作物学报 ›› 2012, Vol. 38 ›› Issue (09): 1698-1709.doi: 10.3724/SP.J.1006.2012.01698
徐田军,董志强*,高娇,陈传晓,焦浏,解振兴
XU Tian-Jun,DONG Zhi-Qiang*,GAO Jiao,CHEN Chuan-Xiao,JIAO Liu,XIE Zhen-Xing
摘要: 在大田栽培条件下,以郑单958和丰单3号为材料,于六叶期喷施玉米专用抗冷剂聚糠萘水剂(PKN),研究PKN对黑龙江省3个积温带上花后玉米穗位叶衰老生理及籽粒灌浆速率的影响。结果表明,从第I积温带到第III积温带,气温逐渐降低; 两玉米品种穗位叶的超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT)活性及叶绿素(Chl a+Chl b)含量均呈逐渐下降趋势,而MDA含量呈逐渐升高的趋势。同一积温带,两品种不同处理的穗位叶SOD、POD、CAT的活性随生育期呈“先升高后下降”的单峰变化趋势,而MDA含量呈“先降低后升高”的趋势; PKN处理后3个积温带的两品种穗位叶SOD、POD、CAT的活性及叶绿素含量较对照均有不同程度的提高。而MDA的含量与对照相比呈下降趋势。从第I积温带到第III积温带,两品种籽粒的干重均随籽粒的发育呈“慢—快—慢”的S型变化,而灌浆速率呈“先升高后降低”的单峰曲线变化趋势,且两品种籽粒干物重和灌浆速率呈下降趋势; PKN处理后两品种的籽粒干物重和灌浆速率较对照均有不同程度的提高。2010年和2011年PKN处理后3个积温带两品种的产量均增加。2010年第III积温带的ZDTR和FDTR的增产幅度比第I、第II积温带高2.58%、1.17%和2.04%、1.48%。2011年第III积温带的ZDTR和FDTR的增产幅度比第I、第II积温带高8.2%、5.1%和3.4%、0.8%。由此可见,PKN处理后延缓玉米叶片衰老,提高籽粒的灌浆速率,最终增加玉米的产量。
[1]Li Q(李晴), Zhu Y-X(朱玉贤). The progress of plant senescence research and plant molecular breeding. Mol Plant Breed (分子植物育种), 2003, 1(3): 289-296 (in Chinese with English abstract)[2]Yoshida S. Molecular regulation of leaf senescence. Curr Opin Plant Biol, 2003, 6: 79-84[3]Ottaviano E, Camussi A. Phenotypic and genetic relationship between yield components in maize. Euphytica, 1981, 2: 601-609[4]Borrás L, Zinselmeier C, Senior M L. Characterization of grain filling patterns in diverse maize germplasm. Crop Sci, 2009, 49: 999-1009[5]Sadras V O, Egli D B. Seed size variation in grain crops: allometric relationships between rate and duration of seed growth. Crop Sci, 2008, 48: 408-416[6]Liu X-P(刘西平), Xu Y-P(胥耀平), Wang S-Q(王姝清), Li Z-Q(李周歧). The relationship of senescence and membrane lipid peroxidation of leaves of koelreuteria paniculata under low temperature. J Northwest For Univ (西北林学院学报), 1995, 10(4): 72-75 (in Chinese)[7]Guan X-J(关贤交), Ou-Yang X-R(欧阳西荣). The research of low temperature on maize. Crop Res (作物研究), 2004, (1): 16 (in Chinese with English abstract)[8]Li R(李锐), Zeng X-G(曾宪国), Wang L-M(王连敏). Analysis on rice cooling injury in Heilongjiang province in 2006. Heilongjiang Agric Sci (黑龙江农业科学), 2007, 5(11): 27-29 (in Chinese with English abstract)[9]Zhang L-P(张莉萍), Huang S-F(黄少锋), Wang L-P(王丽萍). Analysis on chilling injury of rice in east of Heilongjiang province in 2002. Heilongjiang Agric Sci (黑龙江农业科学), 2004, (1): 39-41 (in Chinese with English abstract)[10]Guo J-P(郭建平), Wang C-Y(王春乙), Ma S-Q(马树庆). Experimental study on defending corn from cold injury and spring drought by growing and transplanting seedlings. J Nat Disasters (自然灾害学报), 2003, 