Progress of Rooting Mechanism Study in Apple Cutting Propagation

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Journal of Agriculture ›› 2019, Vol. 9 ›› Issue (12) : 17-22. DOI: 10.11923/j.issn.2095-4050.cjas18110009

Progress of Rooting Mechanism Study in Apple Cutting Propagation

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Abstract

Research on rooting mechanism of apple cutting is reviewed from morphological anatomy of adventitious root formation of cutting, physio-biochemical basis of cutting rooting and molecular biology of cutting rooting. At present, morphological anatomy structure of adventitious root formation in apple has been known that apple dwarf stock belongs to induced root primitive type, not hidden root primitive type. Hormones, enzymes, nutrients, water, and other physio-biochemical substances affecting rooting have been studied, it is thought that cutting rooting is affected by many factors, the formation of root primordium is the result of the dynamic equilibrium by the factors, and the reason of adventitious root formation in cutting is revealed preliminarily from molecular level. Relevant research results are of significance to regulate the formation and development of adventitious root, and it is necessary to carry out deep and comprehensive research on the formation mechanism of adventitious root from molecular level in the future.

Key words

apple; apple dwarf rootstock; cutting; adventitious root; morphology and anatomy; physio-biochemical substances; molecular biology

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Progress of Rooting Mechanism Study in Apple Cutting Propagation. Journal of Agriculture. 2019, 9(12): 17-22 https://doi.org/10.11923/j.issn.2095-4050.cjas18110009

