[1] 宗晓鸿.连阴雨对沾化冬枣的不利影响及应对措施[J].落叶果树,2019,51(3):63-64.doi:10.13855/j.cnki.lygs.2019.03.022. Zong X H.Impact of continuous rainy disaster on Zhanhua winter jujube and countermeasures[J].Deciduous Fruits, 2019, 51(3):63-64. [2] 马雯彦,庞晓明,续九如,李颖岳.果实裂果影响因子研究进展[J].华中农业大学学报,2010,29(6):798-804. Ma W X, Pang X M, Xu J R, Li Y Y. Advances in research on the factors influencing fruit cracking[J]. Journal of Huazhong Aricultural University, 2010,29(6):798-804. [3] 卢艳清.枣抗裂种质筛选及其抗裂机理初步研究[D].保定:河北农业大学,2008.doi:10.7666/d.y1306932. Lu Y Q.Screening of germplasm with high risistance to fruit cracking and primary study on their resistant mechanism in Chinese jujube[D].Baoding:Hebei Agricultural University,2008. [4] 李克志,高中山.枣裂果机理的初步研究[J].果树学报,1990,7(4):221-226. Li K Z,Gao Z S.Preliminary study on the mechanism of fruit cracking in Chinese jujube[J]. Journal of Fruit Science,1990,7(4):221-226. [5] 魏琦琦.基于转录组测序的枣成花和果实品质重要基因的研究[D].长沙:中南林业科技大学,2017.doi:10.7666/d.Y3269462. Wei Q Q.The study of key genes on flowering and fruit quality from Ziziphus jujuba based on transcriptome sequencing[D].Changsha:Central South University of Forestry and Technology,2017. [6] 王建宇.枣裂果生理特征及转录组和蛋白组学分析[D].阿拉尔:塔里木大学,2020.doi:10.27708/d.cnki.gtlmd.2020.000008. Wang J Y.Physiological characteristics,transcriptome and proteomic analysis of jujube fruit cracking[D].Alaer:Tarim University,2020. [7] Sharon D,Tilgner H,Grubert F,Snyder M.A single-molecule long-read survey of the human transcriptome[J]. Nature Biotechnology,2013,31:1009-1014.doi:10.1038/nbt.2705. [8] Sessegolo C, Cruaud C, Da Silva C, Cologne A, Dubarry M, Derrien T, Lacroix V, Aury J M. Transcriptome profiling of mouse samples using nanopore sequencing of cDNA and RNA molecules[J]. Scientific Reports,2019,9(1):1-12.doi:10.1038/s41598-019-51470-9. [9] Li H.Minimap2:pairwise alignment for nucleotide sequences[J]. Bioinformatics,2018,34(18):3094-3100.doi:10.1093/bioinformatics/bty191. [10] Liu M J,Zhao J,Cai Q L,Liu G C,Wang J R,Zhao Z H,Liu P,Dai L,Yan G J,Wang W J,Li X S,Chen Y,Sun Y D,Liu Z G,Lin M J,Xiao J,Chen Y Y,Li X F,Wu B,Ma Y,Jian J B,Yang W,Yuan Z,Sun X C,Wei Y L,Yu L L,Zhang C,Liao S G,He R J,Guang X M,Wang Z,Zhang Y Y,Luo L H.The complex jujube genome provides insights into fruit tree biology[J]. Nature Communications,2014,5(1):1-12.doi:10.1038/ncomms6315. [11] Pertea G,Pertea M.GFF Utilities:GffRead and GffCompare[J]. F1000 Research,2020,9:304.doi:10.12688/f1000research.23297.1. [12] Song Q A,Catlin N S,Brad B W,Li S.Computational analysis of alternative splicing in plant genomes[J]. Gene,2019,685:186-195.doi:10.1016/j.gene.2018.10.026. [13] Abdel-ghany S E, Hamilton M, Jacobi J L, Ngam P,DevittN,Schilkey F,Ben-Hur A, Reddy. A survey of the sorghum transcriptome using single-molecule long reads[J].Nature Communications,2016,7:11706.doi:10.1038/ncomms11706. [14] Beier S, Thiel T, Münch T, Scholz U, Mascher M. MISA-web:a web server for microsatellite prediction[J]. Bioinformatics,2017,33(16):2583-2585.doi:10.1093/bioinformatics/btx198. [15] Hung J H,Weng Z.Sequence alignment and homology search with Blast and ClustalW[J]. Cold Spring Harbor Protocols,2016,2016(11):1016-1021.doi:10.1101/pdb.prot093088. [16] Kanehisa M,Sato Y,Kawashima M,Furumichi M,Tanabe M.KEGG as a reference resource for gene and protein annotation[J]. Nucleic Acids Research,2016,44(D1):457-462.doi:10.1093/nar/gkv1070. [17] Francisco E B,Jimena G.Alternative splicing as a regulator of development and tissue identity[J]. Nature Review of Molecular Cell Biology,2017,18(7):437-451.doi:10.1038/nrm.2017.27. [18] Zhu G,Li W,Zhang F,Guo W.RNA-seq analysis reveals alternative splicing under salt stress in cotton, Gossypium davidsonii[J]. BMC Genomics,2018,19(1):73.doi:10.1186/s12864-018-4449-8. [19] 杨海龙.