Scientia Agricultura Sinica ›› 2011, Vol. 44 ›› Issue (10): 2101-2108.doi: 10.3864/j.issn.0578-1752.2011.10.015

• HORTICULTURE • Previous Articles     Next Articles

Effect of High Temperature on the Flower Development of    Sweet Cherry in Solar Greenhouse

 LI  Yan, LI  Ling, LI  Shao-Xuan, WANG  Hui, YE  Bao-Xing, GAO  Dong-Sheng   

  1. 1.山东农业大学园艺科学与工程学院/作物生物学国家重点实验室/国家苹果工程技术研究中心,山东泰安 271018
    2.山东农业大学生命科学学院/作物生物学国家重点实验室,山东泰安 271018
  • Received:2010-12-22 Online:2011-05-15 Published:2011-03-01

Abstract: 【Objective】 The aim of the experiment is to explore the reasons of low flowering quality of cherry cultured in greenhouse.【Method】 Effects of high temperature on flower development and flowering time of sweet cherry were studied using 4-year-old potted ‘Hongdeng’ sweet cherry (Prunus avium L. Hongdeng) trees. 【Result】 Results showed that the development of reproductive organs and the appearances of flower organs were significantly affected by high temperature of 35℃during sprouting period. Earlier high temperature had stronger inhibitory effect on the development of the stamens than on the pistils, leading to brown stamens, even abortive stamen. The florescence was also shortened significantly. As high temperature got close to bud sprouting, the rate of blasted pistil and curled corolla increased, and the first flowering dates were affected more obviously. No exceptional megaspores were found in all high temperature treatments. 【Conclusion】 The results showed that the developing pistil and stamen organs had different sensitive stages and sensitivities to high temperature during the sprouting period.

Key words: sweet cherry, high temperature, flower organs, pistil, stamen

[1]边卫东, 邓艳华, 朱育贤, 秦  瑞, 陈玉林. 甜樱桃胚珠、花粉发育与温度变化的关系. 果树学报, 2006, 23(4): 609-612.

Bian W D, Deng Y H, Zhu Y X, Qin R, Chen Y L. Study on the relationship between the development of ovule and pollen of sweet cherry and the effect of temperature. Journal of Fruit Science, 2006, 23(4): 609-612. (in Chinese)

[2]Higuchi H, Utsunomiya N, Sakuratani T. High temperature effects on cherimoya fruit set, growth and development under greenhouse conditions. Scientia Horticulturae, 1998, 77: 23-31.

[3]Zhu L H, Borsboom O, Tromp J. The effect of temperature on flower-bud formation in apple including some morphological aspects. Scientia Horticulturae, 1997, 70: 1-8.

[4]Nava G A, Dalmago G A, Bergamaschi H, Paniz R, Santos R P, Marodin G A B. Effect of high temperatures in the pre-blooming and blooming periods on ovule formation, pollen grains and yield of ‘Granada’ peach. Scientia Horticulturae, 2009, 122: 37-44.

[5]周碧燕, 陈厚彬, 向炽华, 刘伟强, 李  宁, 胡志群, 黄旭明, 张 思.‘三月红’荔枝不同温度处理的成花效应. 园艺学报, 2010, 37(7): 1041-1046.

Zhou B Y, Chen H B, Xiang Z H, Liu W Q, Li N, Hu Z Q, Huang X M, Zhang S. Flowering of ‘Sanyuehong’ litchi with treatments of different temperature regimes. Acta Horticulturae Sinica, 2010, 37(7): 1041-1046. (in Chinese)

[6]Beppu K, Okamoto S, Sugiyama A, Kataoka I. Effects of temperature on flower development and fruit set of ‘Satohnishiki’ sweet cherry. Journal of the Japanese Society for Horticultural Science, 1997, 65(4): 707-712.

[7]Beppu K, Ikeda T, Kataoka I. Effect of high temperature exposure time during flower bud formation on the occurrence of double pistils in ‘Satohnishiki’ sweet cherry. Scientia Horticulturae, 2001, 87: 77-84.

