Luo Ke-ju, Zhu Jianguo, L. Gang, Tang Haoye, Liang Chunhua, Zeng Qing
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引用次数: 3
Abstract
An ozone free-air control enrichment(O3-FACE) experiment was conducted in 2011 to study the effects of O3 and high nitrogen(N) supply on dry matter production and distribution of rice.Two cultivars,Shanyou 63(SY63,three-line hybrid indica cultivar) and Yangdao 6(YD6,inbred indica cultivar),were investigated.The results showed:(1) Elevated O3 concentration significantly reduced the biomass of stems and foliages in the mid-filling stage by 30.20%,21.95% for SY63 and 21.71%,11.12% for YD6,respectively,due to the significant decrease of the net photosynthetic rate.O3 exposure also significantly reduced the yield,the biomass of roots and panicles in the harvesting stage by 45.75%,48.62%,37.15% for SY63,and 28.91%,35.22%,28.01% for YD6,respectively.Increasing N supply could mitigate O3-induced reduction of the net photosynthetic rate,the dry matter and yield,where the yield and biomass of stems,foliages,roots and panicles were changed by elevated O3only by-26.88%,-13.52%,-5.84%,-26.33%,-16.19% for SY63,and-12.68%,-16.26%,+5.19%,-14.55%,-20.22% for YD6,respectively;(2) In SY63 and YD6 exposed to O3,the root-shoot ratio and root dry matter distribution in whole plant decreased significantly,and the ratio of foliage dry matter distribution increased significantly,but there was no significant effect on the ratio of stem or panicle dry matter distribution.High N supply could increase the ratio of root or foliage dry matter and the root-shoot ratio at O3-FACE treatments;(3) O3 exposure could reduce N accumulation of SY63 and YD6,which would show upward trends after high N treatments.These results implied that increasing N supply could mitigate O3-induced changes in dry matter production and distribution of SY63 and YD6.
应用与环境生物学报Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
1.20
自引率
0.00%
发文量
4458
期刊介绍:
The “Chinese Journal of Applied and Environmental Biology” is a national scientific and technological journal published both at home and abroad. It was started in 1995 and became bimonthly in 1999, and now it is a core journal for applied and environmental biology in China. It aims to introduce and exchange the new achievements, new technologies, new methods and new progresses made from the research fields of biology and its related disciplines both in China and abroad; enhance scientific and technological research serving for the development and construction of national economy, and improvement of people’s living standards.