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201por Cotton, T. E. Anne, Pétriacq, Pierre, Cameron, Duncan D., Meselmani, Moaed Al, Schwarzenbacher, Roland, Rolfe, Stephen A., Ton, Jurriaan“…Here, we have taken a global approach to examine the regulatory activity of BXs on the maize root metabolome and associated bacterial and fungal communities. …”
Publicado 2019
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202por Liu, Dong“…The first step of any maize transformation project is to select gene expression elements that will make up an effective construct. …”
Publicado 2009
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203por Lamphear, Barry J, Streatfield, Stephen J, Jilka, Joseph M, Brooks, Christopher A, Barker, Donna K, Turner, Debra D, Delaney, Donna E, Garcia, Martin, Wiggins, Barry, Woodard, Susan L, Hood, Elizabeth E, Tizard, Ian R, Lawhorn, Bruce, Howard, John A“…Here we provide additional data to support the potency, efficacy, and stability of recombinant subunit vaccines delivered in maize seed.…”
Publicado 2002
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204“…Maize doubled haploid (DH) lines are usually created in vivo, through crosses with maternal haploid inducers. …”
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205por Wang, Ning, Arling, Maren, Hoerster, George, Ryan, Larisa, Wu, Emily, Lowe, Keith, Gordon-Kamm, William, Jones, Todd J., Chilcoat, N. Doane, Anand, Ajith“…Use of the morphogenic genes Baby Boom (Bbm) and Wuschel2 (Wus2), along with new ternary constructs, has increased the genotype range and the type of explants that can be used for maize transformation. Further optimizing the expression pattern for Bbm/Wus2 has resulted in rapid maize transformation methods that are faster and applicable to a broader range of inbreds. …”
Publicado 2020
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207por Sun, Pingdong, Shi, Yannan, Valerio, Aga Guido Okwana, Borrego, Eli James, Luo, Qingyun, Qin, Jia, Liu, Kang, Yan, Yuanxin“…The TIFY gene family is intensively explored in several model and agriculturally important crop species and here, yet the composition of the TIFY family of maize has remained unresolved. This study increases the number of maize TIFY family members known by 40%, bringing the total to 47 including 38 JAZ, 5 TIFY, and 4 ZML genes. …”
Publicado 2021
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208“…The interaction of acylation on the stability of anthocyanin molecules has long been known. Maize is an abundant source of malonylglucoside and dimalonylglucoside anthocyanins. …”
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209por Volokhina, Irina, Gusev, Yury, Moiseeva, Yelizaveta, Gutorova, Olga, Fadeev, Vladimir, Chumakov, Mikhail“…In apomictic plants, the embryo and endosperm develop without fertilization. Modern maize seems to have a broken apomixis-triggering mechanism, which still works in Tripsacum and in Tripsacum–maize hybrids. …”
Publicado 2021
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210por Han, Tongwen, Wang, Fang, Song, Qingxin, Ye, Wenxue, Liu, Tieshan, Wang, Liming, Chen, Z. Jeffrey“…Here, we report epigenetic links to inbreeding depression in maize. Teosinte branched1/cycloidea/proliferating cell factor (TCP) transcription factors control plant development. …”
Publicado 2021
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211por Stitzer, Michelle C., Anderson, Sarah N., Springer, Nathan M., Ross-Ibarra, Jeffrey“…Using an updated annotation of structurally intact TEs in the maize reference genome, we investigate the family-level dynamics of TEs in maize. …”
Publicado 2021
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212por Ma, Wendi, Gao, Xinying, Han, Tongling, Mohammed, Magaji Tukur, Yang, Jun, Ding, Junqiang, Zhao, Wensheng, Peng, You-Liang, Bhadauria, Vijai“…Maize (Zea mays), also called corn, is one of the top three staple food crops worldwide and is also utilized as feed (e.g., feed grain and silage) and a source of biofuel (e.g., bioethanol). …”
Publicado 2022
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213por Wen, Weiwei, Franco, Jorge, Chavez-Tovar, Victor H., Yan, Jianbing, Taba, Suketoshi“…The tropical maize race Tuxpeño is a well-known race of Mexican dent germplasm which has greatly contributed to the development of tropical and subtropical maize gene pools. …”
Publicado 2012
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214por Xia, Zihao, Zhao, Zhenxing, Gao, Xinran, Jiao, Zhiyuan, Wu, Yuanhua, Zhou, Tao, Fan, Zaifeng“…The synergistic infection of maize chlorotic mottle virus (MCMV) and sugarcane mosaic virus (SCMV) causes maize lethal necrosis, with considerable losses to global maize production. microRNAs (miRNAs) are conserved non-coding small RNAs that play essential regulatory roles in plant development and environmental stress responses, including virus infection. …”
Publicado 2019
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215por Fan, Zhilong, Zhao, Yanhua, Chai, Qiang, Zhao, Cai, Yu, Aizhong, Coulter, Jeffrey A., Gan, Yantai, Cao, Weidong“…Cereal density may influence the balance between nitrogen (N) supply and crop N demand in cereal/legume intercrop systems. The effect of maize (Zea mays L.) plant density on N utilization and N fertilizer supply in maize/pea (Pisum sativum L.) strip intercropping was evaluated in a field study with sole maize, sole pea, and intercropped maize/pea with three maize densities (D1, 45,000 plants ha(−1); D2, 52,500 plants ha(−1); D3, 60,000 plants ha(−1)) and two N treatments (N0, 0 kg N ha(−1); N1, 450 kg N ha(−1) for maize and 225 kg N ha(−1) for pea). …”
Publicado 2019
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216por Adnan, A.A, Diels, J., Jibrin, J.M., Kamara, A.Y, Shaibu, A.S, Craufurd, P, Menkir, Abebe“…Field experiments were conducted in the rainy and dry seasons of 2015 and 2016 across four locations in maize growing regions of Northern Nigeria using 16 maize varieties planted under near-optimal conditions of moisture and soil nitrogen. …”
Publicado 2020
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217Maize-IAS: a maize image analysis software using deep learning for high-throughput plant phenotyping“…BACKGROUND: Maize (Zea mays L.) is one of the most important food sources in the world and has been one of the main targets of plant genetics and phenotypic research for centuries. …”
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218por Wu, Silin, Greiner, Steffen, Ma, Chongjian, Zhong, Jiaxin, Huang, Xiaojia, Rausch, Thomas, Zhao, Hongbo“…In summary, these results support that Zm-6&1-FEH2 enzyme from maize can degrade both inulin-type and levan-type fructans, and the implications of the co-existence of Zm-6&1-FEH2 and 1-kestotriose are discussed.…”
Publicado 2021
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219por Gao, Xinran, Chen, Yuan, Luo, Xuecong, Du, Zhichao, Hao, Kaiqiang, An, Mengnan, Xia, Zihao, Wu, Yuanhua“…[Image: see text] Maize chlorotic mottle virus (MCMV) can cause maize lethal necrosis (MLN) when coinfected with potyvirids, such as sugarcane mosaic virus (SCMV), maize dwarf mosaic virus, or wheat streak mosaic virus. …”
Publicado 2021
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220“…The result suggests adopting NE practices to minimize the yield gaps and increase the productivity of maize in Morang and adjoining agro-climatic conditions of eastern Terai, Nepal.…”
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