欢迎访问作物学报,今天是

作物学报 ›› 2014, Vol. 40 ›› Issue (10): 1872-1876.doi: 10.3724/SP.J.1006.2014.01872

• 研究简报 • 上一篇    下一篇

水稻第5节间长度与出穗促进率的相关性

李志新1,王美欢4,徐超飞3,李华军2,李晓方1,2,*   

  1. 1长江大学作物遗传育种研究所,湖北荆州 434025;2 广州南国农业有限公司,广东广州510000;3 深圳市金冠现代农业新技术有限公司,广东深圳518048;4 中国科学院华南植物研究所,广东广州510650
  • 收稿日期:2014-01-09 修回日期:2014-06-16 出版日期:2014-10-12 网络出版日期:2014-07-23
  • 通讯作者: 李晓方, E-mail: lixiaofang35@126.com, Tel:18665688895
  • 基金资助:

    本研究由国家公益性行业(农业)科研专项(201303008), 国家自然科学基金项目(31071482)和湖北省教育厅项目(Q20121212)资助。

Correlation between the Fifth Internode Length and Heading Acceleration Percentage in Rice

LI Zhi-Xin1,WANG Mei-Huan3,XU Chao-Fei3,LI Hua-Jun2,LI Xiao-Fang1,2,*   

  1. 1 The institute of Crop Genetic and Breeding of Yangtze University, Jingzhou 434025, China; 2 Guangzhou Nanguo Agriculture Ltd., Guangzhou 510000, China; 3 Shenzhen Golden-Crown Agriculture. Ltd., Shenzhen 518048, China; 4 South China Botanical Institute, Chinese Academy of Sciences, Guangzhou 510650, China
  • Received:2014-01-09 Revised:2014-06-16 Published:2014-10-12 Published online:2014-07-23
  • Contact: 李晓方, E-mail: lixiaofang35@126.com, Tel:18665688895

摘要:

出穗促进率和株高变化是反映水稻品种光温生态响应的重要指标。能否在育种阶段采用相对容易识别的性状来判断水稻品种的生态响应能力,对广适性品种的选育具有重要意义。本文从12个水稻亲本聚合杂交后代选出的36个高代稳定自交系及其亲本共48份材料,在湖北荆州作中稻以及在广州作早稻和晚稻,研究不同生态条件下株高及各组成成分变化与出穗促进率的变化规律。结果表明,第5节间长度是株高成分中最容易受环境影响的部分,其在不同季节的变化与出穗促进率呈现极显著的正相关性,在早稻和中稻、中稻和晚稻、早稻和晚稻3种情况下,第5节间长度变化和出穗促进率之间的相关系数分别为0.37、0.52和0.49,均达到了极显著水平,偏相关系数分别为0.42、0.43和0.36,也都达到了极显著水平。说明第五节间长度容易受光温条件的影响,是生态响应变化的重要指标,越是敏感的材料响应越大,适应性越差。因此,不同环境条件下第五节间长度可用作判断水稻品种对光温条件的响应指标。

关键词: 水稻, 出穗促进率, 第五节间长度变化, 相关性, 广适性

Abstract:

Heading acceleration percentage and plant height are important indexes of rice light and temperature sensitivities, and directly decide the wide adaptability of rice varieties. How to use the legible traits to estimate the wide adaptability of rice varieties is a problem worthily studying during breeding stage. In this paper, we studied the relationship between the length of rice plant height and heading acceleration percentage using 48 materials including 12 parents and 36 stable inbred lines selected from 12 parents’ polymerization hybridization progeny, which were planted in Hubei Jingzhou as middle-season rice and in Guangzhou as early rice and late rice. The results indicated that the fifth internode length was the most easily influenced by environments. The length of the fifth internode had extremely significant positive correlation with heading acceleration percentage. In the three cases of early rice and middle-season rice, middle-season rice and late rice, early rice and late rice, the correlation coefficients between length of the fifth internode and heading acceleration percentage were 0.37, 0.52, and 0.49, respectively, and the partial correlation coefficients were 0.42, 0.43, and 0.36, respectively. The correlations all reached the extremely significant level. It showed that the fifth internode length is easily affected by temperature and light conditions, and could be used to preliminarily judge the light and temperature sensitivities of rice varieties.

