[1]王恒,王慧,韩伟,等.桃果实的代谢途径和糖积累调控生理机制的研究进展[J].北方园艺,2024,(15):128-133.[doi:10.11937/bfyy.20233982]
 WANG Heng,WANG Hui,HAN Wei,et al.Research Progress on Metabolic Pathways and Physiological Mechanisms of Sugar Accumulation in Peach Fruit[J].Northern Horticulture,2024,(15):128-133.[doi:10.11937/bfyy.20233982]
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桃果实的代谢途径和糖积累调控生理机制的研究进展

参考文献/References:

[1]曹珂,陈昌文,杨选文,等.桃果实单果重及可溶性固形物含量的全基因组选择分析[J].中国农业科学,2023,56(5):951-963.[2]徐子媛,严娟,蔡志翔,等.桃果实糖酸和酚类物质与口感风味的相关性[J].江苏农业学报,2022,38(1):190-199.[3]张圆圆,刘文敬,张斌斌,等.不同类型桃果实内酯芳香物质构成与重要性评价[J].中国农业科学,2022,55(10):2026-2037.[4]李欣,柴应芳,田真,等.线粒体分离纯化及其在果实成熟衰老研究中的应用进展[J].园艺学报,2024,51(7):1516-1528.[5]DELGADO C,CRISOSTO G M,HEYMANN H,et al.Determining the primary drivers of liking to predict consumers’ acceptance of fresh nectarines and peaches[J].Journal of Food Science,2013,78(4):S605-S614.[6]SERRA-MAJEM L,RAPOSO A,ARANCETA-BARTRINA J,et al.Ibero-american consensus on low-and No-calorie sweeteners:safety,nutritional aspects and benefits in food and beverages[J].Nutrients,2018,10(7):818.[7]LOMBARDO V A,OSORIO S,BORSANI J,et al.Metabolic profiling during peach fruit development and ripening reveals the metabolic networks that underpin each developmental stage[J].Plant Physiology,2011,157(4):1696-1710.[8]赵剑波,梁振昌,杨君,等.三个类型桃及其杂种后代糖酸含量的差异[J].园艺学报,2009,36(1):93-98.[9]陆新华,孙德权,吴青松,等.不同类群菠萝种质果实糖酸组分含量分析[J].果树学报,2013,30(3):444-448.[10]BORSANI J,BUDDE C O,PORRINI L,et al.Carbon metabolism of peach fruit after harvest:Changes in enzymes involved in organic acid and sugar level modifications[J].Journal of Experimental Botany,2009,60(6):1823-1837.[11]ZANON L,FALCHI R,SANTI S,et al.Sucrose transport and phloem unloading in peach fruit:potential role of two transporters localized in different cell types[J].Physiologia Plantarum,2015,154(2):179-193.[12]DESNOUES E,GIBON Y,BALDAZZI V,et al.Profiling sugar metabolism during fruit development in a peach progeny with different fructose-to-glucose ratios[J].BMC Plant Biology,2014,14:336.[13]WU B H,QUILOT B,GNARD M,et al.Application of a SUGAR model to analyse sugar accumulation in peach cultivars that differ in glucose-fructose ratio[J].The Journal of Agricultural Science,2012,150(1):53-63.[14]PADILLA I M G,GOLIS A,GENTILE A,et al.Evaluation of transformation in peach Prunus persica explants using green fluorescent protein (GFP) and beta-glucuronidase (GUS) reporter genes[J].Plant Cell,Tissue and Organ Culture,2006,84(3):309-314.[15]ESCOBAR-GUTIRREZ A J,ZIPPERLIN B,CARBONNE F,et al.Photosynthesis,carbon partitioning and metabolite content during drought stress in peach seedlings[J].Functional Plant Biology,1998,25(2):197.[16]ZHANG L Y,PENG Y B,PELLESCHI-TRAVIER S,et al.Evidence for apoplasmic phloem unloading in developing apple fruit[J].Plant Physiology,2004,135(1):574-586.[17]NIE P,WANG X,HU L,et al.The predominance of the apoplasmic phloem-unloading pathway is interrupted by a symplasmic pathway during Chinese jujube fruit development[J].Plant and Cell Physiology,2010,51(6):1007-1018.[18]GAO Z,MAUROUSSET L,LEMOINE R,et al.Cloning,expression,and characterization of sorbitol transporters from developing sour cherry fruit and leaf sink tissues[J].Plant Physiology,2003,131(4):1566-1575.[19]LECOURIEUX F,KAPPEL C,LECOURIEUX D,et al.An update on sugar transport and signalling in grapevine[J].Journal of Experimental Botany,2014,65(3):821-832.[20]CHEN L Q,QU X Q,HOU B H,et al.Sucrose efflux mediated by SWEET proteins as a key step for phloem transport[J].Science,2012,335(6065):207-211.