|Table of Contents|

Research Progress of Grapevine Bud Dormancy(PDF)

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2016年02
Page:
182-188
Research Field:
Publishing date:

Info

Title:
Research Progress of Grapevine Bud Dormancy
Author(s):
MIN Zhuo1FANG Yulin12
(1.College of Enology,Northwest Agriculture and Forestry Science and Technology University,Yangling,Shaanxi 712100;2.Shaanxi Engineering Research Center for Viti-viniculture,Yangling,Shaanxi 712100)
Keywords:
grapebuddormancyresearch progress
PACS:
-
DOI:
10.11937/bfyy.201602049
Abstract:
Bud dormancy is a biological adaptive trait of perennial woody plants responding to unfavorable environments,which is of great importance to the survival,yield and quality of fruit trees.On the basis of consulting a large number of relevant literature,we summarized the concept,classification and the influencing factors of bud dormancy,and then analyzed the research progress of grapevine bud dormancy at home and abroad,thus proposed the future research direction.

References:

 

[1]LANG G A.Dormancya new universal terminology[J].Hort Science,1987,22(5)817-820.

[2]ROHDE A,BHALERAO R P.Plant dormancy in the perennial context[J].Trends in Plant Science2007,12(5):217-223.

[3]LANG G A,EARLY J D,MARTIN G C,et al.Endo-,para-,and ecodormancyphysiological terminology and classification for dormancy research[J].Hort Science,1987,22(3):371-377.

[4]RINNE P L H,WELLING A,van DER SCHOOT C.Perennial life style of Populus:dormancy cycling and overwintering[J].Genetics and Genomics of Populus,2010,8:171-200.

[5]HORVATH D P,ANDERSON J V,CHAO W S,et al.Knowing when to growsignals regulating bud dormancy[J].Trends in Plant Science,2003,8(11):534-540.

[6]FUCHIGAMI L H,NEE C C.Degree growth stage model and rest-breaking mechanisms in temperate woody perennials[J].Hort Science,1987,22(5):836-845.

[7]FAUST M,EREZ A,ROWLAND L J,et al.Bud dormancy in perennial fruit treesphysiological basis for dormancy inductionmaintenance and release[J].Hort Science,199732(4):623-629.

[8]HEIDE O M,PRESTRUD A K.Low temperature,but not photoperiod,controls growth cessation and dormancy induction and release in apple and pear[J].Tree Physiology,2005,25(1):109-114.

[9]简令成,卢存福,邓江明,.木本植物休眠的诱导因子及其细胞内Ca2+水平的调节作用[J].应用与环境生物学报,2004,10(1):1-6.

[10]ERIKSSON M E.Role of phytochrome A and gibberellins in growth under long and short day conditions[M].Swedish University of Agricultural Sciences,2000.

[11]FRANKLIN K A.Light and temperature signal crosstalk in plant development[J].Current Opinion in Plant Biology,2009,12(1):63-68.

[12]MCCLUNG C R.Plant circadian rhythms[J].The Plant Cell Online,2006,18(4):792-803.

[13]RODRODRIGUEZ-FALCON M,BOU J,PRAT S.Seasonal control of tuberization in potatoconserved elements with the flowering response[J].Annual Review of Plant Biology,200657:151-180.

[14]ROBERTSON F C,SKEFFINGTON A W,GARDNER M J,et al.Interactions between circadian and hormonal signaling in plants[J].Plant Molecular Biology,2009,69(4):419-427.

[15]CHOUARD P.Vernalization and its relations to dormancy[J].Annual Review of Plant Physiology,1960,11(1):191-238.

[16]HORVATH D P,CHAO W S,SUTTLE J C,et al.Transcriptome analysis identifies novel responses and potential regula tory genes involved in seasonal dormancy transitions of leafy spurge (Euphorbia esula L.) [J].BMC Genomics,2008,9(1):536-552.

[17]RUTTINK T,AREND M,MORREEL K,et al.A molecular timetable for apical bud formation and dormancy induction in poplar[J].The Plant Cell Online,2007,19(8):2370-2390.

[18]OR E,VILOZNY I,EYAL Y,et al.The transduction of the signal for grape bud dormancy breaking induced by hydrogen cyanamide may involve the SNF-like protein kinase GDBRPK[J].Plant Molecular Biology,2000,43(4):483-494.

[19]EREZ A,FAUST M,LINE M J.Changes in water status in peach buds in inductiondevelopment and release from endodormancy[J].Scientia Horticulturae1998,73:111-123.

[20]WELLING A,PALVA E T.Molecular control of cold acclimation in trees[J].Physiologia Plantarum,2006,127:167-181.

[21]MIERE P,HADLEY P,DARBY J,et al.The effect of temperature and photoperiod on the rate of flower initiation and the onset of dormancy in the strawberry (Fragaria×ananassa Duch.) [J].Journal of Horticultural,1996,71(3):361-372.

[22]GOCAL G F,PHARIS R P,YEUNG E C.Changes after decapitation of indole-3-acetic acid and abscisic acid in the larger axillary bud of Phaseolus vulgaris L.cv Tender Green[J].Plant Physiology,1991,95(2):344-350.

