[1] 贺佳圆,王靖婷,白小明,等. 温度对8个野生早熟禾材料萌发特性的影响[J]. 草业科学,2013,30(3):383-389 [2] 文金花. 三江源区青海草地早熟禾人工草地植物量动态及抗寒性研究[D]. 兰州:甘肃农业大学,2006:1-3 [3] 文金花,马玉寿,施建军,等. 利用草地早熟禾改建江河源区“黑土型”退化草地的研究[J]. 草原与草坪,2006(02):41-44 [4] 林艳,郭伟珍,徐振华,等. 大叶女贞抗寒性及冬季叶片丙二醛和可溶性糖含量的变化[J]. 中国农学通报,2012,28(25):68-72 [5] Rolland F,Baena-Gonzalez E,Sheen J. Sugar sensing and signaling in plants:conserved and novel mechanisms[J]. Annual review of plant biology,2006,57(1):675-709 [6] Hare P D,Cress W A. Metabolic implications of stress-induced proline accumulation in plants[J]. Plant Growth Regulation,1997,21(2):79-102 [7] Vetcha A,Pidakala R,Bapatla R B,et al. Oxidative stress induced in chloroplasts or mitochondria promotes proline accumulation in leaves of pea (Pisum sativum):another example of chloroplast-mitochondria interactions[J]. Protoplasma,2018,256(2):449-457 [8] 牛永强,高鹏,路来明,等. 草坪草的低温胁迫及抗寒性的研究进展[J]. 山东农业科学,2012,44(3):53-57 [9] Fiehn O. Metabolomics-the link between genotypes and phenotypes[J]. Plant Molecular Biology,2002,48(1-2):155-171 [10] Kusano M,Tohge T,Fukushima A,et al. Metabolomics reveals comprehensive reprogramming involving two independent metabolic responses of Arabidopsis to UV-B light[J]. The Plant Journal,2011,67(2):354-369 [11] Rouphael Y,Colla G,Bernardo L,et al. Zinc excess triggered polyamines accumulation in lettuce root metabolome,as compared to osmotic stress under high salinity[J]. Front Plant Scicence,2016(7):842-852 [12] 刘玉凤,李天来,焦晓赤. 短期夜间亚低温及恢复对番茄光合作用和蔗糖代谢的影响[J]. 园艺学报,2011,38(04):683-691 [13] 段二龙,马履一,杨杨,等. 红花玉兰和白玉兰冷应激代谢组学分析[J]. 分子植物育种,2019,17(06):1771-1779 [14] 周梦. 基于转录组学和代谢组学分析小麦冷反应特征[D]. 保定:河北农业大学,2018:11-16 [15] 高俊凤. 植物生理学实验指导[M]. 北京:高等教育出版社,2006:144-228 [16] Liu Z J,Guo Y K,Bai J G. Exogenous hydrogen peroxide changes antioxidant enzyme activity and protects ultrastructure in leaves of two cucumber ecotypes under osmotic stress[J]. Journal of Plant Growth Regulation,2010,29(2):171-183 [17] Vincent W A. Colorimetric determination of amino-acid concentration[J]. Nature,1960,185(4712):530 [18] Qiu Y,Su M,Liu Y,et al. Application of ethyl chloroformate derivatization for gas chromatography-mass spectrometry based metabonomic profiling[J]. Analytica Chimica Acta,2007,583(2):277-283 [19] 郭子武,李宪利,高东升,等. 植物低温胁迫响应的生化与分子生物学机制研究进展[J]. 中国生态农业学报,2004,12(2):54-57 [20] 成铁龙,彭冶,施季森,等. 低温胁迫对杂交鹅掌楸幼苗活性氧和活性氮代谢的影响[J]. 江苏农业科学,2017,45(24):99-102 [21] 李静思,黄宁,麻加欣,等. 4个海滨雀稗对低温胁迫的生理响应及抗寒性比较[J]. 草地学报,2018,26(06):1444-1448 [22] 梁慧敏,夏阳,杜峰,等. 低温胁迫对草地早熟禾抗性生理生化指标的影响[J]. 草地学报,2001,9(4):283-286 [23] 刘南清,林绍艳,沈益新. 假俭草叶片渗透调节物质含量对冬前低温的响应及其与低温伤害的关系[J]. 草业学报,2019(3):122-130 [24] 代宇佳,罗晓峰,周文冠,等. 生物和非生物逆境胁迫下的植物系统信号[J]. 