作物学报 ›› 2014, Vol. 40 ›› Issue (01): 181-189.doi: 10.3724/SP.J.1006.2014.00181
• 研究简报 • 上一篇
白伟1,2,孙占祥1,*,郑家明1,侯志研1,刘洋1,冯良山1,杨宁1
BAI Wei1,2,SUN Zhan-Xiang1,*,ZHENG Jia-Ming1,HOU Zhi-Yan1,LIU Yang1,FENG Liang-Shan1,YANG Ning1
摘要:
改变玉米田间种植模式是提高玉米单产的重要措施之一。本文在大田试验条件下, 以耐密品种(郑单958)和中密品种(沈玉21)研究了三比空密疏密、大垄双行和等行距(CK) 3种种植模式对春玉米产量形成及其生长发育特征的影响。结果表明, 田间种植形式的改变可以显著影响玉米群体产量及其生长发育特征。耐密品种以大垄双行种植模式为宜, 可以增加玉米的株高、茎粗, 提高叶面积和光能利用率, 促进干物质积累, 两年平均产量为8882.36 kg hm-2, 比对照增加6.51%, 增产的原因是百粒重和穗行数的显著提高; 中密品种以大垄双行和三比空种植模式为宜, 两种种植模式均可增加玉米的株高、茎粗, 提高叶面积和光能利用率, 促进干物质积累, 且与耐密品种表现不同, 两年平均产量分别为8294.58 kg hm-2和8188.30 kg hm-2, 比对照增加21.36%和19.81%, 增产的原因是行粒数的显著增加。因此, 笔者认为在辽西地区特定的自然条件下大垄双行是提高玉米单产的最佳种植模式。
[1]Li F-H(李凤海), Shi Z-S(史振声), Zhang S-H(张世煌), Wang Z-B(王志斌), Wang H-W(王宏伟), Lü X-L(吕香玲), Zhu M(朱敏), Liu H-J(刘红军). Study and consideration on less normal density problem of maize in Liaoning Province. J Maize Sci (玉米科学), 2010, 18(3): 113–116 (in Chinese with English abstract)[2]Hou Z-Y(侯志研), Wang D-W(王大为), Zheng J-M(郑家明), Fu J-C(付景昌), Bai W(白伟), Zhao K-H(赵奎华). Studies on variety and different technical patterns of super high-yield maize in area of western Liaoning Province. J Maize Sci (玉米科学), 2011, 19(2): 101–104 (in Chinese with English abstract)[3]Zhao M(赵明), Li J-G(李建国), Zhang B(张宾), Dong Z-Q(董志强), Wang M-Y(王美云). The compensatory mechanism in exploring crop production potential. Acta Agron Sin(作物学报), 2006, 32(10): 1566–1573 (in Chinese with English abstract)[4]Li S-K(李少昆), Wang C-T(王崇桃). Crop plant type and canopy structure of information acquisition and expression method (review). J Shihezi Univ (Nat Sci Edn)(石河子大学学报?自然科学版), 1997, 1(3): 250–256 (in Chinese with English abstract)[5]Chen G-P(陈国平), Wang R-H(王荣焕), Zhao J-R(赵久然). Analysis on yield structural model and key factors of maize high-yield plots. J Maize Sci (玉米科学), 2009, 17(4): 89–93 (in Chinese with English abstract)[6]Yang G-H(杨国虎), Li X(李新), Wang C-L(王承莲), Luo X-N(罗湘宁). Study on effects of plant densities on the yield and the related characters of maize hybrids. Acta Agric Boreali-Occident Sin (西北农业学报), 2006, 15(5): 57–60 (in Chinese with English abstract)[7]Shen X-Y(沈秀瑛), Dai J-Y(戴俊英), Hu A-C(胡安畅), Gu W-L(顾慰连), Zheng B(郑波). Study on canopy characteristics and light interception and production relations of maize. Acta Agron Sin (作物学报), 1993, 19(3): 246–252 (in Chinese with English abstract)[8]Yang J-S(杨今胜), Wang Y-J(王永军), Zhang J-W(张吉旺), Liu P(刘鹏), Li C-F(李从锋), Zhu Y-G(朱元刚), Hao M-B(郝梦波), Liu J-G(柳京国), Li D-H(李登海), Dong S-T(董树亭). Dry matter production and photosynthesis characteristics of three hybrids of maize (Zea mays L.) with super-high-yielding potential. Acta Agron Sin (作物学报), 2011, 37(2): 355–361 (in Chinese with English abstract)[9]Andrade F H, Calvino P, Cirilo A, Barbieri P. Yield responses to narrow rows depend on increased radiation interception. Agron J, 2002, 94: 975–980[10]Reta-Sanchez D G, Fowler J L. Canopy light environment and yield of narrow-row cotton as affected by canopy architecture. Agron J, 2002, 94: 1317–1323[11]Wang J-Y(王敬亚), Qi H(齐华), Liang Y(梁熠), Wang X-B(王晓波), Wu Y-N(吴亚男), Bai X-L(白向历), Liu M(刘明), Meng X-H(孟显华), Xu J(许晶). Effect of different planting patterns on the photosynthesis capacity dry matter accumulation and yield of spring maize. J Maize Sci (玉米科学), 2009, 17(5): 113–115 (in Chinese with English abstract)[12]Gao Y-N(高亚男), Cao