References:
[1]张微,李锡香.黄瓜花芽性别分化的研究进展与展望[J].华北农学报,2015,30(s1):74-80. [2]MALEPSZY S,NIEMIROWICZ-SZCZYTT K.Sex determination in cucumber (Cucumis sativus ) as a model system for molecular biology[J].Plant Science,1991,80(1):39-47.
[3]TANURDZIC M,BANKS J A.Sex-determining mechanisms in land plants[J].Plant Cell,2004,16:S61-S71.
[4]闫晨曦.影响植物新陈代谢的环境因素分析[J].现代园艺,2011(12x):4.
[5]汪俏梅,曾广文.苦瓜性别表现研究概况及展望[J].中国蔬菜,1995(4):50-53.
[6]马刘峰,易海艳,易霞,等.不同光周期和温度处理对黄瓜花芽分化的影响[J].北方园艺,2012(21):25-26.
[7]程国辉,秦智伟,冯卓,等.光周期和温度对黄瓜品种‘C09-123’性别分化的影响[J].北方园艺,2012(15):35-37.
[8]厉建梅,秦智伟,周秀艳,等.黄瓜雌性性状的遗传分析[J].中国农业科学,2011,44(15):3169-3176.
[9]刘欣童.低夜温下黄瓜雌性分化相关代谢与蛋白质变化的初步分析[D].哈尔滨:东北农业大学,2016.
[10]PRUVOT G,CUIN S,PELTIER G,et al.Characterization of a novel drought-induced 34-kDa protein located in the thylakoids of Solanum tuberosum L.plants[J].Planta,1996,198(3):471-479.
[11]滕蕾.Fibrillin转入甘蓝型油菜中的研究[D].雅安:四川大学,2006.
[12]CHEN R,TIAN M,WU X,et al.Differential global gene expression changes in response to low nitrogen stress in two maize inbred lines with contrasting low nitrogen tolerance[J].Genes & Genomics,2011,33(5):491.
[13]周慧梅,谢德颖,邹娟子,等.植物质体Fibrillin蛋白家族的起源、结构和功能[J].中国农业科技导报,2014,16(4):41-49.
[14]WUTTKE H G.Chromoplasts in Rosa rugosa:Development and chemical characterization of tubular elements[J].Zeitschrift Für Naturforschung C,1976,31(7-8):456-460.
[15]WINKENBACH F,FALK H,LIEDVOGEL B,et al.Chromoplasts of Tropaeolum majus L.:Isolation and characterization of lipoprotein elements[J].Planta,1976,128(1):23-28.
[16]KNOTH R,HANSMANN P,SITTE P.Chromoplasts of Palisota barteri,and the molecular structure of chromoplast tubules.[J].Planta,1986,168(2):167-174.
[17]EMTER O,FALK H,SITTE P.Specific carotenoids and proteins as prerequisites for chromoplast tubule formation[J].Protoplasma,1990,157(1-3):128-135.
[18]VISHNEVETSKY M,OVADIS M,ITZHAKI H,et al.Molecular cloning of a carotenoid-associated protein from Cucumis sativus corollas:Homologous genes involved in carotenoid sequestration in chromoplasts[J].Plant Journal for Cell & Molecular Biology,1996,10(6):1111-1118.
[19]HERNNDEZPINZN I,ROSS J H,BARNES K A,et al.Composition and role of tapetal lipid bodies in the biogenesis of the pollen coat of Brassica napus[J].Planta,1999,208(4):588-598.
[20]KESSLER F,SCHNELL D,BLOBEL G.Identification of proteins associated with plastoglobules isolated from pea (Pisum sativum L.) chloroplasts[J].Planta,1999,208(1):107-113.
[21]VIDI P A,KANWISCHER M,BAGINSKY S,et al.Tocopherol cyclase (VTE1) localization and vitamin E accumulation in chloroplast plastoglobule lipoprotein particles[J].Journal of Biological Chemistry,2006,281(16):11225-11234.
[22]SINGH D K,MCNELLIS T W.Fibrillin protein function:The tip of the iceberg?〖KG-*2〗[J].Trends in Plant Science,2011,16(8):432-441.
[23]GILLET B,BEYLY A,PELTIER G,et al.Molecular characterization of CDSP 34,a chloroplastic protein induced by water deficit in Solanum tuberosum L.plants,and regulation of CDSP 34 expression by ABA and high illumination[J].Plant Journal,1998,16(2):257-262.
[24]邹晓艳.黄瓜性型遗传规律及性别决定相关基因的分布和表达研究[D].北京:中国农业科学院,2007.
[25]YAMASAKI S,FUJII N,TAKAHASHI H.Characterization of ethylene effects on sex determination in cucumber plants[J].Sexual Plant Reproduction,2003,16(3):103-111.
[26]梁永宏,李广林,郭韬,等.黄瓜性型分化的分子机制[J].生命科学,2010(11):1177-1183.