作物学报 ›› 2009, Vol. 35 ›› Issue (11): 2116-2121.doi: 10.3724/SP.J.1006.2009.02116
蔡剑,姜东*,戴廷波,曹卫星
CAI Jian,JIANG Dong*,DAI Ting-Bo,CAO Wei-Xing
摘要:
2004—2006年连续两个生长季,以苏啤3和单2两个啤酒大麦品种为材料,探讨施纯氮0、75、150、225和300 kg hm-2条件下,啤酒大麦氮素积累和转运、氮素利用及籽粒产量和蛋白质积累的特性。在0~225 kg hm-2施氮量范围内,啤酒大麦花前植株氮素积累量和转运量均随施氮水平的提高呈上升趋势,但施氮量提高至300 kg hm-2后,提高幅度变小;而花前氮素转运效率及其对籽粒氮的贡献率则均随施氮水平提高呈单峰曲线变化。籽粒谷氨酰胺合成酶和谷-丙转氨酶活性也随着施氮水平的提高而上升,促进蛋白质积累,提高籽粒蛋白质含量,而当施氮量低于197 kg hm-2时籽粒蛋白质含量才低于12%,符合啤酒大麦酿造要求。经回归分析,在施氮量为241 kg hm-2时产量最高。此外,氮肥回收效率以225 kg hm-2施氮处理为最高,氮素生理利用效率和氮收获指数随施氮量增加而显著降低。综合考虑各项指标,建议在类似本试验条件的啤酒大麦生产区,施氮量以150~197 kg hm-2为宜。
[1] Wang J-M(汪军妹), Zhang G-P(张国平). Advance in studies on grain protein content in barley. Barley Sci (大麦科学), 1999, (3): 9-11 (in Chinese with English abstract) [2] Grant C A, Gauer L E, Gehl D T. Protein production and nitrogen utilization by barley in response to nitrogen fertilization under varying moisture conditions. Can J Plant Sci, 1991, 71: 997-1009 [3] Ça?lar Ö, Öztürk A. The effect of nitrogen doses on nitrogen uptake and translocation in spring barley genotypes. In: Anaç D, Martin-Prével P. Improved Crop Quality by Nutrient Management. Dordrecht, Netherlands: Kluwer Academic Publishers, 1999. pp 71-74 [4] Zhang G-L(张国良), Dai Q-G(戴其根), Chen P-H(陈培红), Wang Q(王勤), Zhang G-H(张桂华), Xu R-G(许如根), Zhang H-C(张洪程). Effects of nitrogen application on population quality: Yield and grain protein content of malting barely Gangpi 1. J Triticeae Crops (麦类作物学报), 2005, 25(4): 101-104 (in Chinese with English abstract) [5] Papakosta D K, Gagianas A A. Nitrogen and dry matter accumulation, remobilization, and losses for Mediterranean wheat during grain filling. Agron J, 1991, 83: 864-870 [6] Bulman P, Smith D L. Post-heading uptake, retranslocation, and partitioning in spring barley. Crop Sci,1994, 34: 977-984 [7] Cox M C, Qualset C O, Rains D W. Genetic variation for nitrogen assimilation and translocation in wheat: I. Dry matter and nitrogen accumulation. Crop Sci, 1985, 25: 430-435 [8] Triboi E, Triboi-Blondel A M. Productivity and grain or seed composition: a new approach to an old problem. Eur J Agron, 2002, 16: 163-186 [9] Zhao W-C(赵万春), Dong J(董剑), Gao X(高翔), Zhang G-S(张改生). Effects of nitrogen application on nitrogen accumulation and translocation as well as their heterosis in different organs of hybrid wheat. Acta Agron Sin (作物学报), 2007, 33(1): 57-62 (in Chinese with English abstract) [10] Zhao J-Y(赵俊晔), Yu Z-W(于振文). Effects of nitrogen fertilizer rate on nitrogen metabolism and protein synthesis of superior and inferior