[1] |
梁煜莹, 张加羽, 姜骁, 王露欢, 张晓吉, 刘齐妹, 薛云云, 迟晓元, 白冬梅. 花生品质与气候环境的关系研究[J]. 植物遗传资源学报, 2024, 25(2):227-244.doi: 10.13430/j.cnki.jpgr.20230728001.
|
|
Liang Y Y, Zhang J Y, Jiang X, Wang L H, Zhang X J, Liu Q M, Xue Y Y, Chi X Y, Bai D M. Study on the relationship between peanut quality and climatic environments[J]. Journal of Plant Genetic Resources, 2024, 25(2):227-244.
|
[2] |
代小冬, 杜培, 秦利, 刘华, 张忠信, 高伟, 刘娟, 徐静, 董文召, 张新友. 花生抗旱性研究进展[J]. 热带作物学报, 2021, 42(6):1788-1794.doi: 10.3969/j.issn.1000-2561.2021.06.039.
|
|
Dai X D, Du P, Qin L, Liu H, Zhang Z X, Gao W, Liu J, Xu J, Dong W Z, Zhang X Y. Research progress and prospect of drought resistance in peanut(Arachis hypogaea L.)[J]. Chinese Journal of Tropical Crops, 2021, 42(6):1788-1794.
|
[3] |
Pruthvi V, Narasimhan R, Nataraja K N. Simultaneous expression of abiotic stress responsive transcription factors,AtDREB2A,AtHB7 and AtABF3 improves salinity and drought tolerance in peanut( Arachis hypogaea L.)[J]. PLoS One, 2014, 9(12):e111152.doi: 10.1371/journal.pone.0111152.
|
[4] |
陈雷, 杨明达, 贺群岭, 李帅, 王宏青, 张枫叶, 张梦圆, 吴继华. 基于不同生育时期干旱对花生抗旱性的综合评定[J]. 花生学报, 2024, 53(2):31-38,46.doi: 10.14001/j.issn.1002-4093.2024.02.004.
|
|
Chen L, Yang M D, He Q L, Li S, Wang H Q, Zhang F Y, Zhang M Y, Wu J H. Comprehensive evaluation on drought resistance of peanuts at different growth stages[J]. Journal of Peanut Science, 2024, 53(2):31-38,46.
|
[5] |
|
|
Zheng T, Zhang K K, Zhang P A, Jia H F, Fang J G. Recent progress in the study of transition between vegetative and reproductive growth in grapevine[J]. Plant Physiology Journal, 2020, 56(7):1361-1372.
|
[6] |
|
|
Li G W, Qin S H, Liu Y Y, Zhang J L, Han Y, Wan S B. Advances in plant architecture studies of peanut[J]. Chinese Journal of Oil Crop Sciences, 2020, 42(6):934-939.
|
[7] |
董奇琦, 艾鑫, 张艳正, 张克朝, 周东英, 王晓光, 蒋春姬, 赵姝丽, 钟超, 王婧, 于海秋, 赵新华. 干旱胁迫对不同耐性花生品种生理特性及产量的影响[J]. 沈阳农业大学学报, 2020, 51(1):18-26.doi: 10.3969/j.issn.1000-1700.2020.01.003.
|
|
Dong Q Q, Ai X, Zhang Y Z, Zhang K Z, Zhou D Y, Wang X G, Jiang C J, Zhao S L, Zhong C, Wang J, Yu H Q, Zhao X H. Effect of drought stress on physiological characteristics and yield in different tolerant peanut[J]. Journal of Shenyang Agricultural University, 2020, 51(1):18-26.
|
[8] |
|
|
Qu J. Effects of drought stress on root-shoot ratio,yield and quality of different types of peanuts[J]. Bulletin of Agricultural Science and Technology, 2014(6):129-132.
