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Screening for Drought Resistance of Rice Recombinant Inbred Populations in the Field 被引量:4
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作者 gui-hua zou Hong-Yan Liu +6 位作者 Han-Wei Mei Guo-Lan Liu Xin-Qiao Yu Ming-Sou Li Jing-Hong Wu Liang Chen Li-Jun Luo 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2007年第10期1508-1516,共9页
In a 2-year experiment, 187 genotypes were grown under well-watered and drought stress conditions, imposed at panicle initiation stage. The relationship of genotypic variation in yield under drought conditions to pote... In a 2-year experiment, 187 genotypes were grown under well-watered and drought stress conditions, imposed at panicle initiation stage. The relationship of genotypic variation in yield under drought conditions to potential yield, heading date and flowering delay, reduction in plant height, and to a drought response index (DRI) was detected. Grain yield under drought stress conditions was associated with yield under well-watered conditions (r= 0.47^**, and r= 0.61^** during 2 years of tests). The delay of heading date ranged from -1 (no delay) to 24days, and was negatively associated with grain yield (r =-0.40^*), spikelet fertility percentage (r =-0.40^**), harvest index (r =-0.58^**), but positively associated with yield reduction percentage (r = 0.60^**). The reduction in plant height was negatively associated with grain yield (r =-0.24^**, and r=-0.29^**), spikelet fertility percentage (r = -0.23^**, and r= -0.21^*), harvest index (r = -0.37^**, and r= -0.54^**), and positively associated with yield reduction percentage (r = 0.58^**, and r= 0.58^**) in 2003 and 2004, respectively. The DRI of genotypes was strongly associated with grain yield (r = 0.87^**, and r= 0.77^**), fertility percentage (r = 0.66^** and r= 0.54^**), harvest index (r= 0.67^** and r= 0.61^**), and negatively associated with grain reduction percentage (r=-0.70^**, and r=-0.73^**) under drought stress. The results indicate that genotypes with drought resistance can be identified by measuring yield potential, delay in flowering, reduction in plant height, or DRI under test environments of well-watered and drought stress. 展开更多
关键词 delay in heading date drought resistance drought response index Oryza sativa reduction in plant height yield potential.
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Panicle Water Potential,a Physiological Trait to Identify Drought Tolerance in Rice 被引量:3
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作者 Guo-Lan Liu Han-Wei Mei +6 位作者 Xin-Qiao Yu gui-hua zou Hong-Yan Liu Ming-Shou Li Liang Chen Jin-Hong Wu Li-Jun Luo 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2007年第10期1464-1469,共6页
Two upland rice varieties (IRAT109, IAPAR9) and one lowland rice variety (Zhenshan 97B) were planted in summer and treated with both normal (full water) and drought stress in the reproductive stage. Panicle wate... Two upland rice varieties (IRAT109, IAPAR9) and one lowland rice variety (Zhenshan 97B) were planted in summer and treated with both normal (full water) and drought stress in the reproductive stage. Panicle water potential (PWP) and leaf water potential (LWP) were measured every 1.0-1.5 h over 24 h on sunny days. Both PWP and LWP of upland varieties started to decrease later, maintained a higher level and recovered more quickly than that of the lowland variety. The results show that PWP can be used as an indicator of plant water status based on the parallel daily changes, and the high correlation between PWP and LWP. Similar correlations were also observed between PWP, LWP and eight traits related to plant growth and grain yield formation. PWP seemed to be more effective for distinguishing the upland rice varieties with different drought-tolerant ability. Differences in PWP and LWP between upland and lowland rice varieties were also observed at noon even under normal water conditions, implying the incorporation of the drought-tolerant mechanism to improve the photosynthesis and yield of traditional paddy rice. 展开更多
关键词 correlation analysis drought tolerance leaf water potential Oryza sativa panicle water potential.
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