[23]STAFSTROM J P.Axillary bud development in peaapical dominance,growth cycles,hormona lregulation and plant architecture[M].Cellular Communication in Plants,1993:75-86.

[24]MORITZ T.Biological activityidentification and quantification of gibberellins in seedlings of Norway spruce (Picea abies) grown under different photoperiods[J].Physiologia Plantarum,1995,95(1):67-72.

[25]MOLMANN J A,JUNTTILA O,JOHNSEN O,et al.Effects of redfar-red and blue light in maintaining growth in latitudinal populations of Norway spruce (Picea abies) [J].Plant Cell Environment,2006,29(2):166-172.

[26]JUNTTILA O.Apical growth cessation and shoot tip abscission in Salix[J].Physiologia Plantarum,1976,38(4):278-286.

[27]DRUART N,JOHANSSON A,BABA K,et al.Environmental and hormonal regulation of the activity-dormancy cycle in the cambial meristem involves stage-specific modulation of transcriptional and metabolic networks[J].Plant Journal,2007,50(4):557-573.

[28]CASTILLON A,SHEN H,HUQ E.Phytochrome interacting factorscentral players in phytochrome-mediated light signaling networks[J].Trends in Plant Science,2007,12(11):514-521.

[29]HORVATH D P,CHAO W S,ANDERSON J V.Molecular analysis of signals controlling dormancy and growth in underground adventitious buds of leafy spurge[J].Plant Physiology,2002,128(4):1439-1446.

[30]RODRIGO M J,ALQUEZAR B.Cloning and characterization of two 9-cisepoxycarotenoid dioxygenase genesdifferentially regulated during fruit maturation and under stress conditions,from orange (Citrus sinensis L.Osbeck) [J].Journal of Experimental Botany,2006,57(3):633-643.

[31]DESTEFANO-BELTRN L,KNAUBER D,HUCKLE L,et al.Effects of postharvest storage and dormancy status on ABA content,metabolism,and expression of genes involved in ABA biosynthesis and metabolism in potato tuber tissues[J].Plant Molecular Biology,200661(4-5):687-697.

[32]GOMEZ-ROLDAN V,FERMAS S,BREWER P B,et al.Strigolactone inhibition of shoot branching[J].Nature,2008,455(7210):189-194.

[33]GIBSON S I.Control of plant development and gene expression by sugar signaling[J].Current Opinion in Plant Biology,2005,8(1):93-102.

[34]SCHRADER J,MOYLE R,BHALERAO R,et al.Cambial meristem dormancy in trees involves extensive remodeling of the transcriptome[J].Plant Journal,2004,40(2):173-187.

[35]邵好好.梨树花芽休眠解除与活性氧代谢关系的研究[D].杨凌:西北农林科技大学,2003.

[36]毕磊.梨休眠特性及解除休眠的研究[D].保定:河北农业大学,2006.

[37]AUE H L,LECOMTE I,GENDRAUD M,et al.Change in plasma membrane ATPase activity during dormancy release of vegetative peach-tree buds[J].Physiologia Plantarum,1999,106(1):41-46.

[38]ALVES G,DECOURTEIX M,FLEURAT-LESSARD P,et al.Spatial activity and expression of plasma membrane H+-ATPase in stem xylem of walnut during dormancy and growth resumption[J].Tree Physiology,2007,27(10):1471.

[39]SAURE M C.Dormancy release in deciduous fruit trees[J].Horticultural Reviews,1985,7:239-300.

[40]POWELL L E.Hormonal aspects of bud and seed dormancy in temperate-zone woody plants[J].Hort Science,1987,22(5):539-552.

[41]LAVEE S,MAY P.Dormancy of grapevine buds-facts and speculation[J].Australian Journal of Grape and Wine Research,1997,3(1):31-46.

[42]房玉林,李华,陶永胜.化学处理打破酿酒葡萄休眠的研究[J].农业工程学报,2004,20(7):122-125.

[43]陶永胜,房玉林,李华.破眠剂对攀西地区酿酒葡萄萌芽率的影响[J].西北农林科技大学学报(自然科学版),2007,35(1):189-193.

[44]高春英,张昂,房玉林,.单氰胺对葡萄休眠过程中冬芽水分和碳水化合物的影响[J].西北植物学报,2009,29(6):1200-1206.

[45]房玉林,耿万刚,孙伟,.赤霞珠葡萄休眠及萌发过程中的氮素代谢[J].中国农业科学,201244(24):5041-5049.

[46]张昂,郑瑜琬,陈腾,.葡萄休眠解除过程中冬芽组织活性氧与抗氧化系统的变化特征[J].西北植物学报,2012,32(10):2075-2081.

[47]闵卓,耿万刚,房玉林,.应用抑制消减杂交技术筛选葡萄冬芽和夏芽生理休眠相关基因[J].中国农业科学,2014,47(5):1029-1040.