|
[9] |
霍勇锦, 徐紫薇, 王燃, 王欢颜, 刘剑君, 苏新宏, 张威, 杨铁钊, 夏宗良. 干旱胁迫下嫁接对烟草抗氧化酶活性、膜脂过氧化及胁迫响应基因表达的影响[J]. 烟草科技, 2016, 49(8):14-20.doi: 10.16135/j.issn1002-0861.2015.0528.
|
|
Huo Y J, Xu Z W, Wang R, Wang H Y, Liu J J, Su X H, Zhang W, Yang T Z, Xia Z L. Effects of grafting on antioxidant enzyme activities,membrane lipid peroxidation and stress-responsive gene expression in tobacco under drought stress[J]. Tobacco Science & Technology, 2016, 49(8):14-20.
|
[10] |
Rivero R M, Ruiz J M, Sánchez E, Romero L. Does grafting provide tomato plants an advantage against H 2O 2 production under conditions of thermal shock?[J]. Physiologia Plantarum, 2003, 117(1):44-50.doi: 10.1034/j.1399-3054.2003.1170105.x.
|
[11] |
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[J]. 中国油料作物学报, 2022, 44(1):138-146.doi: 10.19802/j.issn.1007-9084.2020300.
|
|
Ren J Y, 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[J]. Chinese Journal of Oil Crop Sciences, 2022, 44(1):138-146.
|
[12] |
|
|
Ding H, Cheng B, Zhang G C, Xu Y, Qin F F, Zhang Z M, Yu Q G. Effects of nitrogen fertilizer application on physiological characteristics of peanut leaves under drought stress[J]. Journal of Peanut Science, 2021, 50(2):64-68,72.
|
[13] |
刘海东, 陈庆政, 林秀芳, 祁俊程, 叶万余, 吴春玲. 干旱胁迫对花生生理特性与产质量的影响[J]. 贵州农业科学, 2022, 50(12):25-34.
|
|
Liu H D, Chen Q Z, Lin X F, Qi J C, Ye W Y, Wu C L. Effects of drought stress on physiological characteristics,yield and quality of peanut[J]. Guizhou Agricultural Sciences, 2022, 50(12):25-34.
|
[14] |
|
|
Jin X X, Song Y H, Cheng Z S, Wang J, Li Y R, Su Q. Effects of irrigation on growth and yield of peanut at anthesis[J]. Acta Agriculturae Boreali-Sinica, 2021, 36(6):124-131.
|
[15] |
|
|
Wang S J, Xia G M, Li Y F, Wang W Z, Chi D C. Effects of biochar-based fertilizer and water stress on physiological characteristics and yield of peanut[J]. Chinese Journal of Oil Crop Sciences, 2017, 39(6):827-833.
|
[16] |
|
|
Zhang G C, Shi X L, Ci D W, Ding H, Yang J S, Tian J M, Zhang Z M, Dai L X. Effect of drought and salt stress on accumulation of plant dry weight and photosynthetic characteristics[J]. Journal of Nuclear Agricultural Sciences, 2019, 33(5):999-1005.
|
[17] |
|
|
Wang C, Wan Y S, Liu F Z, Zhang K. Study on drought resistance of peanut varieties at seedling stage under PEG6000 osmotic stress[J]. Shandong Agricultural Sciences, 2018, 50(6):65-71.
|
[18] |
Li H X, Xiao Y, Cao L L, Yan X, Li C, Shi H Y, Wang J W, Ye Y H. Cerebroside C increases tolerance to chilling injury and alters lipid composition in wheat roots[J]. PLoS One, 2013, 8(9):e73380.doi: 10.1371/journal.pone.0073380.
|
[19] |
Grellet Bournonville C F, Díaz-Ricci J C. Quantitative determination of superoxide in plant leaves using a modified NBT staining method[J]. Phytochemical Analysis, 2011, 22(3):268-271.doi: 10.1002/pca.1275.
|
[20] |
|
|
Liu Q T, Hu P, Zheng M X, Lin Z C, Li Z A, Li T. Research on crop tissue structure and mechanical properties[J]. Journal of South China Agricultural University, 2024, 45(3):446-456.
