Acta Agronomica Sinica ›› 2024, Vol. 50 ›› Issue (9): 2157-2166.doi: 10.3724/SP.J.1006.2024.44018
• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS • Next Articles
LIU Yong-Hui(
), SHEN Yi, SHEN Yue, LIANG Man, SHA Qin, ZHANG Xu-Yao, CHEN Zhi-De*(
)
| [1] | 万书波. 中国花生栽培学. 上海: 上海科技出版社, 2003. pp 1-4. |
| Wan S B. Peanut Cultivation in China. Shanghai: Shanghai Scientific & Technical Publishers, 2003. pp 1-4 (in Chinese). | |
| [2] | 廖伯寿. 我国花生生产发展现状与潜力分析. 中国油料作物学报, 2020, 42: 161-166. |
|
Liao B S. A review on progress and prospects of peanut industry in China. Chin J Oil Crop Sci, 2020, 42: 161-166 (in Chinese with English abstract).
doi: 10.19802/j.issn.1007-9084.2020115 |
|
| [3] |
张金霞, 刘艳丽, 赵治军, 董彦琪, 蒋福稳. 花生非生物胁迫响应转录因子研究进展. 中国油料作物学报, 2019, 41: 975-985.
doi: 10.19802/j.issn.1007-9084.2019067 |
| Zhang J X, Liu Y L, Zhao Z J, Dong Y Q, Jiang F W. Research advances on abiotic stress response transcription factors in peanut. Chin J Oil Crop Sci, 2019, 41: 975-985 (in Chinese with English abstract). | |
| [4] |
任婧瑶, 王婧, 艾鑫, 赵姝丽, 李仍媛, 蒋春姬, 赵新华, 殷冬梅, 于海秋. 干旱胁迫下花生苗期耐旱生理应答特性分析. 中国油料作物学报, 2022, 44: 138-146.
doi: 10.19802/j.issn.1007-9084.2020300 |
| Ren J Q, Wang J, Ai X, Zhao S L, Li R Y, Jiang C J, Zhao X H, Yin D M, Yu H Q. Physiological response of peanut at seedling stage under drought stress. Chin J Oil Crop Sci, 2022, 44: 138-146 (in Chinese with English abstract). | |
| [5] |
金锋, 丁莲鑫, 骆骏, 聂圣松, 方中明. 水稻MYB转录因子的研究进展. 植物遗传资源学报, 2023, 24: 917-926.
doi: 10.13430/j.cnki.jpgr.20221220001 |
| Jin F, Ding L X, Luo J, Nie S S, Fang Z M. Research progress of MYB transcription factors in rice. J Plant Genet Resour, 2023, 24: 917-926 (in Chinese with English abstract). | |
| [6] | Xiao R X, Zhang C, Guo X R, Li H, Lu H. MYB transcription factors and its regulation in secondary cell wall formation and lignin biosynthesis during xylem development. Int J Mol Sci, 2021, 22: 3560. |
| [7] | Shin R, Burch A Y, Huppert K A, Tiwari S B, Murphy A S, Guilfoyle T J, Schachtman D P. The Arabidopsis transcription factor MYB77modulates auxin signal transduction. Plant Cell, 2007, 19: 2440-2453. |
| [8] | Lyu B B, Li X J, Sun W W, Li L, Gao R, Zhu Q, Tian S M, Fu M Q, Yu H L, Tang X M, Zhang C L, Dong H S. AtMYB44 regulates resistance to the green peach aphid and diamondback moth by activating EIN2-affected defences in Arabidopsis. Plant Biol, 2013, 15: 841-850. |
| [9] | Zou B H, Jia Z H, Tian S M, Wang X M, Gou Z H, L B B, Dong H S. AtMYB44 positively modulates disease resistance to Pseudomonas syringae through the salicylic acid signalling pathway in Arabidopsis. Funct Plant Biol, 2013, 40: 304-313. |
| [10] | Li D K, Li Y, Zhang L, Wang X Y, Zhao Z, Tao Z W, Wang J M, Wang J, Lin M, Li X F, Yang Y. Arabidopsis ABA receptor RCAR1/PYL9 interacts with an R2R3-type MYB transcription factor, AtMYB44. Int J Mol Sci, 2014, 15: 8473-8490. |
| [11] | Qiu Z K, Yan S S, Xia B, Jiang J, Yu B W, Lei J J, Chen C M, Chen L, Yang Y, Wang Y Q, Tian S B, Cao B H. The eggplant transcription factor MYB44 enhances resistance to bacterial wilt by activating the expression of spermidine synthase. J Exp Bot, 2019, 70: 5343-5354. |
