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不同LED红蓝光质处理对枳幼苗生长的影响

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[目的]探究不同红蓝光LED组合对枳幼苗生长发育的影响.[方法]以无补光为对照(CK),采用红蓝光比例为RB1∶2(红蓝光质比为1∶2,下同)、RB4∶1、RB6∶1、RB8∶1等4个不同比例红蓝光对枳幼苗进行补光处理,并比较其形态和生理生化变化.[结果]经过补光处理210 d后,与CK相比,4个补光处理在株高、茎粗、总根长、平均根直径、根尖数和干物质积累量方面均表现显著提升,而根冠比略有降低;叶长和叶宽呈下降趋势,但其长宽比相近;分枝数增加,分枝高度降低;光合参数优化改善,其中RB6∶1的气孔导度和净光合速率达到最高水平.在CK和4个补光处理中,RB6∶1的MDA含量最低,显示出较强的抗性.经过补光处理120 d后,4个补光处理的叶片花青苷含量显著高于CK;在补光处理90~210 d期间,SPAD值逐渐增大,而色差a*值逐渐减小,并且花青苷含量逐渐降低.[结论]在长沙地区,从11月上旬至次年3月上旬和3月上旬至6月上旬分别采用RB8∶1、RB6∶1的补光方案,可以实现枳幼苗生长效果的最佳化,并达到茎粗增长量的最大化.
Effects of different LED red and blue light quality treatments on the growth of Poncirus trifoliata seedlings
[Objective]Citrus is the predominant fruit crop in China,with a plantation area of2 923 000 hm2 and a yield of 55 956 000 tons annually as of 2021.The breeding cycle of citrus virus-free container seedlings frequently spans two years,from the initial rootstock sowing to grafting and subsequent nurs-ery cultivation.The protracted breeding cycle leads to a disconnection between citrus seedling supply and demand,resulting in sporadic instances of inadequate availability.Therefore,the citrus seedlings are insufficient to meet the demand of updating and iteration of citrus orchards in China.The extended breeding period also escalates the production costs of citrus virus-free container seedlings,impeding its widespread adoption.Furthermore,limited light exposure is observed during the early spring and au-tumn/winter seasons in most citrus producing regions.The use of greenhouses for seedling production exacerbates the light deprivation experienced by citrus rootstocks.The implementation of supplemental lighting stands out as a viable strategy to improve the light condition,which may be a key initiative to accelerate the citrus rootstock breeding cycle and promote resilient citrus rootstocks.The mechanism by which the mixed red and blue light spectrum modulates the photosynthesis and photomorphogenesis of Poncirus trifoliata seedlings remains unclear.The objective of this study was to determine the optimal supplemental light conditions to improve the growth and development of P.trifoliata seedlings.These results will provide a theoretical insight for accelerating the cycle of citrus virus-free container seed-ling breeding and improving seedling quality.[Methods]P.trifoliata seedlings obtained from Dongk-ou of Hunan province were used as the experimental material.Five light-supplementing treatments were designed,including RB4∶1(red to blue light ratio of 4∶1),RB6∶1,RB8∶1,RB1∶2,and no light supplementation(CK).Seedlings with similar growth potential were selected and transplanted in 14 rows,each containing 7 plants,thereby yielding a total of 98 plants for each treatment.The supplemen-tary light was positioned directly above the P.trifoliata seedlings,and its intensity was maintained at 150 pmol·m-2·s-1 by adjusting its distance from the average height of the seedlings.The seeds were sown in the seedbed on August 12,2021,and then it transplanted into nutrient bags on September 20,2021.Supplemental light was applied on November 12,2021,with a cycle of 6:00 AM to 10:00 PM,and ended on June 12,2022.The supplemental light cycle was completed on June 12,2022.Plant height and stem thickness were measured monthly between December 2021 and June 2022.SPAD and Chromatic Aberration a*values were measured in February,April,May and June 2022.Anthocyanin content was measured monthly from March to June 2022.In June 2022,measurements were taken for leaf length,leaf width,leaf area,total root length,average root diameter,root volume,root surface area,number of root tips,LAI value,fresh weight,dry weight,dry weight of underground part,dry weight of above ground part,root-crown ratio,photosynthetic parameters,chlorophyll fluorescence parameters,soluble protein content,soluble sugar content,superoxide dismutase(SOD)activity,peroxidase(POD)activity,catalase(CAT)activity,and malondialdehyde(MDA)content.[Results]After 210 days of sup-plemental light treatment,all four treatments resulted in higher plant height,stem thickness,total root length,average root diameter,number of root tips and dry matter accumulation as compared to the con-trol.The root-crown ratio exhibited a slight decrease.Leaf length and width displayed a declining trend,but the aspect ratio of the leaf remained unchanged.The number of branches increased whereas the branch height decreased.The photosynthetic parameters were enhanced with RB6 demonstrating the highest stomatal conductance and net photosynthetic rate.The MDA content of RB6∶1 was significant-ly lower than that of other treatments.Additionally,the soluble protein content,soluble sugar content and the antioxidant enzyme activities(SOD,POD and CAT)of RB6∶1 were significantly higher than those of the control,which may indicate the plants with strong resistance.After 120 days of supplemen-tal light treatment,the anthocyanin contents of RB4∶1,RB6∶1,RB8∶1 and RB1∶2 were significantly higher than that of the control in leaves.Between 90 and 210 days of the supplemental light treatment,the SPAD values of the four treatments as a whole gradually increased,while their Chromatic Aberration a*and anthocyanin contents gradually decreased.This study focused on the stem thickness of the seed-lings.RB8∶1 showed the fastest growth between 30 and 120 days of supplemental light treatment.In ad-dition,RB6∶1 exhibited the highest stem thickness between 120 and 210 days of treatment,reaching 2.46 mm.At the end of 210 days of treatment,RB6∶1 exhibited the greatest stem thickness at 5.03 mm.[Conclusion]In the Changsha region,optimal growth and maximum stem diameter growth of P.trifoli-ata seedlings can be achieved by using RB8∶1 and RB6∶1 light supplementation from early November to early March and from early March to early June,respectively.

Poncirus trifoliataStem diameterLED fill light combinationGrowth formOxidase ac-tivity

周铮荣、赵和国、苏翰英、罗旭钊、孙紫青、马先锋、朱亦赤

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园艺作物种质创新与新品种选育教育部工程研究中心·国家柑橘改良中心长沙分中心·湖南农业大学园艺学院,长沙 410128

茎粗 LED补光组合 生长形态 氧化酶活性

2024

果树学报
中国农业科学院郑州果树研究所

果树学报

CSTPCD北大核心
影响因子:1.486
ISSN:1009-9980
年,卷(期):2024.41(12)