作物学报 ›› 2014, Vol. 40 ›› Issue (10): 1830-1838.doi: 10.3724/SP.J.1006.2014.01830
范霞,张吉旺* ,任佰朝,李霞,赵斌,刘鹏,董树亭
FAN Xia,ZHANG Ji-Wang*,REN Bai-Zhao,LI Xia,ZHAO Bin,IU Peng,DONG Shu-Ting
摘要:
选用鲁单981 (LD981)、郑单958 (ZD958)和登海661 (DH661) 3个不同株高玉米品种, 在大田和栽培池条件下分别设67 500株 hm-2和82 500株 hm-2 2个种植密度, 0和180 kg hm-2 2个施氮量。大田试验的氮肥以开沟方式施入, 栽培池试验氮肥分别以5、20和40 cm深度分层施入, 利用15N同位素示踪技术研究不同株高夏玉米对氮素的吸收与利用特性。结果表明, 与67 500株 hm-2种植密度比较, 82 500株 hm-2种植密度夏玉米籽粒产量及氮素偏生产力显著提高。夏玉米吸收的氮素69.3%~77.3%来自土壤, 22.7%~30.7%来自肥料, 土壤氮和肥料氮收获指数分别为54.6%和57.5%。与67 500株 hm-2种植密度比较, 82 500株 hm-2种植密度矮秆品种DH661氮素积累来自肥料的比例显著降低, 中品种ZD958和高秆品种LD981没有显著变化; 中、高秆品种肥料氮收获指数显著降低, 矮秆品种增加。5 cm土层施氮对植株肥料氮积累量贡献率最大, 40 cm土层施氮对植株肥料氮的贡献率最小, 随着株高增加, 深层(40 cm)氮对植株肥料氮积累量的贡献率逐渐增加, 浅层(5 cm)氮对植株肥料氮积累量的贡献率逐渐降低。中、高秆品种对土壤深层40 cm施氮的氮肥回收率较高, 而矮秆品种对土壤浅层20 cm施氮的氮肥回收率较高; 20 cm和40 cm 15N在20~40 cm和40~60 cm土层残留量分别达到60%, 说明矮秆品种对20~40 cm土层氮素回收率较高, 中、高秆品种对40~60 cm土层氮素回收率较高。
| [1]朱兆良. 农田中氮肥的损失与对策. 土壤与环境, 2000, 9(1): 1–6 Zhu Z L. Loss of fertilizer N from plant-soil system and the strategies and techniques for its reduction. Soil Environ Sci, 2000, 9(1): 1–6 (in Chinese with English abstract) [2]巨晓棠, 张福锁. 关于氮肥利用率的思考. 生态环境, 2003, 12(2): 192–197Ju X T, Zhang F S. Thinking about nitrogen recovery rate. Ecol Environ, 2003, 12(2): 192–197 (in Chinese with English abstract)[3]李文娟, 何萍, 高强, 金继运, 侯云鹏, 尹彩霞, 张国辉. 不同氮效率玉米干物质形成及氮素营养特性差异研究. 植物营养与肥料学报, 2010, 16: 51–57Li W J, He P, Gao Q, Jin J Y, Hou Y P, Yin C X, Zhang G H. Dry matter formation and nitrogen uptake in two maize cultivars differing in nitrogen use efficiency. Plant Nutr Fert Sci, 2010, 16: 51–57 (in Chinese with English abstract)[4]王敬峰, 刘鹏, 赵秉强, 董树亭, 张吉旺, 赵明, 杨吉顺, 李耕. 不同基因型玉米根系特性与氮素吸收利用的差异. 中国农业科学, 2011, 44: 699–707Wang J F, Liu P, Zhao B Q, Dong S T, Zhang J W, Zhao M, Yang J S, Li G. Comparison of root characteristics and nitrogen uptake and use efficiency in different corn genotypes. Sci Agic Sin, 2011, 44: 699–707 (in Chinese with English abstract)[5]Moll R H, Kamprath E J, Jackson W A. Analysis and interpretation of factors which contribute to efficiency of nitrogen utilization. Agron J, 1982, 74: 562–564[6]米国华, 刘建安, 张福锁. 玉米杂交种的氮农学效率及其构成因素剖析. 中国农业大学学报, 1998, 3(增刊): 97–104Mi G H, Liu J A, Zhang F S. Analysis on agronomic nitrogen efficiency and its components of maize hybrids. J China Agric Univ, 1998, 3(suppl): 97–104(in Chinese with English abstract)[7]张耀鸿, 吴洁, 张亚丽, 王东升, 沈其荣. 不同株高粳稻氮素累积和转运的基因型差异. 