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Tian R,Wang L,Yang W,Song SJ,Niu YH,Zou YJ,Ma FW,Li MJ,Ma BQ. Effects of exogenous application of humic acid liquid film on photosynthetic characteristics and fruit quality of Malus domestica Borkh.[J]. Plant Science Journal,2023,41(5):668−676. DOI: 10.11913/PSJ.2095-0837.22292
Citation: Tian R,Wang L,Yang W,Song SJ,Niu YH,Zou YJ,Ma FW,Li MJ,Ma BQ. Effects of exogenous application of humic acid liquid film on photosynthetic characteristics and fruit quality of Malus domestica Borkh.[J]. Plant Science Journal,2023,41(5):668−676. DOI: 10.11913/PSJ.2095-0837.22292

Effects of exogenous application of humic acid liquid film on photosynthetic characteristics and fruit quality of Malus domestica Borkh.

Funds: This work was supported by grants from the Science and Technology Innovation and Achievement Transformation Project of Northwest A & F University Experimental Demonstration Station (Base) (TGZX2021-39), Shaanxi Rural Revitalization Science and Technology Project (2022FP-10), Xianyang Agricultural Science and Technology Plan Project (2021ZDYF-NY-0013), and Shaanxi Provincial Department of Education Service Local Special Project (22JC015).
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  • Received Date: November 21, 2022
  • Revised Date: December 15, 2022
  • Available Online: November 06, 2023
  • Two apple (Malus domestica Borkh. ) varieties ‘YH’ and ‘QC’ were chosen as materials and two treatments of spraying humic acid liquid film on 15 d and 30 d and non-bagging were used to investigate the effects of exogenous application of humic acid liquid film on photosynthetic indexes of apple leaves, fruit color difference and texture characteristics, soluble solids, titratable acid and expression level of genes related to sugar and acid content in fruits. The results showed that compared with the control, spraying humic acid liquid film treatment increased the photosynthetic characteristics of leaves, improved the coloring of fruits, increased the soluble solids content in fruits, decreased the titratable acid content, and increased the solid-acid ratio. The relative expression levels of sugar content-related genes MdTST1, MdTST2, and MdERDL6-1 increased, and the relative expression levels of acid content-related genes MdMa1, MdMa10, MdMDH5, and MdWRKY126 decreased. Among them, the effect of spraying humic acid liquid film on 15 d was the most significant. The results showed that spraying humic acid liquid film treatment could improve the photosynthetic characteristics of apples, promote the growth and development of trees, improve fruit quality and improve fruit flavor.

  • [1]
    赵德英,程存刚,仇贵生,董雅凤,张彩霞,等. 苹果高质量发展技术创新途径[J]. 中国果树,2021(8):1−5.

    Zhao DY,Cheng CG,Qiu GS,Dong YF,Zhang CX,et al. Technological innovation approach of high quality development in apple industry[J]. China Fruits,2021 (8):1−5.
    [2]
    孙建设,马宝焜,章文才. 富士苹果果皮色泽形成的需光特性研究[J]. 园艺学报,2000,27(3):213−215.

    Sun JS,Ma BK,Zhang WC. The study on the characters of needed light in the coloration of ‘Fuji’ apple skin[J]. Acta Horticulturae Sinica,2000,27 (3):213−215.
    [3]
    杨少华,王丽,穆春,王翔,何静辉,等. 蔗糖调节拟南芥花青素的生物合成[J]. 中国生物化学与分子生物学报,2011,27(4):364−369.

    Yang SH,Wang L,Mu C,Wang X,He JH,et al. Anthocyanin biosynthesis regulated by sucrose in Arabidopsis thaliana seedling[J]. Chinese Journal of Biochemistry and Molecular Biology,2011,27 (4):364−369.
    [4]
    高华君,王少敏,王江勇. 套袋对苹果果皮花青苷合成及着色的影响[J]. 果树学报,2006,23(5):750−755.

