作物学报 ›› 2015, Vol. 41 ›› Issue (02): 329-338.doi: 10.3724/SP.J.1006.2015.00329
任佰朝,朱玉玲,李霞,范霞,董树亭,赵斌,刘鹏,张吉旺
REN Bai-Zhao,ZHU Yu-Li,LI Xia,FAN Xia,DONG Shu-Ting,ZHAO Bin,LIU Peng,ZHANG Ji-Wang*
摘要:
选用登海605和郑单958为试验材料,在大田条件下设置淹水时期(三叶期、拔节期、花后10 d)和淹水持续时间(淹水3 d和6 d)处理研究淹水对夏玉米光合特性的影响。结果表明,淹水胁迫后叶面积指数和叶绿素含量显著下降,净光合速率(Pn)、气孔导度(Gs)、细胞间隙CO2浓度(Ci)显著降低,三叶期淹水6 d对其影响最显著,开花期郑单958和登海605功能叶片的Pn、Gs、Ci较对照的分别下降21.24%、33.65%、16.49%和24.50%、32.31%、10.99%。淹水后叶片的Fv/Fm、Fm/Fo、ΦPSII显著下降,三叶期淹水6 d后影响最显著,登海605和郑单958分别下降16.86%、17.12%、11.67%和13.58%、21.40%、22.52%,这是导致夏玉米产量显著下降的主要光合生理机制,三叶期淹水6 d产量降幅最大,登海605和郑单958较对照分别下降41.51%和40.96%。三叶期淹水造成的影响最大,拔节期淹水次之,开花后10 d淹水造成的影响较小,其影响随淹水持续时间的延长而加剧。
[1]Li J C. Waterlogging physiology of wheat and its relation with wheat productivity. Plant Physiol Commun, 1997, 33: 304–312[2]郁凌华, 赵艳霞.黄淮海地区夏玉米生长季内的旱涝灾害分析. 灾害学, 2013, 28: 71–76Yu L H, Zhao Y X. Analysis of drought- flood disaster on Huanghuaihai region during summer maize growing season. J Catastrophol, 2013, 28: 71–76 (in Chinese with English abstract)[3]Ewa P. Effects of flooding and stage of development on the growth and photosynthesis of field bean (Vici afaba L. minor). Acta Physiol Plant, 2008, 30: 529–535[4]Yordanova R Y, Christov K N, Popova L P. Antioxidative enzymes in barley plants subjected to soil flooding. Environ Exp Bot, 2004, 51: 93–101[5]Zahed H, Maria F L C, Vicent A. Modulation of the antioxidant system in citrus under waterlogging and subsequent drainage. J Plant Physiol, 2009, 166: 1391–1404[6]Zhou W J, Lin X Q. Effects of waterlogging at different growth stages on physiological characteristics and seed yield of winter rape (Brassica napus L.). Field Crops Res, 1995, 44: 103–110[7]Ren B Z, Zhang J W, Li X, Fan X, Dong S T, Liu P, Zhao B. Effects of waterlogging on the yield and growth of summer maize under ?eld conditions. Can J Plant Sci, 2014, 94: 23–31[8]任佰朝, 张吉旺, 李霞, 范霞, 董树亭, 赵斌, 刘鹏. 淹水胁迫对夏玉米籽粒灌浆特性和品质的影响. 中国农业科学, 2013, 46: 4435–4445Ren B Z, Zhang J W, Li X, Fan X, Dong S T, Zhao B, Liu P. Effect of waterlogging on grain filling and quality of summer maize. Sci Agric Sin, 2013, 46: 4435–4445 (in Chinese with English abstract)[9]任佰朝, 张吉旺, 李霞, 范霞, 董树亭, 刘鹏, 赵斌. 大田淹水对高产夏玉米抗倒伏性能的影响. 中国农业科学, 2013, 46: 2440–2448Ren B Z, Zhang J W, Li X, Fan X, Dong S T, Liu P, Zhao B. Effects of waterlogging on stem lodging resistance of summer maize under field conditions. Sci Agric Sin, 2013, 46: 2440–2448 (in Chinese with English abstract)[10]任佰朝, 张吉旺, 李霞, 范霞, 董树亭, 赵斌, 刘鹏. 大田淹水对夏玉米叶片衰老特性的影响. 应用生态学报, 2014, 25: 1022–1028Ren B Z, Zhang J W, Li X, Fan X, Dong S T, Zhao B, Liu P. Effect of waterlogging on leaf senescence characteristics of summer maize in the field. Chin J Appl Ecol, 2014, 25: 1022–1028 (in Chinese with English abstract)[11]梁哲军, 陶洪斌, 王璞. 淹水解除后玉米幼苗形态及光合生理特征恢复. 生态学报, 2009, 29: 3977–3986Liang Z J, Tao H B, Wang P. Recovery effects of morphology and photosynthetic characteristics of maize (Zea mays L.) seedling after water-logging. Acta Ecol Sin, 2009, 29: 3977–3986 (in Chinese with English abstract)[12]僧珊珊, 王群, 张永恩, 李潮海, 刘天学, 赵龙飞, 刘怀攀. 外源亚精胺对淹水胁迫玉米的生理调控效应. 作物学报, 2012, 38: 1042–1050Seng S S, Wang Q, Zhang Y N, Li C H, Liu T X, Zhao L F, Liu H P. Effects of exogenous spermidine on physiological regulatory of maize after waterlogging stress. Acta Agron Sin, 2012, 38: 1042–1050 (in Chinese with English abstract)[13]赵世杰 史国安, 董新纯. 植物生理实验指导. 