欢迎访问作物学报,今天是

作物学报 ›› 2009, Vol. 35 ›› Issue (3): 546-551.doi: 10.3724/SP.J.1006.2009.00546

• 研究简报 • 上一篇    下一篇

长江中下游双季稻高产株型特征初步研究

曾勇军;石庆华*;潘晓华;韩涛   

  1. 江西农业大学作物生理生态与遗传育种教育部重点实验室/农业部双季稻生理生态与栽培重点开放实验室/江西省作物生理生态与遗传育种重点实验室,江西南昌330045
  • 收稿日期:2008-04-18 修回日期:2008-09-05 出版日期:2009-03-12 网络出版日期:2009-01-16
  • 通讯作者: 石庆华
  • 基金资助:

    本研究由国家粮食丰产科技工程项目(2006BAD02A04),超级稻配套栽培技术集成项目(超级稻专项),江西省科技计划项目(20051B0200101)资助

Preliminary Study on the Plant Type Characteristics of Double Cropping Rice in Middle and Lower Reaches of Changjiang River

ZENG Yong-Jun;SHI Qing-Hua*;PAN Xiao-Hua;HAN Tao   

  1. Key Laboratory of Crop Physiology, ecology and Genetic Breeding, Ministry of Education/Key Laboratory of Crop Physiology, Ecology and Cultivation of Double Cropping Rice,Ministry of Agriculture/Key Laboratory of Crop Physiology, Ecology and Genetic Breeding of Jiangxi Province, Jiangxi Agricultural University, Nanchang 330045,China
  • Received:2008-04-18 Revised:2008-09-05 Published:2009-03-12 Published online:2009-01-16
  • Contact: SHI Qing-Hua

摘要:

19个早稻和16个晚稻品种,通过方差分析对不同产量水平水稻的主要株型特征进行研究。结果表明,高产类型双季稻具有库容量大、产量潜力高、物质生产能力和氮素吸收能力强的特点。高产类型早稻生育期110~115 d,株高95~105 cm,上部节间较长,倒2、倒3叶片较长,叶片披垂角相对较大,穗长较长,1次枝梗和2次枝梗数目多,每穗粒数100~130粒,千粒重27~29 g,单穗干重2.5 g以上。高产类型晚稻生育期120~125 d,株高100~110 cm,上部节间长,茎秆粗壮,叶片长度适中,叶片披垂角相对较小,穗长较长,枝梗数目特别是2次枝梗数目多,着粒密度大,每穗粒数120~150粒,千粒重25~27 g,单穗干重3 g左右。

关键词: 双季稻, 株型特征, 产量

Abstract:

Plant characteristics of 19 combinations of early rice and 16 combinations of late rice were studied by variance methods. Results showed that high yield rice combination had large sink, high potential yield and powerful ability in dry matter accumulation and N uptake, and high grain weight for early rice and more grain number for late rice. Basic physiologic characteristics of high yielding rice combination were as follows: 110–115 d of growth duration, 95–105 cm of height, long top internode, long length and big drop-angle of the second and third leaves of top, long spike, large number of the first and second panicle-branches, 100–130 spikelets per panicle, 27–29 g of 1000-grain weight, and over 2.5 g for the weight per panicle for early rice; 120–125 d of growth duration, 100–110 cm of height, long top internode, stout stem, medium length and small drop-angle of the top leaves, long spike, large number of the panicle-branches especially of the second panicle-branches, high density of the grain, 120–150 spikelets per panicle, 25–27 g of 1000-grain weight, and about 3.0 g for the weight per panicle for late rice.