    Gao HJ,Wang SM,Wang JY. Effect of bagging on anthocyanin biosynthesis and pigmentation in apple skin[J]. Journal of Fruit Trees,2006,23 (5):750−755.
    [5]
    吴瑞雪. 对苹果无袋化栽培的思考[J]. 南方农业,2021,15(18):22−23.
    [6]
    陈玉兆. 生物保护膜在苹果生产上的应用[D]. 杨凌: 西北农林科技大学, 2017: 9-24.
    [7]
    高俊山, 蔡永萍. 植物生理学实验指导[M]. 北京: 中国农业大学出版社, 2018: 1−10.
    [8]
    田伟,田义轲,王彩虹,宋伟,李节法. 苹果组织总RNA提取方法的比较研究[J]. 青岛农业大学学报(自然科学版),2010,27(2):122−125.
    [9]
    Zhu LC,Li BY,Wu LM,Li HX,Wang ZY,et al. MdERDL6-mediated glucose efflux to the cytosol promotes sugar accumulation in the vacuole through up-regulating TSTs in apple and tomato[J]. Proc Natl Acad Sci USA,2021,118 (1):e2022788118. doi: 10.1073/pnas.2022788118
    [10]
    Zhang LH,Ma BQ,Wang CZ,Chen XY,Ruan YL,et al. MdWRKY126 modulates malate accumulation in apple fruit by regulating cytosolic malate dehydrogenase (MdMDH5)[J]. Plant Physiol,2022,188 (4):2059−2072. doi: 10.1093/plphys/kiac023
    [11]
    Gasic K,Hernandez A,Korban SS. RNA extraction from different apple tissues rich in polyphenols and polysaccharides for cDNA library construction[J]. Plant Mol Biol Rep,2004,22 (4):437−438. doi: 10.1007/BF02772687
    [12]
    王贵平,薛晓敏,赵红强,陈汝,韩雪平,王金政. ‘富士’苹果不套袋与套袋密度对树体光合特性的影响[J]. 中国农学通报,2022,38(13):54−59.

    Wang GP,Xue XM,Zhao HQ,Chen R,Han XP,Wang JZ. Effects of no-bagging and bagging density on photosynthetic characteristics of ‘Fuji’ apple trees[J]. Chinese Agricultural Science Bulletin,2022,38 (13):54−59.
    [13]
    李明霞,白岗栓,闫亚丹,耿桂俊,杜社妮. 山地苹果树更新修剪对树体营养及生长的影响[J]. 园艺学报,2011,38(1):139−144. doi: 10.16420/j.issn.0513-353x.2011.01.020

    Li MX,Bai GS,Yan YD,Geng GJ,Du SN. Effects of renewal pruning on mountain apple tree’s nutrition and growth[J]. Acta Horticulturae Sinica,2011,38 (1):139−144. doi: 10.16420/j.issn.0513-353x.2011.01.020
    [14]
    岳正洋. 不套袋栽培对苹果果实品质及耐贮性的影响[D]. 杨凌: 西北农林科技大学, 2021: 10-17.
    [15]
    张瑞芳. 不套袋对苹果品质的影响及果锈产生主要因素分析[D]. 杨凌: 西北农林科技大学, 2019: 12-22.
    [16]
    吕娇阳. 不套袋富士系苹果品种筛选及无袋栽培技术研究[D]. 杨凌: 西北农林科技大学, 2018: 11-24.
    [17]
    杜研,李建贵,王海儒,努尔尼萨,牛真真. 富士苹果果形偏斜的影响因素研究[J]. 新疆农业大学学报,2013,36(1):42−45.

    Du Y,Li JG,Wang HR,Nuernisa,Niu ZZ. A study on affecting factors of fruit shape of Fuji apple[J]. Journal of Xinjiang Agricultural University,2013,36 (1):42−45.
    [18]
    田燕莉. 套袋对红富士苹果果实品质的影响分析[J]. 农家参谋,2019(18):4.
    [19]
    高小芳. 套袋对红富士苹果果实品质的影响[J]. 农业开发与装备,2017(10):97.
    [20]
    Bal E. Effect of postharvest aminoethoxyvinylglycine (AVG) application on fruit quality of Asian pear (Pyrus pyrifolia cv. Hosui) during cold storage[J]. Erwerbs-Obstbau,2020,62 (1):69−75. doi: 10.1007/s10341-019-00460-2
    [21]
    卜万锁,牛自勉,赵红钰. 套袋处理对苹果芳香物质含量及果实品质的影响[J]. 中国农业科学,1998(6):88−90.