[8]胡建江, 李文峰. 日光温室大樱桃栽培技术. 中国果菜, 2009 (1): 25.

Hu J J, Li W F. The cultivation technology of conservatory sweet cherry. China Fruit & Vegetable, 2009 (1): 25. (in Chinese)

[9]叶正文, 杜纪红, 苏明申, 李六林, 张绍铃. 高温对桃花粉发育及小孢子产生的影响. 园艺学报, 2010, 37(3): 355-362.

Ye Z W, Du J H, Su M S, Li L L, Zhang S L. Effects of High Temperature on the microsporogenesis and pollen development of peach. Acta Horticulture Sinica, 2010, 37(3): 355-362. (in Chinese)

[10]沈元月, 郭家选, 刘成连, 贾克功. 温度对桃花器官发育的影响. 园艺学报, 1999, 26(1): 1-6.

Shen Y Y, Guo J X, Liu C L, Jia K G. Effect of temperature on flower organs of early flat peach. Acta Horticulturae Sinica, 1999, 26(1): 1-6. (in Chinese)

[11]陈  镇, 李永强, 陈文荣, 辛德东, 郭卫东. 温度对短柄樱桃花芽萌发及若干生理指标的影响. 浙江师范大学学报: 自然科学版, 2010, 33(2): 210-215.

Chen Z, Li Y Q, Chen W R, Xin D D, Guo W D. Effects of temperatures on the flower bud germ ination and some physiologica l indexes of Cerasus pseudocerasus. Journal of Zhejiang Normal University: Natural Science, 2010, 33(2) : 210-215. (in Chinese)

[12]胡适宜. 被子植物胚胎学. 北京: 高等教育出版社, 1982: 23-27.

Hu S Y. Embryology of Angiosperms. Beijing: High Education Press, 1984: 23-27. (in Chinese)

[13]利容千, 曾子申, 刘立华. 高温对水稻花粉的形成与发育影响的细胞学观察. 湖北农业科学, 1980(3):1-3, 41.

Li R Q, Zeng Z S, Liu L H. Cytological Observation on the high temperature effects to rice pollen’s formation and development. Hubei Agricultural Sciences, 1980(3):1-3, 41. (in Chinese)

[14]Ormrod D P, Woolley C J, Eaton G W, Stobbe E H. Effect of temperature on embryo sac development in Phaseolus valgaris L. Canadian Journal of Botany, 1967, (45): 948-951.

[15]Saini H S, Sedgley M, Aspinall D. Developmental anatomy in wheat of male sterility induced by heat stress, water deficit or abscisic acid. Australian Journal of Plant Physiology, 1984, 11(2): 243-253.

[16]Matsui T, Omasa K, Horie T. Comparison between anthers of two rice (Oryza sativa L.) cultivars with tolerance to high temperatures at flowering or susceptibility. Plant Production Science, 2001 (4): 36-40.

[17]Matsui T, Omasa K. Rice (Oryza sativa L.) cultivars tolerant to high temperature at flowering anther characteristics. Annals of Botany, 2002, 89: 683-687.

[18]Prasad P V V, Boote K J, Allen J, Sheehy J E, Thomas J M G. Species, ecotype and cultivar differences in spikelet fertility and harvest index of rice in response to high temperature stress. Field Crops Research, 2005, 95: 398-411.

[19]Polowick P L, Sawhney V K. Temperature effects on male fertility and flower and fruit development in Capsicum annuum L. Scientia Horticulturae, 1985, 25: 117-127.

[20]Rudich J, Zamski E, Regev Y. Genotypic variation for sensitivity to high temperature in the tomato, pollination and fruit set. Botanical Gazatte, 1977, 138(4): 448-452.

[21]王世平, 袁彩娟, 戴韵婷, 舒 缓, 杨天仪, 张才喜. 上海地区栽培的欧洲甜樱桃花器发育的观察. 园艺学报, 2004, 31(3): 357-359.

