Xinjiang Agricultural Sciences ›› 2020, Vol. 57 ›› Issue (1): 1-11.DOI: 10.6048/j.issn.1001-4330.2020.01.001
ZHAO Haiju1, Ailiman Abulaizi1, Tayier Maimaitijiang1, LIANG Xiaoling2, WANG Changhai3, LAN Haiyan1
Received:
2019-09-21
Online:
2020-01-20
Published:
2020-02-06
Correspondence author:
LAN Haiyan(1969-), female, Urumqi, Xinjiang, professor, research field: botany, (E-mail) lanhaiyan@xju.edu.cnSupported by:
赵海菊1, 艾丽曼·阿布来孜1, 塔伊尔·买买提江1, 梁晓玲2, 王长海3, 兰海燕1
通讯作者:
兰海燕(1969-),女,新疆乌鲁木齐人,教授,博士,硕士/博士生导师,研究方向为植物学,(E-mail)lanhaiyan@xju.edu.cn作者简介:
赵海菊(1981-),女,山东济宁人,博士研究生,研究方向为植物学,(E-mail)zhaohaiju@163.com
基金资助:
CLC Number:
ZHAO Haiju, Ailiman Abulaizi, Tayier Maimaitijiang, LIANG Xiaoling, WANG Changhai, LAN Haiyan. Study on Seed Germination and Seedling Growth Resistance of Maize Inbred JH089[J]. Xinjiang Agricultural Sciences, 2020, 57(1): 1-11.
赵海菊, 艾丽曼·阿布来孜, 塔伊尔·买买提江, 梁晓玲, 王长海, 兰海燕. 玉米自交系JH089种子萌发及幼苗生长的抗逆性[J]. 新疆农业科学, 2020, 57(1): 1-11.
[1] Zhu, Jian-Kang. Abiotic Stress Signaling and Responses in Plants [J]. Cell, 2016, 167(2):313-324. [2] Bouis H E . Biofortification-a sustainable agricultural strategy for reducing micronutrient malnutrition in the global south[J]. Crop Sci,2010, (50): S20-S32. [3] 王凤格, 田红丽, 赵久然, 等. 中国 328 个玉米新品种(组合)SSR 标记遗传多样性分析[J]. 中国农业科学,2014, 47(5): 856-864. WANG Fen ge, TIAN Hon li, ZHAO Jiu ran, et al. Genetic Diversity Analysis of 328 Maize Varieties (Hybridized Combinations) Using SSR Markers [J]. Scientia Agricultura Sinica, 2014, 47(5): 856-864. [4] 中国种业信息网. 2018年中国玉米播种面积、制种面积分析. www. Chinaseed. net. Analysis of China's corn planting area and seed production area in 2018. [5] LIU H J, ZHANG L, Wang J C, et al. Quantitative Trait Locus Analysis for Deep-Sowing Germination Ability in the Maize IBM Syn10 DH Population [J]. Frontiers in Plant Science, 2017, (8):813. [6] Cui D, WU D, LIU J, et al. Proteomic Analysis of Seedling Roots of Two Maize Inbred Lines That Differ Significantly in the Salt Stress Response[J]. Plos One, 2015, 10(2):e0116697. [7] 张凤路, 孙国伟, 郭江, 等. 常用玉米杂交种的耐旱性研究[J]. 玉米科学,2004, 12(1):16-17. ZHANG Fenglu, SUN Guowei, GUO Jiang, et al. Studies on the Drought-tolerant Maize Hybrids Selection [J]. Journal of Maize Sciences, 2004, 12(1):16-17. [8] 李亮, 郝转芳, 翁建峰, 等. 玉米自交系萌发期与苗期的耐旱性评价[J]. 玉米科学,2011, 19(4):5-9. LI Liang, HAO Zhuanfang, WONG Jianfeng, et al. Evaluation of Maize Drought Tolerance at Germination and Seedling Stages [J]. Journal of Maize Sciences,2011, 19(4):5-9. [9] 袁文娅, 刘秀峰, 杨兆顺, 等. 玉米亲本与杂交种间耐盐性与种子活力的研究[J]. 农业科技通讯,2018,(4): 70-72. YUAN Wenya, LIU Xiufeng, YANG Zhaoshun, et al. Study on Salt Tolerance and Seed Vigor between Maize Parents and Hybrids [J]. Bulletin of Agricultural Science and Technology, 2018,(4): 70-72. [10] 韩登旭, 杨杰, 邵红雨, 等. 中国骨干玉米自交系抗旱性分析与评价[J]. 西北植物学报,2012, 32(8): 1648-1653. HAN Dengxu, YANG Jie, SHAO Hongyu, et al. Analysis and Evaluation of Drought Resistance of Elite Maize Inbred Lines in China [J]. Acta Botanica Boreali-Occidentalia Sinica, 2012, 32(8): 1648-1653. [11] 商学芳. 不同基因型玉米对盐胁迫的敏感性及耐盐机理研究[D].济南: 山东农业大学,2007,75-84 SHANG Xuefang. Study on Sensitivity of Salt Stress and Salt-Tolerant Mechanism of Different Genotypes Maize (Zea mays L.)[D]. Jinan: Shandong Agricultural University,2007, 75-84. [12] 张华永, 崔丽娜, 董树亭, 等. 37个常用玉米自交系抗旱性筛选[J]. 