[1] Pachauri R K,Reisinger A. Climate Change 2014:Synthesis Report. Contribution of Working Groups I,II and III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change[J]. Journal of Romance Studies,2014,4(2):85-88 [2] Rizhsky L,Liang H,Mettler R. The combined effect of drought stress and heat shock on gene expression in tobacco[J]. Plant Physiology,2002,130(3):1143-1151 [3] Jordan D B,Ogren W L. Species variation in the specificity of ribulose biphosphate carboxylase/oxygenase[J]. Nature,1981,291(5815):513-515 [4] Laura H G,Elena M A,Rosemary B.et al. The dependency of red Rubisco on its cognate activase for enhancing plant photosynthesis and growth[J]. Proceedings of the National Academy of Sciences of the United States of America,2020,117(41):25890-25896 [5] Parry M A J,John A P,Scales J C,et al. Rubisco activity and regulation as targets for crop improvement[J]. Journal of Experimental Botany,2012,64(3):717-730 [6] Crafts-Brandner S J,Salvucci M E. Rubisco activase constrains the photosynthetic potential of leaves at high temperature and CO2[J]. Proceedings of the National Academy of Sciences of the United States of America,2000,97(24):13430-13435 [7] Law R D,Crafts-Brandner S J. Inhibition and acclimation of photosynthesis to heat stress is closely correlated with activation of ribulose-1,5-bisphosphate carboxylase Oxygenase[J]. Plant Physiology,1999,120(1):173-181 [8] Ristic Z,Momilovic I,Bukovnik U,et al. Rubisco activase and wheat productivity under heat-stress conditions[J]. Journal of Experimental Botany,2009,60(14):4003-4014 [9] Yokota A,Atp-Hydrolyzing T. Characterization of ribulose-l,5-bisphosphate carboxylase/oxygenase carrying ribulose 1,5-bisphosphate at its regulatory sites and the mechanism of interaction of this form of the enzyme with ribulose-1,5-bisphosphate-carboxylase/oxygenase activase[J]. European Journal of Biochemistry,1992,909:901-909 [10] 王保明,李红波,陈永忠,等. 油茶Rubisco基因的鉴定及其在高产种质筛选中的应用[J]. 福建农林大学学报(自然科学版),2019,48(5):605-613 [11] Tzortzakis N,Chrysargyris A,Aziz A. Adaptive response of a native mediterranean grapevine cultivar upon short-term exposure to drought and heat stress in the context of climate change[J]. Agronomy,2020;10(2):1-17 [12] Sehgal A,Sita K,Kumar J,et al. Effects of drought,heat and their interaction on the growth,yield and photosynthetic function of lentil (Lens culinaris Medikus) genotypes varying in heat and drought sensitivity[J]. Frontiers in Plant Science,2017,8(10):1-22 [13] Sattar A,Sher A,Ijaz M,et al. Terminal drought and heat stress alter physiological and biochemical attributes in flag leaf of bread wheat[J]. Plos One,2020,15(5):1-14 [14] 李荣,王玉佳,何承刚,等.干热胁迫对紫花苜蓿形态特征及光和色素含量的影响[J]. 草原与草坪,2015,35(1):37-43 [15] 牟兰,何承刚,姜华,等. 干热胁迫对紫花苜蓿光合特性的影响[J]. 草地学报,2014,22(3):550-555 [16] 金杰,张明忠,韩学琴,等. 紫花苜蓿在金沙江干热河谷地区的引种研究[J]. 西南农业学报,2010,2:551-555 [17] Xu C,He,C G,Wang Y J,et al. Effect of drought and heat stresses on photosynthesis,pigments,and xanthophyll cycle in alfalfa (Medicago sativa L.)[J]. Phtosynthetica,2020,58(5):1226-1236 [18] 贾会丽,王学敏,高涛,等. 转MsLEA4-4基因拟南芥株系的耐盐性分析[J]. 草地学报,2020,28(3):597-605 [19] 方志红,崔苗苗,张燕,等. 紫花苜蓿MsSOS1基因的克隆与表达分析[J]. 草地学报,2018,26(6):200-210 [20] 曹晓宇,王学敏,郭继承,等. 