您好,欢迎访问中国热带农业科学院 机构知识库!

Phenological growth stages of pineapple (Ananas comosus) according to the extended Biologische Bundesantalt, Bundessortenamt and Chemische Industrie scale

文献类型: 外文期刊

作者: Zhang, H. N. 1 ; Sun, W. S. 1 ; Sun, G. M. 1 ; Liu, S. H. 1 ; Li, Y. H. 1 ; Wu, Q. S. 1 ; Wei, Y. Z. 1 ;

作者机构: 1.Chinese Acad Trop Agr Sci, South Subtrop Crops Res Inst, Minist Agr Trop Fruit Biol, Key Lab, Zhanjiang 524091, Peoples R China

关键词: BBCH scale;pineapple;phenology;temperature

期刊名称:ANNALS OF APPLIED BIOLOGY ( 影响因子:2.75; 五年影响因子:2.942 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Phenological studies are important to understand the influence of climate dynamics on vegetative and reproductive growth of pineapple. In this study, 10 principal stages (0-9) and 48 secondary stages in the entire growth cycle of pineapple were accurately detailed using the extended Biologische Bundesantalt, Bundessortenamt and Chemische Industrie scale. This study focused on the entire flower and fruit development stages of pineapple and presented the correlation between phenophase and temperature. Normative descriptions can facilitate the implementation of production management measures and guidance for scientific experimental design.

  • 相关文献

[1]Cloning and expression analysis of a partial LEAFY homologue from pineapple (Ananas comosus (L.) Merr.). Lv Lingling,Sun Guangming,Zhang Jianxia,Zeng Songjun,Duan Jun,Lv Lingling,Xie Jianghui,Liu Shenghui,Liu Yuge,Wei Changbin,Lv Lingling,Sun Guangming. 2011

[2]Effects of wax treatment on quality and postharvest physiology of pineapple fruit in cold storage. Hu, Huigang,Li, Xueping,Chen, Weixin,Hu, Huigang,Dong, Chen. 2011

[3]A SIMPLE AND EFFICIENT METHOD FOR ISOLATION OF PINEAPPLE PROTOPLASTS. Zhao, Weifeng,Wei, Changbin,Sun, Guangming,Zhao, Weifeng,Yang, Wenxiu. 2011

[4]Cloning and Expression Analysis of a PISTILLATA Homologous Gene from Pineapple (Ananas comosus L. Merr). Lv, Ling-Ling,Xie, Jiang-Hui,Liu, Yu-Ge,Wei, Chang-Bin,Liu, Sheng-Hui,Sun, Guang-Ming,Duan, Jun,Zhang, Jian-Xia. 2012

[5]Aroma Volatile Compounds from Two Fresh Pineapple Varieties in China. Zheng, Liang-Yong,Sun, Guang-Ming,Liu, Yu-Ge,Lv, Ling-Ling,Wei, Chang-Bin,Yang, Wen-Xiu,Zhao, Wei-Feng. 2012

[6]Comparisons and Correlations of Phenolic Profiles and Anti-oxidant Activities of Seventeen Varieties of Pineapple. Du, Liqing,Sun, Guangming,Zhang, Xiumei,Liu, Yuge,Prinyawiwatkul, Witoon,Xu, Zhimin,Shen, Yixiao. 2016

[7]Characteristic Aroma Compounds from Different Pineapple Parts. Wei, Chang-Bin,Liu, Sheng-Hui,Liu, Yu-Ge,Lv, Ling-Ling,Sun, Guang-Ming,Yang, Wen-Xiu.