山东农业科学,2010 ,(1) :25-27. ZHANG Huayong, CUI Lina, DONG Shuting, et al. Selection for Drought for Resistance of 37 Maize Inbred Lines[J]. Shandong Agriculural Sciences, 2010 ,(1) :25-27. [13] Kitajima K, Fenner, M. Ecology of seedling regeneration, in Seeds: the ecology of regeneration in plant communities [M]. CABI Publishing: New York. 2000:331-359. [14] Hanley ME, Fenner M, Whibley H, et al. Early plant growth: Identifying the end point of the seedling phase [J]. New Phytologist, 2004, 163(1): 61-66. [15] 夏爱. 不同基因型小麦种子水分胁迫下的成苗研究[D]. 陕西杨凌: 西北农林科技大学,2001:1-10. XIA Ai. The Seedling Establishment of Different Genotypic Wheat Under Water Stress Condition [D]. Yangling: Northwest A&F University. 2001:1-10. [16] 苏佩, 山仑. 玉米种子萌发成苗不同阶段需水阈值的研究[J]. 西北植物学报,1996, 16(1): 34-37. SU Pei, SHAN Lun. Study of Water Requirement during Seed Germination and Seedling Establishment of Maize Seeds [J]. Acta Botanica Boreali-Occidentalia Sinica,1996, 16(1): 34-37. [17] TANG N, Ma SQ, Zong W, et al. MODD Mediates Deactivation and Degradation of OsbZIP46 to Negatively Regulate ABA Signaling and Drought Resistance in Rice[J]. The Plant Cell, 2016, 28: 2161-2177. [18] Luo M, ZHAO Y, Wang Y, et al. Comparative proteomics of contrasting maize genotypes provides insights into salt-stress tolerance mechanisms [J]. Journal of Proteome Research, 2018,17:141-153. [19] 刘春晓, 董瑞, 刘强, 等. 盐胁迫对不同玉米种质资源种子萌发特性的影响[J]. 山东农业科学,2017,10:33-36+41. LIU Chunxiao, DONG Rui, LIU Qiang, et al. Effects of NaCl Stress on Seed Germination Characteristics of Maize Germplasm Resources [J]. Shandong Agricultural Sciences, 2017, 10:33-36+41. [20] 李波, 方志坚. 耐低温玉米自交系的筛选及其叶片生理特性和细胞结构变化[J]. 河南农业科学,2018, 47(10):31-37. LI Bo, FANG Zhijian. Screening of Low-temperature Tolerance Maize Inbred Lines and Analysis of Leaf Physiological Characteristics and Cellular Structure Changes [J]. Journal of Henan Agricultural Sciences,2018, 47(10):31-37. [21] 杨德光, 孙玉珺, Irfan A R, 等. 低温胁迫对玉米发芽及幼苗生理特性的影响[J]. 东北农业大学学报,2018, 49(5):1-8. Yang Deguang, SUN Yujun, Irfan A R, et al. Effect of low temperature stress on germination and physiological of maize seedling [J]. Journal of Northeast Agricultural University, 2018, 49(5):1-8. [22] Romero-Rodríguez, M. Cristina, Archidona-Yuste, Antonio, Abril, Nieves,等. Germination and Early Seedling Development in Quercus ilex Recalcitrant and Non-dormant Seeds: Targeted Transcriptional, Hormonal, and Sugar Analysis[J]. Frontiers in Plant Science, 2018, (9):1508. [23] Leubnermetzger G. Seed dormancy and the control of germination [J]. New Phytologist, 2010, 171(3): 501-523. [24] 吕天放, 徐田军, 刘月娥, 等. 低温胁迫对不同基因型玉米种子萌发特性的影响[J]. 玉米科学,2018,26(6):45-49. LU Tianfang, XU Tianjun, LU Yuee, et al. Effects of Low Temperature Stress on Seed Germination of Different Maize [J]. Journal of Maize Sciences, 2018, 26(6):45-49. [25] 金正律, 周秋艳. 盐胁迫对不同玉米品种种子发芽及幼苗生长的影响[J]. 湖北农业科学,2014,53(13):2989-2991. JIN Zhenglü, ZHOU Qiuyan. Effects of NaCl Stress on Seed Germination and Seedling Growth of Zea mays L [J]. Hubei Agricultural Sciences, 2014, 53(13):2989-2991. [26] 吴晨, 葛锦, 张少斌. PEG模拟干旱胁迫处理辽宁省主栽玉米品种的萌发特性[J]. 贵州农业科学,2017, 45(2):26-30. WU Chen, GE Jin, ZHANG Shaobin. Seeds Germination Characteristics of Maize with PEG Simulated Drought Stress in Liaoning Province [J]. Guizhou Agricultural Sciences, 2017, 45(2):26-30. [27] 范玉贞. 酸雨对玉米种子萌发及幼苗生长的影响[J]. 沧州师范学院学报,2008, 24(4):36-38. FAN YU zhen. Effect of Acid Rain on Seed Germination and Seeding Growth of Maize [J]. Journal of Cangzhou Teachers' College, 2008, 24(4):36-38. [28] 姚海梅, 李永生, 张同祯, 等. 