论文题目 |
刊物名称 |
收录类别 |
发表年月 |
第一作者或全部作者 |
第一作者单位 |
排名 |
A genome‐wide association study uncovers a ZmRap2.7‐ZCN9/ZCN10 module to regulate ABA signalling and seed vigour in maize |
Plant Biotechnology Journal |
SCI |
2024.5 |
郭莎莎 |
中国农业大学 |
15(并列通讯)/17 |
RNA polymerase common subunit ZmRPABC5b is transcriptionally activated by Opaque2 and essential for endosperm development in maize |
Nucleic Acids Research |
SCI |
2023.7 |
陈全全 |
中国农业大学 |
13(并列通讯)/15 |
Transcriptome Analysis Revealed the Potential Molecular Mechanism of Anthocyanidins’ Improved Salt Tolerance in Maize Seedlings |
Plants |
SCI |
2023.7 |
J Wang, Z Yuan, D Li, M Cai, Z Liang, Q Chen, X Du, J Wang, R Gu, L Li |
中国农业大学 |
9(并列通讯)/10 |
Combined population transcriptomic and genomic analysis reveals cis-regulatory differentiation of non-coding RNAs in maize |
Theor Appl Genet |
SCI |
2023.1 |
J. Lu(卢嘉雯) |
中国农业大学 |
15(并列通讯) |
The Anthocyanin Accumulation Related ZmBZ1, Facilitates Seedling Salinity Stress Tolerance via ROS Scavenging. |
Int. J. Mol. Sci. |
SCI |
2022.12 |
Jie Wang(王洁) |
中国农业大学 |
10(通讯作者) |
Transcriptome analysis of near-isogenic lines provides novel insights into genes associated with seed low-temperature germination ability in maize (Zea mays L.) |
Plants |
SCI |
2022.11 |
Xuhui Li(李旭辉) |
中国农业大学 |
11(通讯作者) |
The ideal harvest time for seed production in maize (Zea mays L.) varieties of different maturity groups. |
J. Sci. Food Agri |
SCI |
2022.9 |
Dengxu Han(韩登旭) |
中国农业大学 |
11(通讯作者) |
QTL analysis across multiple environments reveals promising |
The Crop Journal |
SCI |
2021.9 |
Xinmin Hu(胡新民) |
China Agricultural University |
15(通讯作者) |
Small kernel 501 (smk501) encodes the RUBylation activating enzyme E1 subunit ECR1 (E1 C-TERMINAL RELATED 1) and is essential for multiple aspects of cellular events during kernel development in maize |
New Phytologist |
SCI |
2021.6 |
Quanquan Chen(陈全全) |
中国农业大学 |
12(通讯作者) |
Nuclear-Encoded Maturase Protein 3 Is Required for the |
Plant and Cell Physiology |
SCI |
2021.5 |
Weiwei Chen(陈卫卫) |
China Agricultural University |
12(通讯作者) |
Transcriptome analysis of leafy near-isogenic lines provides |
Plant Breeding |
SCI |
2020.10 |
Xuemei Du |
China Agricultural University |
8(通讯作者) |
Label-Free Comparative Proteomic Analysis Combined with Laser-Capture Microdissection Suggests Important Roles of Stress Responses in the Black Layer of Maize Kernels |
International Journal of Molecular Sciences |
SCI |
2020.2 |
Quanquan Chen(陈全全) |
China Agricultural University |
10(通讯作者) |
Grain Mineral Accumulation Changes in Chinese Maize Cultivars Released in Different Decades and the Responses to Nitrogen Fertilizer |
Frontiers in Plant Science |
SCI |
2020.1 |
Song Guo(郭松) |
Sichuan Academy of Agricultural Sciences |
11(通讯作者) |
Comparative analysis of the accelerated aged seed transcriptome profiles of two maize chromosome segment substitution lines |
Plos ONE |
SCI |
2019.11 |
Li Li(李莉) |
China Agricultural University |
9(通讯作者) |
Effect of mechanical threshing on damage and vigor of maize seed |
Journal of Integrative Agriculture |
SCI |
2019.7 |
Riliang Gu(顾日良) |
China Agricultural University |
1 |