南京农业大学学报, 2006, 29(2): 71–74Zhang Y H, Wu J, Zhang Y L, Wang D S, Shen Q R. Genotypic variation of nitrogen accumulation and translocation in japonica rice cultivars with different height. J Nanjing Agric Univ, 2006, 29(2): 71–74 (in Chinese with English abstract)[8]杨利华, 张丽华, 杨世丽, 马瑞昆, 张全国. 不同株高玉米品种部分群体质量指标对种植密度的反应. 华北农学报, 2007, 22(6): 139–146Yang L H, Zhang L H, Yang S L, Ma R K, Zhang Q G. Responses of some population quality indices of corn hybrids differing in plant height to planting density. Acta Agric Boreali-Sin, 2007, 22(6): 139–146 (in Chinese with English abstract)[9]李利利, 张吉旺, 董树亭, 刘鹏, 赵斌, 杨今胜. 不同株高夏玉米品种同化物积累转运与分配特性. 作物学报, 2012, 38: 1080–1087Li L L, Zhang J W, Dong S T, Liu P, Zhao B, Yang J S. Characteristics of accumulation, transition and distribution of assimilate in summer maize varieties with different plant height. Acta Agron Sin, 2012, 38: 1080–1087 (in Chinese with English abstract)[10]吕鹏, 张吉旺, 刘伟, 杨今胜, 苏凯, 刘鹏, 董树亭, 李登海. 施氮量对超高产夏玉米产量及氮素吸收利用的影响. 植物营养与肥料学报, 2011, 17: 852–860Lü P, Zhang J W, Liu W, Yang J S, Su K, Liu P, Dong S T, Li D H. Effects of nitrogen application on yield and nitrogen use efficiency of summer maize under super-high yield conditions. Plant Nutr Fert Sci, 2011, 17: 852–860 (in Chinese with English abstract)[11]Muchow R C. Nitrogen utilization efficiency in maize and grain sorghum. Field Crops Res, 1998, 56: 209–216 [12]Fallah S, Tadayyon A. Uptake and nitrogen efficiency in forage maize: effects of nitrogen and plant density. Agrociencia-Mexico, 2010, 44: 549–560[13]Abbasi M K, Tahir M M, Sadiq A, Iqbal M, Zafar M. Yield and nitrogen use efficiency of rainfed maize response to splitting and nitrogen rates in Kashmir, Pakistan. Agron J, 2012, 104: 448–457[14]吕鹏, 张吉旺, 刘伟, 杨今胜, 苏凯, 刘鹏, 董树亭, 李登海. 施时期对超高产夏玉米产量及氮素吸收利用的影响. 植物营养与肥料学报, 2011, 17: 1099–1107Lü P, Zhang J W, Liu W, Yang J S, Su K, Liu P, Dong S T, Li D H. Effects of nitrogen application dates on yield and nitrogen use efficiency of summer maize in super-high yield conditions. Plant Nutr Fert Sci, 2011, 17: 1099–1107(in Chinese with English abstract)[15]徐桂玲, 郝建平. 氮肥施入深度对玉米产量效应的研究. 山西农业大学学报, 1984, 4(1): 48–55Xu G L, Hao J P. Studies on the effects of depth of application of N on the grain yield of maize. J Shanxi Agric Univ, 1984, 4(1): 48–55 (in Chinese with English abstract)[16]黄莺, 杨宏敏, 毛国军, 王天书. 尿素深施对提高氮素利用率的影响. 耕作与栽培, 1999, (增刊): 37–38Huang Y, Yang H M, Mao G J, Wang T S. The influence of urea to improve the utilization efficiency of nitrogen deep. Gengzuo yu Zaipei, 1999(suppl): 37–38 (in Chinese)[17]李士敏, 张书华, 朱红. 尿素深施对作物产量及氮素利用率影响效果浅析. 