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水稻科学(英文版)
水稻科学(英文版)

程式华

双月刊

1672-6308

rs@ricescience.org

0571-63371017

310006

浙江省杭州市体育场路359号中国水稻研究所内

水稻科学(英文版)/Journal Rice ScienceCSCDCSTPCD北大核心SCI
查看更多>>本刊主要刊登以水稻为研究对象的未经发表的英文原始论文、综述、研究简报、学术活动简讯等,内容涉及水稻研究的各个领域。旨在直接对外传递和交流水稻科学信息,扩大我国水稻科学研究的国际影响,同时吸收国外水稻研究信息,使之成为我国与国际水稻界有机结合的一条有效途径。
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    Ameliorative Effects of Paclobutrazol via Physio-Biochemical and Molecular Manifestation in Rice under Water Deficit Stress

    Chirag MAHESHWARINitin Kumar GARGArchana SINGHAruna TYAGI...
    603-616页
    查看更多>>摘要:To comprehensively explore the physio-biochemical and molecular changes of paclobutrazol(PBZ)at the ideal dose under water deficit stress(WDS)conditions,we investigated the effects of 100 mg/kg PBZ applied via drenching on various physio-biochemical and molecular parameters in three rice varieties(N22,IR64,and IR64 DTY1.1)under both mild[75%-80%relative water content(RWC)]and severe(60%-65%RWC)WDS conditions.The results showed that PBZ treatment positively influenced the physio-biochemical parameters,significantly increasing dry matter(16.27%-61.91%),RWC(6.48%-16.34%),membrane stability index(4.37%-10.35%),and total chlorophyll content(8.97%-29.09%)in the rice varieties under both mild and severe WDS.Moreover,PBZ treatment reduced drought susceptibility(0.83-0.95)and enhanced drought tolerance efficiency(60.92%-86.78%),indicating its potential as a stress-mitigating agent.Global methylation analysis revealed changes in DNA methylation patterns,indicating the regulatory influence of PBZ on gene expression.The expression analysis of genes involved in the diversification of geranylgeranyl pyrophosphate towards the biosynthesis of abscisic acid,gibberellin acid,and chlorophyll showed alterations in their expression levels,suggesting the involvement of PBZ in the isoprenoid pathway.Overall,this study provides valuable insights into the potential mechanisms by which PBZ modulates physiological and molecular responses in rice plants under WDS.The findings highlight the importance of PBZ as a promising agent for enhancing drought tolerance in rice and offer valuable information for future research in crop stress management.

    Estimating Key Phenological Dates of Multiple Rice Accessions Using Unmanned Aerial Vehicle-Based Plant Height Dynamics for Breeding

    HONG WeiyuanLI ZiqiuFENG XiangqianQIN Jinhua...
    617-628页
    查看更多>>摘要:Efficient and high-quality estimation of key phenological dates in rice is of great significance in breeding work.Plant height(PH)dynamics are valuable for estimating phenological dates.However,research on estimating the key phenological dates of multiple rice accessions based on PH dynamics has been limited.In 2022,field traits were collected using unmanned aerial vehicle(UAV)-based images across 435 plots,including 364 rice varieties.PH,dates of initial heading(IH)and full heading(FH),and panicle initiation(PI),and growth period after transplanting(GPAT)were collected during the rice growth stage.PHs were extracted using a digital surface model(DSM)and fitted using Fourier and logistic models.Machine learning algorithms,including multiple linear regression,random forest(RF),support vector regression,least absolute shrinkage and selection operator,and elastic net regression,were employed to estimate phenological dates.Results indicated that the optimal percentile of the DSM for extracting rice PH was the 95th(R2=0.934,RMSE=0.056 m).The Fourier model provided a better fit for PH dynamics compared with the logistic models.Additionally,curve features(CF)and GPAT were significantly associated with PI,IH,and FH.The combination of CF and GPAT outperformed the use of CF alone,with RF demonstrating the best performance among the algorithms.Specifically,the combination of CF extracted from the logistic models,GPAT,and RF yielded the best performance for estimating PI(R2=0.834,RMSE=4.344 d),IH(R2=0.877,RMSE=2.721 d),and FH(R2=0.883,RMSE=2.694 d).Overall,UAV-based rice PH dynamics combined with machine learning effectively estimated the key phenological dates of multiple rice accessions,providing a novel approach for investigating key phenological dates in breeding work.

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