旱-盐复合胁迫对玉米种子萌发和生理特性的影响[J]. 应用生态学报,2016, 27(7):2301-2307. YAO Haimei, LI Yongsheng, ZHANG Tongzhen, et al. Effects of combined drought and salinity stress on germination and physiological characteristics of maize (Zea mays) [J]. Chinese Journal of Applied Ecology, 2016, 27(7):2301-2307. [29] 田润苗, 张雪海, 汤继华, 等. 玉米种子萌发相关性状的全基因组关联分析[J]. 作物学报,2018, 44(5): 48-61. TIAN Runmiao, ZHANG Xue hai, TANG Jihua, et al. Genome-wide Association Studies of Seed Germination Related Traits in Maize [J]. Acta Agronomica Sinica, 2018, 44(5): 48-61. [30] 郭效龙, 宋希云, 裴玉贺, 等. 玉米自交系萌发期和苗期抗旱性指标的筛选[J]. 植物生理学报,2018, 54(11):1719-1726. GUO Xiaolong, SONG Xiyun, PEI Yuhe, et al. Screening of drought resistance indexes of maize inbred lines [J]. Plant Physiology Journal, 2018, 54(11):1719-1726. [31] Ma Q L, Kang J M, Long RC, et al. Comparative proteomic analysis of alfalfa revealed new salt and drought stress-related factors involved in seed germination [J]. Mol Biol Rep, 2017, 44:261-272. [32] 胡涛, 张鸽香, 郑福超, 等. 植物盐胁迫响应的研究进展[J]. 分子植物育种,2018, 16(9):264-273. HU Tao, ZHANG Gexiang, ZHENG Fu chao, et al. Research Progress in Plant Salt Stress Response [J]. Molecular Plant Breeding, 2018, 16(9):264-273. [33] 李彦, 张英鹏, 孙明, 等. 盐分胁迫对植物的影响及植物耐盐机理研究进展[J]. 中国农学通报,2008, 24(1):258-265. LI Yan, ZHANG Yingpeng, SUN Ming, et al. Research Advance in the Effects of Salt Stress on Plant and the Mechanism of Plant Resistance [J]. Chinese Agricultural Science Bulletin, 2008, 24(1):258-265. [34] Kawa D, Julkowska M, Montero Sommerfeld H, et al. Phosphate-dependent root system architecture responses to salt stress[J]. Plant Physiology, 2016, 172: 690-706. [35] Wang S , Wan C , Wang Y , et al. The characteristics of Na+, K+ and free proline distribution in several drought-resistant plants of the Alxa Desert, China [J]. Journal of Arid Environments, 2004, 56(3):525-539. [36] Martinez JP. NaCl alleviates polyethylene glycol-induced water stress in the halophyte species Atriplex halimus L.[J]. Journal of Experimental Botany, 2005, 56(419):2421-2431. [37] 齐健, 宋凤斌, 刘胜群. 苗期玉米根叶对干旱胁迫的生理响应[J]. 生态坏境.,2006, 15(6 ): 1264-1268. QI Jian, SONG Feng bin, LIU Sheng qun. Some physiological response of roots and leaves of zea mays seedling to drought-stress [J]. Ecology and Environment, 2006, 15(6): 1264-1268. [38] Zélicourt, Axel de, Colcombet J, Hirt H. The Role of MAPK Modules and ABA during Abiotic Stress Signaling [J]. Trends in Plant Science, 2016, 21(8):677-685. [39] Janowiak F, Maas B, Karl Do rffling. Importance of abscisic acid for chilling tolerance of maize seedlings [J]. Journal of Plant Physiology, 2002, 159(6):635-643. [40] 史占忠, 贲显明, 张敬涛, 等. 三江平原春玉米低温冷害发生规律及防御措施[J]. 黑龙江农业科学,2003,(2):7-10. SHI Zhanzhong, BEN Xian ming, ZHANG Jingtao, et al. The Emerging Pattern and Preventive Measure of Maize Cold Damage in the Sanjiang River Plain [J]. Heilongjiang Agricutural Sciences,2003,(2):7-10. [41] Rivaroveda L, Escale B, Giauffret C, et al. Effects of cold temperatures on the early stages of maize inbreds [J]. Biotechnologie Agronomie Société Et Environnement, 2015, 23(4):42-52. [42] 孟宪欣, 王洪刚, 方仁柱. 水分对玉米种子发芽及苗期生长的影响[J]. 安徽农学通报,2008, 14(14):40-52. MENG Xian xin, WANG Hong gang, FANG REN zhu. Effect of Water on Germination and Seedling Growth of Maize [J]. Anhui Agricultural Science Bulletin, 2008, 14(14):40-52. |
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