首页|调亏灌溉对鄂西柑橘果实膨大期和转色增糖期叶片养分、酶活性及根区土壤养分的影响

调亏灌溉对鄂西柑橘果实膨大期和转色增糖期叶片养分、酶活性及根区土壤养分的影响

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[目的]探究调亏灌溉对鄂西柑橘果实膨大期(Ⅲ)和转色增糖期(Ⅳ)叶片养分(氮、磷、钾)、酶活性(SOD、POD、CAT)及根区土壤养分(硝态氮、有效磷、速效钾)的影响.[方法]选择鄂西 6 a生"爱媛 28"为研究对象,以充分灌水为对照(CK:Ⅲ期和Ⅳ期的日灌水量分别为 4.0、2.5 L),在Ⅲ期Ⅳ期各设置 4个亏水处理,即轻度亏水(LD:70%CK)、中度亏水(MD1:55%CK)、偏重度亏水(MD2:40%CK)和重度亏水(SD:30%CK),探究柑橘叶片养分、酶活性及根区土壤养分在不同生育期受水分胁迫的响应规律.[结果]1)IV-MD1处理显著促进叶片氮、磷、钾质量分数的提升,其质量分数分别较对照增加8.05%、2.13%和 12.42%,且该处理叶片养分的增长速率与积累量均达到最大.2)Ⅲ-MD1处理有效增强柑橘树的抗氧化防御能力,其中超氧物歧化酶(SOD)和过氧化物酶(POD)活性均显著增强,分别提升63.3%和 104.5%.3)Ⅲ-MD1处理显著提高上、中层土壤硝态氮和有效磷质量分数,其质量分数分别提升 74.54%、17.61%和 73.53%、43.58%;Ⅳ-MD1 处理显著优化土壤养分的纵向分布,减少养分淋溶损失,其上、中层速效钾质量分数分别上升 59.23%和 51.67%.4)典型性相关分析揭示土壤与叶片营养元素之间的相互关系,其中叶片磷素和钾素均与土壤速效钾呈正相关,而与土壤硝态氮、有效磷及叶片氮素呈负相关.[结论]Ⅳ-MD1处理有利于土壤和叶片养分积累及保护酶更好发挥作用,是鄂西柑橘种植较适宜的滴灌节水管理模式,研究结果可为优化柑橘灌溉制度和提高柑橘品质提供理论依据.
Effects of Regulated Deficit Irrigation on Leaf Nutrients,Enzyme Activities,and Root Zone Soil Nutrients during Fruit Expansion and Coloration-Sugar Accumulation Stages of Citrus in Western Hubei Province
[Objective]This study investigated the effects of regulated deficit irrigation on leaf nutrient levels(nitrogen,phosphorus,and potassium),enzyme activities(superoxide dismutase,peroxidase,and catalase),and root-zone soil nutrients(nitrate-nitrogen,available phosphorus,and available potassium)during the fruit expansion(Ⅲ)and coloration-sugar accumulation stages(Ⅳ)of citrus in western Hubei Province.[Methods]Six-year-old"Ehime 28"citrus trees in the western Hubei region were selected as the research subjects.Full irrigation served as the control(CK:daily irrigation volumes of 4.0 and 2.5 L during the fruit expansion stage(Stage Ⅲ)and coloration-sugar accumulation stage(Stage Ⅳ),respectively).Four deficit irrigation treatments were applied during both Stage Ⅲ and Stage Ⅳ,including mild deficit(LD:70%of CK),moderate deficit 1(MD1:55%of CK),moderate deficit 2(MD2:40%of CK),and severe deficit(SD:30%of CK).The aim was to explore the response patterns of soil nutrients,citrus leaf nutrients,antioxidant enzyme activities,and root-zone soil nutrients to water stress under drip irrigation across different growth stages.[Results]1)The Ⅳ-MD1 treatment significantly promoted the increase in leaf nitrogen,phosphorus,and potassium contents,with their respective mass fractions increasing by 8.05%,2.13%and 12.42%compared to the control group.Moreover,this treatment achieved the highest rates of nutrient accumulation and growth in the leaves.2)The Ⅲ-MD1 treatment effectively enhanced the antioxidant defense capacity of citrus trees,with the activities of superoxide dismutase(SOD)and peroxidase(POD)increasing by 63.3%and 104.5%,respectively.3)The Ⅲ-MD1 treatment markedly enhanced nitrate nitrogen and available phosphorus contents in the upper and middle soil layers,with respective increases of 74.54%and 17.61%in the upper layer,and 73.53%and 43.58%in the middle layer.Additionally,the IV-MD1 treatment significantly improved the vertical distribution of soil nutrients,effectively reducing nutrient leaching losses.This treatment also increased the available potassium content in the upper and middle soil layers by 59.23%and 51.67%,respectively.4)Canonical correlation analysis revealed significant relationships between soil and leaf nutrient elements.Leaf phosphorus and potassium contents were positively correlated with available potassium in the soil,while they were negatively correlated with soil nitrate-nitrogen,available phosphorus,and leaf nitrogen.[Conclusion]The Ⅳ-MD1 treatment effectively promotes the accumulation of soil and leaf nutrients and enhances the activity of protective enzymes,making it a suitable water-saving management strategy for drip irrigation for citrus cultivation in western Hubei.The findings provide a theoretical basis for optimizing citrus irrigation practices and improving fruit quality.

citrusregulated deficit irrigationleaf nutrientsleaf protective enzyme activitiessoil nutrients

钟韵、黄志坤、朱士江、郝琨、朱子荣、张威、陈洪德

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三峡大学水电工程施工与管理湖北省重点实验室,湖北 宜昌 443002

柑橘 调亏灌溉 叶片养分 叶片保护酶活性 土壤养分

2025

水土保持学报
中国土壤学会 中国科学院水利部水土保持研究所

水土保持学报

北大核心
影响因子:1.226
ISSN:1009-2242
年,卷(期):2025.39(2)