作物学报 ›› 2010, Vol. 36 ›› Issue (12): 2143-2153.doi: 10.3724/SP.J.1006.2010.02143
李向岭1,2,赵明2,*,李从锋2,葛均筑2,侯海鹏2,李琦1,侯立白1
LI Xiang-Ling1,2,ZHAO Ming2,*,LI Cong-Feng2,GE Jun-Zhu2,HOU Hai-Peng2,LI Qi1,HOU Li-Bai1
摘要: 在大田条件下, 以益农103、先玉335和登海661为材料, 设置3个播种期(5月3日,5月28日,6月22日)和4个密度处理(4.5万株 hm-2,6.0万株 hm-2,7.5万株 hm-2,9.0万株 hm-2), 测定其干物质积累动态和产量, 分析播期、密度和玉米群体干物质积累动态特征的关系及其积温模型。结果表明: (1)将3个播期玉米不同处理的最大群体干物质积累和出苗至成熟的积温分别定为1, 建立了相对群体干物质积累和相对积温的Richards模拟模型, 方程式为y = 1.1044/(1+e2.0253-5.1927x)1/0.4448, r=0.9950**。(2)方程参数a值(终极生长量参数)基本为1;b值(初值生长量参数)和c值(生长速率参数)在播期、品种间变异较大, 密度间变异较小;d值(形状参数)在播期、品种和密度间变异较小, 可见播期主要通过调节参数b、c值来实现对整个方程的调控。应用2008年本试验和另一试验的数据对模型进行验证,模拟准确度(以k表示)均在1.0486**以上;精确度(以R2表示)均在0.9534**以上。(3)拔节期至蜡熟期是玉米群体干物质积累变化速率对密度的敏感反应期;晚播玉米所需积温在群体干物质积累变化速率的缓慢增加和下降阶段逐渐减少,在快速增加阶段逐渐增加。全生育期的群体干物质积累平均速率表现为先玉335>登海661>益农103;且早播>中播>晚播;密度越高群体干物质积累平均速率越大, 达到显著水平。
| [1]Zhang S(张胜), Jia Z-Y(贾振业), Gao B-D(高炳德). Studies on the regularity of dry matter accumulation and distribution and its indexs of sping maize of 13.7–15.9 t ha-1 yield. J Inner Mongolia Agric Univ (内蒙古农业大学学报), 2000, 12(21): 1009–3575 (in Chinese with English abstract) [2]Dordas C A, Sioulas C. Laboratory dry matter and nitrogen accumulation, partitioning, and retranslocation in safflower (Carthamus tinctorius L.) as affected by nitrogen fertilization. Field Crops Res, 2009, 110: 35–43 [3]Ma G-S(马国胜), Xue J-Q(薛吉全), Lu H-D(路海东), Zhang R-H(张仁和), Wu S-J(邰书静), Ren J-H(任建宏). Effects of planting date and density on population physiological indices of summer corn (Zea mays L.) in central Shaanxi irrigation area. Chin J Appl Ecol (应用生态学报), 2007, 18(6): 1247–1253 (in Chinese with English abstract) [4]Zhang N(张宁), Du X(杜雄), Jiang D-L(江东岭), Cui Y-H(崔彦宏). Effect of sowing date on growth and yield of summer corn (Zea mays L). J Agric Univ Hebei (河北农业大学学报), 2009, 32(5): 1000–1573 (in Chinese with English abstract) [5]Xing L-F(邢黎峰). The Richards model of Biology growth. J Biol Biomath (生物数学学报), 1998, 13(2): 348–353 (in Chinese) [6]Yu Q(于强), Fu B-P(傅抱璞), Yao K-M(姚克敏). A universal growth model on rice LAI. Chin J Agrometeorol (中国农业气象), 1995, 16 (2): 6–8 (in Chinese) [7]Wang X-L(王信理). Logistic simulating model on crop dry matter accumulating dynamics. Chin J Agrometeorol (中国农业气象), 1986, 7 (1): 14–19 (in Chinese ) [8]Gong Y-H(龚月桦), Liu Y-Z(刘迎洲), Gao J-F(高俊凤). Growth analysis on the process of grain filling in hybrid wheat 901 and its parents. Sci Agric Sin (中国农业科学), 2004, 37(9): 1288–1292 (in Chinese with English abstract) [9]Xue X(薛香), Wu Y-E(吴玉娥), Chen R-J(陈荣江), Han Z-J(韩占江), Gao Q-L(郜庆炉). Comparison of different mathematical equations for simulating the grain filling process of wheat. J Triticeae Crops (麦类作物学报), 2006, 26(6): 169–171 (in Chinese with English abstract) [10]Yang J C, Zhang J C, Wang Z Q, Zhu Q C, Wang W. Hormoneal changes in the grains of rice subjected to water stress during grain filling. Plant