Register      Login
Functional Plant Biology Functional Plant Biology Society
Plant function and evolutionary biology

Articles citing this paper

Cloning and characterisation of ripening-induced ethylene biosynthetic genes from non-climacteric pineapple (Ananas comosus) fruits

Christopher Ian Cazzonelli, Antonino Salvatore Cavallaro and José Ramón Botella
25(5) pp.513 - 518


37 articles found in Crossref database.

PpACS1b, a pear gene encoding ACC synthase, is regulated during fruit late development and involved in response to salicylic acid
Shi Haiyan, Wang Yanhui, Qi Aiyong, Zhang Yufeng, Xu Jianfeng, Wang Aibin, Zhang Yuxing
Scientia Horticulturae. 2013 164 p.602
Wild Crop Relatives: Genomic and Breeding Resources (2011)
d’Eeckenbrugge Geo Coppens, Sanewski Garth M., Smith Mike K., Duval Marie-France, Leal Freddy
Handbook of Pineapple Technology (2017)
Lobo María Gloria, Yahia Elhadi
New Evidence for the Role of Ethylene in Strawberry Fruit Ripening
Sun Jing-Hua, Luo Jing-Jing, Tian Lin, Li Chun-Li, Xing Yu, Shen Yuan-Yue
Journal of Plant Growth Regulation. 2013 32(3). p.461
Advances in Plant Ethylene Research (2007)
Obando J., Miranda C., Jowkar M. M., Moreno E., Sour M. K., Martínez J. A., Arús P., García-Mas J., Monforte A. J., Fernández-Trujillo J. P.
Production Practices and Quality Assessment of Food Crops (2004)
Michalczuk Lech
A pear 1-aminocyclopropane-1-carboxylate synthase gene preferentially expressed in leaves
Shi Haiyan, Zhang Yuxing
Acta Horticulturae. 2016 (1110). p.113
Genome-Wide Detection of SNP and SV Variations to Reveal Early Ripening-Related Genes in Grape
Xu Yanshuai, Gao Zhihong, Tao Jianmin, Jiang Weihua, Zhang Shijie, Wang Qiunan, Qu Shenchun, Liu Ji-Hong
PLOS ONE. 2016 11(2). p.e0147749
Vitamin B1 diversity and characterization of biosynthesis genes in cassava
Mangel Nathalie, Fudge Jared B, Fitzpatrick Teresa B, Gruissem Wilhelm, Vanderschuren Hervé
Journal of Experimental Botany. 2017 68(13). p.3351
Proteomics in Food Science (2017)
Claudius Marondedze, Ludivine Thomas
Prickly pear polygalacturonase gene: cDNA cloning and transcript accumulation during ethylene treatment, cold storage and wounding
de Fátima Rosas-Cárdenas Flor, Valderrama-Cháirez María Leonor, Cruz-Hernández Andrés, Paredes-López Octavio
Postharvest Biology and Technology. 2007 44(3). p.254
Ripening of grape berries can be advanced or delayed by reagents that either reduce or increase ethylene levels
Böttcher Christine, Harvey Katie E., Boss Paul K., Davies Christopher
Functional Plant Biology. 2013 40(6). p.566
Molecular Inversion Probe: A New Tool for Highly Specific Detection of Plant Pathogens
Lau Han Yih, Palanisamy Ramkumar, Trau Matt, Botella Jose R., Vinatzer Boris Alexander
PLoS ONE. 2014 9(10). p.e111182
Crop Post‐Harvest: Science and Technology (2012)
Adikaram Nimal, Abayasekara Charmalie
Cassava geminivirus agroclones for virus-induced gene silencing in cassava leaves and roots
Lentz Ezequiel Matias, Kuon Joel-Elias, Alder Adrian, Mangel Nathalie, Zainuddin Ima M., McCallum Emily Jane, Anjanappa Ravi Bodampalli, Gruissem Wilhelm, Vanderschuren Hervé
Plant Methods. 2018 14(1).
Transcription Factor RIPENING INHIBITOR and Its Homologs in Regulation of Fleshy Fruit Ripening of Various Plant Species
Slugina M. A.
Russian Journal of Plant Physiology. 2021 68(5). p.783
Postharvest Biology and Technology of Tropical and Subtropical Fruits (2011)
Hassan A., Othman Z., Siriphanich J.
Grapevine Molecular Physiology & Biotechnology (2009)
Davies C., Böttcher C.