References

[1]王丽.SH40苹果矮化砧木扦插繁殖技术及生根机理初探[D] .保定:河北农业大学,2015.
[2]张海新,及华.苹果无病毒矮化砧扦插试验[J].河北林业科技,1996(3):24-26.
[3]鲁丹.红桤木扦插生根机理研究[D].南京:南京林业大学, 2013.
[4]张颖.秤锤树扦插繁殖技术及生根机理的研究[D].南京:南京林业大学, 2009.
[5]曹凡.美国山核桃扦插繁殖技术及生根机理研究[D].南京:南京林业大学, 2015.
[6]李继华.扦插的原理与应用[M].上海:上海科学技术出版社, 1987, 59~60.
[7] Syros T,Yupsanis T,Zafiriadis H,et al. Activity and isoforms of per-oxidases,lignin and anatomy,during adventitious rooting in cuttings of Ebenus cretica L[J]. Journal of Plant Physiology,2004,161( 1) : 69 -77.
[8] Hatzilazarou S P,Syros T D,Yupsanis T A,et al. Peroxidases,ligninand anatomy during in vitro and ex vitro rooting of gardenia ( Gardeniajasminoides Ellis) microshoots[J]. Journal of Plant Physiology,2006,163( 8):827 -836.
[9] Hartmann H T,Kester D E,Davies F T,et al. Plant propagation,prin-ciples and practices[M]. 7 ed. New Jersey: Prentice Hall,2002: 880.
[10]王戈戎,袁晓颖.喜树茎解剖构造及插穗不定根的形成[J].东北林业大学学报, 2007, 35(3): 88-89.
[11]王涛.植物扦插繁殖技术[M].北京:北京科学技术出版社, 1989:36,57-58.
[12] 弦间洋(吴帮良译).桃树硬枝扦插繁殖研究[J].国外农学——果树1989(1):1-6.
[13]郗荣庭主编.果树栽培学总论[M] .北京:中国农业出版社,2001:146-151
[14]许晓岗,汤庚国,童丽丽.海棠果插穗扦插生根过程解剖学观察[J].南京林业大学学报(自然科学版) , 2006,30(4):77-80.
[15]许晓岗.垂丝海棠、楸子的扦插生根机理研究[D].南京:南京林业大学, 2006.
[16]游小英,沈永宝,凌柳聪. 红缨海棠茎段快速繁殖技术及组织解剖观察[J].林业科技开发, 2010, 24(6):23-28.
[17]余亮,王飞.苹果砧木M9快繁技术的建立及试管苗生根进程解剖研究[J].西北林学院学报,2013, 28(4):106-110.
[18]杜学梅,杨廷桢,高敬东,等.影响苹果矮砧扦插生根因素的研究进展[J].农学学报, 2017,7(8):55-59.
[19]王金祥,严小龙,潘瑞炽. 不定根形成与植物激素的关系[J]. 植物生理学通讯, 2005, 41(2):133-142.
[20]王忠主编.植物生理学[M] .北京:中国农业出版社,2002:305
[21] Liu JH, Reid DM. Adventitious rooting in hypocotyls of sunflower (Helianthus annuus) seedling.IV: The role of changes in endogenous free and conjugated indole-3-acetic acid[J].Physiol Plant, 1992, 86:285-292.
[22] 朱永超,李彬,廖伟彪.种生长素对蓝叶忍冬枝条扦插生根的影响[J].草业科学,2016, 33(1):61-66.
[23]史莉,白芳芳,查振道.山荆子全光喷雾扦插育苗试验[J].陕西林业科技,2012 (1):49-51.
[24] 韩静.几种无性繁殖方式对苹果砧木生根的影响[D].杨淩:西北农林科技大学,2015.
[25]肖祖飞,张艳珍,王忆,等.苹果砧木绿枝扦插快繁技术研究[J].园艺学报,2013,40(s):2579.
[26]李海伟,艾治国,谷鸿飞,等.苹果矮化砧木B9嫩枝扦插试验[J].河北果树,2010(2):4.
[27]张秀美,李宝江,杨锋,等.苹果砧木绿枝扦插繁殖的研究[J].中国果树,2009(1):22-25.
[28] Alvarez R, Nissen SJ, Sutter EG. Relationship between indole-3-aetic acid levels in apple(Malus pumila Mill) rootstocks cultured in vitro and adventitious root formation in presence of indole-3-butyric acid[J].Plant physiology,1989,89(2):439-443.
[29]许晓岗,汤庚国,谢寅峰. 海棠果插穗的内源激素水平及其与扦插生根的关系[J].莱阳农学院学报,2005,22 (3):195-199.
[30] Noiton D, Vine JH, Mullion MG. Effects of serial subculture in vitro on the endogenous levels of indole-3-aetic acid and abscisic acid and rootability in microcuttings of ‘Jonthan’ apple[J]. Plant growth regulation,1992b,11(4):377-383.
[31] 董胜君,刘明国,戴菲,等.山杏嫩枝扦插生根过程中插穗内源激素含量的变化[J].经济林研究,2013,31(4):108-114.
[32] Ros Barcelo A, Pedreno MA, Ferrer MA et al. Indole-3-methanol is the main product of the oxidation of indole-3-acetic acid catalyzed by two cytosolic basic isoperoxidases from Lupinus[J]. Planta, 1990, 181:448~454.
[33] Gaspar T, Penel C, Castillo FJ et al. A two-step control of basic and acidic peroxidases and its significance for growth and development[J]. Physiol Plant, 1985, 64:418-423.
[34]宋金耀,刘永军,宋刚,等.几个常见树种扦插生根过程中POD、IAAO活性及酚含量的变化[J].江苏农业科学,2007(6):115-118.
[35]杜伟.桑树硬枝扦插生根的生理生化与分子机理研究[D].镇江:江苏科技大学,2016.
[36]曹帮华,扈红军,张大鹏,等.桑树硬枝扦插生根能力及其生根关联酶活性的研究[J].蚕业科学,2008,34(1):96-100.
[37]李明,黄卓烈,谭绍满.难易生根按树多酚氧化酶、吲哚乙酸氧化酶活性及其同工酶的比较研究[J].林业科学研究,2000,13(5):493-500.
[38] 张昉,郭素娟.不定根发生机理的研究进展[J].广东林业科技,2006,22(3):91-95.
[39] Yilmaz H,Tafikin T. Polyphenol oxidase activity during rooting in cut-tings of grape ( Vitis vinifera L. ) varieties[J].Turkish Journal of Botany,2003,27(6):495-498.
[40]孟平.苹果蒸腾耗水特征及水分胁迫诊断预报模型研究[D].长沙:中南林学院,2005.
[41] Curir P, van Sumere CF, Termini A et al. Flavoniod accumu-lation is correlated with adventitious roots formation in Eucalypus gunnii Hook micropropagated through axillary bud stimulation[J]. Plant Physiol, 1990, 92:1148-1153.
[42] 孙琴摘译.苯酚类物质和其他因素对试管中苹果砧木M9和M26发根的效应[J].国外农学——果树,1983(2):24.
[43]张焕欣,董春娟,李福凯,等. 植物不定根发生机理的研究进展[J].西北植物学报,2017, 37(7):1457-1464.
[44] 宋金耀,宋刚,李辉,等.几种园艺植物扦插生根过程中生化指标的变化[J].江苏农业科学,2010(3):211-214.
[45]李焕勇,刘涛,张华新,等.植物扦插生根机理研究进展[J].世界林业研究,2014,27(1):23-28.
[46] 张忠微,石素霞,张彦广,等. 金露梅嫩枝插穗生根过程中营养物质含量变化研究[J].河北农业大学学报,2008,31(4):56-59.
[47]郭素娟,凌宏勤,李凤兰.白皮松插穗生根的生理生化基础研究[J].北京林业大学学报,2004,26(2):43-47.
[48]许晓岗,丁俊刚,童丽丽.激素对楸子插穗内源激素含量和可溶性蛋白组成的影响[J].南京林业大学学报(自然科学版) ,2009,33(2):60-64.
[49] Welander M.,L. H.Zhu. The Rooting ability of rolb trans-formed clones of the apple rootstock M26 and its relation to gene ex-pression[J]. Acta Horticulturae,2000,521:133-138.
[50]杨利粉,孟红志,马宏,等.绞缢对苹果矮砧压条新梢激素含量及生根相关基因表达的影响[J].园艺学报,2017,44(4):613-621.
[51]王荣.苹果砧木茎源根系发生中次生代谢、内源激素和转录组差异分析[D].济南:山东农业大学,2016.
[52]田河.苹果组培苗不定根发生过程中 m RNA 差异显示表达及生根移栽体系优化研究[D].保定:河北农业大学,2013.
[53]徐晓召.‘中砧1号’成龄期绿枝插穗难生根的分子机制初探[D].北京:中国农业大学,2017.
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