan, Vijayagopal, Parakat“…BACKGROUND: High-amylose maize resistant starch type 2 (HAM-RS2) stimulates gut-derived satiety peptides and reduces adiposity in animals. …”
Publicado 2017
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