Wang S P, Yuan C J, Dai Y T, Shu H, Yang T Y, Zhang C X. Development of flower organs in sweet cherry in Shanghai area. Acta Horticulturae Sinica, 2004, 31(3):357-359. (in Chinese)

[22]Beppu K, Kataoka I. Artificial shading reduces the occurrence of double pistils in ‘Satohnishiki’ sweet cherry. Scientia Horticulturae, 2000, 83: 241-247.

[23]Beppu K, Kataoka I. High temperature rather than drought stress is responsible for the occurrence of double pistils in ‘Satohnishiki’ sweet cherry. Scientia Horticulturae, 1999, 81: 125-134.

[24]张桂莲, 陈立云, 张顺堂, 刘国华, 唐文帮, 李梅华, 雷东阳, 陈信波. 高温胁迫对水稻花粉粒性状及花药显微结构的影响. 生态学报, 2008, 28(3): 1089-1097.

Zhang G L, Chen L Y, Zhang S T, Liu G H, Tang W B, Li M H, Lei D Y, Chen X B. Effects of high temperature stress on pollen characters and anther microstructure of rice. Acta Ecologica Sinica, 2008, 28(3): 1089-1097. (in Chinese)

[25]杨国虎. 玉米花粉花丝耐热性研究进展.种子, 2005, 24 (2): 47-51.

Yang G H. Progress in research on the heat resisting property of mealie pollen and pistil. Seed, 2005, 24 (2): 47-51. (in Chinese)

[26]邱东萍, 黄完基, 周桂红. 柱头外露棉花柱长度与花器长度的相关及温度的影响. 江西农业大学学报, 2004, 26(1): 103-106.

Qiu D P, Huang W J, Zhou G H. Correlation between the style length and the flower length of CGSS and the effect of temperature on the style length. Acta Agriculturae Universitatis Jiangxiensis, 2004, 26(1): 103-106. (in Chinese)

[27]赵德法, 王安乐, 陈朝辉. 持续高温的发生规律对农业生产的影 响. 山西农业科学, 2004, 31(1): 76-78.

