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341“…OBJECTIVE: To compare endogenous IgE binding proteins of three GM maize seeds containing Cry 1Ab,1Ac,1C transgenic proteins with non GM maize. …”
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342por Tian, Hong-Li, Wang, Feng-Ge, Zhao, Jiu-Ran, Yi, Hong-Mei, Wang, Lu, Wang, Rui, Yang, Yang, Song, Wei“…Here, we developed a high-throughput and compatible SNP array, maizeSNP3072, containing 3072 SNPs developed from the maizeSNP50 array. …”
Publicado 2015
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343por Zhang, Wenju, Liu, Kailou, Wang, Jinzhou, Shao, Xingfang, Xu, Minggang, Li, Jianwei, Wang, Xiujun, Murphy, Daniel V.“…Using a 27-year-long inorganic fertilizer and manure amendment experiment in a maize (Zea mays L.) double-cropping system, we quantified changes in harvestable maize biomass and soil organic carbon stocks (0–20 cm depth) between 1986-2012. …”
Publicado 2015
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344por Gallego-Castillo, Sonia, Taleon, Victor, Talsma, Elise F., Rosales-Nolasco, Aldo, Palacios-Rojas, Natalia“…Minerals, phytic acid and amino acids retention were measured after processing six maize varieties including three high kernel-zinc, one quality protein maize and two conventional maize. …”
Publicado 2021
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345por Dumigan, Christopher R., Muileboom, Jade, Gregory, Jake, Shrestha, Anuja, Hewedy, Omar A., Raizada, Manish N.“…We identified multiple root endophyte species from each ancient maize relative that increased the growth of annual ryegrass (model maize relative) under nitrogen starvation. …”
Publicado 2021
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346“…Maize kernel is exposed to several fungal species, most notably Fusarium verticillioides, which can contaminate maize kernels with fumonisins. …”
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347“…Here, we examined and compared the effects of a non-transgenic maize cultivar and an insect-resistant transgenic maize cultivar genetically engineered with cry1Ah gene from Bacillus thuringiensis, on the rhizosphere bacterial community using 16S rDNA amplicon sequencing and soil metabolome profile using UPLC/MS analysis at six different growth stages. …”
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348“…In Nigeria, the inconsistency in maize production compared to the projected average output has grave implications considering the sharp increase in maize demand and its strategic importance in addressing economic welfare issues. …”
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349por Dong, Qiqi, Zhao, Xinhua, Zhou, Dongying, Liu, Zhenhua, Shi, Xiaolong, Yuan, Yang, Jia, Peiyan, Liu, Yingyan, Song, Penghao, Wang, Xiaoguang, Jiang, Chunji, Liu, Xibo, Zhang, He, Zhong, Chao, Guo, Feng, Wan, Shubo, Yu, Haiqiu, Zhang, Zheng“…The nitrogen accumulation was significantly higher in the roots of the intercropped maize than in those of sole maize at 120 days after sowing, it increased by 129.16% (2020) and 151.93% (2021), respectively. …”
Publicado 2022
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350por Ding, Ning, Zhao, Ying, Wang, Weixiang, Liu, Xuyang, Shi, Wentong, Zhang, Dengfeng, Chen, Jiajie, Ma, Shuo, Sun, Qingpeng, Wang, Tianyu, Lu, Min“…Meanwhile, the phylogenetic relationship of 152 non-redundant NAC family TFs in maize was generated. The maize NAC family proteins were grouped into 13 distinct subfamilies. …”
Publicado 2023
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355Publicado 2007Materias: “…Maíz Enfermedades y plagas México Estudio de casos.…”
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357por Paulick, Marleen, Rempe, Inga, Kersten, Susanne, Schatzmayr, Dian, Schwartz-Zimmermann, Heidi Elisabeth, Dänicke, Sven“…Variants with 30% moisture content favored higher DON reduction rates compared to 14% moisture, but especially at low moisture contents, DON reduction was more pronounced in maize kernels than in maize meal. In addition to the decrease of DON, a concomitant formation of three different DON sulfonates was observed which differed in their formation pattern over the time course of preservation. …”
Publicado 2015
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358por Orlovskis, Zigmunds, Canale, Maria Cristina, Haryono, Mindia, Lopes, João Roberto Spotti, Kuo, Chih-Horng, Hogenhout, Saskia A.“…Background and Aims Maize bushy stunt phytoplasma (MBSP) is a bacterial pathogen of maize (Zea mays L.) across Latin America. …”
Publicado 2017
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359“…The UV-C radiation treatments had a statistically significant effect on the plumule length of maize and sugar beet seeds. The treatment 8 h UV-C exposure duration led to the largest plumule in maize and sugar beet, which were 0.32 cm and 0.83 cm larger than the plumule of the control seeds, respectively. …”
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360por Uzoh, Ifeyinwa Monica, Igwe, Charles Arizechukwu, Okebalama, Chinyere Blessing, Babalola, Olubukola Olularanti“…Inclusion of legumes in cropping systems is essential for sustainable management of farming systems and reducing the nitrogen (N) fertilizer requirement for maize production. The study evaluated the effect of growing legumes (soybean, cowpea and velvet bean) and maize the same year in rotation, on maize yield and soil fertility indices. …”
Publicado 2019
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