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9021por Turco, Gina M., Kajala, Kaisa, Kunde‐Ramamoorthy, Govindarajan, Ngan, Chew‐Yee, Olson, Andrew, Deshphande, Shweta, Tolkunov, Denis, Waring, Barbara, Stelpflug, Scott, Klein, Patricia, Schmutz, Jeremy, Kaeppler, Shawn, Ware, Doreen, Wei, Chia‐Lin, Etchells, J. Peter, Brady, Siobhan M.“…However, several transcription factor families varied in vascular expression in sorghum compared with Arabidopsis and maize. Furthermore, differential expression of genes associated with DNA methylation were identified between vascular and nonvascular tissues, implying that changes in DNA methylation are a feature of sorghum root vascularization, which we confirmed using tissue‐specific DNA methylome data. …”
Publicado 2017
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9022por Li, Menghua, Shan, Guilin, Zhou, Haiyang, Buescher, Wolfgang, Maack, Christian, Jungbluth, Kerstin H., Lipski, André, Grantz, David A., Fan, Youheng, Ma, Daokun, Wang, Zhongyi, Cheng, Qiang, Sun, Yurui“…Here, multiple sensors tracked O(2) and CO(2), gas pressure (ΔP) between internal silage and ambient air, pH and silage temperature (T(si)) during the ensilage of maize and ryegrass. We report the first observation that CO(2) produced from microbial respiration was partially dissolved in silage water, with evidence of negative or positive ΔP depending on the changing balance between CO(2) production and dissolution. …”
Publicado 2017
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9023por Adekoya, Ifeoluwa, Njobeh, Patrick, Obadina, Adewale, Chilaka, Cynthia, Okoth, Sheila, De Boevre, Marthe, De Saeger, Sarah“…Fermented food samples (n = 191) including maize gruel (ogi), sorghum gruel (ogi-baba), melon seed (ogiri), locust bean (iru) and African oil bean seed (ugba) from Southwest Nigeria were quantified for 23 mycotoxins, including aflatoxin B(1) (AFB(1)), fumonisin B(1) (FB(1)), and sterigmatocystin (STE) using liquid chromatography-tandem mass spectrometry. …”
Publicado 2017
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9024por Emmett, Bryan D., Youngblut, Nicholas D., Buckley, Daniel H., Drinkwater, Laurie E.“…We grew 11 annual species and 11 maize (Zea mays subsp. mays) inbred lines in a common garden experiment to assess the influence of host phylogeny, growth, and nitrogen metabolism on rhizosphere communities. …”
Publicado 2017
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9025por Qi, Jinfeng, Zhang, Mou, Lu, Chengkai, Hettenhausen, Christian, Tan, Qing, Cao, Guoyan, Zhu, Xudong, Wu, Guoxing, Wu, Jianqiang“…Similarly, UV-B treatment also enhanced the levels of JA-isoleucine conjugate and defense-related secondary metabolites in tobacco, rice, and maize after these plants were treated with simulated herbivory of lepidopteran insects; consistently, these plants showed elevated resistance to insect larvae. …”
Publicado 2018
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9026“…Under several abiotic stresses, including P deficiency, upland cereal crops, such as maize, are well known to develop lysigenous aerenchyma, a root tissue containing gas spaces. …”
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9027por Winfield, Mark O., Allen, Alexandra M., Wilkinson, Paul A., Burridge, Amanda J., Barker, Gary L.A., Coghill, Jane, Waterfall, Christy, Wingen, Luzie U., Griffiths, Simon, Edwards, Keith J.“…As one of the most widely grown cereal grains, together with maize and rice, wheat is the leading provider of calories in the global diet, constituting 29% of global cereal production in 2015. …”
Publicado 2017
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9028“…Using primary roots of Zea mays (maize) we reveal that developmental competence for hydropatterning is limited to the growth zone of the root tip. …”
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9029“…Our results identify wheat straw as the most promising source in the agricultural sector, followed by maize stover, barley straw and rape straw, which all contain a total concentration of lignocellulose of more than 80% of dry matter. …”