12(1): 116-120 (in Chinese with English abstract)[11]Wang C-Y(王春乙), Guo J-P(郭建平), Ma S-Q(马树庆). Field experimental study on low temperature resistant and growth -helping medium for corn. J Nat Disasters (自然灾害学报), 2001, 10(1): 80-85 (in Chinese with English abstract)[12]Zhang Y(张毅), Su Z-S(苏正淑), Cao J-M(曹建美). Effect of chilling stress on metabolism of maize plants in the middle and late period of growth. J Shenyang Agric Univ (沈阳农业大学学报), 1994, 25(3): 352-353 (in Chinese)[13]Zhang Y(张毅), Dai J-Y(戴俊英), Su Z-S(苏正淑). Chilling injure of kernel of maize plant stressed at filling stage. Acta Agron Sin (作物学报), 1995, 21(1): 71-75 (in Chinese with English abstract)[14]Bao J-Y(鲍继友), Sun Y-X(孙月轩), Jiang X-M(姜先梅). The relationship between grain filling of summer corn and temperature and grain moisture content. Gengzuo yu Zaipei (耕作与栽培), 1994, (5): 22-26 (in Chinese)[15]Wei Y-C(魏永超), Liu H-C(刘虎成), Liu X-Z(刘希忠). Effects of temperature and light factor on summer corn filling and yield. J Henan Inst Sci Tech (河南职技师院学报), 1989, 17(1): 1-6 (in Chinese)[16]Wang H-T(王海涛), Yang X-L(杨祥良), Xu H-B(徐辉碧). The signal functions of the active oxygen molecule. Chem Life (生命的化学), 2001, 21(1): 39-41 (in Chinese)[17]Liu G-S(刘国顺), Yun F(云菲), Shi H-Z(史宏志), Wang K(王可), Zhang C-H(张春华), Song J(宋晶). Effects of cooperation of light and nitrogen on the content of nitric compound, antioxidant system and quality of flue-cured tobacco. Sci Agric Sin (中国农业科学), 2010, 43(18): 3732-3741 (in Chinese with English abstract)[18]Fryer M J, Andrews J R, Oxborough K, Blowers D A, Baker N R. Relationship between CO2 assimilation, photosynthetic electron transport, and active O2 metabolism in leaves of maize in the field during periods of low temperature. Plant Physiol, 1998, 116: 571-580[19]Li Z-T(李宗霆), Zhou X(周燮). Plant Hormones and Their Immunological Detection Techniques (植物激素及其免疫检测技术). Nanjing: Jiangsu Science and Technology Publishing House, 1996 (in Chinese) [20]Borkovee V, Prochazka S. Pre-anthesis interaction of cytokinins and ABA in the transport of 14C-sucrose to the ear of winter wheat (Triticum aestivum L.). Agric Crop Sci, 1992, 169: 229-235[21]Wang A-G(王爱国), Luo G-H(罗广华). Quantitative relation between the reaction of hydroxylamine and superoxide anion radicals in plants. Plant Physiol Common (植物生理学通讯), 1990, (6): 55-57 (in Chinese)[22]Lin Z-F(林植芳), Li S-S(李双顺), Lin G-Z(林桂珠), Sun G-C(孙谷畴), Guo J-Y(郭俊彦). Superoxide dismutase activity and lipid peroxidation in relation to senescence of rice leaves. Acta Bot Sin (植物学报), 1984, 6(6): 605-615 (in