| [12] | Zhou X J, Zha M R, Huang J, Li L, Imran M, Zhang C K. StMYB44 negatively regulates phosphate transport by suppressing expression of PHOSPHATE1 in potato. J Exp Bot, 2017, 68: 1265-1281. |
| [13] | Wei Z Z, Hu K D, Zhao D L, Tang J, Huang Z Q, Jin P, Li Y H, Han Z, Hu L Y, Yao G F, Zhang H. MYB44 competitively inhibits the formation of the MYB340-bHLH2-NAC56 complex to regulate anthocyanin biosynthesis in purple-fleshed sweet potato. BMC Plant Biol, 2020, 20: 258. |
| [14] | Li L X, Wei Z Z, Zhou Z L, Zhao D L, Tang J, Yang F, Li Y H, Chen X Y, Han Z, Yao G F, Hu K D, Zhang H. A single amino acid mutant in the EAR motif of IbMYB44.2 reduced the inhibition of anthocyanin accumulation in the purple-fleshed sweet potato. Plant Physiol Biochem, 2021, 167: 410-419. |
| [15] |
Wei L Z, Mao W W, Jia M R, Xing S N, Ali U, Zhao Y Y, Chen Y T, Cao M L, Dai Z R, Zhang K, Dou Z C, Jia W S, Li B B. FaMYB44.2, a transcriptional repressor, negatively regulates sucrose accumulation in strawberry receptacles through interplay with FaMYB10. J Exp Bot, 2018, 69: 4805-4820.
doi: 10.1093/jxb/ery249 pmid: 30085079 |
| [16] |
沈悦, 沈一, 刘永惠, 梁满, 张旭尧, 陈志德. 花生AhGPAT9 基因启动子克隆及其功能分析. 中国油料作物学报, 2023, 45: 533-541.
doi: 10.19802/j.issn.1007-9084.2022126 |
| Shen Y, Shen Y, Liu Y H, Liang M, Zhang X Y, Chen Z D. Cloning and functional analysis of peanut AhGPAT9 promoter. Chin J Oil Crop Sci, 2023, 45: 533-541 (in Chinese with English abstract). | |
| [17] | 石磊, 苗利娟, 齐飞艳, 张忠信, 高伟, 孙子淇, 黄冰艳, 董文召, 汤丰收, 张新友. 花生Δ9-硬脂酰-ACP脱氢酶基因启动子的克隆及功能分析. 作物学报, 2016, 42: 1629-1637. |
| Shi L, Miao L J, Qi F Y, Zhang Z X, Gao W, Sun Z Q, Huang B Y, Dong W Z, Tang F S, Zhang X Y. Cloning and functional analysis of peanut Δ9-stearoyl-acyl carrier protein desaturase promoter. Acta Agron Sin, 2016, 42: 1629-1637 (in Chinese with English abstract). | |
| [18] | Geng L L, Duan X H, Liang C, Shu C L, Song F P, Zhang J. Mining tissue-specific contigs from peanut (Arachis hypogaea L.) for promoter cloning by deep transcriptome sequencing. Plant Cell Physiol, 2014, 55: 1793-1801. |
| [19] | Tang G Y, Xu P L, Liu W, Liu Z J, Shan L. Cloning and characterization of 5' flanking regulatory sequences of AhLEC1B gene from Arachis hypogaea L. PLoS One, 2015, 10: e0139213. |
| [20] |
孙全喜, 徐洪明, 李春娟, 闫彩霞, 赵小波, 王娟, 苑翠玲, 单世华. 花生种子特异启动子AHSSP1的克隆及功能分析. 核农学报, 2020, 34: 460-467.
doi: 10.11869/j.issn.100-8551.2020.03.0460 |
| Sun Q X, Xu H M, Li C J, Yan C X, Zhao X B, Wang J, Yuan C L, Shan S H. Cloning and functional analysis of peanut seed-specific promoter AHSSP1. Acta Agric Nucl Sin, 2020, 34: 460-467 (in Chinese with English abstract). | |
| [21] | 万小荣, 莫爱琼, 刘帅, 梁建华, 李玲, 余土元, 郑奕雄. 粤油7号花生AhNCED1基因启动子克隆及其活性分析. 核农学报, 2011, 25: 692-699. |
| Wan X R, Mo A Q, Liu S, Liang J H, Li L, Yu T Y, Zheng Y X. Cloning and activity analysis of AhNCED1 gene promoter in peanut Yueyou 7. Acta Agric Nucl Sin, 2011, 25: 692-699 (in Chinese with English abstract). | |
| [22] |
王合春, 陈新利, 隋炯明, 毕英娜, 王晶珊, 乔利仙. 花生β-1,3-葡聚糖酶基因启动子的克隆及功能分析. 植物遗传资源学报, 2013, 14: 864-870.