|
[21] |
Zhang Y, Tang H R, Luo Y. Variation in antioxidant enzyme activities of two strawberry cultivars with short-term low temperature stress[J]. World Journal of Agricultural Sciences, 2008, 4(4):458-462.
|
[22] |
|
|
Yu T Y, Wang C X, Sun X W, Sun X S, Zheng Y M, Wu Z F, Shen P, Wang C B. Effects of alkaline stress on root morphology and dry matter accumulation characteristics of peanut seedling[J]. Chinese Journal of Oil Crop Sciences, 2017, 39(2):190-196.
|
[23] |
盖志佳, 张敬涛, 刘婧琦, 蔡丽君, 杜佳兴, 孟庆英, 谷维, 陈磊. 低温胁迫对大豆幼苗形态生理指标及籽粒产量的影响[J]. 农学学报, 2019, 9(12):1-4.
|
|
Gai Z J, Zhang J T, Liu J Q, Cai L J, Du J X, Meng Q Y, Gu W, Chen L. Cold stress affects morphological and physiological indexes of soybean seedling and seed yield[J]. Journal of Agriculture, 2019, 9(12):1-4.
|
[24] |
Huang S B, Van Aken O, Schwarzländer M, Belt K, Millar A H. The roles of mitochondrial reactive oxygen species in cellular signaling and stress response in plants[J]. Plant Physiology, 2016, 171(3):1551-1559.doi: 10.1104/pp.16.00166.
|
[25] |
Wang J, Yu Y, Jiang C J, Sun Z X, Wang X N, Wang Z Y, Ren J Y, Wang Z H, Wang X G, Yang Z Z, Zhao S L, Zhong C, Zhang H, Liu X B, Kang S L, Zhao X H, Yu H Q. Comparative analysis of physiology-anatomy and transcriptome-metabolome involving acute drought stress response of root between two distinct peanut cultivars at seedling stage[J]. Environmental and Experimental Botany, 2023,214:105442.doi: 10.1016/j.envexpbot.2023.105442.
|
[26] |
Ben Ahmed C, Ben Rouina B, Sensoy S, Boukhris M, Ben Abdallah F. Changes in gas exchange,proline accumulation and antioxidative enzyme activities in three olive cultivars under contrasting water availability regimes[J]. Environmental and Experimental Botany, 2009, 67(2):345-352.doi: 10.1016/j.envexpbot.2009.07.006.
|
[27] |
李仍媛, 张鹤, 蒋春姬, 任婧瑶, 艾鑫, 赵新华, 王婧, 赵姝丽, 于海秋. 开花下针期干旱胁迫对花生氮代谢的影响[J]. 中国油料作物学报, 2023, 45(5):988-995.doi: 10.19802/j.issn.1007-9084.2022157.
|
|
Li R Y, Zhang H, Jiang C J, Ren J Y, Ai X, Zhao X H, Wang J, Zhao S L, Yu H Q. Effects of drought stress on nitrogen metabolism at anthesis stage of peanut[J]. Chinese Journal of Oil Crop Sciences, 2023, 45(5):988-995.
|
[28] |
Rejeth R, Manikanta C L N, Beena R, Stephen R, Manju R V, Viji M M. Water stress mediated root trait dynamics and identification of microsatellite markers associated with root traits in rice( Oryza sativa L.)[J]. Physiology and Molecular Biology of Plants, 2020, 26(6):1225-1236.doi: 10.1007/s12298-020-00809-y.
|
[29] |
|
|
Li N, Yang X L, Ning D X, Zhao Y K, Yang L P. Research progress on identification indexes and evaluation of drought resistance of peanut[J]. Agriculture and Technology, 2020, 40(11):11-14.
|
[30] |
|
|
Wang R R, Wang H Q, Jiang G Y, Yin H J, Xie B Y, Zhang T. Response of water consumption and root physiological characteristics of two different drought-tolerant wheat varieties to anthesis stage drought[J]. Journal of Soil and Water Conservation, 2022, 36(4):253-264.
|