Acta Agronomica Sinica ›› 2024, Vol. 50 ›› Issue (11): 2674-2683.doi: 10.3724/SP.J.1006.2024.43014
• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS • Previous Articles Next Articles
YANG Ya-Wen1,2,3,4,6(
), ZHU Dong-Jie3, PAN Hong3, ZHANG Yun-Tao5,6, XIA Meng-Yin5,6, HAN Bao-Zhu3,6, JIN Min-Liang3, LI Meng-Jiao3, DONG Lu-Peng3, YANG Ning1,2,6, ZHOU Ying5,6, XU Jie-Ting3,6,*(
), YAN Jian-Bing1,2,4,6,*(
)
| [1] | 仇焕广, 李新海, 余嘉玲. 中国玉米产业: 发展趋势与政策建议. 农业经济问题, 2021, (7): 4-15. |
| Chou H G, Li X H, Yu J L. China maize industry: development trends and policy suggestions. Issues Agric Econ, 2021, (7): 4-15 (in Chinese with English abstract). | |
| [2] |
Ishida Y, Hiei Y, Komari T. Agrobacterium-mediated transformation of maize. Nat Protoc, 2007, 2: 1614-1621.
doi: 10.1038/nprot.2007.241 pmid: 17585302 |
| [3] |
Zhang Q, Zhang Y, Lu M H, Chai Y P, Jiang Y Y, Zhou Y, Wang X C, Chen Q J. A novel ternary vector system united with morphogenic genes enhances CRISPR/Cas delivery in maize. Plant Physiol, 2019, 181: 1441-1448.
doi: 10.1104/pp.19.00767 pmid: 31558579 |
| [4] | Sylvie De Buck C D W, Montagu M V, Depicker A. Determination of the T-DNA transfer and the T-DNA integration frequencies upon cocultivation of Arabidopsis thaliana root explants. Mol Plant Microbe Interact, 2000, 13: 658-665. |
| [5] | Lowe K, La Rota M, Hoerster G, Hastings C, Wang N, Chamberlin M, Wu E, Jones T, Gordon-Kamm W. Rapid genotype “independent” Zea mays L. (maize) transformation via direct somatic embryogenesis. In Vitro Cell Dev Biol Plant, 2018, 54: 240-252. |
| [6] |
Boutilier K, Offringa R, Sharma V K, Kieft H, Ouellet T, Zhang L, Hattori J, Liu C M, van Lammeren A A M, Miki B L A, Custers J B M, van Lookeren Campagne M M. Ectopic expression of BABY BOOM triggers a conversion from vegetative to embryonic growth. Plant Cell, 2002, 14: 1737-1749.
doi: 10.1105/tpc.001941 pmid: 12172019 |
| [7] | Lowe K, Wu E, Wang N, Hoerster G, Hastings C, Cho M J, Scelonge C, Lenderts B, Chamberlin M, Cushatt J, Wang L, Ryan L, Khan T, Chow-Yiu J, Hua W, Yu M, Banh J, Bao Z, Brink K, Igo E, Rudrappa B, Shamseer P M, Bruce W, Newman L, Shen B, Zheng P, Bidney D, Falco C, Register J, Zhao Z Y, Xu D, Jones T, Gordon-Kamm W. Morphogenic regulators Baby Boom and wuschel improve monocot transformation. Plant Cell, 2016, 28: 1998-2015. |
| [8] | Keith Lowe G H, Sun X F, Sonriza R G, Paul L, Sam E, Shane A, Kimberly G, Bill G K. Maize LEC1 improves transfromation in both maize and wheat. Plant Biotechnol, 2002: 283-284. |
| [9] |
McFarland F L, Collier R, Walter N, Martinell B, Kaeppler S M, Kaeppler H F. A key to totipotency: Wuschel-like homeobox 2a unlocks embryogenic culture response in maize (Zea mays L.). Plant Biotechnol J, 2023, 21: 1860-1872.