doi: 10.13430/j.cnki.jpgr.2013.05.016 |
| Wang H C, Chen X L, Sui J M, Bi Y N, Wang J S, Qiao L X. Cloning and functional analysis of the promoter region of β-1,3-glucanase gene in peanut. J Plant Genet Resour, 2013, 14: 864-870 (in Chinese with English abstract). | |
| [23] |
Chen X L, Song R T, Yu M Y, Sui J M, Wang J S, Qiao L X. Cloning and functional analysis of the chitinase gene promoter in peanut. Genet Mol Res, 2015, 14: 12710-12722.
doi: 10.4238/2015.October.19.15 pmid: 26505422 |
| [24] | Liu Y H, Shen Y, Liang M, Zhang X Y, Xu J W, Shen Y, Chen Z D. Identification of peanut AhMYB44 transcription factors and their multiple roles in drought stress. Plants (Basel), 2022, 11: 3522. |
| [25] | Xu Z W, Wang M P, Guo Z T, Zhu X F, Xia Z L. Identification of a 119-bp promoter of the maize sulfite oxidase gene (ZmSO) that confers high-level gene expression and ABA or drought inducibility in transgenic plants. Int J Mol Sci, 2019, 20: 3326. |
| [26] | Wu G F, Cao A H, Wen Y H, Bao W C, She F W, Wu W Z, Zheng S, Yang N. Characteristics and Functions of MYB (v-Myb avivan myoblastsis virus oncogene homolog)-related genes in Arabidopsis thaliana. Genes (Basel), 2023, 14: 2026. |
| [27] |
Zhuang W J, Chen H, Yang M, Wang J P, Pandey M K, Zhang C, Chang W C, Zhang L S, Zhang X T, Tang R H, Garg V, Wang X J, Tang H B, Chow C N, Wang J P, Deng Y, Wang D P, Khan A W, Yang Q, Cai T C, Bajaj P, Wu K C, Guo B Z, Zhang X Y, Li J J, Liang F, Hu J, Liao B S, Liu S Y, Chitikineni A, Yan H S, Zheng Y X, Shan S H, Liu Q Z, Xie D Y, Wang Z Y, Khan S A, Ali N, Zhao C Z, Li X G, Luo Z L, Zhang S B, Zhuang R R, Peng Z, Wang S Y, Mamadou G, Zhuang Y H, Zhao Z F, Yu W C, Xiong F Q, Quan W P, Yuan M, Li Y, Zou H S, Xia H, Zha L, Fan J P, Yu J G, Xie W P, Yuan J Q, Chen K, Zhao S S, Chu W T, Chen Y T, Sun P C, Meng F B, Zhuo T, Zhao Y H, Li C J, He G H, Zhao Y L, Wang C C, Kavikishor P B, Pan R L, Paterson A H, Wang X Y, Ming R, Varshney R K. The genome of cultivated peanut provides insight into legume karyotypes, polyploid evolution and crop domestication. Nat Genet, 2019, 51: 865-876.
doi: 10.1038/s41588-019-0402-2 pmid: 31043757 |
| [28] | Tang G Y, Xu P L, Li P X, Zhu J P, Chen G X, Shan L, Wan S B. Cloning and functional characterization of seed-specific LEC1A promoter from peanut (Arachis hypogaea L.). PLoS One, 2021, 16: e0242949. |
| [29] | Liu H C, Zhu K Y, Tan C, Zhang J Q, Zhou J H, Jin L, Ma G Y, Zou Q C. Identification and characterization of PsDREB2 promoter involved in tissue-specific expression and abiotic stress response from Paeonia suffruticosa. PeerJ, 2019, 7: e7052. |
| [30] |
毛燕, 郑名敏, 牟成香, 谢吴兵, 唐琦. 渗透胁迫下玉米自然反义转录本cis-NATZmNAC48启动子的功能分析. 作物学报, 2024, 50: 354-362.