    Bu WS,Niu ZM,Zhao HY. Effect of fruit-bagging treatment on the content of volatile aroma compounds and flesh quality of apple[J]. Scientia Agricultura Sinica,1998 (6):88−90.
    [22]
    Kwon JG,Yoo J,Kwon HW,Kim DH,Cho YJ,et al. Effect of preharvest aminoethoxyvinylglycine (AVG) on fruit quality attributes ‘Formosa’ plum stored at ambient temperature[J]. Korean J Food Preserv,2019,26 (7):723−729. doi: 10.11002/kjfp.2019.26.7.723
    [23]
    Cheng JT,Wen SY,Xiao S,Lu BY,Ma MR,Bie ZL. Overexpression of the tonoplast sugar transporter CmTST2 in melon fruit increases sugar accumulation[J]. J Exp Bot,2018,69 (3):511−523. doi: 10.1093/jxb/erx440
    [24]
    Wang ZY,Liang YH,Jin YR,Tong XL,Wei XY,et al. Ectopic expression of apple hexose transporter MdHT2.2 reduced the salt tolerance of tomato seedlings with decreased ROS-scavenging ability[J]. Plant Physiol Biochem,2020,156:504−513. doi: 10.1016/j.plaphy.2020.10.001
    [25]
    马百全. 苹果资源果实糖酸性状评估及酸度性状的候选基因关联分析[D]. 北京: 中国科学院大学, 2016: 3-9.
    [26]
    Liao L,Zhang WH,Zhang B,Fang T,Wang XF,et al. Unraveling a genetic roadmap for improved taste in the domesticated apple[J]. Mol Plant,2021,14 (9):1454−1471. doi: 10.1016/j.molp.2021.05.018
    [27]
    赵海亮,左璐,侯雷平,刘柯辉,刘勤,等. 叶面施用色氨酸对番茄果实品质的改良效应[J]. 山西农业大学学报(自然科学版),2021,41(4):68−75.

    Zhao HL,Zuo L,Hou LP,Liu KH,Liu Q,et al. Effects of foliar application of tryptophan on fruit quality of tomato[J]. Journal of Shanxi Agricultural University (Natural Science Edition),2021,41 (4):68−75.
    [28]
    Ginzberg I,Fogelman E,Rosenthal L,Stern RA. Maintenance of high epidermal cell density and reduced calyx-end cracking in developing 'Pink Lady' apples treated with a combination of cytokinin 6-benzyladenine and gibberellins A4 + A7[J]. Sci Hortic,2014,165:324−330. doi: 10.1016/j.scienta.2013.11.020
    [29]
    Jia ZY,Wang Y,Wang L,Zheng YH,Jin P. Amino acid metabolomic analysis involved in flavor quality and cold tolerance in peach fruit treated with exogenous glycine betaine[J]. Food Res Int,2022,157:111204. doi: 10.1016/j.foodres.2022.111204
    [30]
    党纳,翟丙年,巩庆利,赵志远,刘艳妮,李展飞. 新型苹果品质改良剂的作用效果研究[J]. 北方园艺,2016(17):5−11.

    Dang N,Zhai BN,Gong QL,Zhao ZY,Liu YN,Li ZF. Study on the effect of new type apple quality improving agent[J]. Northern Horticulture,2016 (17):5−11.
    [31]
    李翠红, 张永茂, 陈大鹏, 冯毓琴, 慕钰文. 套袋和非套袋对“红富士”苹果耐贮性和安全性的影响[J]. 北方园艺, 2014(22): 143−146.

    Li CH, Zhang YM, Chen DP, Feng YQ, Mu YW. Effect of storability and safety in ‘Red Fuji' apple fruits by bagging and non-bagging [J]. Northern Horticulture, 2014(22): 143−146.
    [32]
    Wójcik P,Filipczak J,Wójcik M. Effects of prebloom sprays of tryptophan and zinc on calcium nutrition,yielding and fruit quality of ‘Elstar’ apple trees[J]. Sci Hortic,2019,246:212−216. doi: 10.1016/j.scienta.2018.10.071
    [33]
    Winisdorffer G,Musse M,Quellec S,Barbacci A,Gall SL,et al. Analysis of the dynamic mechanical properties of apple tissue and relationships with the intracellular water status,gas distribution,histological properties and chemical composition[J]. Postharvest Biol Technol,2015,104:1−16. doi: 10.1016/j.postharvbio.2015.02.010
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