北京: 中国农业科学技术出版社, 1998. pp 55–60Zhao S J, Shi G A, Dong X C. Experimental Guide for Plant Physiology. Beijing: China Agricultural Science and Technology Press, 1998. pp 55–60 (in Chinese)[14]Genty B, Briantais J M, Baker N R. The relationship between the quantum yields of photosynthetic electron transport and photo-chemical quenching of chlorophyll fluorescence. Biochim Biophy Acta, 1989, 990: 87–92[15]姜东, 陶勤南, 张国平. 渍水对小麦扬麦5号旗叶和根系衰老的影响. 应用生态学报, 2002, 13: 1519–1521Jiang D, Tao Q N, Zhang G P. Effect of waterlogging on senescence of flag leaf and root of wheat Yangmai 5. Chin J Appl Ecol, 2002, 13: 1519–1521 (in Chinese with English abstract)[16]刘战东, 肖俊夫, 南纪琴, 冯跃华. 淹涝对夏玉米形态、产量及其构成因素的影响. 人民黄河, 2010, 32: 157–159Li Z D, Xiao J F, Nan J Q, Feng Y H. Effects of waterlogging on morphology, yield and its influence factors of summer maize. Yellow River, 2010, 32: 157–159 (in Chinese with English abstract)[17]Przywara G, Stcdaniewski W. The influence of water logging at different temperatures on penetration depth and porosity of roots and on stomatal diffusive resistance of pea and maize seedlings. Acta Physiologiae Plantarum, 1999, 214: 405–411 [18]Araki,H, Hamada A, Hossain M A, Takahashi T. Waterlogging at jointing and/or after anthesis in wheat induces early leaf senescence and impairs grain filling. Field Crops Res, 2012, 137: 27–36 [19]李金才, 董琦, 余松烈. 不同生育期根际土壤淹水对小麦品种光合作用和产量的影响. 作物学报, 2001, 27: 434–442Li J C, Dong Q, Yu S L. Effect of waterlogging at different growth stages on photosynthesisand yield of different wheat cultivars. Acta Agron Sin, 2001, 27: 434–442 (in Chinese with English abstract)[20]王三根, 何立人, 李正玮, 曾金国, 柴友荣, 侯磊. 淹水对大麦与小麦若干生理生化特性影响的比较. 作物学报, 1996, 22: 228–232Wang S G, He L R, Li Z W, Zeng J G, Cai Y R, Hou L. A comparative study on the resistance of barley and wheat to waterlogging. Acta Agron Sin, 1996, 22: 228–232 (in Chinese with English abstract)[21]曹娜, 于海秋, 王绍斌, 于挺, 曹敏建. 高产玉米群体的冠层结构及光合特性分析. 玉米科学, 2006, 14: 94–97Cao N, Yu H Q, Wang Z B, Yu T, Cao M J. Analysis on canopy structure and photosynthetic characteristics of high yield maize population. J Maize Sci, 2006, 14: 94–97 (in Chinese with English abstract)[22]Krause G H, Weis E. Chlorophyll fluorescence as a tool in plant physiology. Photosynth Res, 1984, 5: 139–157[23]冯建灿, 胡秀丽, 毛训甲. 叶绿素荧光动力学在研究植物逆境生理中的应用. 经济林研究, 2002, 20: 14–18Feng J C, Hu X L, Mao X J. Application of chlorophyll fluorescence dynamics to plant physiology in adverse circumstance. Economic For Res, 2002, 20: 14–18 (in Chinese with English abstract)[24]关长艾, 孟庆伟, 邹琦. 叶黄素循环及其调控. 植物生理学通讯, 2001, (1): 1–5Guang C A, Meng Q W, Zhou Q. The xanthophyll cycle and its regulation. Plant Physiol Commun, 2001, (1): 1–5 (in Chinese with English abstract)[25]Van Kooten O, Snel J F H. The use of chlorophyll fluorescence nomenclature in plant stress physiology. Photosynth Res, 1990, 25: 147–150[26]田琳, 谢晓金, 包云轩, 胡继超, 於俐, 王金鑫. 不同生育期水分胁迫对夏玉米叶片光合生理特性的影响. 中国农业气象, 2013, 34: 655–660Tian L Xie X J, Bao Y X, Hu J C, Yu L, Wang J X. Effects of moisture stress on photosynthetic characteristics of summer maize leaf during growth stages. Chin J Agrometeorol, 2013, 34: 655–660 (in Chinese with English abstract)[27]胡昌浩. 玉米栽培生理. 北京: 中国农业出版社, 1995. pp 122–124Hu C H. Corn Cultivation Physiology. Beijing: China Agriculture Press, 1995. pp 122–124 (in Chinese) |
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