QTL identification and epistatic effect analysis of seed size- and weight-related traits in Zea mays L |
Molecular Breeding |
SCI |
2019.5 |
Li Li(李莉) |
China Agricultural University |
5(通讯作者) |
Phenotypic characterization and genetic mapping of the dwarf mutant m34 in maize |
Journal of Integrative Agriculture |
SCI |
2019.5 |
Jieping Li(李结平) |
China Agricultural University |
6(通讯作者) |
Quantitative trait locus mapping for seed artificial aging traits using an F2: 3 population and a recombinant inbred line population crossed from two highly related maize inbreds |
Plant Breeding |
SCI |
2019.1 |
Yanan Liu(刘亚男) |
China Agricultural University |
10(通讯作者) |
QTL Mapping in Three Connected Populations Reveals a Set of Consensus Genomic Regions for Low Temperature Germination Ability in Zea mays L |
Frontiers in Plant Science |
SCI |
2018.1 |
Xuhui Li(李旭辉) |
China Agricultural University |
10(通讯作者) |
The ideal harvest time for seeds of hybrid maize (Zea mays L.) XY335 and ZD958 produced in multiple environments |
Scientific Reports |
SCI |
2017.12 |
Riliang Gu(顾日良) |
China Agricultural University |
1 |
Enhancing phosphorus uptake efficiency through QTL-based selection for root system architecture in maize. |
Journal of Genetics and Genomics |
SCI |
2016.9 |
Riliang Gu |
China Agricultural University |
1 |
Comprehensive phenotypic analysis and quantitative trait locus identification for grain mineral concentration, content, and yield in maize (Zea mays L.) |
Theoretical and Applied Genitics |
SCI |
2015.9 |
Riliang Gu |
China Agricultural University |
1 |
Transcriptional regulation of expression of the maize aldehyde dehydrogenase 7 gene (ZmALDH7B6) in response to abiotic stresses |
Journal of Integrative Agriculture |
SCI |
2014.9 |
Xia An(安霞) |
China Agricultural University |
6(通讯作者) |
Characterization of AMT-mediated High-affinity Ammonium Uptake in Roots of Maize (Zea mays L.) |
Plant & Cell Physiology |
SCI |
2013.9 |
Riliang Gu |
China Agricultural University |
1 |
Evolution and expression analysis of the β-glucosidase (GLU) encoding gene subfamily in maize |
Genes & genomics |
SCI |
2012.4 |
Li Zhao |
China Agricultural University |
4(通讯作者) |
Isolation and characterization of three maize aquaporin genes, ZmNIP2;1, ZmNIP2;4 and ZmTIP4;4 involved in urea transport |
BMB Reports |
SCI |
2012.2 |
Riliang Gu |
China Agricultural University |
1 |
A 40-bp A/T-rich repressor element involved in organ-dependent transcriptional regulation of ZmGLU1 |
Plant Cell, Tissue and Organ Cultur |
SCI |
2011.6 |
Li Zhao |
China Agricultural University |
3(通讯作者) |
Comparative expression and phylogenetic analysis of maize cytokinin dehydrogenase / oxidase (CKX) gene family |
Journal of Plant Growth Regulation |
SCI |
2010.12 |
Riliang Gu |
China Agricultural University |
1 |
Isolation of a maize beta-glucosidase gene promoter and characterization of its activity in transgenic tobacco. |
Plant Cell Reports |
SCI |
2006.11 |
Riliang Gu |
China Agricultural University |
1 |
ZmPTOX1, a plastid terminal oxidase, contributes to redox homeostasis during seed development and germination |
lant Journal |
SCI |
2024.4 |
彭亦萱 |
中国农业大学 |
8/12 |
qSTA2-2, a novel QTL that contributes to seed starch synthesis in Zea mays L. |