Key words: Double cropping rice, Characteristic of plant type, Yield

[1]Chen W-F(陈温福), Xu Z-J(徐正进). Physiological Bases of Rice Breeding for Super High Yield (水稻超高产育种生理基础). Shenyang: Liaoning Science & Technology Press ,1995(in Chinese)
[2]Huang Y-X(黄耀祥). Rice Chonghua Breeding. J Guangdong Agric Sci (广东农业科学), 1983, (1): 1–5 (in Chinese with English abstract)
[3]Khush G S. Modern varieties-their real contribution to food supply and equity. GeoJournal, 1995, 35: 275–284
[4]Yuan L-P(袁隆平). Hybrid rice breeding for super high yield. Hybrid Rice (杂交水稻), 1997, 12(6): 1–6 (in Chinese with English abstract)
[5]Su Z-F(苏祖芳), Xu N-X(许乃霞), Sun C-M(孙成明). Study on the relationship between rice plant type indices after heading stage and yield formation. Sci Agric Sin (中国农业科学), 2003, 36(1): 115–120 (in Chinese with English abstract)
[6]Sun Y-F(孙永飞), Liang Y-M(梁尹明), Lu W-F(卢婉芳). Comparison of the effects between the super-high-yield plant type cultivation and matsushima plant type cultivation in rice. Hybrid Rice (杂交水稻), 2003, 18(3): 33–36 (in Chinese with English abstract)
[7]Xie Z-R(谢正荣), Zhu X-F(朱秀芳), Yao Z-F(姚振飞). Study on the relationship of source-sink and the plant type for high yield rice and its control technique. Gengzuo yu Zaipei (耕作与栽培), 2002, (5): 21–23(in Chinese)
[8]Chen W-F(陈温福), Xu Z-J(徐正进), Zhang W-Z(张文忠). Creation of new plant type and breeding rice for super high yield. Acta Agron Sin (作物学报), 2001, 27(5): 665–672 (in Chinese with English abstract)
[9]Li C-Q(李成荃) . Rice breeding for super high yield. J Anhui Agric Sci (安徽农业科学),1998, 26(2): 95–97 (in Chinese with English abstract)
[10]Chen Y-D(陈友汀), Wan B-H(万邦惠), Zhang X(张旭). Ideal plant type at heading stage for south China double cropping rice with super high yield. Chin J Rice Sci (中国水稻科学), 2005, 19(1): 52–58 (in Chinese with English abstract)
[11]Zhou K-D(周开达), Wang X-D(汪旭东), Li P(李平). The study on heavy panicle type of inter subspecific hybrid rice (Oryza sativa L.). Sci Agric Sin (中国农业科学), 1997, 30(5): 91–93 (in Chinese with English abstract)
[12]Cheng S-H(程式华), Zhai H-Q(翟虎渠). Comparison of some plant type components in super high yielding hybrids of inter subspecies rice. Acta Agron Sin (作物学报), 2000, 26(6): 713–718 (in Chinese with English abstract)
[13]Donald C M. The breeding of crop ideotypes. Euphytica, 1968, 17: 385–403
[14]Lü C-G(吕川根), Gu F-L(谷福林). Study on the potential yield of idea-plant rice and the related characteristics. Sci Agric Sin (中国农业科学), 1991, 24(5): 15–23 (in Chinese with English abstract)
[15]Gao L-Z(高亮之), Jin Z-Q(金之庆), Zhang G-S(张更生). A numerical model to simulate the incident radiation and photo synthesize for rice canopies with optimum plant type. Jiangsu J Agric Sci (江苏农业学报), 2000, 16(1): 1–9 (in Chinese with English abstract)
[16]Khush G S. Breeding the yield frontier of rice. GeoJournal, 1995, 35: 329–332
[1] 胡川, 赵凯男, 黄修利, 吴金芝, 任开明, 王贺正, 付国占, 黄明, 李友军. 一次灌溉下耕作方式和氮肥用量对旱地小麦产量和品质的影响[J]. 作物学报, 2026, 52(6): 1830-1846.
[2] 马胜乾, 王志平, 陈浩天, 窦淑贤, 张燕, 邓艾兴, 张卫建, 原向阳, 宋振伟. 秸秆还田下耕作方式与氮肥施用量对东北玉米产量及土壤团聚体的影响[J]. 作物学报, 2026, 52(6): 1802-1816.
[3] 张思思, 赵向辉, 周洋, 姚云凤, 朱荣昱, 董元杰, 胡国庆, 徐通, 刘兆新. 冬闲期翻耕和绿肥还田对连作花生田土壤理化性质和产量的影响[J]. 作物学报, 2026, 52(5): 1472-1486.
[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] 张振, 冯连杰, 石玉, 于振文, 张永丽. 节水补灌下不同穗型小麦产量形成差异研究[J]. 作物学报, 2026, 52(5): 1522-1535.
[6] 闫安, 蒋昆炜, 王蓉圆, 田林, 张璐, 王韵, 徐建龙. 水稻剑叶小维管束数基因SVN7的鉴定与克隆[J]. 作物学报, 2026, 52(5): 1364-1372.
[7] 刘昕萌, 任昊, 张继波, 张吉旺, 赵斌, 任佰朝, 刘鹏, 王洪章. 茉莉酸甲酯(MeJA)缓解高温影响玉米雌穗分化的生理机制[J]. 作物学报, 2026, 52(5): 1561-1572.
[8] 王壮壮, 武紫君, 张永新, 张芯源, 袁丽雪, 陈如雪, 刘世举, 段剑钊, 冯伟, 王同朝, 王永华. 豫东南黏壤潮土区水氮优化协同提高冬小麦产量和氮素利用效率[J]. 作物学报, 2026, 52(5): 1501-1521.
[9] 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.
[10] 王宇诚, 张露, 刘阿康, 黄见良, 彭少兵, 袁珅. 基于产量差的作物大面积单产提升策略与展望[J]. 作物学报, 2026, 52(5): 1279-1290.
[11] 赵佳雪, 周龙昊, 郭岂源, 尚伦霄, 王涵, 刘志涛, 陈曦, 张晓佩, 宋宪亮, 毛丽丽. 长期秸秆还田与深松通过改善土壤环境与棉花光合特性提高滨海盐碱地棉花产量[J]. 作物学报, 2026, 52(5): 1548-1560.
[12] 郭星宇, 胡丹, 林苏期, 王梦凯, 谭文峰, 黄传琴. 生物炭配施化肥提高玉米‖大豆下玉米产量和土壤生态系统多功能性[J]. 作物学报, 2026, 52(5): 1536-1547.
[13] 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.
[14] 崔雪梅, 柳妍娣, 刘景辉, 米俊珍, 武俊英, 赵宝平. 不同基因型燕麦强弱势粒生理特性与产量关系研究[J]. 作物学报, 2026, 52(4): 1220-1235.
[15] 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.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!