玉米穗部低氮响应可变剪接的鉴定[D].北京:中国农业科学院,2015. Yang H L.Characterization of alternative splicing in response to low nitrogen in maize ears[D].Beijing:Chinese Academy of Agricultural Sciences,2015. [20] Jia X Y,He L H,Jing R L,Li R Z.Calreticulin:conserved protein and diverse functions in plants[J]. Physiologia Plantarum,2009,136(2):127-138.doi:10.1111/j.1399-3054.2009.01223.x. [21] Kim J H, Nguyen N H, Nguyen N T, Hong, S W, Lee H.Loss of all three calreticulins,CRT1,CRT2 and CRT3,causes enhanced sensitivity to water stress in Arabidopsis[J]. Plant Cell Reports,2013,32(12):1843-1853.doi:10.1007/s00299-013-1497-z. [22] Więsyk A,Lirski M,Fogtman A,Zagórski-Ostoja W, Góra-Sochacka A. Differences in gene expression profiles at the early stage of Solanum lycopersicum infection with mild and severe variants of potato spindle tuber viroid[J]. Virus Research,2020,286:198090.doi:10.1016/j.virusres.2020.198090. [23] 李淑一.不同授粉的度尾文旦柚裂果相关差异蛋白的研究[D].福州:福建农林大学,2009.doi:10.7666/d.y1515084. Li S Y.Study on the differential proteins of fruit dehiscent in different pollinated Duweiwendan pomelo[D].Fuzhou:Fujian Agriculture and Forestry University,2009. [24] Measham P F, Bound S A, Gracie A J, Wilson S J. Incidence and type of cracking in sweet cherry(Prunus avium L.)are affected by genotype and season[J]. Crop and Pasture Science,2009,60(10):1002-1008.doi:10.1071/CP08410. [25] Crofts A J,Leborgne-Castel N,Pesca M,VitaleA,Denecke J.BiP and calreticulin form an abundant complex that is independent of endoplasmic reticulum stress[J]. The Plant Cell,1998,10(5):813-823.doi:10.2307/3870667. [26] Koumanov K S.On the mechanisms of the sweet cherry(Prunus avium L.)fruit cracking:Swelling or shrinking?[J]. Scientia Horticulturae,2015,184:169-170.doi:10.1016/j.scienta.2015.01.002. [27] Song A P, Zhu X R, Chen F D, Gao H S, Jiang J F, Chen S M.A Chrysanthemum heat shock protein confers tolerance to abiotic stress[J]. International Journal Molecular Science,2014,15(3):5063-5078.doi:10.3390/ijms15035063. [28] Maimbo M, Ohnishi K, Hikichi Y, Yoshioka H, Kiba A. Induction of a small heat shock protein and its functional roles in Nicotiana plants in the defense response against Ralstonia solanacearum[J]. Plant Physiology,2007,145(4):1588-1599.doi:10.1104/pp.107.105353. [29] 李伟明, 陈晶晶, 段雅婕, 胡会刚, 庞振才, 胡玉林.番荔枝果实后熟过程多糖代谢与果实软化和采后裂果的关系[J].植物生理学报,2018,54(11):1727-1736.doi:10.13592/j.cnki.ppj.2018.0154 Li W M,Chen J J,Duan Y J,Hu H G,Pang Z C,Hu Y L.Effects of anti-ethylene treatments on polysaccharide metabolism,fruit softening and their relationship with postharvest cracking of atemoya fruit[J]. Plant Physiology Journal,2018,54(11):1727-1736. [30] Han J,Pan Y X,Wang X F,Zhang Y,Ma Z Y.Antisense expression of Gossypium barbadense UGD6 in Arabidopsis thaliana significantly alters cell wall composition[J]. Science China Life Sciences,2016,59:213-218.doi:10.1007/s11427-016-5004-y. [31] 陈凯莉,许轲,张贤聪,王亚楠,汪志辉,王迅.果实中果胶代谢相关酶基因的研究进展[J].园艺学报,2017,44(10):2008-2014.doi:10.16420/j.issn.0513-353x.2016-0846. Chen K L, Xu K, Zhang X C, Wang Y N, Wang Z H, Wang X.Advances in genes information involved in pectin metabolism in fruit[J]. Acta Hoticulturae Sinica, 2017, 44(10):2008-2014. |