doi: 10.3724/SP.J.1006.2024.33013 |
| Mao Y, Zheng M M, Mou C X, Xie W B, Tang Q. Function analysis of the promoter of natural antisense transcript cis-NATZmNAC48 in maize under osmotic stress. Acta Agron Sin, 2024, 50: 354-362 (in Chinese with English abstract). | |
| [31] |
朱春权, 魏倩倩, 项兴佳, 胡文君, 徐青山, 曹小闯, 朱练峰, 孔亚丽, 刘佳, 金千瑜, 张均华. 褪黑素和茉莉酸甲酯基质育秧对水稻耐低温胁迫的调控作用. 作物学报, 2022, 48: 2016-2027.
doi: 10.3724/SP.J.1006.2022.12041 |
| Zhu C Q, Wei Q Q, Xiang X J, Hu W J, Xu Q S, Cao X C, Zhu L F, Kong Y L, Liu J, Jin Q Y, Zhang J H. Regulation effects of seedling raising by melatonin and methyl jasmonate substrate on low temperature stress tolerance in rice. Acta Agron Sin, 2022, 48: 2016-2027 (in Chinese with English abstract). | |
| [32] | 周定纬, 刘佳佳, 李培培, 马倩, 巩方平, 李忠峰, 马兴立, 张幸果, 殷冬梅. 外源MeJA对花生主要农艺性状和抗氧化酶活性的影响. 山东农业科学, 2020, 52(9): 29-34. |
| Zhou D W, Liu J J, Li P P, Ma Q, Gong F P, Li Z F, Ma X L, Zhang X G, Yin D M. Effects of exogenous MeJA on main agronomic characters and antioxidant enzyme activities of peanut. Shandong Agric Sci, 2020, 52(9): 29-34 (in Chinese with English abstract). | |
| [33] | Zhang Z Y, Zheng X X, Yang J, Messing J, Wu Y R. Maize endosperm-specific transcription factors O2 and PBF network the regulation of protein and starch synthesis. Proc Natl Acad Sci USA, 2016, 113: 10842-10847. |
| [34] | 王梦龙, 严维, 彭小群, 唐晓艳. 水稻胚乳特异性表达基因启动子的鉴定. 植物生理学报, 2022, 58: 1946-1960. |
| Wang M L, Yan W, Peng X Q, Tang X Y. Identification of rice endosperm-specific gene promoters. Acta Phytophysiol Sin, 2022, 58: 1946-1960 (in Chinese with English abstract). | |
| [35] |
Li Q Y, Li L Q, Liu Y, Lyu Q, Zhang H, Zhu J, Li X J. Influence of TaGW2-6A on seed development in wheat by negatively regulating gibberellin synthesis. Plant Sci, 2017, 263: 226-235.
doi: S0168-9452(17)30407-7 pmid: 28818379 |
| [1] | Zheng Yu-Zhen, Qi Fei-Yan, Sun Zi-Qi, Liu Hua, Qin Li, Shi Lei, Wang Juan, Wang Meng-Meng, Han Suo-Yi, Xu Jing, Miao Li-Juan, Huang Bing-Yan, Dong Wen-Zhao, Zheng Zheng, Zhang Xin-You. QTL mapping of total very long-chain fatty acids and seven fatty acid components in peanut seeds [J]. Acta Agronomica Sinica, 2026, 52(6): 1646-1657. |
| [2] | Lu Yi-Chu, Li Zhen-Ying, Mai Chun-Hai, Zhao Xiao-Rui, Wang Li-Xiang. Positively regulating role of the key evening complex gene AhLUX1 in peanut nodulation [J]. Acta Agronomica Sinica, 2026, 52(6): 1658-1668. |
| [3] | Wang Yi-Han, Li Fu-Chang, Liu Yi, Zhu Guo-Peng. Cloning of the IbOPR2 gene promoter and identification of regulatory factors in sweetpotato [J]. Acta Agronomica Sinica, 2026, 52(4): 1268-1276. |
| [4] | Yu Tian-Yi, Wang Chun-Xiao, Xiao Li, Zhong Zhao-Di, Wang Xuan-Cang, Zhao Yong, Lu Ya, Wu Yue, Wu Zheng-Feng. Response of nitrogen accumulation, yield, and quality characteristics of peanut varieties with different nodulation traits to nitrogen fertilizer application rate [J]. Acta Agronomica Sinica, 2026, 52(3): 881-894. |