耕作与栽培, 1999, (5): 52–54Li S M, Zhang S H, Zhu H. The influence of urea deep placement on crop yield and nitrogen utilization efficiency. Gengzuo yu Zaipei, 1999, (5): 52–54 (in Chinese)[18]张丽娟, 巨晓棠, 高强, 张福锁. 两种作物对土壤不同层次标记硝态氮利用的差异. 中国农业科学, 2005, 38: 333–340Zhang L J, Ju X T, Gao Q, Zhang F S. Recovery of labeled nitrate-N in different soil layers by two kinds of crops. Sci Agic Sin, 2005, 38: 333–340 (in Chinese with English abstract)[19]陈佑良, 张启刚, 梁振兴, 王福钧, 梅楠. 应用富集15N研究冬小麦对氮素的吸收规律及其对器官建成的影响. 作物学报, 1986, 12: 101–108Chen Y L, Zhang Q G, Liang Z X, Wang F J, Mei N. Studies on the influence of the application of fertilizers at different growth stages on the nitrogen absorption and organ formation of winter wheat. Acta Agron Sin, 1986, 12: 101–108 (in Chinese with English abstract)[20]刘芳. 小麦吸收肥料氮和土壤氮的探讨. 核农学通报, 1994, 15(2): 81–84Liu F. Study on the absorption of fertilizer nitrogen and soil nitrogen of winter wheat. J Nucl Agric Sci, 1994, 15(2): 81–84 (in Chinese)[21]赵俊晔, 于振文. 不同土壤肥力条件施氮量对小麦氮肥利用和土壤硝态氮含量的影响. 生态学报, 2006, 26: 815–820Zhao J Y, Yu Z W. Effects of nitrogen rate on nitrogen fertilizer use of winter wheat and content of soil nitrate-N under different fertility condition, Acta Ecol Sin, 2006, 26: 815–820 (in Chinese with English abstract)[22]徐彩龙, 王振林, 尹燕萍, 蔡瑞国, 王平, 郭俊祥, 李勇, 翟学旭, 刘铁宁. 15N示踪法研究弱光对不同穗型冬小麦氮素积累和转运的影响. 植物营养与肥料学报, 2013, 19: 1–10Xu C L, Wang Z L, Yin Y P, Cai R G, Wang P, Guo J X, Li Y, Zhai X X, Liu T N. Effect of shading on nitrogen accumulation and translocation of winter wheat with different spike types using 15N tracer technique. Plant Nutr Fert Sci, 2013, 19: 1–10 (in Chinese with English abstract)[23]巨晓棠, 潘家荣, 刘学军, 陈新平, 张福锁, 毛达如. 高肥力土壤冬小麦生长季肥料氮的去向研究: I. 冬小麦生长季肥料氮的去向. 核农学报, 2002, 16: 397–402Ju X T, Pan J R, Liu X J, Chen X P, Zhang F S, Mao D R. The fate of nitrogen fertilizer in winter wheat growth season under high soil fertility condition. Acta Agric Nucl Sin, 2002, 16: 397–402 (in Chinese with English abstract)[24]马兴华, 于振文, 梁晓芳, 颜红, 史桂萍. 施氮量和底追比例对小麦氮素利用和土壤硝态氮含量的影响. 水土保持学报, 2006, 20(5): 95–98Ma X H, Yu Z W, Liang X F, Yan H, Shi G P. Effects of nitrogen application rate and ratio of base and topdressing on nitrogen utilization and soil Nitrate-N content in winter wheat. J Soil Water Conserv, 2006, 20(5): 95–98 (in Chinese with English abstract)[25]王小彬, 蔡典雅, 张镜清, 高绪科. 旱地玉米N吸收及其N肥利用率研究. 中国农业科学, 2001, 34: 179–186Wang X B, Cai D Y, Zhang J Q, Gao X K. Nitrogen uptake by corn and N recovery in grain in dry farmland. Sci Agric Sin, 2001, 34: 179–186 (in Chinese with English abstract)[26]潘晓丽, 林治安, 袁亮, 温延臣, 赵秉强. 