Journal of Integrative Agriculture |
SCI |
2024.4 |
蔡明浩 |
中国农业大学 |
8/10 |
Integrated Multi-Omics Reveals Significant Roles of Non-Additively Expressed Small RNAs in Heterosis for Maize Plant Height |
International Journal of Molecular Sciences |
SCI |
2023.05 |
张洁 |
中国农业大学 |
9/11 |
Cloning of a new allele of ZmAMP1 and evaluation of its breeding value in hybrid maize |
The Crop Journal |
SCI |
2023.1 |
Pingxi Wang |
中国农业大学 |
5/9 |
Transcriptome Analysis Identifies Novel Genes Associated with Low-Temperature Seed Germination in Sweet Corn |
Plants |
SCI |
2022.12 |
Yingni Xiao |
中国农业大学 |
8/10 |
PNGSeqR: An R package for rapid candidate gene selection through pooled next-generation sequencing |
Plants |
SCI |
2022.11 |
Sihan Zhen |
中国农业大学 |
6/9 |
Epigenetic Mutation in a Tubulin-Folding Cofactor B (ZmTFCB) Gene Arrests Kernel Development in Maize |
Plant Cell Physiology |
SCI |
2022.7 |
Yingmei Guo |
中国农业大学 |
10/14 |
A model for genuineness detection in genetically and phenotypically similar maize variety seeds based on hyperspectral imaging and machine learning. |
Plant Methods |
SCI |
2022.6 |
Keling Tu, Shaozhe Wen, Ying Cheng, Yanan Xu, Tong Pan, Haonan Hou, Riliang Gu, Jianhua Wang, Fengge Wang, Qun Sun. |
中国农业大学 |
7/10 |
Dissection of the genetic basis of yield traits in line per se and testcross populations and identification of candidate genes for hybrid performance in maize |
Inter. J. Mol. Sci. |
SCI |
2022.5 |
Y. Ma, D. Li, Z. Xu, R. Gu, P. Wang, J. Fu, J. Wang, W. Du, H. Zhang. |
沈阳农业大学 |
4/9 |
Dek504 encodes a mitochondrion-targeted E+-type pentatricopeptide repeat protein essential for RNA editing and seed development in maize |
Inter. J. Mol. Sci. |
SCI |
2022.2 |
Z. Wang, W. Chen, S. Zhang, J. Lu, R. Chen, J. Fu, R. Gu, G. Wang, J. Wang, Y. Cui |
中国农业大学 |
7/10 |
Genomic prediction across structured hybrid populations and environments in maize |
Plants |
SCI |
2021.6 |
D. Li, Z. Xu, R. Gu, P. Wang, J. Xu, D. Du, J. Fu, J. Wang, H. Zhang, G. Wang |
中国农业大学 |
3/10 |
Maize defective kernel605 encodes a canonical DYW-type PPR protein that edits a conserved site of nad1 and is essential for seed nutritional quality |
Plant and Cell Physiology |
SCI |
2020.11 |
K. Fan, Y. Peng, Z. Ren, D. Li, S. Zhen, S. Hey, Y. Cui, J. Fu, R. Gu, J. Wang, G. Wang, L. Li |
中国农业大学 |
9/12 |
Physical character-based grading of maize seeds |
Seed Science and Technology |
SCI |
2019.12 |
L. Li, R. Hu, L. Li, Z. Yuan, S. Sun, X. Jiang, R. Gu, J. Wang |
中国农业大学 |
7/8 |
Enhancing genomic selection by fitting large effect SNPs as fixed effects and a genotypeby-environment effect using a maize BC1F3:4 population |
PLoS ONE |
SCI |
2019.11 |
D. Li, Z. Xu, R. Gu, P. Wang, D. Lyle, J. Xu, H. Zhang, G. Wang |
中国农业大学 |
3/8 |
Phylogenetic, expression and functional characterizations of the maize NLP transcription factor family reveal a role in nitrate assimilation and signaling |
Physiol. plantarum |
SCI |
2018.7 |
Z. Wang, L. Zhang, C. Sun, R. Gu, G. Mi, L. Yuan |
中国农业大学 |
4/6 |
Overexpression of the maize ZmAMT1; 1a gene enhances root ammonium uptake efficiency under low ammonium nutrition. |
Plant Biotech. Rep |
SCI |
2018.1 |