doi: 10.1111/pbi.14098 pmid: 37357571 |
| [10] |
Liu X, Bie X M, Lin X, Li M, Wang H, Zhang X, Yang Y, Zhang C, Zhang X S, Xiao J. Uncovering the transcriptional regulatory network involved in boosting wheat regeneration and transformation. Nat Plants, 2023, 9: 908-925.
doi: 10.1038/s41477-023-01406-z pmid: 37142750 |
| [11] |
Zhai N, Xu L. Pluripotency acquisition in the middle cell layer of callus is required for organ regeneration. Nat Plants, 2021, 7: 1453-1460.
doi: 10.1038/s41477-021-01015-8 pmid: 34782770 |
| [12] | Khanday I, Santos-Medellin C, Sundaresan V. Somatic embryo initiation by rice BABY BOOM1 involves activation of zygote-expressed auxin biosynthesis genes. New Phytol, 2023, 238: 673-687. |
| [13] | Ogura N S Y, Ito T, Tameshige T, Kawai S, Sano M, Doll Y, Iwase A, Kawamura A, Suzuki T, Nikaido I, Sugimoto K, Ikeuchi M. WUSCHEL-RELATED HOMEOBOX 13 suppresses de novo shoot regeneration via cell fate control of pluripotent callus. Sci Adv, 2023, 9: 1-13. |
| [14] | Mendez-Hernandez H A, Ledezma-Rodriguez M, Avilez- Montalvo R N, Juarez-Gomez Y L, Skeete A, Avilez-Montalvo J, De-la-Pena C, Loyola-Vargas V M. Signaling overview of plant somatic embryogenesis. Front Plant Sci, 2019, 10: 77. |
| [15] |
许洁婷, 刘相国, 金敏亮, 潘弘, 韩宝柱, 李梦娇, 岩说, 胡国庆, 严建兵. 不依赖基因型的高效玉米遗传转化体系的建立. 作物学报, 2022, 48: 2987-2993.
doi: 10.3724/SP.J.1006.2022.13068 |
| Xu J T, Liu X G, Jin M L, Pan H, Han B Z, Li M J, Yan S, Hu G Q, Yan J B. Establishment of genotype-independent high efficiency transformation system in maize. Acta Agron Sin, 2022, 48: 2987-2993 (in Chinese with English abstract). | |
| [16] | Sidorov V, Duncan D. Agrobacterium-mediated maize transformation: immature embryos versus callus. Methods Mol Biol, 2009. pp 47-58. |
| [17] | Liu S, Shi Y, Liu F, Guo Y, Lu M. LaCl3 treatment improves Agrobacterium-mediated immature embryo genetic transformation frequency of maize. Plant Cell Rep, 2022, 41: 1439-1448. |
| [18] | Jha P, Kumar V. BABY BOOM (BBM): a candidate transcription factor gene in plant biotechnology. Biotechnol Lett, 2018, 40: 1467-1475. |
| [19] | Hoerster G, Wang N, Ryan L, Wu E, Anand A, McBride K, Lowe K, Jones T, Gordon-Kamm B. Use of non-integrating Zm-Wus2 vectors to enhance maize transformation. In Vitro Cell Dev Biol Plant, 2020, 56: 265-279. |
| [20] | Yadav R K, Perales M, Gruel J, Girke T, Jonsson H, Reddy G V. WUSCHEL protein movement mediates stem cell homeostasis in the Arabidopsis shoot apex. Genes Dev, 2011, 25: 2025-2030. |
| [21] | Mookkan M, Nelson-Vasilchik K, Hague J, Zhang Z J, Kausch A P. Selectable marker independent transformation of recalcitrant maize inbred B73 and sorghum P898012 mediated by morphogenic regulators BABY BOOM and WUSCHEL2. Plant Cell Rep, 2017, 36: 1477-1491. |
| [22] | Aregawi K, Shen J, Pierroz G, Sharma M K, Dahlberg J, Owiti J, Lemaux P G. Morphogene-assisted transformation of Sorghum bicolor allows more efficient genome editing. Plant Biotechnol J, 2022, 20: 748-760. |
| [23] | Masters A, Kang M, McCaw M, Zobrist J D, Gordon-Kamm W, Jones T, Wang K. Agrobacterium-mediated immature embryo transformation of recalcitrant maize inbred lines using morphogenic genes. J Vis Exp, 2020, 156: e60782. |
| [24] |
Sun C, Lei Y, Li B, Gao Q, Li Y, Cao W, Yang C, Li H, Wang Z, Li Y, Wang Y, Liu J, Zhao K T, Gao C. Precise integration of large DNA sequences in plant genomes using PrimeRoot editors. Nat Biotechnol, 2023, 42: 316-327.