[8]Changes in Sucrose Content and Related Enzyme Activities during Pineapple Inflorescence Development. Lu, Xinhua,Sun, Guangmin,Zhang, Xiumei,Dou, Meian. 2011

[9]Phylogeography of pink pineapple mealybugs, Dysmicoccus brevipes (Cockerell) reveals the history of pineapple introduction and cultivation in China. He, Y. B.,Zhan, R. L.,Sun, G. M.,Wu, J. B.,Zhao, Y. L.. 2015

[10]Genetic Diversity in Various Accessions of Pineapple [Ananas comosus (L.) Merr.] Using ISSR and SSR Markers. He, Jun-hu,Chen, Hua-rui,Chen, Ye-yuan,Qiao, Fei,Wang, Jian-sheng. 2017

[11]Changes in endogenous hormone concentrations during inflorescence induction and development in pineapple (Ananas comosus cv. Smooth Cayenne) by ethephon. Liu Sheng-hui,Zang Xiao-ping,Sun Guang-ming,Liu Sheng-hui,Zang Xiao-ping,Sun Guang-ming. 2011

[12]Isolation and characterization of a FLOWERING LOCUS T homolog from pineapple (Ananas comosus (L.) Merr). Duan, Jun,Lv, LingLing,Xie, JiangHui,Wei, ChangBin,Liu, Yuge,Liu, ShengHui,Sun, GuangMing.

[13]Effects of Wax Treatment on the Physiology and Cellular Structure of Harvested Pineapple during Cold Storage. Hu, Huigang,Li, Xueping,Chen, Weixin,Hu, Huigang,Dong, Chen.

[14]Physico-Chemical Properties, Antioxidant Activity and Mineral Contents of Pineapple Genotypes Grown in China. Lu, Xin-Hua,Sun, De-Quan,Wu, Qing-Song,Liu, Sheng-Hui,Sun, Guang-Ming.

[15]Mapping tropical forests and deciduous rubber plantations in Hainan Island, China by integrating PALSAR 25-m and multi-temporal Landsat images. Chen, Bangqian,Li, Xiangping,Xiao, Xiangming,Zhao, Bin,Chen, Bangqian,Yang, Chuan,Wu, Zhixiang,Sun, Rui,Lan, Guoyu,Xie, Guishui,Xiao, Xiangming,Dong, Jinwei,Qin, Yuanwei,Xiao, Xiangming,Dong, Jinwei,Qin, Yuanwei,Kou, Weili. 2016

[16]NITROGEN DOSES AND PLANT DENSITY AFFECT PHENOLOGY AND YIELD OF SWEET CORN. Khan, Zafar Hayat,Khalil, Shad Khan,Khan, Zafar Hayat,Iqbal, Amjad,Shah, Farooq,Iqbal, Amjad,Ullah, Ikram,Ali, Muhammad,Shah, Tariq,Wu, Wei. 2017

[17]Mapping deciduous rubber plantations through integration of PALSAR and multi-temporal Landsat imagery. Dong, Jinwei,Xiao, Xiangming,Jin, Cui,Biradar, Chandrashekhar,Dong, Jinwei,Xiao, Xiangming,Jin, Cui,Biradar, Chandrashekhar,Chen, Bangqian,Torbick, Nathan,Zhang, Geli.

[18]Phenological growth stages of lychee (Litchi chinensis Sonn.) using the extended BBCH-scale. Wei, Y. Z.,Li, W. C.,Xie, J. H.,Wang, Y. C.,Liu, L. Q.,Shi, S. Y.,Zhang, H. N.. 2013

[19]Application of extended Biologische Bundesantalt, Bundessortenamt and Chemische Industrie scale for phenological studies in longan (Dimocarpus longan). Shi, S. Y.,Li, W. C.,Zhang, H. N.,Liu, L. Q.,Shu, B.,Liang, Q. Z.,Xie, J. H.,Wei, Y. Z.,Shi, S. Y.,Liang, Q. Z.,Xie, J. H..

[20]Superior aluminium (Al) tolerance of Stylosanthes is achieved mainly by malate synthesis through an Al-enhanced malic enzyme, SgME1. Sun, Lili,Liang, Cuiyue,Chen, Zhijian,Liu, Pandao,Tian, Jiang,Liao, Hong,Sun, Lili,Liu, Pandao,Liu, Guodao.

作者其他论文 更多>>