Physiol, 2001, 127: 315–323 [11]Hou Y-H(侯玉虹), Chen C-Y(陈传永), Guo Z-H(郭志强), Hou L-B(侯立白), Dong Z-Q(董志强), Zhao M(赵明). Establishment of dry matter accumulation dymamic simulation model and analysis of growth characteristic for high-yielding population of spring maize. J Maize Sci (玉米科学), 2008, 16(6): 90–95 (in Chinese with English abstract) [12]Lü X(吕新). Studies on Effects of Ecological Factors on Growth of Maize and Establishment of Climate Ecology Model and Appraisement System. PhD dissertation of Shandong Agricultural University, 2006 (in Chinese) [13]Zhang B(张宾), Zhao M(赵明), Dong Z-Q(董志强), Li J-G(李建国), Chen C-Y(陈传永), Sun R(孙锐). Establishment and test of LAI dynamic simulation model for high yield population. Acta Agron Sin (作物学报), 2007, 33 (4): 612-619 (in Chinese with English abstract) [14]Yan D-C(严定春), Zhu Y(朱艳), Cao W-X(曹卫星). A knowledge model for selection of suitable variety in rice production. J Nanjing Agric Univ (南京农业大学学报), 2004, 27(4): 20–25 (in Chinese with English abstract) [15]Fu X-L(付雪丽), Zhao M(赵明), Zhou B-Y(周宝元), Cui G-M(崔国美), Ding Z-S(丁在松). Optimal model for dynamic characteristics of grain weight commonly used in wheat and maize. Acta Agron Sin (作物学报), 2009, 35(2): 309–316 (in Chinese with English abstract) [16]Zhu Q-S(朱庆森), Cao X-Z(曹显祖), Luo Y-M(骆亦其). Growth analysis on the process of grain filling in rice. Acta Agron Sin (作物学报), 1988, 14(3): 182–193 (in Chinese with English abstract) [17]Huang Z-H(黄智鸿), Wang S-Y(王思远), Bao Y(包岩), Liang X-H(梁煊赫), Sun G(孙刚), Shen L(申林), Cao Y(曹洋), Wu C-S(吴春胜). Studies on dry matter accumulation and distributive characteristic in super high-yield maize. J Maize Sci (玉米科学), 2007, 15(3): 95–98 (in Chinese with English abstract) [18]Xie T-B(谢天保), Zeng C-C(曾春初), Xu S-M(徐述明). A primary test of suitable sowing date of spring corn in southern Hunan. Crop Res (作物研究), 2005, (4): 216–218 (in Chinese with English abstract) [19]Ma G-S(马国胜), Xue J-Q(薛吉全), Lu H-D(路海东), Zhang R-H(张仁和), Wu S-J(邰书静), Ren J-H(任建宏). Effects of planting date and density on population physiological indices of summer corn (Zea mays L.) in central Shaanxi irrigation area. Chin J Appl Ecol (应用生态学报), 2007, 18(6): 1247–1253 (in Chinese with English abstract) [20]Li M (李明), Li W-X(李文雄). Regulation of fertilizer and density on sink and source traits and yield of maize. Sci Agric Sin (中国农业科学), 2004, 37(8): 1130–1137 (in Chinese with English abstract) [21]Xiao S-Z(肖淑招), Zhang G-Z(张桂宗), Meng X-Y(孟宪钺). Study on simulation model of grain filling rate in winter wheat. Chin J Agrometeorol (农业气象), 1986, 7(4): 9–13 (in Chinese with English abstract) [22]Huang Z-X(黄振喜), Wang Y-J(王永军), Wang K-J(王空军), Li D-H(李登海), Zhao M(赵明), Liu J-G(柳京国), Dong S-T(董树亭), Wang H-J(王红军), Wang J-H(王军海), Yang J-S(杨今胜). Photosynthetic characteristics during grain filling stage of summer maize hybrids with high yield potential of 15 000 kg ha-1. Sci