Y. Zhao, Z. Liu, F. Duan, X. An, X. Liu, D. Hao, R. Gu, Z. Wang, F. Chen, L. Yuan |
中国农业大学 |
7/10 |
Comparative analysis of root traits and the associated QTLs for maize seedlings grown in paper roll, hydroponics and vermiculite culture system. |
Front. Plant Sci. |
SCI |
2017.3 |
Z. Liu, K. Gao, S. Shan, R. Gu, Z. Wang, E.J. Craft, G. Mi, L. Yuan, F. Chen |
中国农业大学 |
4/9 |
Use of genotype-environment interactions to elucidate the pattern of maize root plasticity to nitrogen deficiency. |
Journal of Integrative Plant Biology |
SCI |
2016.3 |
P. Li, Z. Zhuang, H. Cai, S. Cheng, A.A. Soomro, Z. Liu, R. Gu, G. Mi, L. Yuan, F. Chen |
中国农业大学 |
7/10 |
A genetic relationship between nitrogen use efficiency and seedling root traits in maize as revealed by QTL analysis. |
J. Exp. Bot. |
SCI |
2015.6 |
P. Li, F. Chen, H. Cai, J. Liu, Q. Pan, Z. Liu, R. Gu, G. Mi, F. Zhang, L. Yuan |
中国农业大学 |
7/10 |
Expression of genes related to nitrogen metabolism in maize grown under organic and inorganic nitrogen supplies. Soil Sci. Plant Nutr. |
Soil Sci. Plant Nutr. |
SCI |
2015.3 |
S. Guo, W. Sun, R. Gu, B. Zhao, L. Yuan, G. Mi |
中国农业大学 |
3/6 |
Biochemical characterization of the maize cytokinin dehydrogenase family and cytokinin profiling in developing maize plantlets in relation to the expression of cytokinin dehydrogenase genes. |
Plant Physiol. Biochem |
SCI |
2014.1 |
D. Zalabak, P. Galuszka, K. Mrízová, K. Podlesáková, R. Gu, J. Frébortová. |
捷克帕拉斯基大学 |
5/6 |
Allosteric Regulation of Transport Activity by Heterotrimerization of Arabidopsis Ammonium Transporter Complexes in Vivo. |
Plant Cell, |
SCI |
2013.3 |
L. Yuan, R. Gu, E. Smith-Valle, D. Loqué, W.B. Frommer, N. von Wirén |
中国农业大学 |
2/6 |
A nonsymbiotic hemoglobin gene from maize, ZmHb, is involved in response to submergence, high-salt and osmotic stresses. |
Plant Cell Tissue Organ Cult., |
SCI |
2008.11 |
L. Zhao, R. Gu, P. Gao, G. Wang |
中国农业大学 |
2/4 |
Lateral root development of two Arabidopsis auxin transport mutants aux1-7 and eir1-1, in response to nitrate supplies |
Plant Science |
SCI |
2007.10 |
J. Bao, F. Chen, R. Gu, G. Wang, F. Zhang, G. Mi |
中国农业大学 |
3/6 |
骨干玉米自交系种子活力性状配合力及遗传参数分析. |
西北农业学报 |
中文 |
2021.9 |
韩登旭,杨杰,阿布来提·阿布拉,梁晓玲,王建华,王业建,郗浩江,李铭东,刘俊,顾日良 |
中国农业大学 |
10/10(通讯) |
不同成熟度京科968 种子活力与种子物理化学特性的关系研究 |
玉米科学 |
中文 |
2017.10 |
顾日良,王永强,杨丽维,成广雷,王建华 |
中国农业大学 |
1/5 |
Seminar课程在研究生培养中的重要作用. |
学位与研究生教育, |
中文 |
2013.7 |
顾日良,陈范骏,张俊伶,袁力行,邹春琴,陈新平,申建波,江荣凤,张福锁. |
中国农业大学 |
1/9 |
机器视觉技术对氯化三苯基四氮唑染色法鉴定玉米种子生活力的改进 |
中国农业大学学报 |
中文 |
2022.6 |
潘同,吴伟锋,侯浩楠,许亚男,涂柯玲,顾日良,王建华,孙群 |
中国农业大学 |
6/8 |
高活力玉米种子生产理论在鑫海158中的应用研究 |
新疆农业科技 |
中文 |
2021.1 |
常宝学,赵海燕,蔡国强,魏国庆,顾日良,高永泽,李莉,王建华 |
新疆九圣禾种子标准研究院有限公司 |
5/8 |
高活力玉米种子生产理论在九圣禾2468中的应用研究. |
中国种业 |
中文 |
2020.9 |
高永泽,顾日良,魏国庆,李莉,赵海燕,蔡国强,王建华 |
中国农业大学 |
2/7 |
我国种子检验在“一带一路”背景下的发展策略 |
种子科技 |
中文 |
2020.7 |
李莉,王建华,顾日良,孙群,康定明 |
中国农业大学 |
3/5 |
两个玉米品种灌浆期叶片氮转移效率差异的分子机制. |
植物营养与肥料学报 |
中文 |
2018.5 |
郭松,孙文彦,顾日良,王章奎,陈范骏,赵秉强,袁力行,米国华. |
中国农业大学 |
3/8 |
种子出苗对玉米个体生长和群体产量的影响. |
中国农业大学学报 |
中文 |
2017.4 |
任利沙,顾日良,贾光耀,于晓芳,杨晓军,王建华. |
中国农业大学 |
2/6 |
灌浆期控水和施用控释肥对杂交玉米制种产量和种子质量的影响. |
中国农业科学 |
中文 |
2016.9 |
任利沙,顾日良,贾光耀,田开新,施秀德,王建华. |
中国农业大学 |
2/6 |
玉米根系发育突变体及相关基因研究进展. |
植物营养与肥料学报, |
中文 |
2010.7 |
安霞,库来宝,米国华,陈范骏,顾日良,袁力行. |
中国农业大学 |
4/6 |