wheat kernel. Sci Agric Sin (中国农业科学), 2005, 38(8): 1547-1554 (in Chinese with English abstract) [11] Fan X-M(范雪梅), Jiang D(姜东), Dai T-B(戴廷波), Jin Q(荆奇), Cao W-X(曹卫星). Effects of nitrogen rates on activities of key regulatory enzymes for grain Starch and protein accumulation in wheat grown under drought and waterlogging from anthesis to maturity. Sci Agric Sin (中国农业科学), 2005, 38(6): 1132-1141 (in Chinese with English abstract) [12] Zhao J-Y(赵俊晔), Yu Z-W(于振文). Effects of nitrogen fertilizer rate on uptake, distribution and utilization of nitrogen in winter wheat under high yielding cultivated condition. Acta Agron Sin (作物学报), 2006, 32(4): 484-490 (in Chinese with English abstract) [13] Tong Y-A(同延安). Nitrogen fertilizer and environment. In: Feng F(冯锋) ed. Research Progress and Prospect for Plant Nutrition (植物营养研究进展与展望). Beijing: China Agricultural University Press, 2001. pp 207-215 (in Chinese) [14] Wang D(王东), Yu Z-W(于振文). Effect of nitrogen application levels on nitrogen assimilation and grain protein components accumulation in strong gluten wheat. J Soil Water Conserv (水土保持学报), 2007, 21(5): 147-150 (in Chinese with English abstract) [15] Öztürk A, Ça?lar Ö, Akten ?. Nitrogen utilization in spring barley genotypes. In: Anaç D, Martin-Prével P, eds. Improved Crop Quality by Nutrient Management. Dordrecht: Kluwer Academic Publishers, 1999. pp 67-70 [16] Le Gouis J, Delebarre O, Beghin D, Heumez E, Pluchard P. Nitrogen uptake and utilisation efficiency of two-row and six-row winter barley cultivars grown at two N levels. Eur J Agron, 1999, 10: 73-79 [17] Tang Z-C(汤章城) ed. Analysis of GS and GPT. Laboratory Guide for Modern Plant Physiology (现代植物生理学实验指南). Beijing: Science Press, 1999. pp 154-158 (in Chinese) [18] Shi Y(石玉), Yu Z-W(于振文), Li Y-Q(李延奇), Wang X(王雪). Effects of nitrogen fertilizer rate and ratio of base and topdressing on winter wheat yield and fate of fertilizer nitrogen. Sci Agric Sin (中国农业科学), 2007, 40(1): 54-62 (in Chinese with English abstract) [19] Bänziger M, Feil B, Schmid J E, Stamp P. Genotypic variation in grain nitrogen content of wheat as affected by mineral nitrogen supply in the soil. Eur J Agron, 1992, 1: 155-162 [20] Guo T-C(郭天财), Song X(宋晓), Ma D-Y(马冬云), Zha F-N(查菲娜), Yue Y-J(岳艳军). Effects of nitrogen application rate on carbon and nitrogen transportation in winter wheat. Acta Bot Boreali-Occident Sin (西北植物学报), 2007, 27(8): 1605-1610 (in Chinese with English abstract) [21] Wang Y-F(王月福), Jiang D(姜东), Yu Z-W(于振文), Cao W-X(曹卫星). Effects of nitrogen rates on grain yield and protein