doi: 10.1038/s41587-023-01769-w pmid: 37095350 |
| [25] | Wang F X, Shang G D, Wu L Y, Xu Z G, Zhao X Y, Wang J W. Chromatin accessibility dynamics and a hierarchical transcriptional regulatory network structure for plant somatic embryogenesis. Dev Cell, 2020, 54: 742-757. |
| [26] | Chen Z, Debernardi J M, Dubcovsky J, Gallavotti A. The combination of morphogenic regulators BABY BOOM and GRF-GIF improves maize transformation efficiency. bioRxiv, 2022, doi: 101101/2022.09.02.506370. |
| [27] |
Takahashi K, Yamanaka S. Induction of pluripotent stem cells from mouse embryonic and adult fibroblast cultures by defined factors. Cell, 2006, 126: 663-676.
doi: 10.1016/j.cell.2006.07.024 pmid: 16904174 |
| [1] | Liang Jin-Yu, Yin Jia-De, Wang Hong-Li, Zhang Guo-Ping, Hou Hui-Zhi, Dong Bo, Ma Ming-Sheng. Estimation of leaf nitrogen content in dryland forage maize using UAV-based hyperspectral imaging and machine learning [J]. Acta Agronomica Sinica, 2026, 52(6): 1788-1801. |
| [2] | Yang Yang, Chang Shi-Hui, Tian Hong-Li, Yi Hong-Mei, Wang Lu, Ren Jie, Fan Ya-Ming, Liu Ya-Wei, Wang Feng-Ge, Zhao Jiu-Ran. Genetic diversity analysis of nationally approved maize varieties in different ecological regions [J]. Acta Agronomica Sinica, 2026, 52(5): 1352-1364. |
| [3] | Zhang Hong-Rong, Wang Fei-Er, Li Pan, Qiu Hai-Long, Zhu Jing, Zhao Lian-Hao, Nan Yun-You, He Wei, Fan Zhi-Long, Hu Fa-Long, Chai Qiang, Yin Wen. Photosynthetic characteristics of 20% reduced irrigation combined with 25% organic substitution for chemical fertilizer in increasing silage maize yield [J]. Acta Agronomica Sinica, 2026, 52(5): 1487-1500. |
| [4] | Yang Xin-Yu, Cui Wen-Tao, Dilinigeer Alimu, Wang Kai-Xiang, Wu Peng-Hao, Ren Jiao-Jiao. Genome-wide association and genomic selection analysis of the number of leaves above the ear in maize [J]. Acta Agronomica Sinica, 2026, 52(5): 1573-1590. |
| [5] | Han Ya-Xin, He Guan-Hua, Zhang Xiao-Qiong, Zhang Deng-Feng, Li Yong-Xiang, Liu Xu-Yang, Wang Tian-Yu, Li Yu, Zou Hua-Wen, Li Chun-Hui. Identification of maize lateral root density genes resources through integrated RNA-seq and BSA-seq analyses [J]. Acta Agronomica Sinica, 2026, 52(5): 1341-1352. |
| [6] | Sun Shu-Feng, Xu Zhen-Nan, Huang Jia-Xin, Weng Jian-Feng, Li Xin-Hai. Genome-wide identification of the maize MAPK gene family and its response to Fusarium verticillioides infection [J]. Acta Agronomica Sinica, 2026, 52(5): 1291-1308. |
