[1]Wang Y X,Hu Y,Chen B H,et al.Physiological mechanisms ofresistance to cold stress associated with 10 elite apple rootstocks[J].Joural of Integrative Agriculture,2018,17 (4):857-866.
[2]Easterling D R,Meehl G A,Parmesan C,et al.Climate Extremes:Observations,Modeling,and Impacts J].Science,2000,289:2068-2074.
[3]Atkinson D,Porter J R.Temperature,plant development and cropyields [J].Trends in Plant Science,1996,1 (4):119-124.
[4]Manasa S L,Panigrahy M,Panigrahi K C S,et al.Overview ofCold Stress Regulation in Plants [J].The Botanical Review,2022,88(3):359-387.
[5]Ding Y,Shi Y,Yang S.Advances and challenges in uncovering cold tolerance regulatory mechanisms in plants [J].New Phytolo-gist,2019,222(4):1690-1704.
[6]Arpad S,Timea S,Csaba L,et al.Data of selected set of rice ac-cessions at the germination stage under cold stress [J].Data inbief,2022,41:1-6.
[7]李佳荫,冯国军,刘大军,等.低温胁迫对菜豆种子吸胀期间生理特性和发芽能力的影响[J].中国农学通报,2020,36(01):24-29.
[8]连艺佳,刘瑞,王嘉杰,等.低温对冬小麦萌发生理特性的影响[J].北京农学院学报,2023,38(04):1-7.
[9]刘洋.基于高通量测序分析灌浆初期低温对小麦颖果淀粉积累的影响[D].扬州:扬州大学,2023.
[10]Janowiak F,Maas B,Dorffling K.Importance of abscisic acid forchilling tolerance of maize seedlings [J].Journal of Plant Physiol-0gy,2002,159(6):635-643.
[11]Jame Y W,Cutforth H W.Simulating the effects of temperatureand seeding depth on germination and emergence of spring wheatJ].Agricultural and Forest Meteorology,2004,124 (3):207-218.
[12]Lee D H,Lee C B.Chilling stress-induced changes of antioxidantenzymes in the leaves of cucumber:in gel enzyme activity assays[J].Plant Science,2000,159(1):75-85.
[13]Foyer C H,Noctor G.Redox Homeostasis and Antioxidant Signa-ling:A Metabolic Interface between Stress Perception and Physio-logical Responses [J].The Plant Cell,2005,17 (7):1866-1875.
[14]Nagao M,Minami A,Arakawa K,et al.Rapid degradation ofstarch in chloroplasts and concomitant accumulation of soluble sug-ars associated with ABA-induced freezing tolerance in the mossPhyscomitrella patens J].Joural of Plant Physiology,2005,162(2):169-180.
[15]秦东玲,李钊,尉菊萍,等.作物抗冷性及其化学控制机理研究进展[J].作物杂志,2016(04):26-35.
[16]金龙飞,杨蒙迪,周丽霞,等.9个油棕品种抗寒性的生理生化鉴定[J].江苏农业科学,2021,49(08):132-136.
[17]王平荣,张帆涛,高家旭,等.高等植物叶绿素生物合成的研究进展[J].西北植物学报,2009,29(03):629-636.
[18]钟思彤,张亚真,孔祥瑞,等.高等植物捕光叶绿素a小结合蛋白的研究进展[J].农业生物技术学报,2024,32(02):444-457.
[19]胡文海,胡雪华,闫小红,等.低温胁迫及恢复对番茄快速叶绿素荧光诱导动力学特征的影响[J].中国农业气象,2021,42(10):859-869.
[20]张兆涵,范梓晗,焦蕊,等.低温胁迫下林木的生理响应特征[J/OL].温带林业研究,1-7[2024-03-06].htp:/kms.cnki.net/kcms/detail/23.1603.S.20240103.1419.002.html.
[21]陈少裕.膜脂过氧化对植物细胞的伤害[J].植物生理学通讯,1991(02):84-90.
[22]冯汉青,赵玲,庞海龙,等.低温胁迫下交替呼吸途径对小麦幼根生长及氧化压力的调节作用[J].西北师范大学学报(自然科学版),2020,56(04):78-83.
[23]Ranty B,Aldon D,Cotelle V,et al.Calcium Sensors as KeyHubs in Plant Responses to Biotic and Abiotic Stresses [J].Fron-tiers in Plant Science,2016,7:1-7.
[24]张晓燕,杨淑华,丁杨林.植物感知和传递低温信号的分子机制[J].生物技术通报,2023,39(11):28-35.
[25]Qiangbo L,Yanglin D,Yiting S,et al.The calcium transporterANNEXINI mediates cold-induced calcium signaling and freezingtolerance in plants J].The EMBO joumal,2020,40 (2):104559.
[26]Guo X,Liu D,Chong K.Cold signaling in plants:Insights intomechanisms and regulation [J].Joumal of Integrative Plant Biolo-gw,2018,60(9):745-756.
[27]Shi S,Li S,Asim M,et al.The Arabidopsis Calcium-Depend-ent Protein Kinases CDPKs)and Their Roles in Plant GrowthRegulation and Abiotic Stress Responses [J].International Jour-nal of Molecular Sciences,2018,19 (7):1900.
[28]Mittler R,Vanderauwera S,Gollery M,et al.Reactive oxygengene network of plants J].Trends in Plant Science,2004,9(10):490-498.
[29]Rihan HZ,Al-Issawi M,Fuller M P.Advances in physiologicaland molecular aspects of plant cold tolerance [J].Journal of PlantInteractions,2017,12(1):143-157.
[30]D S R,Ram R.Plant phosphoinositide-specific phospholipase C:an insight [J].Plant signaling behavior,2012,7 (10):1281-1283.
[31]Viswanathan C,Jian-Kang Z,Ramanjulu S.Gene regulationduring cold stress acclimation in plants.[J].Methods in molecu-lar biology Clifton,N.J.),2010,639:39-55.
[32]Shi Y,Ding Y,Yang S.Molecular Regulation of CBF Signalingin Cold Acclimation J].Trends in Plant Science,2018,23(7):623-637.
[33]Hwarari D,Guan Y,Ahmad B,et al.ICE-CBF-COR SignalingCascade and Its Regulation in Plants Responding to Cold Stress[J ]International Joumal of Molecular Sciences,2022,23(3):6684-6703.
[34]Wang R,Yu M,Xia J,et al.Overexpression of TaMYC2 con-fers freeze tolerance by ICE-CBF-COR module in Arabidopsisthaliana [J].Frontiers in Plant Science,2022,13:1-15.
[35]Song Y,Zhang X,Li M,et al.The direct targets of CBFs:Incold stress response and beyond J].Journal of Integrative PlantBiology,2021,63(11):1874-1887.
[36]Zhang Z,Zhang H,Quag R,et al.Transcriptional Regulation ofthe Ethylene Response Factor LeERF2 in the Expression of Ethyl-ene Biosynthesis Genes Controls Ethylene Production in Tomatoand Tobacco [J].Plant Physiology,2009,150 (1):365-377.
[37]Lee B H,Henderson D A,Zhu J K.The Arabidopsis Cold-Re-sponsive Transcriptome and Its Regulation by ICE1 J].ThePlant Cell,2005,17(11):3155-3175.
[38]Wang Y,Shu Z,Wang W,et al.CsWRKY2,a novel WRKYgene from Camellia sinensis,is involved in cold and drought stressresponses [J].Biologia Plantarum,2016,60 (3):443-451.
[39]张慧珍,白雪芹,曾幼玲.植物NAC转录因子的生物学功能[J].植物生理学报,2019,55(07):915-924. |