[21]ZHANG C,SHEN Z,ZHANG Y,et al.Cloning and expression of genes related to the sucrose-metabolizing enzymes and carbohydrate changes in peach[J].Acta Physiologiae Plantarum,2013,35(2):589-602.[22]ZHU M,MA W,DENG J,et al.Effect of nano-calcium on carotenoid and anthocyanin contents of nectarine fruit[J]. Plant Physiol Biochem,2023,204:108088.[23]VERDE I,ABBOTT A G,SCALABRIN S,et al.The high-quality draft genome of peach (Prunus persica) identifies unique patterns of genetic diversity,domestication and genome evolution[J].Nature Genetics,2013,45:487-494.[24]JIN Y,NI D A,RUAN Y L.Posttranslational elevation of cell wall invertase activity by silencing its inhibitor in tomato delays leaf senescence and increases seed weight and fruit hexose level[J].The Plant Cell,2009,21(7):2072-2089.[25]KLANN E M,HALL B,BENNETT A B.Antisense acid invertase (TIV1) gene alters soluble sugar composition and size in transgenic tomato fruit[J].Plant Physiology,1996,112(3):1321-1330.[26]BIANCO R L,RIEGERM.Partitioning of sorbitol and sucrose catabolism within peach fruit[J].Journal of the American Society for Horticultural Science,2002,127(1):115-121.[27]YAMADA K,NIWA N,SHIRATAKE K,et al.cDNA cloning of NAD-dependent sorbitol dehydrogenase from peach fruit and its expression during fruit development[J].The Journal of Horticultural Science and Biotechnology,2001,76(5):581-587.[28]张杼润.24-表油菜素内酯对杏果实贮藏期间糖代谢与抗冷性关系的影响[D].乌鲁木齐:新疆农业大学,2018.[29]ROLLAND F,BAENA-GONZALEZ E,SHEEN J.Sugar sensing and signaling in plants:Conserved and novel mechanisms[J].Annual Review of Plant Biology,2006,57:675-709.[30]李白云.苹果果实发育过程中糖含量的转录调控分析及糖转运蛋白MdTST的功能研究[D].杨凌:西北农林科技大学,2022.[31]GNARD M,LESCOURRET F,GOMEZ L,et al.Changes in fruit sugar concentrations in response to assimilate supply,metabolism and dilution:A modeling approach applied to peach fruit (Prunus persica)[J].Tree Physiology,2003,23(6):373-385.[32]QUILOT B,GNARD M,LESCOURRET F,et al.Simulating genotypic variation of fruit quality in an advanced peach × Prunus davidiana cross[J].Journal of Experimental Botany,2005,56(422):3071-3081.[33]LESCOURRET F,GNARD M.A virtual peach fruit model simulating changes in fruit quality during the final stage of fruit growth[J].Tree Physiology,2005,25(10):1303-1315.[34]BERTIN N,MARTRE P,GNARD M,et al.Under what circumstances can process-based simulation models link genotype to phenotype for complex traits?Case-study of fruit and grain quality traits[J].Journal of Experimental Botany,2010,61(4):955-967.[35]杨乐,李文杨,赵师成,等.避雨栽培措施对信阳五月鲜桃果实生长的影响[J].经济林研究,2019,37(1):205-210.[36]ALCOBENDAS R,MIRS-AVALOS J M,ALARCN J J,et al.Effects of irrigation and fruit position on size,colour,firmness and sugar contents of fruits in a mid-late maturing peach cultivar[J].Scientia Horticulturae,2013,164:340-347.[37]曲雪松,陈双建,赵雪辉,等.桃树不同方位(阴阳面)果实品质分析[J].果树资源学报,2021,2(3):6-9.[38]贾云云,王越辉,白瑞霞,等.光照对桃果实内在品质的影响研究进展[J].江西农业学报,2020,32(12):30-36.[39]刘子富,姚辉,胡宪军.江汉平原地区鲜食黄桃免袋栽培技术[J].中国南方果树,2021,50(1):144-145.[40]GROSSMAN Y L,DEJONG T M.Maximum fruit growth potential and seasonal patterns of resource dynamics during peach growth[J].Annals of Botany,1995,75(6):553-560.[41]韩子俊.桃果实生长发育及维管束研究[J].果农之友,2022(8):69-72.[42]范中菡,张雪梅,陈庆华,等.氨基酸水溶肥对桃果实品质的影响[J].北方园艺,2023(14):15-21.

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备注/Memo

第一作者简介:王恒(1981-),男,硕士,高级农艺师,现主要从事作物栽培及育种等研究工作。E-mail:1027636248@qq.com.责任作者:韩伟(1977-),男,博士,高级农艺师,现主要从事农业技术推广等工作。E-mail:whan01@163.com.基金项目:国家重点研发计划资助项目(2019YFE0197100)。收稿日期:2023-11-18

更新日期/Last Update: 2024-08-23