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冬枣光响应模型及不同物候期光合变化动态研究

Light response model and photosynthetic dynamics at different phenological stages of Dongzao jujube
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摘要 【目的】设施栽培极大改变了冬枣生长环境,也对其光合作用进行调控,但是冬枣最佳光合模型以及不同设施栽培模式下不同物候期光合特性变化动态尚不明确。【方法】针对温棚、避雨棚和露地3种冬枣栽培模式,测定光响应参数并用4种光响应模型拟合,同时对冬枣植株不同物候期的光合生理特性进行比较分析。【结果】通过比较直角双曲线修正模型、非直角双曲线模型、直角双曲线模型和指数模型的冬枣光响应曲线的拟合效果,发现直角双曲线修正模型对冬枣的光响应曲线拟合效果最好,能较好地对3种栽培模式下测定的冬枣光响应曲线进行拟合。此外,通过对比盛花期环剥和未环剥的冬枣,发现环剥显著改变了冬枣植株的生长势,抑制了光合速率,直至脆熟期才恢复至与未环剥植株相近状态。3种栽培模式下冬枣不同物候期光补偿点(LCP)、光饱和点(AQE)和最大净光合速率(P_(nmax))的总体变化趋势基本相似,均表现为脆熟期较高,而幼果期和采后较低。【结论】通过拟合冬枣最佳光响应模型,阐明了不同设施栽培模式对冬枣光合作用的影响规律,为设施栽培合理调控光合环境、促进枣树生长和坐果提供了理论指导。 【Objective】At present,facility cultivation has become the main cultivation method for jujube,which is a kind of artificially-created way of cultivation,by construction of greenhouses and/or other protective facility,to provide favorable environmental conditions for the growth and to reduce the impact of the natural environment on the growth of the plant.At the same time,facility cultivation can also adjust the photosynthetic ability of jujube plants.Although facility cultivation has great advantages,jujube farmers’knowledge on controlling the internal environment of facility is still not enough,and the growth characteristics of Dongzao jujube and other related understandings are insufficient,resulting in the current facility cultivation being prone to improper regulation,which will directly affect the development and yield.However,the optimal photosynthetic model of jujube and the dynamic change pattern at different phenological periods under different facility cultivation modes are still unclear.This study carried out model fitting and light response curve analysis for Dongzao jujube tree in different phenological periods under three facility cultivation modes.【Methods】The photosynthesis of Dongzao jujube tree was assessed through a randomized sampling of plants grown in the greenhouse,rain shelter and open field.During the various phenological stages,including the budding stage,full-flowering stage,young-fruit stage,expanding stage,crisp-ripening stage and post-harvest stage,measurements were conducted in more than three sunny days status.For accurate data collection,plants with identical growth were selected,and measurements were performed choosing 3-6 leaves from four different directions of the canopy.The photoresponse parameters were determined,including net photosynthetic rate,intercellular carbon dioxide concentration,stomatal conductance transpiration rate and water use efficiency.Subsequently,the average values of these parameters were calculated for a comprehensive analysis.The measurement was performed from 09:00 a.m.to 11:00 a.m.The leaves were stimulated for 20 minutes with 2200μmol·m^(-2)·s^(-1) light intensity.Prior to measuring,wipe the dust on the surface of the leaf with a paper towel.The exponential model,non-rectangular hyperbola model,rectangular hyperbola model and its modified form were all applied to fitting,with the certainty coefficient,mean square error and mean absolute error serving as criteria for evaluating the accuracy of the fittings.Finally,the photosynthetic physiological characteristics of Dongzao jujube under different phenological periods were compared.Simultaneously,during the flowering season(mid-July),were measured the diurnal variation in photosynthesis and their light response curve.The correlation indexes of photosynthesis between girdling and treatments were compared to analyze the effect of girdling on the photosynthetic efficiency.【Results】The results showed that,by comparing the fitting effects of four models,nongirdling i.e.right-angled hyperbola modified model,right-angled hyperbola model,non-right-angled hyperbola model and exponential model,R^(2),MSE and MAE were introduced to analyze the fitting accuracy of the fitting data.The analysis showed that there was a certain deviation between the fitting points of the four models and the measured values,and the fitting results of the four models were in a descending order as follows:non-rectangular hyperbola model>rectangular hyperbola model≈measured value≈rectangular hyperbola modified model>exponential model.By combining the results of R2,Pnmax,LSP and LCP,as well as MSE and MAE,the light response curve of Dongzao jujube was best fitted by the right-angle hyperbolic modified model,which was closest to the measured value and could fit the light response curve of Dongzao jujube under different cultivation modes.The LCP,LSP,AQY and P_(nmax)of Dongzao jujube at different phenological stages were the lowest at the full-flowering stage,and then gradually recovered to the highest value at the crisp-maturity stage.In addition,the P_(nmax),LSP,LCP and AQY values of the girdling plants were lower than those of the non-girdling plants at the full-flowering stage,and the net photosynthetic rate of the non-girdling plants was significantly higher than that of the girdling plants.Under high light-intensity conditions,girdling not only changed the growth potential of Dongzao jujube but also inhibit the photosynthetic capacity.This effect is not restored until the crisp-ripening stage.【Conclusion】This study fitted the optimal light response model of Dongzao jujube,through which the photosynthetic characteristics could be accurately evaluated,the influence of different facility cultivation models on the photosynthesis was also clarified,and the pattern of light demand in the whole growth process was revealed,which provided theoretical instruction for the regulation of photosynthetic environment in facility cultivation and the promotion of growth and fruit setting for jujube trees.
作者 解冰芊 郭天然 李玉婷 任利慧 黄建 XIE Bingqian;GUO Tianran;LI Yuting;REN Lihui;HUANG Jian(College of Forestry,Northwest A&F University/Key Laboratory of National Forestry and Grassland Administration on Silviculture in Loess Plateau/Research Center of Jujube National Forestry and Grassland Administration on Silviculture in Loess Plateau,Yangling 712100,Shaanxi,China)
出处 《果树学报》 CAS CSCD 北大核心 2024年第8期1617-1626,共10页 Journal of Fruit Science
基金 国家重点研发计划项目(2019YFD1001605-02)。
关键词 设施栽培 光响应曲线 净光合速率 Ziziphus jujuba Protected cultivation Light response curve Net photosynthetic rate
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