Q-J(曹庆军), Han H-F(韩海飞), Cui J-H(崔金虎), Wang H-Y(王洪预). Effect of different row spacings on yield and chloroplast rats of spring maize. J Maize Sci(玉米科学), 2010, 18(2): 73–76 (in Chinese with English abstract)[13]Sun Z-X(孙占祥), Liu W-R(刘武仁), Lai Y-C(来永才), eds. Farming System of Northeast(东北农作制). Beijing: China Agriculture Press, 2010 (in Chinese) [14]Bao S-D(鲍士旦), ed. Soil Agricultural Chemistry Analysis (土壤农化分析). Beijing: China Agriculture Press, 2000 (in Chinese)[15]Zheng Y(郑毅), Zhang L-J(张立军), Cui Z-H(崔振海), Wu D(吴迪). Planting density of different plant type of summer maize canopy structure and photosynthetic potential impact. Jiangsu Agric Sci (江苏农业科学), 2010, (3): 116–118 (in Chinese)[16]Zhu Y-G(朱元刚), Dong S-T(董树亭), Zhang J-W(张吉旺), Liu P(刘鹏), Yang J-S(杨今胜), Jia C-L(贾春兰), Liu J-G(柳京国), Li D-H(李登海). Effects of cropping patterns on photosynthesis character istics of summer maize and its utilization of solar and heat resources. Chin J Appl Ecol (应用生态学报), 2010, 21(6): 1417–1424 (in Chinese with English abstract)[17]Yang J-S(杨吉顺), Gao H-Y(高辉远), Liu P(刘鹏), Li G(李耕), Dong S-T(董树亭), Zhang J-W(张吉旺), Wang J-F(王敬锋). Effects of planting density and row spacing on canopy apparent photosynthesis of high-yield summer corn. Acta Agron Sin (作物学报), 2010, 36(7): 1226–1233 (in Chinese with English abstract)[18]Yang L-H(杨丽华), Zhang L-H(张丽华), Zhang Q-G(张全国), Yao Y-R(姚艳荣), Jia X-L(贾秀领), Ma R-K(马瑞崑). Effect to row spacing pattem on yield and plant height uniformity in highly-densed summer maize. J Maize Sci (玉米科学), 2006, 14(6): 122–124 (in Chinese with English abstract)[19]Lü L-H(吕丽华), Tao H-B(陶洪斌), Xia L-K(夏来坤), Zhang Y-J(张雅杰), Zhao M(赵明), Zhao J-R(赵久然), Wang P(王璞). Canopy structure and photosynthesis traits of summer maize under different planting densities. Acta Agron Sin (作物学报), 2008, 34(3): 447–455 (in Chinese with English abstract)[20]Dong S-T(董树亭), Gao R-Q(高荣岐), Hu C-H(胡昌浩), Wang Q-Y(王群瑛), Wang K-J(王空军). Study of canopy photosynthe-sis property and high yield potential after anthesis in maize. Acta Agron Sin (作物学报), 1997, 23(3): 318–325 (in Chinese with English abstract)[21]Fan H-M(范厚明), Yu L(余莉), Yu H-M(余慧明). Effect of different planting methods on growth and yield of maize. Guizhou Agric Sci (贵州农业科学), 2003, 31(4): 25–26 (in Chinese with English abstract)[22]Wu Z-H(武志海), Zhang Z-A(张治安), Chen Z-Y(陈展宇), Xu K-Z(徐克章). Researched on characteristics of canopy structure and photosynthetic characteristic of maize planting in double lines at one width ridge. J Maize Sci (玉米科学), 2005, 13(4): 62–65 (in Chinese with English abstract)[23]Liang Y(梁熠), Qi H(齐华), Wang J-Y(王敬亚), Bai X-L(白向历), Wang X-B(王晓波), Liu M(刘明), Meng X-H(孟显华), Xu J(许晶). Effect of growth and yield of maize under wide and narrow row cultivation. J Maize Sci (玉米科学), 2009, 17(4): 97–100 (in Chinese with English abstract) [24]Yang K-J(杨克军), Li M(李明), Li Z-H(李振华). Effect of cultivation way and community construction on material accumulation and yield formation of frigid corn. Chin Agric Sci Bull (中国农学通报), 2005, 21(11): 157–157 (in Chinese with English abstract)[25]Lu-X-Z(陆雪珍), Shen X-F(沈雪芳), Shen C-B(沈才标), Xu X-M(徐晓梅), Zhang W-X(张文献). Study on yields and correlated characters of way corn under different planting densities. Acta Agric Shanghai (上海农业学报), 2008, 24(2): 61–64 (in Chinese with English abstract) |
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