Key words: Rice, Heading acceleration percentage, Length change of fifth internode, Correlation, Wide adaptability

[1] 陈恩谦. 对不同类型水稻品种营养生长期的温光效应研究. 种子, 2007, 26(5): 72–74



Chen E Q. A long-term study of the effects of temperature and bright on the nutrition growth of different types of rice. Seed, 2007, 26(5): 72–74 (in Chinese with English abstract)



[2] 王立志, 王春艳, 李忠杰, 王连敏, 矫江, 许显滨. 寒地水稻抽穗期长短与温度关系研究. 中国农业气象, 2004, 25(2): 43–45



Wang L Z, Wang C Y, Li Z J, Wang L M, Jiao J, Xu X B. Studies on correlation between length of rice heading stage and temperature in the cold region in Heilongjiang Province. Chin J Agrometeorol, 2004, 25(2): 43–45 (in Chinese with English abstract)



[3] 姚克敏, 刘梅, 潘永地, 高永刚. 水稻气候生产力的数值模拟及其应用. 南京气象学院学报, 1999, 22(2): 1–11



Yao K M, Liu M, Pan Y D, Gao Y G. Numerical modeling of rice climate productivity and its application to climate-ecological zoning. J Nangjing Inst Meteorol, 1999, 22(2): 1–11 (in Chinese with English abstract)



[4] 李凤霞, 袁海燕, 严秀华, 李茂廷. 宁夏灌区水稻不同灌溉量植株高度的气候生态研究. 干旱气象, 2005, 23(3): 62–64



Li F X, Yuan H Y, Yan X H, Li M T. Study on climate ecology for rice plant height under different irrigation treatments in Ningxia irrigation area. Arid Meteorol, 2005, 23(3): 62–64 (in Chinese with English abstract)



[5] Wu W, Zheng X M, Lu G, Zhong Z, Gao H, Chen L, Wu C, Wang H J, Wang Q, Zhou K, Wang J L, Wu F, Zhang X, Guo X, Cheng Z, Lei C, Lin Q, Jiang L, Wang H, Ge S, Wan J. Association of functional nucleotide polymorphisms at DTH2 with the northward expansion of rice cultivation in Asia. Proc Natl Acad Sci USA, 2013, 110: 2775–2780



[6] 袁爱平, 曹立勇, 庄杰云, 李润植, 郑康乐, 朱军, 程式华. 水稻株高、抽穗期和有效穗穗QTL与环境的互作分. 遗传学报, 2003, 30: 899–906



Yuan A P, Cao L Y, Zhuang J Y, Li R Z, Zheng K L, Zhu J, Cheng S H. Analysis of additive and AE interaction effects of QTLs controlling plant height, heading date and panicle number in rice (Oryza sativa L.). Acta Genet Sin, 2003, 30: 899–906 (in Chinese with English abstract)



[7] Li Z K, Yu S B, Lafitte H R, Huang N, Courtois B, Hittalmani S, Vijayakumar C H M, Liu GF, Wang G C, Shashidhar H E, Zhuang J Y, Zheng K L, Singh V P, Sidhu J S, Srivantaneeyakul S, Khush G S. QTL × environment interactions in rice: I. Heading date and plant height. Theor Appl Genet, 2003, 108: 141–153



[8] 刘文俊, 王令强, 何予卿. 利用2个相关群体定位和比较水稻株高与抽穗期QTL. 华中农业大学学报, 2007, 26: 161–166



Liu W J, Wang L Q, He Y Q. Comparison of quantitative trait locis controlling plant height and heading date in rice across two related populations. J Huazhong Agric Univ, 2007, 26: 161–166 (in Chinese with English abstract)



[9] 董春林, 孙业盈, 王平荣, 黄晓群, 邓晓建. 水稻显性早熟基因Ef-cd的基因效应分析及育种应用潜力的初步评价. 作物学报, 2007, 33: 384–388



Dong C L, Sun Y Y, Wang P R, Huang X Q, Deng X J. Gene effect analysis and evaluation of application potential of rice dominant earliness gene Ef-cd. Acta Agron Sin, 2007, 33: 384–-388 (in Chinese with English abstract)



[10] 张文绪. 水稻品种的光温生态研究: III. 水稻品种的基础营养生长和感温性. 北京农业大学学报, 1983, 9(2): 13–27



Zhang W X. A study on photo-thermo ecology in rice varieties: III. Basic vegetative phase (BVP) and thermo-sensitivity in rice varieties. J Beijing Agric Univ, 1983, 9(2): 13–27 (in Chinese with English abstract)



[11] 水稻光温生态协作组. 水稻品种的光温生态. 北京, 科学出版社, 1978



Rice Light and Temperature Ecological Research Collaboration ed. Light and Temperature Ecological of Rice Varieties in China. Beijing: Science Press, 1978 (in Chinese)



[12] 唐志明, 李晓方, 庄国富, 金晓春, 卢东柏. 水稻株高差异与光温生态敏感性的关系初探. 广东农业科学, 2007, (4): 7–10



Tang Z M, Li X F, Zhuang G F, Jin X C, Lu D B. Searching for the correlative factors of photo sensitiveness and temperature sensibility in rice. Guangdong Agric Sci, 2007, (4): 7–10 (in Chinese with English abstract)