植物学报,2019(2):255-264 [25] 宗和. 氨基酸在作物生长中的主要作用和功能[J]. 中国农资,2017(33):20 [26] Xu Q,Fan N L,Zhuang L L,et al. Enhanced stolon growth and metabolic adjustment in creeping bentgrass with elevated CO2,concentration[J]. Environmental and Experimental Botany,2018(155):87-97 [27] 刘南清,林绍艳,沈益新. 外源腐胺与亚精胺提高假俭草低温胁迫耐受性的研究[J]. 草地学报,2019,27(3):603-611 [28] 吴蔚蔚,童普国,王鑫,等. 水稻家族基因克隆及其对非生物胁迫的响应[J]. 华北农学报,2018,33(1):39-44 [29] Fait A,Fromm H,Walter D,et al. Highway or byway:the metabolic role of the GABA shunt in plants[J]. Trends Plant Science,2008(13):14-19 [30] Asha K,Asish K P. Metabolomics and network analysis reveal the potential metabolites and biological pathways involved in salinity tolerance of the halophyte Salvadora persica[J]. Environmental and Experimental Botany,2018(148):85-99 [31] Ito H,Takaichi S,Tsuji H,et al. Properties of synthesis of chlorophyll a from chlorophyll b in cucumber etioplasts[J]. Journal of Biological Chemistry,1994,269(35):22034-22038 [32] Mokochinski J B,Mazzafera P,Sawaya A C H F,et al. Metabolic responses of eucalyptus species to different temperature regimes[J]. Journal of Integrative Plant Biology,2018,60(5):397 [33] 冯帆,杨秀清,闫海冰. 基于代谢组学的西伯利亚白刺耐盐机理研究[J]. 山西农业大学学报(自然科学版),2019,39(3):88-94 [34] Sooah K,Hojoung L,Kyoung,et al. Metabolomic elucidation of recovery of Melissa offcinalis from UV-B irradiation stress[J]. Industrial crops & products,2018(121):428-433 [35] 张尚雄,尼玛平措,徐雅梅,等. 3个披碱草属牧草对低温胁迫的生理响应及苗期抗寒性评价[J]. 草业科学,2016,33(6):1154-1163 [36] Zhang Q,Song X,Bartels D. Sugar metabolism in the desiccation tolerant grass, Oropetium thomaeum,in response to environmental stresses[J]. Plant Science,2018(270):30-36 [37] Lunn J E,Delorge I,Dijck P V,et al. Trehalose metabolism in plants[J]. Plant Journal for Cell & Molecular Biology,2015,79(4):544-567 [38] Iordachescu M,Imai R. Trehalose biosynthesis in response to abiotic stresses[J]. Journal of Integrative Plant Biology,2010,50(10):1223-1229 [39] Awasthi R,Bhandari K,Nayyar H. Temperature stress and redox homeostasis in agricultural crops[J]. Front Environ Science,2015(3):1-24 [40] Zhang Z,Liang Z C,Zhang J H,et al. Nano-sized TiO2(nTiO2) induces metabolic perturbations in physarum polycephalum macroplasmodium to counter oxidative stress under dark conditions[J]. Ecotoxicology & Environmental Safety,2018(154):108-117 [41] Liu Y D,Zhang L,Chen L J,et al. Molecular cloning and expression of an encoding galactinol synthase gene (angols1) in seedling of Ammopiptanthus nanus[J]. Scientific Reports,2016(6):36113 [42] 刘丽杰. 低温下ABA调控冬小麦糖代谢及抗寒基因表达的研究[D]. 沈阳:东北农业大学,2013:2-11 [43] 李佳赟,马进,王依纯,等. 南方型紫花苜蓿叶片响应盐胁迫的代谢组学分析[J]. 河南农业科学,2019,48(5):30-36 |