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9421por Wang, Zhaojun, Li, Yiwen, Yang, Yushuang, Liu, Xin, Qin, Huanju, Dong, Zhenying, Zheng, Shuhai, Zhang, Kunpu, Wang, Daowen“…Among the three major food crops (rice, wheat and maize), wheat is unique in accumulating gluten proteins in its grains. …”
Publicado 2017
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9422por Montesinos-López, Osval A., Montesinos-López, Abelardo, Crossa, José, Montesinos-López, José Cricelio, Luna-Vázquez, Francisco Javier, Salinas-Ruiz, Josafhat, Herrera-Morales, José R., Buenrostro-Mariscal, Raymundo“…We used eight experimental genomic maize and wheat data sets to illustrate the new proposed variational Bayes approximation, and compared its predictions and implementation time with a standard Bayesian genomic model with G×E. …”
Publicado 2017
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9423“…The results showed that grain production has a high carbon footprint in 2013, i.e., 4052 kg ce/ha or 0.48 kg ce/kg for maize, 5455 kg ce/ha or 0.75 kg ce/kg for wheat and 11881 kg ce/ha or 1.60 kg ce/kg for rice. …”
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9424por Li, Na, Li, Shiming, Zhang, Kunpu, Chen, Wenjie, Zhang, Bo, Wang, Daowen, Liu, Dengcai, Liu, Baolong, Zhang, Huaigang“…The over-expression of ThMYC4E regulated anthocyanin biosynthesis with the coexpression of the MYB transcription factor ZmC1 from maize. ThMYC4E existed in the genomes of the addition, substitution and near isogenic lines with the blue aleurone trait derived from Th. ponticum, and could not be detected in any germplasm of T. urartu, T. monococcum, T. turgidum, Aegilops tauschii or T. aestivum, with white aleurone. …”
Publicado 2017
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9425por Evans, Anton F., O'Brien, Sarah R., Ma, Rong, Hager, Aaron G., Riggins, Chance W., Lambert, Kris N., Riechers, Dean E.“…Rapid detoxification of atrazine in naturally tolerant crops such as maize (Zea mays) and grain sorghum (Sorghum bicolor) results from glutathione S‐transferase (GST) activity. …”
Publicado 2017
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9426“…Many LMM have been reported in rice, wheat, maize, barley, Arabidopsis, etc., but little was reported in xylophyta. …”
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9427por Lee, Theresa, Park, Dami, Kim, Kihyun, Lim, Seong Mi, Yu, Nan Hee, Kim, Sosoo, Kim, Hwang-Yong, Jung, Kyu Seok, Jang, Ja Yeong, Park, Jong-Chul, Ham, Hyeonheui, Lee, Soohyung, Hong, Sung Kee, Kim, Jin-Cheol“…DA12 was active against the growth of mycotoxigenic F. asiaticum, F. graminearum, F. proliferatum, and F. verticillioides both in vitro and in planta (maize). Further screening using dual culture extended the activity range of strain DA12 against other fungal pathogens including Botrytis cinerea, Colletotrichum coccodes, Endothia parasitica, Fusarium oxysporum, Raffaelea quercus-mongolicae, and Rhizoctonia solani. …”
Publicado 2017
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9428por Selvaraj, Michael Gomez, Ishizaki, Takuma, Valencia, Milton, Ogawa, Satoshi, Dedicova, Beata, Ogata, Takuya, Yoshiwara, Kyouko, Maruyama, Kyonoshin, Kusano, Miyako, Saito, Kazuki, Takahashi, Fuminori, Shinozaki, Kazuo, Nakashima, Kazuo, Ishitani, Manabu“…The developed transgenic lines expressing AtGolS2 under the control of the constitutive maize ubiquitin promoter (Ubi:AtGolS2) also had higher levels of galactinol than the non‐transgenic control. …”
Publicado 2017
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9429por Soltani Orang, Fatemeh, Ranjbar Aghdam, Hossein, Abbasipour, Habib, Askarianzadeh, Alireza“…The larvae of pink stem borer were reared on cutting stems of maize. The results showed that temperature had statistically significant effect on developmental times of the all developmental stages. …”
Publicado 2014
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9430por Pétriacq, Pierre, Williams, Alex, Cotton, Anne, McFarlane, Alexander E., Rolfe, Stephen A., Ton, Jurriaan“…We show that the method is suitable for profiling the rhizosphere chemistry of Zea mays (maize) in agricultural soil, thereby demonstrating the applicability to different plant–soil combinations. …”
Publicado 2017
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9431por Mohamed, Bahaeldeen Babikar, Aftab, Beenish, Sarwar, Muhammad Bilal, Rashid, Bushra, Ahmad, Zarnab, Hassan, Sameera, Husnain, Tayyab“…The deduced amino acids of RMYB shared 83, 81, 80, 79, 72, 71, and 66% homology with Arabidopsis thaliana, Glycine max, Oryza sativa, Zea maize, Malus domestica, Populus tremula × Populus alba, and Medicago sativa specific MYB family, respectively. …”