[13] 周明全, 章志宏, 赵敏, 胡中立, 李平, 王玲霞, 朱立煌. 水稻株高构成因素的QTL剖析. 武汉植物学研究, 2003, 21: 22–26



Zhou M Q, Zhang Z H, Zhao M, Hu Z L, Li P, Wang L X, Zhu L H. QTL dissection of plant height components in rice (Oryza sativa L.). J Wuhan Bot Res, 2003, 21: 22–26 (in Chinese with English abstract)



[14] Li, X F, Liu Z X., Lu D B, Liu Z X, Mao X X, Li Z X, Li H J. Development and evaluation of multi-genotype varieties of rice derived from MAGIC lines. Euphytica, 2013, 192: 77–86



[15] 李晓方. 一种水稻种群和品种综合性状良好的选育方法. 中国发明专利. 2002, ZL02152197.2



Li X F. A breeding method for good comprehensive traits of rice species and variety. Chinese Patent. 2002, ZL02152197.2

[1] 胡赵, 钱润, 谢丰璞, 应素平. 水稻SPX基因家族鉴定及响应磷处理的表达分析[J]. 作物学报, 2026, 52(6): 1902-1912.
[2] 邹仪妹, 徐敏, 汪海洋, 姚辉, 王加峰, 刘浩, 任代胜. 两系不育系水稻幼苗根系响应盐胁迫的转录因子调控网络鉴定[J]. 作物学报, 2026, 52(6): 1728-1742.
[3] 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.
[4] 陈伟, 卫万娟, 赵其兵, 常东伟, 余凌波, 翟鹏飞, 冯志明, 陈宗祥, 任仰涛, 杨鹏, 刘海浪, 李珍富, 杨永乐, 金彦刚, 左示敏. 利用CRISPR/Cas9编辑Hd6基因创制优质早熟水稻新种质[J]. 作物学报, 2026, 52(4): 1046-1056.
[5] 石少阶, 刘凯, 陈姿夷, 王卉颖, 李三和, 周雷, 游艾青. 水稻矮化多分蘖基因DMT1的克隆与功能分析[J]. 作物学报, 2026, 52(4): 1022-1034.
[6] 覃奕琰, 付瑶, 苏畅, 李娜, 徐静茹, 程笑然, 张琪, 赵明辉. OsST41调控水稻苗期耐盐性的功能分析[J]. 作物学报, 2026, 52(3): 802-812.
[7] 叶凡, 李帅, 李思宇, 陈云, 窦超银, 刘立军. 不同节水灌溉方式对东北稻区水稻产量和群体质量的影响[J]. 作物学报, 2026, 52(3): 895-907.
[8] 马婷婷, 郭晓江, 李豪, 邓梅, 蒲至恩, 李伟, 张亚洲, 王凤涛, 崔凤娟, 魏育明, 王际睿, 蒋云峰, 陈国跃. 利用小麦农家种孝感麦协同改良蜀麦753产量与抗病耐逆性的育种实践[J]. 作物学报, 2026, 52(1): 56-71.
[9] 王婵, 吴莹莹, 李文奇, 李霞, 王芳权, 周彤, 杨杰. 基于HRM技术开发水稻抗条纹叶枯病基因STV11功能标记[J]. 作物学报, 2025, 51(9): 2547-2556.
[10] 陈惠莹, 何嘉欣, 朱斌, 黄士轩, 周星佑, 伍君权, 杨美艳. 水稻黄单胞菌噬菌体vB_XaS_HDB2的全基因组分析和生物学特性研究[J]. 作物学报, 2025, 51(8): 2087-2099.
[11] 杨海洋, 吴林宣, 李博纹, 石翰峰, 袁禧龙, 刘金朝, 蔡海荣, 陈诗怡, 郭涛, 王慧. 基于QTL定位发现的OsWRI3调控水稻种子的落粒性[J]. 作物学报, 2025, 51(7): 1712-1724.
[12] 雷松翰, 范骏扬, 车艳奕, 代永东, 郑雨萌, 田维江, 桑贤春, 王晓雯. 水稻内卷叶突变体acl3的鉴定及调控基因的功能分析[J]. 作物学报, 2025, 51(6): 1467-1479.
[13] 李福媛, 杨奕, 马继琼, 许明辉, 林良斌, 孙一丁. 水稻OsPUB4基因克隆、激素诱导表达分析与互作蛋白筛选[J]. 作物学报, 2025, 51(6): 1690-1700.
[14] 王梦宁, 谢可冉, 高逖, 王飞, 任孝俭, 熊栋梁, 黄见良, 彭少兵, 崔克辉. 水稻幼穗分化期至抽穗期高温对籽粒形态和充实的影响及其与粒重的关系[J]. 作物学报, 2025, 51(5): 1347-1362.
[15] 盛倩男, 方娅婷, 赵剑, 杜思垚, 胡行珍, 余秋华, 朱俊, 任涛, 鲁剑巍. 不同养分管理措施对稻田和旱地油菜产量的影响及其对冻害的响应[J]. 作物学报, 2025, 51(5): 1286-1298.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!