Characteristics evaluation of transgenic delay-flowering pineapple (Ananas comosusL. Merr.)
Tu Y.K., Tseng C.S., Wu M.T., Chen H.W.
Acta Horticulturae. 2017 (1166). p.77
Purification and characterisation of two ACC oxidases expressed differentially during leaf ontogeny in white clover
Gong Deming, McManus Michael T.
Physiologia Plantarum. 2000 110(1). p.13
Proteomic analysis during capsicum ripening reveals differential expression of ACC oxidase isoform 4 and other candidates
Aizat Wan M., Able Jason A., Stangoulis James C. R., Able Amanda J.
Functional Plant Biology. 2013 40(11). p.1115
Genetic transformation of perennial tropical fruits
Gómez-Lim Miguel A., Litz Richard E.
In Vitro Cellular & Developmental Biology - Plant. 2004 40(5). p.442
Characterization and Potential Action Mode Divergences of Homologous ACO1 Genes during the Organ Development and Ripening Process between Non-Climacteric Grape and Climacteric Peach
Luo Linjia, Zhao Pengcheng, Su Ziwen, Huang Yuqing, Zhang Yanping, Mu Qian, Xuan Xuxian, Qu Ziyang, Yu Mucheng, Qi Ziyang, Aziz Rana Badar, Gong Peijie, Xie Zhenqiang, Fang Jinggui, Wang Chen
International Journal of Molecular Sciences. 2024 25(2). p.789
Characterization and tissue-regulated expression of genes involved in pineapple (Ananas comosus L.) root development
Neuteboom Leon W, Kunimitsu Wendy Y, Webb David, Christopher David A
Plant Science. 2002 163(5). p.1021
Fruits and Nuts (2007)
Carlier Jorge Dias, d’Eeckenbrugge Geo Coppens, Leitão José Manuel
Genomic analyses of the CAM plant pineapple
Zhang J., Liu J., Ming R.
Journal of Experimental Botany. 2014 65(13). p.3395
Ethylene Response of Plum ACC Synthase 1 (ACS1) Promoter is Mediated through the Binding Site of Abscisic Acid Insensitive 5 (ABI5)  
Sadka Avi, Qin Qiaoping, Feng Jianrong, Farcuh Macarena, Shlizerman Lyudmila, Zhang Yunting, Toubiana David, Blumwald Eduardo
Plants. 2019 8(5). p.117
Production and postharvest handling of low acid hybrid pineapple
Chen N.J., Paull R.E.
Acta Horticulturae. 2017 (1166). p.25
Biology and Biotechnology of the Plant Hormone Ethylene II (1999)
Cazzonelli C. I., Cavallaro A. S., Botella J. R.
Postharvest Biology and Technology of Tropical and Subtropical Fruits (2011)
Islas-Osuna M.A., Tiznado-Hernández M.E.
Pineapple translation factor SUI1 and ribosomal protein L36 promoters drive constitutive transgene expression patterns in Arabidopsis thaliana
Koia Jonni, Moyle Richard, Hendry Caroline, Lim Lionel, Botella José Ramón
Plant Molecular Biology. 2013 81(4-5). p.327
Microarray analysis of gene expression profiles in ripening pineapple fruits
Koia Jonni H, Moyle Richard L, Botella Jose R
BMC Plant Biology. 2012 12(1).
The pineapple AcMADS1 promoter confers high level expression in tomato and Arabidopsis flowering and fruiting tissues, but AcMADS1 does not complement the tomato LeMADS-RIN (rin) mutant
Moyle Richard L., Koia Jonni H., Vrebalov Julia, Giovannoni James, Botella Jose R.
Plant Molecular Biology. 2014 86(4-5). p.395
Fruit and Vegetable Biotechnology (2002)
Botella J.R.
Advances in Plant Ethylene Research (2007)
Kiss E., Balagh A., Tisza V., Koncz T., Heszky L.
A Non-Climacteric Fruit Gene CaMADS-RIN Regulates Fruit Ripening and Ethylene Biosynthesis in Climacteric Fruit
Dong Tingting, Chen Guoping, Tian Shibing, Xie Qiaoli, Yin Wencheng, Zhang Yanjie, Hu Zongli, Blazquez Miguel A.
PLoS ONE. 2014 9(4). p.e95559
Handbook of Pineapple Technology (2017)
Paull Robert E., Bartholomew Duane P., Chen Ching‐Cheng

Committee on Publication Ethics


Abstract Export Citation Get Permission