欢迎访问作物学报,今天是

作物学报 ›› 2006, Vol. 32 ›› Issue (06): 905-910.

• 研究论文 • 上一篇    下一篇

CO2浓度升高加快了水稻灌浆前期籽粒的生长发育进程

李军营1;徐长亮1; 谢辉1; 朱建国2;蔡庆生1   

  1. 1 南京农业大学生命科学学院, 江苏南京210095,2 中国科学院南京土壤研究所, 江苏南京210098
  • 收稿日期:2005-05-11 修回日期:1900-01-01 出版日期:2006-06-12 网络出版日期:2006-06-12
  • 通讯作者: 蔡庆生

Acceleration of Grain Growth and Development Process by FACE during Early Grain Filling Stage of Rice (Oryza sativa L.)

LI Jun-Ying1,XU Chang-Liang1,ZHU Jian-Guo2, CAI Qing-Sheng1   

  1. 1 College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, Jiangsu;2 Institute of Soil Science, Chinese Academy of Science, Nanjing 210098, Jiangsu, China
  • Received:2005-05-11 Revised:1900-01-01 Published:2006-06-12 Published online:2006-06-12
  • Contact: CAI Qing-Sheng

摘要: 本研究利用开放式空气中CO2浓度增加(Free Air CO2 Enrichment, FACE)试验平台,研究CO2浓度升高200 µmol·mol-1下,水稻灌浆早期籽粒大小、生长速率、可溶性碳水化合物和淀粉含量及蔗糖转化酶活性等在开花后20 d内的变化动态。结果表明,与对照相比,FACE处理加快了灌浆早期籽粒的发育进程,尤其加快了籽粒宽度达到最大的日程,籽粒大小和籽粒灌浆速率提前3 d达到最大值;成熟时籽粒的长宽积FACE下的比对照下的提高了4.5%,但粒重无差异;FACE下开花后2~5 d内籽粒中的还原糖和蔗糖的含量及细胞壁转化酶和细胞质转化酶的活性显著高于对照下的,但淀粉含量和可溶性酸性转化酶活性则无显著差异。从结果推论,FACE加速水稻灌浆前期籽粒生长发育与其花后早期颖果内蔗糖合成和转运水平之间可能存在内在联系。

关键词: FACE, 水稻, 籽粒灌浆, 籽粒大小, 蔗糖, 转化酶

Abstract:

It is forecasted that atmospheric CO2 concentration till the middle of this century will be risen to about 550 µmol·mol-1 . Several experiments have shown that the yield of rice will be significantly increased by elevated CO2 as a result of an increase in number of grain per panicle or per plant. Less attention has been paid to the effect of elevated CO2 on the process of grain growth and development. This experiment was conducted to determine the grain growth and development during early stage of grain filling of rice (Oryza sativa L. sp. japonica. cv Wuxiangjing-14) under the conditions of ambient atmosphere CO2 concentration (CK) and FACE (Free Air CO2 Enrichment, 200 µmol·mol-1 higher than ambient) with 3 repetitions. The grain width, length and their product, contents of soluble carbohydrate (reducing sugar and sucrose) and starch, and activities of invertases including cell wall invertase (CWI), soluble acid invertase(SAI)and neutral invertase (NI) in grain were measured. Dry matter and filling rate on the basis of dry weight of grain with sampling every 3 days from anthesis till mature period, and grain weight and size at maturity were tested. The results showed that the process of growth and development of grain was accelerated and width and length of caryopsis were significantly increased by FACE. The maxima of grain width and size, and grain filling rate under FACE were about 3 days earlier than those under CK. The product of mature grain width and length under FACE was increased by 4.5% of CK. However, such obvious effect was not shown in the final grain weight (Fig.1, Fig.2). The contents of reducing sugar and sucrose, which were needed as materials and energy substance for the normal growth and development of grain, were increased during 1 week after anthesis (Fig.3), while the activities of CWI and NI enhanced during 5 days after anthesis by FACE (Fig.4). However, the content of starch and activitie of SAI in grain were not affected by elevated CO2. In conclusion, higher contents of soluble carbohydrate and higher activities of CWI and NI under FACE supply more materials for the growth of larger grain sink capacity. There is no significant effect on the final grain dry weight resulting from a slight increase in sink activities and the earlier decrease in grain filling rate under FACE. A new balance between sink and source needs to be established under elevated CO2 condition in order to improve grain yield by means of increasing the grain weight on the basis of higher panicle grain number in rice.

Key words: FACE, Rice, Grain filling, Gain size, Sucrose, Invertase

中图分类号: 

  • S511
[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] 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.
[4] 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.
[5] 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.
[6] 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.
[7] 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.
[8] 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.
[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] 袁鑫, 赵卓凡, 赵瑞清, 刘孝伟, 郑名敏, 刘育生, 董好胜, 邓丽娟, 曹墨菊, 黄强. 一份玉米小籽粒发育突变体mn-like1的遗传分析与分子鉴定[J]. 作物学报, 2025, 51(6): 1569-1581.
[15] 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.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!