|Table of Contents|

The Impact of Photoperiod and Temperature on the Sex Differentiation of Cucumber Varieties ‘C09-123’(PDF)

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2012年15期
Page:
35-37
Research Field:
Publishing date:

Info

Title:
The Impact of Photoperiod and Temperature on the Sex Differentiation of Cucumber Varieties ‘C09-123’
Author(s):
CHENG Guo-huiQIN Zhi-weiFENG ZhuoWANG Chun-hua
College of Horticulture,Northeast Agriculture University,Harbin,Heilongjiang 150030
Keywords:
cucumbersex differentiationtemperaturephotoperiod
PACS:
S 642.2
DOI:
-
Abstract:
In this study,the ‘C09-123’ were the investigation growth of male and female flowers on the main stem.Flower bud differentiation was observated by physical dissection microscope to explore the temperature and photoperiod on the impact of sex differentiation of cucumber.The results showed that the temperature and photoperiod on sex differentiation of cucumber had an impact,and temperature on the sexual differentiation of cucumber than photoperiod.The 12℃ produced the most female flowers,and the 24℃ produced no female flowers.

References:

[1]Tsao T H.Sex expression in flowering[J].Acta Phytophysiol Sin,1988,14:203-207.

[2]Tanurdzic M,Banks J A.Sex-determining mechanisms in land plants[J].Plant Cell,2004,16:61-71.

[3]Malepszy S,Niemirowicz-Szczytt K.Sex determination in cucumber (Cucumis sativus) as a model system for molecular biology[J].Plant Science,1991,80:39-47.

[4]曹宗巽,李佳格,金以丰,.在环境因子影响下黄瓜雌雄花比例之改变[J].北京大学学报,1957(2):233-248.

[5]陈惠明.黄瓜性别决定基因遗传规律、分子标记及应用[D].长沙:湖南农业大学,2005.

[6]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.

[7]Yamasaki S,Fujii N.The Mlocus and ethylene-controlled sex determination in andromonoecious cucumber plants[J].Plant Cell Physio,2001,42(6):608-619.

[8]时秋香.黄瓜性别决定基因M与强雌性基因QTL定位[D].泰安:山东农业大学,2009.

[9]Boualem A,Troadec C,Kovalski I,et al.A conserved ethylene biosynthesis enzyme leads to andromonoecy in two cucumis species[J].PLoS ONE,2009,4(7):6144.

[10]娄群峰,陈劲枫,Molly Jah,.黄瓜全雌性基因连锁的AFLPSCAR分子标记[J].园艺学报,2005,32(2):256-261.

[11]梁文科,张世煌,戚廷香,.热带温带玉米群体产量性状遗传力及遗传方差分量的剖析[J].中国农业科学,2006,39(11):2178-2185.

[12]Kooistra E.Femaleness in breeding glasshouse cucumbers[J].Euphytica,1967,16:1-17.

[13]谭其猛.蔬菜育种[M].北京:农业出版社,1980.

[14]Cantliffe D J.Alteration of sex expression in cucumber due to changes in temperature,light intensity and photoperiod[J].Journal of the American Society for Horticultural Science,1981,106:133-136.

[15]Ito H,Saito T.Factiors responsible for the sex expression of the cucumber plant .Physiological factors associated with the sex expression of flowers[J].Tohoku Journal of Agricultural Research,1960,11(4):287-308.

[16]Wu N B,Tan F,Xiao W J,et al.Effects of light intensity on morphologic and physiological indexes and safrol content of Cinnamomum pauciflorum seedlings[J].Acta Ecologica Sinica,2005,25(5):1159-1164.

[17]Rudich J,Halevy A H,Kedar N.The level of phyto hormonesin monoecious and gynoecious cucumbers as affected by photoperiod and ethephon[J].Plant Physiology,1972,40:585-590.

[18]厉建梅,秦智伟,周秀艳,.黄瓜雌性性状的遗传分析[J].中国农业科学,2011,44(15):3169-3176.

[19]钟海秀,秦智伟.植物生长物质对黄瓜植株性别分化的影响[J].中国蔬菜,2010(6):1-7.

[20]程立宝,秦智伟,刘宏宇,.黄瓜CS-ACS1G基因克隆及不同时空表达的研究[J].园艺学报,2005,325:765-766.

[21]Chen X H,Zeng G W,Cao B S.Relationship between endogenous plant hormones and floral sex differentiation in cucumber (Cucumis sativus)[J].Plant Physiology Communications,2002,38:317-320.

[22]汪本里,曹宗巽.离体培养下黄瓜顶芽性别分化的研究初报[J].植物生理学通讯,1963(3):1-6.

[23]Yin T J,Quinn J A.Tests of a mechanistic model of one hormone regulating both sexes in Cucumis sativus (Cucurbitacese)[J].American Journal of Botany,1995,82(12):1537-1546.

[24]杨玲玲,陈敏,白书农,.黄瓜雄花发育过程中心皮原基形态、代谢及基因表达特征的研究[J].科学通报,1999,44(23):2509-2513.

[25]程立宝,秦智伟,刘宏宇,.黄瓜CS-ACS1G基因特异结构、功能以及应用的研究[J].园艺学报,2005,32(5):840-843.


Memo

Memo:
-
Last Update: 2014-08-28