content of wheat and its physiological basis. Sci Agric Sin (中国农业科学), 2003, 36(5): 513-520 (in Chinese with English abstract) [22] Delogu G, Cattivelli L, Pecchioni N, De Falcis D, Maggiore T, Stanca A M. Uptake and agronomic efficiency of nitrogen in winter barley and winter wheat. Eur J Agron, 1998, 9: 11-20 [23] Huo Z-Y(霍中洋), Ge X(葛鑫), Zhang H-C(张洪程), Dai Q-G(戴其根), Xu K(许轲), Gong Z-K(龚振恺). Effect of different nitrogen application types on N-absorption and N-utilization rate of specific use cultivars of wheat. Acta Agron Sin (作物学报), 2004, 30(5): 449-454 (in Chinese with English abstract) [24] Jiang L G, Dai T B, Jiang D, Cao W X, Gan X Q, Wei S Q. Characterizing physiological N-use efficiency as influenced by nitrogen management in three rice cultivars. Field Crop Res, 2004, 88: 239-250 [25] Jin Z-Z(靳正忠), Qi J-C(齐军仓), Cao L-P(曹连莆), Liu W(刘伟), Li C(李诚). Advance in study on the effects of genotype and environment on protein content in malting barley grains. Barley Sci (大麦科学), 2004, (2): 9-13 (in Chinese with English abstract) |
[1] | 闫宇婷, 宋秋来, 闫超, 刘爽, 张宇辉, 田静芬, 邓钰璇, 马春梅. 连作秸秆还田下玉米氮素积累与氮肥替代效应研究[J]. 作物学报, 2022, 48(4): 962-974. |
[2] | 刘运景, 郑飞娜, 张秀, 初金鹏, 于海涛, 代兴龙, 贺明荣. 宽幅播种对强筋小麦籽粒产量、品质和氮素吸收利用的影响[J]. 作物学报, 2022, 48(3): 716-725. |
[3] | 王琰, 陈志雄, 姜大刚, 张灿奎, 查满荣. 增强叶片氮素输出对水稻分蘖和碳代谢的影响[J]. 作物学报, 2022, 48(3): 739-746. |
[4] | 谢呈辉, 马海曌, 许宏伟, 徐郗阳, 阮国兵, 郭峥岩, 宁永培, 冯永忠, 杨改河, 任广鑫. 施氮量对宁夏引黄灌区麦后复种糜子生长、产量及氮素利用的影响[J]. 作物学报, 2022, 48(2): 463-477. |
[5] | 付正豪, 马中涛, 魏海燕, 邢志鹏, 刘国栋, 胡群, 张洪程. 不同机械化栽培方式下控释肥配比对迟熟中粳水稻产量形成及氮素吸收利用的影响[J]. 作物学报, 2022, 48(1): 165-179. |
[6] | 王建国, 张佳蕾, 郭峰, 唐朝辉, 杨莎, 彭振英, 孟静静, 崔利, 李新国, 万书波. 钙与氮肥互作对花生干物质和氮素积累分配及产量的影响[J]. 作物学报, 2021, 47(9): 1666-1679. |
[7] | 靳义荣, 刘金栋, 刘彩云, 贾德新, 刘鹏, 王雅美. 普通小麦氮素利用效率相关性状全基因组关联分析[J]. 作物学报, 2021, 47(3): 394-404. |
[8] | 王媛, 王劲松, 董二伟, 武爱莲, 焦晓燕. 长期施用不同剂量氮肥对高粱产量、氮素利用特性和土壤硝态氮含量的影响[J]. 作物学报, 2021, 47(2): 342-350. |
[9] | 孟天瑶,葛佳琳,张徐彬,韦还和,陆钰,李心月,陶源,丁恩浩,周桂生,戴其根. 甬优中熟籼粳杂交稻栽后植株氮素积累模型与特征[J]. 作物学报, 2020, 46(5): 798-806. |
[10] | 郑飞娜,初金鹏,张秀,费立伟,代兴龙,贺明荣. 播种方式与种植密度互作对大穗型小麦品种产量和氮素利用率的调控效应[J]. 作物学报, 2020, 46(3): 423-431. |
[11] | 王艳,易军,高继平,张丽娜,杨继芬,赵艳泽,辛威,甄晓溪,张文忠. 不同叶龄蘖、穗氮肥组合对粳稻产量及氮素利用的影响[J]. 作物学报, 2020, 46(01): 102-116. |
[12] | 李朝苏,吴晓丽,汤永禄,李俊,马孝玲,李式昭,黄明波,刘淼. 小麦产量对中后期氮素胁迫的响应及品种间差异[J]. 作物学报, 2019, 45(8): 1260-1269. |
[13] | 党科,宫香伟,陈光华,赵冠,刘龙,王洪露,杨璞,冯佰利. 糜子绿豆带状种植下糜子的氮素积累、代谢及产量变化[J]. 作物学报, 2019, 45(12): 1880-1890. |
[14] | 何丹丹,贾立国,秦永林,樊明寿. 不同马铃薯品种的氮利用效率及其分类研究[J]. 作物学报, 2019, 45(1): 153-159. |
[15] | 安建刚,敬夫,丁祎,肖怡,尚浩浩,李宏利,杨晓璐,唐道彬,王季春. 氮肥分期运筹对套作甘薯产量、品质及氮素效率的影响[J]. 作物学报, 2018, 44(12): 1858-1866. |
|