[48]OR E,VILOZNY I,FENNELL A,et al.Dormancy in grape buds:isolation and characterization of catalase cDNA and analysis of its expression following chemical induction of bud dormancy release[J].Plant Science,2002,162(1):121-130.

[49]HALAY T,PANG X,BATIKOFF T,et al.Similar mechanisms might be triggered by alternative external stimuli that induce dormancy release in grape buds[J].Planta,2008,228(1):79-88.

[50]KEILIN T,PANG X,VENKATESWARI J,et al.Digital expression profiling of a grape-bud EST collection leads to new insight into molecular events during grape-bud dormancy release[J].Plant Science,2007,173(4):446-457.

[51]OPHIR R,PANG X Q,HALAY T,et al.Gene-expression profiling of grape bud response to two alternative dormancy-release stimuli expose possible links between impaired mitochondrial activity,hypoxia,ethylene-ABA interplay and cell enlargement[J].Plant Molecular Biology,2009,71(4-5):403-423.

[52]PREZ F J,VERGARA R,OR E.On the mechanism of dormancy release in grapevine budsa comparative study between hydrogen cyanamide and sodium azide[J].Plant Growth Regulation,2009,59(2):145-152.

[53]VERGARA R,PEREZ F J.Similarities between natural and chemically induced bud-endodormancy release in grapevine Vitis vinifera L[J].Scientia Horticulturae,2010125(4):648-653.

[54]RUONALA R,RINNE P L H,KANGASJARVI J,et al.CENL1 expression in the rib meristem affects stem elongation and the transition to dormancy in Populus[J].Plant Cell2008(20):59-74.

[55]RINNE P L H,WELLING A,VAHALA J,et al.Chilling of dormant buds hyperinduces FLOWERING LOCUS T and recruits GA-inducible 1,3-beta-glucanases to reopen signal conduits and release dormancy in Populus[J].Plant Cell,2011,23(1):130-146.

[56]HEMMING M N,TREVASKIS B.Make hay when the sun shines:the role of MADS-box genes in temperature-dependant seasonal flowering responses[J].Plant Science,2011,180(3)447-453.

[57]ZHANG J Z,LI Z M,MEI L,et al.PtFLC homolog from trifoliate orange(Poncirus trifoliata) is regulated by alternative splicing and experiences seasonal fluctuation in expression level[J].Planta,2009,229(4):847-859.

[58]DOAKGˇ〗RAMAC M,HORVATHD P,CHAO W S,et al.Low temperatures impact dormancy statusflowering competenceand transcript profiles in crown buds of leafy spurge[J].Plant Molecular Biology,2010,73(1-2):207-226.

[59]MAZZITELLI L,HANCOCK R D,HAUPT S,et al.Co-ordinated gene expression during phases of dormancy release in raspberry (Rubus idaeus L.) buds[J].Journal of Experimental Botany,2007,58(5):1035-1045.

[60]YAMANE H,KASHIWA Y,OOKA T,et al.Suppression subtractive hybridization and differential screening reveals endodormancy-associated expression of an SVP/AGL24-type MADS-box gene in lateral vegetative buds of Japanese apricot[J].Journal of the American Society for Horticultural Science,2008,133(5):708-716.

[61]HORVATH D P,SUNG S,KIM D,et al.Characterizationexpression and function of DORMANCY ASSOCIATED MADS-BOX genes from leafy spurge[J].Plant Molecular Biology2010,73:169-179.

[62]WU R M,WALTON E F,RICHARDSON A C,et al.Conservation and divergence of four kiwifruit SVP-like MADS-box gene suggest distinct roles in kiwifruit bud dormancy and flowering[J].Journal of Experimental Botany,2012,63(2):797-807.

[63]BIELENBERG D G,WANG Y E,LI Z,et al.Sequencing and annotation of the evergrowing locus in peach [Prunus persica (L.) Batsch] reveals a cluster of six MADS-box transcription factors as candidate genes for regulation of terminal bud formation[J].Tree Genetics and Genomes,2008,4(3):495-507.

[64]SREEKANTAN L,MATHIASON K,GRIMPLET J,et al.Differential floral development and gene expression in grapevines during long and short photoperiods suggests a role for floral genes in dormancy transitioning[J].Plant Molecular Biology2010,73(1-2)191-205.

[65]DIAZ-RIQUELME J,GRIMPLET J,MARTINEZ-ZAPATER J M,et al.Transcriptome variation along bud development in grapevine (Vitis vinifera L.) [J].BMC Plant Biology2012,12(1):181-194.

[66]MATHIASON K,HE D,GRIMPLET J,et al.Transcript profiling in Vitis riparia during chilling requirement fulfillment reveals coordination of gene expression patterns with optimized bud break[J].Functional and Integrative Genomics,20099(1)81-96.

[67]ZHENG C LHALAY T,ACHEAMPONG K,et al.Abscisic acid (ABA) regulates grape bud dormancy,and dormancy release stimuli may act through modification of ABA metabolism[J].Journal of Experimental Botany,2015,66:1527-1542.

Memo

Memo:
-
Last Update: 2016-04-08