Zhao D F, Wang A L, Chen C H. Study on outbreak regularity of continuous high temperature and its influence to agricultural Production. Journal of Shanxi Agricultural Sciences, 2004, 31(1): 76-78. (in Chinese)
[1] MENG Hui, LUO BingYu, LU ZhengYu, WANG Peng, KANG DongRu, ZHENG ChengShu, WANG WenLi. Cloning of CmASMT and Its Role in Thermotolerance of Chrysanthemum [J]. Scientia Agricultura Sinica, 2025, 58(8): 1617-1626.
[2] TANG Yu, LEI BiXin, WANG ChuanWei, YAN XuanTao, WANG Hao, ZHENG Jie, ZHANG WenJing, MA ShangYu, HUANG ZhengLai, FAN YongHui. Response Mechanism of Anthocyanin Accumulation in Colored Wheat to Post-Anthesis High Temperature Stress [J]. Scientia Agricultura Sinica, 2025, 58(6): 1083-1101.
[3] SU Ming, LI FanGuo, HONG ZiQiang, ZHOU Tian, LIU QiangJuan, BAN WenHui, WU HongLiang, KANG JianHong. Antioxidant Characterization of Nitrogen Application for Mitigating Potato Senescence Post-Flowering Under High Temperature Stress [J]. Scientia Agricultura Sinica, 2025, 58(4): 660-675.
[4] DING Ning, QI EnFang, JIA XiaoXia, HUANG Wei, MA LiRong, LI JianWu, YAN RuNan. Screening and Identification of miRNAs in Potato Seedlings in Response to High Temperature Stress [J]. Scientia Agricultura Sinica, 2025, 58(22): 4589-4602.
[5] LEI BiXin, YU YongBo, ZHANG MingTong, CUI GuoJi, HONG JiaWen, HU Tao, YOU AiXin, ZHANG WenJing, MA ShangYu, HUANG ZhengLai, FAN YongHui. Impact of Post-Anthesis Heat Stress on Nitrogen Use Efficiency and Yield Components in Wheat [J]. Scientia Agricultura Sinica, 2025, 58(19): 3837-3856.
[6] LI PeiSong, LU YongDi, GUO Yu, ZHANG QiPeng, LIU TaoFen, WANG TianHe, YANG MingFeng, XIANG Dao, TIAN JingShan, ZHANG WangFeng. The Regional Distribution of Raw Cotton Quality in Xinjiang Based on Notarized Inspection Data for Cotton [J]. Scientia Agricultura Sinica, 2025, 58(1): 58-74.
[7] LI YongFei, LI ZhanKui, ZHANG ZhanSheng, CHEN YongWei, KANG JianHong, WU HongLiang. Effects of Postponing Nitrogen Fertilizer Application on Flag Leaf Physiological Characteristics and Yield of Spring Wheat Under High Temperature Stress [J]. Scientia Agricultura Sinica, 2024, 57(8): 1455-1468.
[8] LUO LiDan, CHEN JiaMing, AN Qi, LIU Lei, SUN QinZhe, LIU Huan, WANG SenShan, SONG LiWen. Effects of Extreme High Temperature on Trehalose Content and Trehalose Transporter Gene in Tetranychus truncatus [J]. Scientia Agricultura Sinica, 2024, 57(6): 1091-1101.
[9] SU XiaoYu, TAN ZhengWei, LI ChunMing, LI Lei, LU DanDan, YU YongLiang, DONG Wei, AN SuFang, YANG Qing, SUN Yao, XU LanJie, YANG HongQi, LIANG HuiZhen. Analysis of Genome-Wide Methylation Differences and Associated Gene Expression of Sesame Varieties Under High Temperature Stress [J]. Scientia Agricultura Sinica, 2024, 57(24): 4825-4838.
[10] GUO Ya, REN Hao, WANG HongZhang, ZHANG JiWang, ZHAO Bin, REN BaiZhao, LIU Peng. High Temperature and Drought Combined Stress Inhibited Photosystem Ⅱ Performance and Decreased Grain Yield of Summer Maize [J]. Scientia Agricultura Sinica, 2024, 57(21): 4205-4220.
[11] RONG YaSi, LI Feng, ZHANG PengYu, WANG DongYong, SU XiaoYu, TIAN Yuan, GAO TongMei. Evaluation of High Temperature Tolerance and Selection of Sesame (Sesamum indicum L.) Cultivars at Full Flowering Stage Based on Principal Components-Cluster Analysis [J]. Scientia Agricultura Sinica, 2024, 57(20): 3957-3973.
[12] XU TianJun, LÜ TianFang, LI ZiHao, ZHANG Yong, LIU HongWei, LIU YueE, CAI WanTao, ZHANG RuYang, SONG Wei, XING JinFeng, ZHAO JiuRan, WANG RongHuan. Comparison of Heat Tolerance of Maize Hybrids and Their Parental Inbreds with Different Genotypes [J]. Scientia Agricultura Sinica, 2024, 57(2): 403-415.
[13] SHI XinRui, HAN BaiShu, WANG ZiQian, ZHANG YuanLing, LI Ping, ZONG YuZheng, ZHANG DongSheng, GAO ZhiQiang, HAO XingYu. Investigation on the Effects of Climate Change on the Growth and Yield of Different Maturity Winter Wheat Varieties in Northern China Based on the APSIM Model [J]. Scientia Agricultura Sinica, 2023, 56(19): 3772-3787.
[14] MU XinYuan, LÜ ShanShan, LU LiangTao, LIU TianXue, LI ShuYan, XUE ChangYing, WANG HongWei, ZHAO Xia, XIA LaiKun, TANG BaoJun. Effects of Tassel Sizes on Post-Flowering Dry Matter Accumulation and Yield of Different Maize Varieties Under High Temperature Stress During Pollination [J]. Scientia Agricultura Sinica, 2023, 56(15): 2880-2894.
[15] YU QiLong,HAN YingYan,HAO JingHong,QIN XiaoXiao,LIU ChaoJie,FAN ShuangXi. Effect of Exogenous Spermidine on Nitrogen Metabolism of Lettuce Under High-Temperature Stress [J]. Scientia Agricultura Sinica, 2022, 55(7): 1399-1410.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!