不同土壤肥力水平玉米氮素吸收和利用的研究. 中国土壤与肥料, 2013, (1): 8–13Pan X L, Lin Z A, Yuan L, Wen Y C, Zhao B Q. Nitrogen uptake and use of summer maize under different soil fertility levels. China Soils Fert, 2013, (1): 8–13 (in Chinese with English abstract) [27]徐祥玉, 张敏敏, 翟丙年, 李生秀, 张兴昌, 王朝辉. 夏玉米氮效率基因型差异研究. 植物营养与肥料学报, 2006, 12: 495–499Xu X Y, Zhang M M, Zhai B N, Li S X, Zhang X C, Wang Z H. Genotypic variation in nitrogen use efficiency in summer maize. Plant Nutr Fert Sci, 2006, 12(4): 495–499 (in Chinese with English abstract)[28]戚廷香, 梁文科, 阎素红, 王俊娟, 杨兆生, 张文生. 玉米不同品种根系分布和干物质积累的动态变化研究. 玉米科学, 2003, 11(3): 76–79Qi T X, Liang W K, Yan S H, Wang J J, Yang Z S, Zhang W S. Study on dynamic variation of root distribution and dry matter accumulation of different maize varieties. J Maize Sci, 2003, 11(3): 76–79 (in Chinese with English abstract) |
| [1] | 唐宽强, 李公允, 宋美毅, 赵雪, 常春玲. 大豆株高性状全基因组关联分析及预测模型构建[J]. 作物学报, 2026, 52(6): 1743-1756. |
| [2] | 刘吉昌, 李思烨, 李雪婷, 王洪章, 刘鹏, 张吉旺, 赵斌, 任佰朝, 任昊. 盐胁迫对不同耐盐型夏玉米品种根系生长及养分吸收效率的影响[J]. 作物学报, 2026, 52(2): 565-577. |
| [3] | 孟凡琦, 房孟颖, 罗艺, 卢霖, 董学瑞, 王亚菲, 郭丽娜, 闫鹏, 董志强, 张凤路. 乙烯利-甜菜碱-水杨酸合剂对夏玉米耐热性和产量的调控效应[J]. 作物学报, 2025, 51(5): 1299-1311. |
| [4] | 郭绪虎, 李灵芝, 李凤, 马博岩, 贾晓宇. I型MADS-box基因SlMADS79调控番茄株型的功能研究[J]. 作物学报, 2025, 51(4): 982-991. |
| [5] | 宋利, 刘广周, 张华, 卢庭启, 卿春燕, 杨云山, 郭晓霞, 胡单, 李少昆, 侯鹏. 密植滴灌水肥一体化对西南夏玉米产量及土壤细菌群落的影响[J]. 作物学报, 2025, 51(4): 992-1004. |
| [6] | 徐建霞, 丁延庆, 曹宁, 程斌, 高旭, 李文贞, 张立异. 中国高粱株高和节间数全基因组关联分析及候选基因预测[J]. 作物学报, 2025, 51(3): 568-585. |
| [7] | 辛雨宁, 任昊, 王洪章, 梁明磊, 于涛, 刘鹏. 喷施6-苄氨基腺嘌呤(6-BA)对授粉后高温胁迫下夏玉米籽粒灌浆及产量的影响[J]. 作物学报, 2025, 51(2): 418-431. |
| [8] | 赵海红, 李梦媛, 刘锦婧, 王园园, 杜磊, 王娟, 董承光, 李成奇. 利用3VmrMLM方法检测陆地棉株高QTN及QTN-环境互作(QEI)[J]. 作物学报, 2025, 51(10): 2619-2631. |
| [9] | 孙照华, 任昊, 王洪章, 王子强, 姚海燕, 辛爱美, 赵斌, 张吉旺, 任佰朝, 刘鹏. 叶面喷施硅制剂对滨海盐碱地夏玉米叶片光合性能及籽粒产量的影响[J]. 作物学报, 2024, 50(9): 2383-2395. |
| [10] | 岳海旺, 魏建伟, 刘朋程, 陈淑萍, 卜俊周. 基于GYT双标图分析对黄淮海生态区玉米品种综合评价[J]. 作物学报, 2024, 50(4): 836-856. |
| [11] | 赵荣荣, 丛楠, 赵闯. 基于Landsat 8影像提取豫中地区冬小麦和夏玉米分布信息的最佳时相选择[J]. 作物学报, 2024, 50(3): 721-733. |
| [12] | 刘薇, 王玉斌, 李伟, 张礼凤, 徐冉, 王彩洁, 张彦威. 过量表达大豆异丙基苹果酸脱氢酶基因GmIPMDH促进植株开花和生长[J]. 作物学报, 2024, 50(3): 613-622. |
| [13] | 刁现民, 王立伟, 智慧, 张俊, 李顺国, 程汝宏. 谷子中矮秆资源创制、遗传解析和育种利用[J]. 作物学报, 2024, 50(2): 265-279. |
| [14] | 阳世杰, 王华智, 潘怡敏, 黄蕊, 侯森, 秦慧彬, 穆志新, 王海岗. 山西谷子种质资源株高全基因组关联分析[J]. 作物学报, 2024, 50(12): 2984-2997. |
| [15] | 赵阳, 李龙, 杨进文, 景蕊莲, 孙黛珍, 王景一. 小麦E3泛素连接酶基因TaSINA-3A与多种环境下的株高和千粒重相关[J]. 作物学报, 2024, 50(10): 2654-2664. |
|
||