| [7] | Zhang Ning-Ning, Teng Yu-Fei, Ren Na-Na, Wei Xing-Zhuo, Yan Shu-Hao, Fan Ke-Xin, Wang Yong-Hong, Chen Wen-Kang, Zhang Xing-Hua, Zhu Wan-Chao, Xu Shu-Tu, Xue Ji-Quan. Phenotypic evaluation and plasticity analysis of drought resistance in 201 maize inbred lines [J]. Acta Agronomica Sinica, 2026, 52(5): 1309-1325. |
| [8] | Cai Hong-Wei, Yu Ai-Zhong, Jiang Ke-Qiang, Wang Peng-Fei, Wang Yu-Long, Huo Jian-Zhe, Pang Xiao-Neng, Yin Bo, Shang Yong-Pan. Key mechanisms underlying the enhancement of sweet maize yield through partial substitution of chemical fertilizers with organic manure in arid irrigation districts [J]. Acta Agronomica Sinica, 2026, 52(4): 1166-1180. |
| [9] | Tian Hong-Li, Yang Yang, Fan Ya-Ming, Yi Hong-Mei, Guo Dan-Dan, Wang Feng-Ge, Zhao Jiu-Ran. A novel set of tri-allelic variant SNP loci suitable for maize variety identification [J]. Acta Agronomica Sinica, 2026, 52(4): 993-1005. |
| [10] | Guo Xiang-Yang, Tu Liang, Wang Dong, Liu Peng-Fei, Wang An-Gui, Yi Qiang, Ren Hong, Li Gang, Zhu Yun-Fang, Wu Xun, Jiang Yu-Lin, Tian Feng, Chen Ze-Hui. Application and prospects of Suwan germplasm in maize breeding in China [J]. Acta Agronomica Sinica, 2026, 52(3): 655-664. |
| [11] | Li Ying, Shi Xiao-Xu, Liu Hai-Cui, Shi Lyu, Xue Ya-Guang, Wei Ya-Feng. Establishment of a near-infrared reflectance spectroscopy model for predicting β-glucan content in naked barley grain [J]. Acta Agronomica Sinica, 2026, 52(3): 735-745. |
| [12] | Meng Cheng, Wang Zhe. Genome-wide identification and expression analysis of the ZmPFK gene family under biotic and abiotic stresses in maize [J]. Acta Agronomica Sinica, 2026, 52(3): 764-779. |
| [13] | Li Xin-Hao, Xing Meng-Ke, Zhou Zi-Hui, Li Si-Ye, Ren Hao, Wang Hong-Zhang, Lai Hua-Jiang. Exogenous melatonin enhances heat tolerance of maize at the seedling stage by coordinating light and dark reactions [J]. Acta Agronomica Sinica, 2026, 52(3): 839-856. |
| [14] | Ma Liang, Ma Lu, Zhang Shu-Yu, Zhang Hui-Min, Wang Ren-Ming, Song Xu-Dong, Zhang Zhen-Liang, Mao Yu-Xiang, Lu Hu-Hua, Chen Guo-Qing, Hao De-Rong, Zhou Guang-Fei. Transcriptome analysis and identification of candidate genes associated with husk number in maize [J]. Acta Agronomica Sinica, 2026, 52(3): 790-801. |
| [15] | Liu Ji-Chang, Li Si-Ye, Li Xue-Ting, Wang Hong-Zhang, Liu Peng, Zhang Ji-Wang, Zhao Bin, Ren Bai-Zhao, Ren Hao. Effects of salt stress on root growth and nutrient absorption efficiency of different salt-tolerant summer maize varieties [J]. Acta Agronomica Sinica, 2026, 52(2): 565-577. |
|
||