紫花苜蓿bZIP转录因子MsbZIP1的克隆、表达特性和遗传转化分析[J]. 草地学报,2020,28(3):613-622 [21] Tsuyoshi F,Katsura I,Vanda Q,et al. Phosphorylation of Phosphoenolpyruvate Carboxylase Is Not Essential for High Photosynthetic Rates in the C4 Species Flaveria bidentis[J]. Plant Physiology,2007,144(4):1936-1945 [22] 李合生. 植物生理生化实验原理和技术[M]. 北京:高等教育出版社,2000:138-140 [23] 宋艳波,吴国良,牛洪斌. 改良CTAB法在核桃叶片基因组DNA提取中的应用研究[J]. 山西农业大学学报(自然科学版),2011(2):109-112 [24] Burgess K S,Fazekas A J,Kesankurti P R,et al. Discriminating plant species in a local temperate flora using the rbcL+matK DNA barcode[J]. Methods in Ecology and Evolution,2011,2(4):333-340 [25] Khoudi H,Vezina L P,Mercier J,et al. An alfalfa rubisco small subunit homologue shares cis-acting elements with the regulatory sequences of the RbcS-3A gene from pea[J]. Gene,1997,197(1-2):343-351 [26] Livak K J,Schmittgen T D. Analysis of relative gene expression data using real-time quantitative PCR and the 2-ΔΔCT method[J]. Methods.2001,25(4):402-408 [27] 刘建新,欧晓彬,金成. 镧胁迫下外源H2O2对裸燕麦幼苗叶绿素荧光参数和光合碳同化酶活性的影响[J].生态学报,2019,39(8):2833-2841 [28] Gong D H,Wang G Z,Si W T,et al. Effects of salt stress on photosynthetic pigments and activity of Ribulose-1,5-bisphosphate carboxylase/oxygenase in Kalidium foliatum[J]. Russian Journal of Plant Physiology,2018,65(1):98-103 [29] 毕玉芬,车伟光,顾垒. 德钦地区野生紫花苜蓿群落多样性特征及其来源分析[J].草地学报,2007,4(15):306-311 [30] 张国,李滨,邹琦. 小麦Rubisco活化酶基因的克隆与表达特性的研究[J]. 植物学通报,2005,22(3):313-319 [31] Fukayama H,Ueguchi C,Nichikawa K,et al. Overexpression of rubisco activase decreases the photosynthetic CO2 assimilation rate by reducing rubisco content in rice leaves[J]. Plant and Cell Physiology,2012,53(6):976-986 [32] Wang Z,Qiao Y,Zhang J,et al. Genome wide identification of microRNAs involved in fatty acid and lipid metabolism of Brassica napus by small RNA and degradome sequencing[J]. Gene,2017,619:61-70 [33] Hasse D,Larsson A M,Andersson I. Structure of Arabidopsis thaliana Rubisco activase[J]. Acta Crystallographica,2015,71(4):800-808 [34] Archie R,Portis J,Cishan L,et al. Regulation of Rubisco activase and its interaction with Rubisco[J]. Journal of Experimental Botany,2008,59(7):1597-1604 [35] Aivaro S S,Erice G,Aranjuelo I,et al. Photosynthetic and molecular markers of CO2-mediated photosynthetic downregulation in nodulated alfalfa[J]. Journal of Integrative Plant Biology,2013,8:721-734 [36] 陈晶. 紫花苜蓿响应低温的差异蛋白质组学研究[D]. 哈尔滨:哈尔滨师范大学,2015:101 [37] Law R D,Crafts-Brandner S J,Salvucci M E. Heat stress induces the synthesis of a new form of ribulose-1,5-bisphosphate carboxylase/oxygenase activase in cotton leaves[J]. Planta,2001,214(1):117-125 [38] Kim S,Yang J,An G. OsCpn60α1,encoding the plastid chaperonin 60α subunit,is essential for folding of rbcL[J]. Molecules and Cells,2013,35(5):402-409 [39] Shan X,Wang J,Chua L,et al. The role of Arabidopsis rubisco activase in jasmonate-induced leaf senescence[J]. Plant Physiology,2011,155(2):751-764 [40] Wijewardene I,Mishra N,Sun L,et al. Improving drought-,salinity-,and heat-tolerance in transgenic plants by co-overexpressing Arabidopsis vacuolar pyrophosphatase gene AVP1 and Larrea Rubisco activase gene RCA[J]. Plant Science,2020,296:110499 |