Agric Sin (中国农业科学), 2007, 40(9): 1898–1906 (in Chinese with English abstract) [23]Hu Y-J(胡延吉), Lan J-H(兰进好), Zhao T-F(赵檀方). Dry matter accumulation and partitioning in three major wheat cultivars released in different period. J Shandong Agric Univ (山东农业大学学报), 1999, 30(4): 404−408 (in Chinese with English abstract) [24]Li G-Q(李国强), Tang L(汤亮), Zhang W-Y(张文宇), Cao W-X(曹卫星), Zhu Y(朱艳). Dynamic analysis on response of dry matter accumulation and partitioning to nitrogen fertilizer in wheat cultivars with different plant types. Acta Agron Sin (作物学报), 2009, 35(12): 2258−2265 (in Chinese with English abstract) [25]Ou L T M, Tim L S. Effect of increase temperature in apical regions of maize ears on starch synthesis enzymes and accumulation of sugars and starch. Plant Physiol, 1985, 79: 852–855 [26]Sun R(孙锐). The Yield Performance of Density Effect and Quantitative Analysis in Maize. PhD Dissertation of China Agricultural University, 2006 (in Chinese with English abstract) [27]Dong X-W(东先旺), Liu S-T(刘树堂). A study of canopy apparent photosynthesis property in summer maize with super high yield. Acta Agric Boreal-Sin (华北农学报), 1999, 14(2): 1–5 (in Chinese with English abstract) |
| [1] | 刘恩波, 陈静, 李红星, 于宁宁, 任佰朝, 赵斌, 刘鹏, 张吉旺. 遮阴改变源-库平衡和调节碳水化合物代谢进而抑制夏玉米幼穗发育[J]. 作物学报, 2026, 52(6): 1891-1901. |
| [2] | 梁进宇, 尹嘉德, 王红丽, 张国平, 侯慧芝, 董博, 马明生. 基于无人机高光谱和机器学习的旱地饲用玉米叶片氮含量估测[J]. 作物学报, 2026, 52(6): 1788-1801. |
| [3] | 孙淑凤, 许振南, 黄嘉鑫, 翁建峰, 李新海. 玉米MAPK家族全基因组鉴定及其对拟轮枝镰孢菌感染的响应[J]. 作物学报, 2026, 52(5): 1291-1308. |
| [4] | 张宁宁, 滕雨菲, 任娜娜, 魏兴卓, 闫书豪, 樊可心, 王永宏, 陈文康, 张兴华, 朱万超, 徐淑兔, 薛吉全. 201份玉米自交系抗旱表型评价及可塑性分析[J]. 作物学报, 2026, 52(5): 1309-1325. |
| [5] | 张鸿蓉, 王菲儿, 李盼, 仇海龙, 朱静, 赵连豪, 南运有, 何蔚, 樊志龙, 胡发龙, 柴强, 殷文. 减量20%灌水与25%有机肥替代化肥提高青贮玉米产量的光合特性[J]. 作物学报, 2026, 52(5): 1487-1500. |
| [6] | 杨扬, 常诗惠, 田红丽, 易红梅, 王璐, 任洁, 范亚明, 刘亚维, 王凤格, 赵久然. 不同生态区国审玉米品种的遗传多样性分析[J]. 作物学报, 2026, 52(5): 1352-1364. |
| [7] | 何万龙, 耿洪伟, 张飞飞, 米克热阿依·阿巴白克热, 罗紫洋, 李鹏程, 周钊宇, 程宇坤. 基于深度学习的小麦重要病害图像识别系统的研究[J]. 作物学报, 2026, 52(5): 1401-1417. |
| [8] | 杨欣雨, 崔文涛, 迪力尼格尔·阿力木, 汪凯翔, 吴鹏昊, 任姣姣. 玉米穗上叶片数全基因组关联分析和全基因组选择[J]. 作物学报, 2026, 52(5): 1573-1590. |
| [9] | 韩亚鑫, 何冠华, 张小琼, 张登峰, 李永祥, 刘旭洋, 王天宇, 黎裕, 邹华文, 李春辉. 基于RNA-Seq和BSA-Seq联合分析挖掘玉米侧根密度基因资源[J]. 作物学报, 2026, 52(5): 1341-1352. |
| [10] | 蒋嘉卉, 江炳志, 刘冠明, 王章英, 唐朝臣. 紫肉甘薯品质性状的近红外光谱预测模型构建与优化[J]. 作物学报, 2026, 52(4): 1088-1102. |
| [11] | 杨亚莉, 徐明睿, 马越飞, 海艺蕊, 刘凯栋, 刘万茂, 孙颖. 玉米根尖及整根响应缺铁的转录组比较研究[J]. 作物学报, 2026, 52(4): 1006-1021. |
| [12] | 蔡宏玮, 于爱忠, 姜科强, 王鹏飞, 王玉珑, 霍建喆, 庞小能, 尹波, 尚永盼. 干旱灌区有机肥替代部分化肥促进甜玉米产量提升的关键机制[J]. 作物学报, 2026, 52(4): 1166-1180. |
| [13] | 田红丽, 杨扬, 范亚明, 易红梅, 郭丹丹, 王凤格, 赵久然. 适于玉米品种鉴定的一套三等位变异SNP新型标记组合[J]. 作物学报, 2026, 52(4): 993-1005. |
| [14] | 杨锐, 陈敬东, 黄郢, 张学昆, 周登文, 刘清云, 徐劲松, 谢伶俐, 许本波. 长江下游冬油菜区应对气候变化的育种和栽培策略研究[J]. 作物学报, 2026, 52(4): 1153-1165. |
| [15] | 乔宇馨, 李程越, 康晓玉, 张鑫琪, 贾绍辉, 刘倩, 曹亚丽, 史鑫蕊, 郝兴宇, 李萍. 基于APSIM模型的长期免耕秸秆覆盖对旱地小麦增产效应研究[J]. 作物学报, 2026, 52(4): 1181-1192. |
|
||