发表/Publications

年份定位

2026】【2025】【2024】【2023】【2022】【2021】【2020】【2019】【2018】【2017】【2016】【2015

2026

Liu M†, Ding K, Dong X, Ji S, Kong X, Sun D, Chen H, Gao Y, Li C, Bai C, Zhang A*, Ruan Y* (2026) Genome-Wide Association Analysis Dissects the Genetic Architecture of Maize Leaf Inclination Angle and Leaf Area Index. Agronomy 16(2):178. https://www.mdpi.com/2073-4395/16/2/178

2025

Dang D†, Ji S, Liu Y, Bai C, Zhu Y, Zhang X, Zhang A*, Ruan Y* (2025) Genome-wide association studies on leaf midrib architecture in maize. Frontiers in Plant Science 16:1671460. https://www.frontiersin.org/journals/plant-science/articles/10.3389/fpls.2025.1671460

2024

Kong X†, Ji S†, Liu Y, Zhang X, Liu M, Yue C, Yang R, Li C, Dong X, Zhang A*, Ruan Y* (2024) Genomic selection on ear height, plant height and grain yield in the primary testing stage of maize hybrids. Euphytica 220(11):169-179. https://doi.org/10.1007/s10681-024-03425-z

2023

Liu Y†, Ao M, Lu M, Zheng S, Zhu F, Ruan Y, Guan Y, Zhang A*, Cui Z* (2023) Genomic selection to improve husk tightness based on genomic molecular markers in maize. Frontiers in Plant Science 14:1252298. https://doi.org/10.3389/fpls.2023.1252298

Chen S†, Dang D, Liu Y, Ji S, Zheng H, Zhao C, Dong X, Li C, Guan Y, Zhang A*, Ruan Y* (2023) Genome-wide association study presents insights into the genetic architecture of drought tolerance in maize seedlings under field water-deficit conditions. Frontiers in Plant Science 14:1165582. https://doi.org/10.3389/fpls.2023.1165582

张敖†, 关媛, 张学才, 杨双, 计舒文, 刘翼宁, 阮燕晔*, 郑洪建*. 玉米全基因组选择育种研究进展[J]. 上海农业学报, 2023,39(05): 13-19.

2022

Zhang A†, Chen S†, Cui Z, Liu Y, Guan Y, Yang S, Qu J, Nie J, Dang D, Li C, Dong X, Fan J, Zhu Y, Zhang X, Crossa J, Cao H, Ruan Y*, Zheng H* (2022) Genomic prediction of drought tolerance during seedling stage in maize using low-cost molecular markers. Euphytica 218(11):154. https://doi.org/10.1007/s10681-022-03103-y

Zhao C†, Ji S, Ge C, Su Y, Shi Z, Cui Z, Zhang A, Wang Z, Ruan Y*, Zhang L*, Ma X* (2022) Transcriptional analyses of maize leaves in response to high‐density planting. Agronomy Journal. https://doi.org/10.1002/agj2.20825

Zhang A†, Pérez-Rodríguez P, Vicente FS, Palacios-Rojas N, Dhliwayo T, Liu Y, Cui Z, Guan Y, Wang H, Zheng H, Olsen M, Prasanna BM, Ruan Y*, Crossa J*, Zhang X* (2022) Genomic prediction of the performance of hybrids and the combining abilities for line by tester trials in maize. The Crop Journal 10(1):109–116. https://doi.org/10.1016/j.cj.2021.04.007

Liu M†, Zhang M, Yu S, Li X, Zhang A, Cui Z, Dong X, Fan J, Zhang L, Li C*, Ruan Y* (2022) A Genome-Wide Association Study Dissects the Genetic Architecture of the Metaxylem Vessel Number in Maize Brace Roots. Frontiers in Plant Science 13:847234. https://doi.org/10.3389/fpls.2022.847234

Li Y†, Liang Y†, Liu M, Zhang Q, Wang Z, Fan J, Ruan Y, Zhang A, Dong X, Yue J, Li C* (2022) Genome-Wide Association Studies Provide Insights Into the Genetic Architecture of Seed Germination Traits in Maize. Frontiers in Plant Science 13:930438. https://doi.org/10.3389/fpls.2022.930438

2021

Ren J†, Li Z, Wu P, Zhang A, Liu Y, Hu G, Cao S, Qu J, Dhliwayo T, Zheng H, Olsen M, Prasanna BM, Vicente FS*, Zhang X* (2021) Genetic Dissection of Quantitative Resistance to Common Rust (Puccinia sorghi) in Tropical Maize (Zea mays L.) by Combined Genome-Wide Association Study, Linkage Mapping, and Genomic Prediction. Frontiers in Plant Science 12:692205. https://doi.org/10.3389/fpls.2021.692205