Chinese) [23]Li Z-G(李忠光), Li H-J(李江鸿), Du C-K(杜朝昆). Simultaneous measurement of five antioxidant enzyme activities using a single extraction system. J Yunnan Norm Univ (Nat Sci Edn) (云南师范大学学报•自然科学版), 2002, 22(6): 44-48 (in Chinese with English abstract)[24]Lin Z-F(林植芳), Li S-S(李双顺), Lin G-Z(林桂珠), Sun G-C(孙谷畴), Guo J-Y(郭俊彦). Superoxide dismutase activity and lipid peroxidation in relation to senescence of rice leaves. Acta Bot Sin (植物学报), 1984, 6(6): 605-615 (in Chinese) [25]Arnon D I, Whatley F R. Factors influencing oxygen pro-duction by illuminated chloroplast fragments. Archiv Biochem, 1949, 23: 141-156[26]Liu K-C(刘开昌), Dong S-T(董树亭), Zhao H-J(赵海军), Wang Q-C(王庆成), Li Z-X(李宗新), Liu X(刘霞), Zhang H(张慧). Leaf stay-green traits in Chinese maize inbred lines and their relationship with grain yield. Acta Agron Sin (作物学报), 2009, 35(9): 1662-1671 (in Chinese with English abstract)[27]Zhu Q-S(朱庆森), Cao X-Z(曹显祖), Luo Y-Q(骆亦其). Growth analysis on the process of grain filling in rice. Acta Argon Sin (作物学报), 1988, 14(3): 182-193 (in Chinese)[28]Yu S-L(余松烈). Crop Cultivation Science (Northern China Edn)(作物栽培学•北方本). Beijing: Agriculture Press, 1980. p 178[29]Tong P-Y(佟屏亚). The compact maize high yield theory and technology. Bull Agric Sci & Tech (农业科技通讯), 1992, (1): 9-10 (in Chinese)[30]Wang Z-X(王忠孝). Shandong Corn (山东玉米). Beijing: China Agriculture Press, 1999. pp 151-152 (in Chinese) [31]Wang C-Y(王春乙), Guo J-P(郭建平), Ma S-Q(马树庆). Field experimental study on low temperature resistant and growth helping medium for corn. J Nat Disasters (自然灾害学报), 2001, 10(1): 80-85 (in Chinese with English abstract)[32]Wang S-Y(王书裕). The Chilling Stress Research of Crop (农作物冷害研究). Beijing: Meteorology Press, 1995. pp 116-120 (in Chinese) [33]Kaiser W M. The effect of hydrogen peroxidide on CO2 fixation of isolated intact chloroplasts. Biochim Biophys Acta, 1976, 400: 476-482[34]Liu N(刘宁), Gao Y-B(高玉葆), Jia C-X(贾彩霞). Changes in POD activity, free praline content and cytomembrane permeability of lolium multiflorum leaves under different levels of osmotic stress. Plant Physiol Commun (植物生理学通讯), 2000, 36(1): 11-14 (in Chinese)[35]Li Z-G(李振国), Wu Y-M(吴有梅), Liu Y(刘愚). Studies on the response and resistance of plants to sulfur dioxide. Acta Phytophysiol Sin (植物生理学报), 1981, 7(4): 363-371 (in Chinese with English abstract)[36]Zhang R(张蕊), Lü J(吕俊), Mi Q-S(米青山), Wang S-G(王三根). Effects of salicylic acid on the antioxidant enzymes of rice seedlings during chilling stress. J Southwest Agric Univ (Nat Sci) (西南农业大学学报•自然科学版), 2006, 28(1): 29-36 (in Chinese with English abstract)[37]Zhang J-X(张敬贤), Li J-M(李俊明), Zhang H-M(张海明). The effect of low temperature on activities of cell protective enzymes and protoplasmic parameters in leaves of maize. Acta Agric Boreali-Sin (华北农学报), 1993, 8(3): 9-12 (in Chinese with English abstract)[38]Xiong D-J(熊冬金), Lin Z-H(林志红), Chang B-Y(畅柏云). Studies of four kinds of isozymes and the changes of content of mailond laldehyde in maiiein waterlogging or chilling stress. J Nanchang Univ (南昌大学学报), 1996, 20(4): 314-319 (in Chinese with English abstract)[39]Leshem Y Y, Wurz burger J, Grossman S. Cytokinin interaction with free radical metabolism and senescence. Physiol Plant, 1981, 53: 9-12[40]Wang S-G(王三根), Liang Y(梁颖). Protection of 6-benzyladenine on cell membrane system of rice seedlings under chilling stress. Chin J Rice Sci (中国水稻科学), 1995, 9(4): 223-229 (in Chinese with English abstract)[41]Tang X-J(汤学军), Wang K(王康). Effects of kinetin and ascorbic acid on pretention of cell membrane and promotion of SOD biosynthesis in rice seedlings after chilling injury. Acta Bot Sin (植物学报), 1993, 35(suppl): 45-49 (in Chinese) |
[1] | 董二伟, 王劲松, 武爱莲, 王媛, 王立革, 韩雄, 郭珺, 焦晓燕. 行距和密度对高粱籽粒灌浆、淀粉及氮磷钾累积特征的影响[J]. 作物学报, 2021, 47(12): 2459-2470. |
[2] | 马正波, 董学瑞, 唐会会, 闫鹏, 卢霖, 王庆燕, 房孟颖, 王琦, 董志强. 四甲基戊二酸对夏玉米光合生产特征的调控效应[J]. 作物学报, 2020, 46(10): 1617-1627. |
[3] | 王素芳,薛惠云,张志勇,汤菊香. 棉花根系生长与叶片衰老的协调性[J]. 作物学报, 2020, 46(01): 93-101. |
[4] | 吕国锋,范金平,张伯桥,高德荣,王慧,刘业宇,吴素兰,程凯,王秀娥. 小麦旗叶衰老过程不同数学模型拟合比较及衰老特征分析[J]. 作物学报, 2019, 45(1): 144-152. |
[5] | 李荣发,刘鹏,杨清龙,任昊,董树亭,张吉旺,赵斌. 玉米密植群体下部叶片衰老对植株碳氮分配与产量形成的影响[J]. 作物学报, 2018, 44(7): 1032-1042. |
[6] | 万丽丽, 王转茸, 辛强, 董发明, 洪登峰, 杨光圣. BnA7HSP70分子伴侣结合蛋白超表达能够提高甘蓝型油菜耐旱性[J]. 作物学报, 2018, 44(04): 483-492. |
[7] | 苗永杰, 阎俊, 赵德辉, 田宇兵, 闫俊良, 夏先春, 张勇, 何中虎. 黄淮麦区小麦主栽品种粒重与籽粒灌浆特性的关系[J]. 作物学报, 2018, 44(02): 260-267. |
[8] | 卢霖,董志强*,董学瑞,李光彦. 乙矮合剂对不同密度夏玉米花粒期不同部位叶片衰老特性的影响[J]. 作物学报, 2016, 42(04): 561-573. |
[9] | 李玉,陈璐,严凯,孙影,殷毅凡,丁秀文,戴其根,张洪程. 1,2,4-三氯苯对2个不同耐性水稻品种光合特性与产量的影响[J]. 作物学报, 2016, 42(02): 255-264. |
[10] | 张涛,孙玉莹,郑建敏,程治军,蒋开锋,杨莉,曹应江,游书梅,万建民,郑家奎. 水稻早衰叶突变体PLS2的遗传分析与基因定位[J]. 作物学报, 2014, 40(12): 2070-2080. |
[11] | 王永军,杨今胜,袁翠平,柳京国,李登海,董树亭. 超高产夏玉米花粒期不同部位叶片衰老与抗氧化酶特性[J]. 作物学报, 2013, 39(12): 2183-2191. |
[12] | 张晓勤,薛大伟,张国平. 不同环境及栽培条件下啤用大麦阿拉伯木聚糖含量的变化[J]. 作物学报, 2013, 39(09): 1674-1678. |
[13] | 张嵩午,王长发,苗芳,周春菊,姚有华,李桂显. 旗叶先衰型小麦生长后期顶三叶光合特性及其意义[J]. 作物学报, 2012, 38(12): 2258-2266. |
[14] | 孙波,周勇,林拥军. 一个水稻叶片衰老上调表达基因的初步生物学功能分析[J]. 作物学报, 2012, 38(11): 1988-1996. |
[15] | 李伟,李絮花,李海燕,彭强,刘旭凤,唐慎欣. 控释尿素与普通尿素混施对夏玉米产量和氮肥效率的影响[J]. 作物学报, 2012, 38(04): 699-706. |
|