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9030por Fountain, Jake C., Koh, Jin, Yang, Liming, Pandey, Manish K., Nayak, Spurthi N., Bajaj, Prasad, Zhuang, Wei-Jian, Chen, Zhi-Yuan, Kemerait, Robert C., Lee, R. Dewey, Chen, Sixue, Varshney, Rajeev K., Guo, Baozhu“…Aspergillus flavus is an opportunistic pathogen of plants such as maize and peanut under conducive conditions such as drought stress resulting in significant aflatoxin production. …”
Publicado 2018
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9031por Müller, Gabriela L., Lara, María V., Oitaven, Pablo, Andreo, Carlos S., Maurino, Verónica G., Drincovich, María F.“…Thus, to sustain future generations, a great challenge is to improve crop yield and water use efficiency (WUE), which is the carbon gained per water lost. Here, expression of maize NADP-malic enzyme (NADP-ME) in the guard and vascular companion cells of Nicotiana tabacum results in enhanced WUE, earlier flowering and shorter life cycle. …”
Publicado 2018
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9032“…Species such as Arabidopsis thaliana, strawberry, rice, maize, and poplar mainly exhibited pollen- or floral-specific BTPC expression. …”
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9033por Ludwick, Dalton C., Meihls, Lisa N., Huynh, Man P., Pereira, Adriano E., French, B. Wade, Coudron, Thomas A., Hibbard, Bruce E.“…To characterize resistance, WCR populations causing unexpected damage to Bt maize are evaluated in plant and/or diet toxicity assays. …”
Publicado 2018
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9034por Chen, Haimin, Wu, Hongxia, Yan, Bin, Zhao, Hongguang, Liu, Fenghua, Zhang, Haihua, Sheng, Qing, Miao, Fang, Liang, Zongsuo“…We also found that the bacterial genera Pantoea, Pseudomonas, and Sphingomonas were enriched core taxa and overlapped among S. miltiorrhiza, maize, bean, and rice, while a fungal genus, Alternaria, was shared within S. miltiorrhiza, bean, and Brassicaceae families. …”
Publicado 2018
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9035por Tavares, E. Q. P., Grandis, A., Lembke, C. G., Souza, G. M., Purgatto, E., De Souza, A. P., Buckeridge, M. S.“…Within the aerenchyma formation zone, the concentration of ethylene is lower in comparison to the concentration in maize. Besides, the ratio between both hormones (ethylene and auxin) was around 1:1. …”
Publicado 2018
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9036“…We developed relationships between county-level crop yields vs. agroclimate changes and found that all crops (maize, soybean, sorghum, spring wheat, winter wheat, and cotton) responded positively to a lengthened CGS, while responding negatively to increase in GDD, except cotton. …”
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9037“…Coding sequences of wheat genes obtained from ENSEMBL were aligned to known AMT and NRT sequences of Arabidopsis, barley, maize, rice, and wheat to retrieve homologous genes. …”
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9038por Li, Peng, Ben-Menni Schuler, Samira, Reeder, Sarah H, Wang, Rui, Suárez Santiago, Víctor N, Dobritsa, Anna A“…To explore the functional conservation of INP1 homologs, we used mutant analysis in maize and tested whether homologs from several other species could function in Arabidopsis. …”
Publicado 2018
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9039“…We use two household surveys with a sample of 52 households, interviews, and focus groups to examine whether smallholder farmers who produce broccoli for export in a rural Guatemalan community have different household food security than farmers in the same community who are still growing traditional maize and bean crops. We explore and compare the food security status of broccoli farmers (adopters) and traditional farmers (non-adopters) across four dimensions of food security: availability, access, utilization, and stability. …”
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9040por Taudt, Aaron, Roquis, David, Vidalis, Amaryllis, Wardenaar, René, Johannes, Frank, Colomé-Tatché, Maria“…Application of METHimpute to maize, rice and Arabidopsis shows that the algorithm infers cytosine-resolution methylomes with high accuracy from data as low as 6X, compared to data with 60X, thus making it a cost-effective solution for large-scale studies. …”
Publicado 2018
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