Liu M†, He W†, Zhang A, Zhang L, Sun D, Gao Y, Ni P, Ma X, Cui Z*, Ruan Y* (2021) Genetic analysis of maize shank length by QTL mapping in three recombinant inbred line populations. Plant Science 303:110767. https://doi.org/10.1016/j.plantsci.2020.110767

Liu Y†, Hu G†, Zhang A, Loladze A, Hu Y, Wang H, Qu J, Zhang X, Olsen M, Vicente FS, Crossa J, Lin F*, Prasanna BM* (2021) Genome-wide association study and genomic prediction of Fusarium ear rot resistance in tropical maize germplasm. The Crop Journal 9(2):325–341. https://doi.org/10.1016/j.cj.2020.08.008

Ren J†, Wu P, Huestis GM, Zhang A, Qu J, Liu Y, Zheng H, Alakonya A, Dhliwayo T, Olsen MS, Vicente FS, Prasanna BM, Chen J, Zhang X* (2021) Identification and fine-mapping of a major QTL (qRtsc8-1) conferring resistance to maize tar spot complex and production markers validation in breeding lines. Theoretical and Applied Genetics. https://doi.org/10.21203/rs.3.rs-1072295/v1

Cao S†, Song J, Yuan Y, Zhang A, Ren J, Liu Y, Qu J, Hu G, Zhang J, Wang C, Cao J, Olsen M, Prasanna BM, San Vicente*, Zhang X* (2021) Genomic Prediction of Resistance to Tar Spot Complex of Maize in Multiple Populations Using Genotyping-by-Sequencing SNPs. Frontiers in Plant Science 12:672525. https://doi.org/10.3389/fpls.2021.672525

2020

Wang N†, Wang H, Zhang A, Liu Y, Yu D, Hao Z, Ilut D, Glaubitz JC, Gao Y, Jones E, Olsen M, Li X, Vicente FS, Prasanna BM, Crossa J, Pérez-Rodríguez P*, Zhang X* (2020) Genomic prediction across years in a maize doubled haploid breeding program to accelerate early-stage testcross testing. Theoretical and Applied Genetics 133(10):2869–2879. https://doi.org/10.1007/s00122-020-03638-5

Cui Z†, Dong H, Zhang A, Ruan Y, He Y*, Zhang Z* (2020) Assessment of the Potential for Genomic Selection To Improve Husk Traits in Maize. G3 Genes Genomes Genetics 10(10):g3.401600.2020. https://doi.org/10.1534/g3.120.401600

Wang N†, Yuan Y†, Wang H, Yu D, Liu Y, Zhang A, Gowda M, Nair SK, Hao Z, Lu Y, Vicente FS, Prasanna BM, Li X*, Zhang X* (2020) Applications of genotyping-by-sequencing (GBS) in maize genetics and breeding. Scientific Reports 10(1):16308. https://doi.org/10.1038/s41598-020-73321-8

Jiang S†, Zhang H, Ni P, Yu S, Dong H, Zhang A, Cao H, Zhang L, Ruan Y*, Cui Z* (2020) Genome-Wide Association Study Dissects the Genetic Architecture of Maize Husk Tightness. Frontiers in Plant Science 11:861. https://doi.org/10.3389/fpls.2020.00861

Guo R†, Dhliwayo T, Mageto EK, Palacios-Rojas N, Lee M, Yu D, Ruan Y, Zhang A, Vicente FS, Olsen M, Crossa J, Prasanna BM, Zhang L*, Zhang X* (2020) Genomic Prediction of Kernel Zinc Concentration in Multiple Maize Populations Using Genotyping-by-Sequencing and Repeat Amplification Sequencing Markers. Frontiers in Plant Science 11:534. https://doi.org/10.3389/fpls.2020.00534

Lin J†, Li S, Liang G, Liu M, Jin T, Qu Z, Li H, Chen S, Li C, Zhang A, Ruan Y*, Cui Z* (2020) Genetic basis of maize ear angle revealed by high-density single nucleotide polymorphism markers in four recombinant inbred line populations. Euphytica 216(8):132. https://doi.org/10.1007/s10681-020-02662-2

陈珊†, 毕鑫屹, 刘美玲, 李楠, 崔震海, 张敖*, 阮燕晔*. 玉米萌发成苗期渗透调节机制的研究进展[J]. 江西农业学报, 2020, 32(6):34-40

2019

Yuan Y†, Cairns JE, Babu R, Gowda M, Makumbi D, Magorokosho C, Zhang A, Liu Y, Wang N, Hao Z, Vicente FS, Olsen MS, Prasanna BM, Lu Y*, Zhang X* (2019) Genome-Wide Association Mapping and Genomic Prediction Analyses Reveal the Genetic Architecture of Grain Yield and Flowering Time Under Drought and Heat Stress Conditions in Maize. Frontiers in Plant Science 9:1919. https://doi.org/10.3389/fpls.2018.01919

曹慧颖†, 张立军, 阮燕晔*, 张敖, 董小妹, 张馨悦. 能源植物柳枝稷基因工程研究进展[J]. 草叶科学, 2019, 36(2):394-401.