Publicado 2017
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9432por Selva, J. P., Siena, L., Rodrigo, J. M., Garbus, I., Zappacosta, D., Romero, J. R., Ortiz, J. P. A., Pessino, S. C., Leblanc, O., Echenique, V.“…We explored floral transcriptomes to identify homologs of three candidate genes, for which mutations in Arabidopsis and maize mimic apomixis (AtAGO9/ZmAGO104, AtCMT3/ZmDMT102/ZmDMT105, and AtDDM1/ZmCHR106), and compared both their spatial and temporal expression patterns during reproduction in sexual and apomictic genotypes. …”
Publicado 2017
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9433por Campos, Maria Doroteia, Valadas, Vera, Campos, Catarina, Morello, Laura, Braglia, Luca, Breviario, Diego, Cardoso, Hélia G.“…The plant species selected for detection in feed samples were wheat, maize, barley, soybean, rice and sunflower as common components of feeds, and cotton, flax and peanut as possible undesirable contaminants. …”
Publicado 2018
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9434por Lu, Kun, Li, Tian, He, Jian, Chang, Wei, Zhang, Rui, Liu, Miao, Yu, Mengna, Fan, Yonghai, Ma, Jinqi, Sun, Wei, Qu, Cunmin, Liu, Liezhao, Li, Nannan, Liang, Ying, Wang, Rui, Qian, Wei, Tang, Zhanglin, Xu, Xinfu, Lei, Bo, Zhang, Kai, Li, Jiana“…The qPrimerDB database is the most comprehensive qPCR primer database available to date, with a web front-end providing gene-specific and pre-computed primer pairs across 147 important organisms, including human, mouse, zebrafish, yeast, thale cress, rice and maize. In this database, we provide 3331426 of the best primer pairs for each gene, based on primer pair coverage, as well as 47760359 alternative gene-specific primer pairs, which can be conveniently batch downloaded. …”
Publicado 2018
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9435por Knorr, Eileen, Fishilevich, Elane, Tenbusch, Linda, Frey, Meghan L. F., Rangasamy, Murugesan, Billion, Andre, Worden, Sarah E., Gandra, Premchand, Arora, Kanika, Lo, Wendy, Schulenberg, Greg, Valverde-Garcia, Pablo, Vilcinskas, Andreas, Narva, Kenneth E.“…Low dose injection- and diet-based dsRNA assays in T. castaneum and D. v. virgifera, respectively, enabled the identification of the four highly potent RNAi target genes: Rop, dre4, ncm, and RpII140. Maize was genetically engineered to express dsRNA directed against these prioritized candidate target genes. …”
Publicado 2018
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9436“…Here, we studied the effect on 15-day-old maize (Zea mays L.) plants of a 6 d non-lethal period of soil drying [soil water potential (SWP) decreased from –0.20 MPa to –0.81 MPa]. …”
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9437“…Of crops included in the studies, sweet potato and maize were the most studied, whereas rice and pearl-millet were the least investigated. …”
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9438por Boncompagni, Eleonora, Orozco-Arroyo, Gregorio, Cominelli, Eleonora, Gangashetty, Prakash Irappa, Grando, Stefania, Kwaku Zu, Theophilus Tenutse, Daminati, Maria Gloria, Nielsen, Erik, Sparvoli, Francesca“…It is also the sixth most important cereal in the world after wheat, rice, maize, barley, and sorghum, being largely grown and used in West Africa as well as in India and Pakistan. …”
Publicado 2018
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9439por Mukherjee, Kingshuk, Washimkar, Darshan, Muggli, Martin D, Salmela, Leena, Boucher, Christina“…Recently it has been used for scaffolding contigs and for assembly validation for large-scale sequencing projects, including the maize, goat, and Amborella genomes. However, a major impediment in the use of this data is the variety and quantity of errors in the raw optical mapping data, which are called Rmaps. …”
Publicado 2018
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9440“…Random sub-sampling is the favoured approach to detect unwanted biological materials in seed lots but is prohibitively expensive or else ineffective for the huge volumes of seeds moved in commercial operations. This study uses maize and cowpea seed admixtures as an exemplar to evaluate the feasibility of using aerosol sampling of “seed dust” as an alternative to seed sub-sampling. …”
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