| [5] | Zhang Sheng-Zhong, Li Guo-Wei, Ge Li-Jiang, Wang Fei-Fei, Hu Xiao-Hui, Miao Hua-Rong, Li Yan, Zhong Wen, Chen Jing. Screening and QTL mapping for mechanical shelling damage related traits in peanut [J]. Acta Agronomica Sinica, 2026, 52(2): 644-652. |
| [6] | Yang Biao, Du Shuai-Kang, Zhang Ji-Wang, Shi Ying, Zhang Li-Li. Genome-wide identification of class III POD gene family in potato and its expression profile analysis [J]. Acta Agronomica Sinica, 2026, 52(2): 405-420. |
| [7] | Wang Fei-Fei, Zhang Sheng-Zhong, Yang Gui-Hua, Miao Hua-Rong, Hu Xiao-Hui, Zhang Ze-Lin, Liu Sha-Sha, Qiao Li-Xian, Shan Shi-Hua, Chen Jing. Comprehensive evaluation of salt tolerance and identification of elite salt-tolerant germplasm in 331 peanut accessions at seedling stage [J]. Acta Agronomica Sinica, 2026, 52(1): 279-294. |
| [8] | Hu Cheng-Zhen, Gao Wei-Dong, Kong Bin-Xue, Wang Jian-Fei, Che Zhuo, Yang De-Long, Chen Tao. Genome-wide identification of the TaAPC11 gene family in wheat and functional characterization of TaAPC11-5B in drought stress responses [J]. Acta Agronomica Sinica, 2026, 52(1): 148-164. |
| [9] | Wang Ya-Zhi, Yang Biao, Ji Xiang-Lin, Shi Ying, Zhang Li-Li. Identification of drought-resistant resources and preliminary screening of drought resistant genes in diploid potatoes [J]. Acta Agronomica Sinica, 2026, 52(1): 72-84. |
| [10] | Jin Xin-Xin, Song Ya-Hui, Su Qiao, Yang Yong-Qing, Wang Jin. Growth and dry matter production characteristics of high-yielding, high-oil, and high oleic acid peanut varieties [J]. Acta Agronomica Sinica, 2026, 52(1): 191-201. |
| [11] | Chi Xiao-Yuan, Liu Qing, Zhang Jun, Zhao Xu-Hong, Li Mei, Yu Tian-Yi, Pan Li-Juan, Xu Jing, Jiang Xiao, Yin Xiang-Zhen, Ma Jun-Qing, Chen Na. Field evaluation of salt-alkaline tolerance and trait correlation analysis in different peanut varieties (lines) [J]. Acta Agronomica Sinica, 2026, 52(1): 85-98. |
| [12] | Kong Na, Liu Tao, Liu Wen-Ting, Chen Gang, Wen Li-Chao, Deng Zhi-Chao, Guo Mei, Li Wei, Guo Yong-Feng. Cloning of the NtCEP7 gene in tobacco and functional analysis of its encoded peptide in seedling-stage drought resistance [J]. Acta Agronomica Sinica, 2026, 52(1): 249-261. |
| [13] | Sun Chen-Shuo, Zhang Yue, Tian Ze-Kai, Yan Li-Ying, Kang Yan-Ping, Chen Yu-Ning, Wang Xin, Huai Dong-Xin, Wang Qian-Qian, Jiang Hui-Fang, Luo Huai-Yong, Huang Li, Liao Bo-Shou, Wang Zhi-Hui, Lei Yong. Genetic differentiation of peg strength and analysis of major influencing factors in peanut germplasm [J]. Acta Agronomica Sinica, 2026, 52(1): 118-130. |
| [14] | Liu Hai-Bo, Zhang Lei, Wang Li-Qi, Shi Xiao-Li, Zhou Wen-Ying, Cui Guo-Xian, She Wei. Functional study of the BnGCL1 gene in ramie (Boehmeria nivea L.) in response to drought stress [J]. Acta Agronomica Sinica, 2026, 52(1): 14-27. |
| [15] | HE Peng-Xu, YAO Li-Rong, CHEN Yuan-Ling, YAN Yan, ZHANG Hong, WANG Jun-Cheng, LI Bao-Chun, YANG Ke, SI Er-Jing, MENG Ya-Xiong, MA Xiao-Le, WANG Hua-Jun. Differences and correlations in physiological and molecular mechanisms of barley germination under drought stress [J]. Acta Agronomica Sinica, 2025, 51(9): 2412-2432. |
|
||