2018

Zhang A†, Cui Z†, Li C, Luo J, Guan Y, Liu L, Zhang Z, Zhang L, He Y, Ruan Y*, Yu H* (2018) Identification of maize brace-root quantitative trait loci in a recombinant inbred line population. Euphytica 214(9):168. https://doi.org/10.1007/s10681-018-2203-6

Cui Z†, Xia A, Zhang A, Luo J, Yang X, Zhang L, Ruan Y*, He Y* (2018) Linkage mapping combined with association analysis reveals QTL and candidate genes for three husk traits in maize. Theoretical and Applied Genetics 131(10):2131–2144. https://doi.org/10.1007/s00122-018-3142-2

姜思奇†, 郭瑞, 张敖, 赵艳贺, 时免免, 邓丽霞, 崔震海, 阮燕晔*. 利用核心SNP标记划分辽宁省常用玉米自交系杂种优势群的研究. 玉米科学, 2018, ISSN: 1005-0906. http://kns.cnki.net/kcms/detail/22.1201.S.20180212.1034.066.html

朱延姝†, 李涵, 孔馨樱, 崔震海, 张立军, 张敖, 樊金娟, 阮燕晔*. 不同环境下中国主要玉米自交系叶片叶绿素衰减速率特性研究. 沈阳农业大学学报, 2018, 2018,49(3):342-347.

孙宏蕾†, 姜泽东, 计舒文, 王艺斐, 王琼, 张顺云, 张敖*, 朱延姝. 爬山虎衰老过程中不同颜色叶片光合性能比较. 江苏农业科学2018, 46(22):123-126.

2017

Zhang A†, Wang H†, Beyene Y, Semagn K, Liu Y, Cao S, Cui Z, Ruan Y, Burgueño J, Vicente FS, Olsen M, Prasanna BM, Crossa J*, Yu H*, Zhang X* (2017) Effect of Trait Heritability, Training Population Size and Marker Density on Genomic Prediction Accuracy Estimation in 22 bi-parental Tropical Maize Populations. Frontiers in Plant Science 8:1916. https://doi.org/10.3389/fpls.2017.01916

Cao S†, Loladze A, Yuan Y, Wu Y, Zhang A, Chen J, Huestis G, Cao J, Chaikam V, Olsen M, Prasanna BM, Vicente FS*, Zhang X* (2017) Genome‐Wide Analysis of Tar Spot Complex Resistance in Maize Using Genotyping‐by‐Sequencing SNPs and Whole‐Genome Prediction. Plant Genome 10(2). https://doi.org/10.3835/plantgenome2016.10.0099

朱延姝†, 孔馨樱, 李涵, 李丹, 党冬冬, 张敖, 阮燕晔*, 崔震海. (2017). 中国骨干玉米自交系气生根发生时间和抗穿刺强度差异分析. 新疆农业大学学报, 40(6):397-402.

姜泽东†, 张敖, 孙红蕾, 孙红蕾, 贺文姝, 张海波, 朱延姝, 张立军*. 金叶榆两种不同颜色叶片夏季叶绿素荧光参数比较研究. (2017). 沈阳农业大学学报, 48(2):174-181.

2016

Zhang A†, Cui Z-H, Yu J-L, Hu Z-L, Ding R, Ren D-M*, Zhang L-J* (2016) Dissipation of excess excitation energy of the needle leaves in Pinus trees during cold winters. International Journal of Biometeorology 60(12):1953–1960. https://doi.org/10.1007/s00484-016-1182-3


2015

Cui Z†, Zhang A, Hu Z, Zhang L, Fan J, Zhu Y, Hu K, Ruan Y*, Guan Y* (2015) Different Effects of Malate on the Activities of Photosystem II in Detached Leaves of Maize and Tobacco. American Journal of Plant Sciences 06(11):1734–1741. https://doi.org/10.4236/ajps.2015.611173

英文格式为:Springer – Basic (author-date, no “et al.”, with issue numbers),修改期刊缩写换为全称并斜体,增加第一和通讯作者标注。