OpenAlex Citation Counts

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OpenAlex is a bibliographic catalogue of scientific papers, authors and institutions accessible in open access mode, named after the Library of Alexandria. It's citation coverage is excellent and I hope you will find utility in this listing of citing articles!

If you click the article title, you'll navigate to the article, as listed in CrossRef. If you click the Open Access links, you'll navigate to the "best Open Access location". Clicking the citation count will open this listing for that article. Lastly at the bottom of the page, you'll find basic pagination options.

Requested Article:

Transcriptome Profiles Reveal the Crucial Roles of Hormone and Sugar in the Bud Dormancy of Prunus mume
Zhiyong Zhang, Xiaokang Zhuo, Kai Zhao, et al.
Scientific Reports (2018) Vol. 8, Iss. 1
Open Access | Times Cited: 143

Showing 1-25 of 143 citing articles:

I Want to (Bud) Break Free: The Potential Role of DAM and SVP-Like Genes in Regulating Dormancy Cycle in Temperate Fruit Trees
Vítor da Silveira Falavigna, Baptiste Guitton, Evelyne Costes, et al.
Frontiers in Plant Science (2019) Vol. 9
Open Access | Times Cited: 146

A Conceptual Framework for Winter Dormancy in Deciduous Trees
Erica Fadón, Eduardo Fernández, H. Behn, et al.
Agronomy (2020) Vol. 10, Iss. 2, pp. 241-241
Open Access | Times Cited: 133

Hormonal Orchestration of Bud Dormancy Cycle in Deciduous Woody Perennials
Jianyang Liu, Sherif M. Sherif
Frontiers in Plant Science (2019) Vol. 10
Open Access | Times Cited: 128

Experiments Are Necessary in Process-Based Tree Phenology Modelling
Heikki Hänninen, Koen Kramer, Karen Tanino, et al.
Trends in Plant Science (2018) Vol. 24, Iss. 3, pp. 199-209
Closed Access | Times Cited: 106

ABA and Bud Dormancy in Perennials: Current Knowledge and Future Perspective
Wenqiang Pan, Jiahui Liang, Juanjuan Sui, et al.
Genes (2021) Vol. 12, Iss. 10, pp. 1635-1635
Open Access | Times Cited: 66

Temperate Fruit Trees under Climate Change: Challenges for Dormancy and Chilling Requirements in Warm Winter Regions
Abdel-Moety Salama, Ahmed Ezzat, Hassan El-Ramady, et al.
Horticulturae (2021) Vol. 7, Iss. 4, pp. 86-86
Open Access | Times Cited: 56

Overexpression of Prunus DAM6 inhibits growth, represses bud break competency of dormant buds and delays bud outgrowth in apple plants
Hisayo Yamane, Masato Wada, C. Honda, et al.
PLoS ONE (2019) Vol. 14, Iss. 4, pp. e0214788-e0214788
Open Access | Times Cited: 72

From bud formation to flowering: transcriptomic state defines the cherry developmental phases of sweet cherry bud dormancy
Noémie Vimont, Mathieu Fouché, José Antonio Campoy, et al.
BMC Genomics (2019) Vol. 20, Iss. 1
Open Access | Times Cited: 66

Distinctive Gene Expression Patterns Define Endodormancy to Ecodormancy Transition in Apricot and Peach
Jiali Yu, Anna O. Conrad, Véronique Decroocq, et al.
Frontiers in Plant Science (2020) Vol. 11
Open Access | Times Cited: 52

Molecular advances in bud dormancy in trees
Jihua Ding, Kejing Wang, Shashank K. Pandey, et al.
Journal of Experimental Botany (2024) Vol. 75, Iss. 19, pp. 6063-6075
Open Access | Times Cited: 8

Growing in time: exploring the molecular mechanisms of tree growth
Rajesh Kumar Singh, Rishikesh P. Bhalerao, Maria E. Eriksson
Tree Physiology (2020) Vol. 41, Iss. 4, pp. 657-678
Open Access | Times Cited: 41

Decoding altitude-activated regulatory mechanisms occurring during apple peel ripening
Evangelos Karagiannis, Michail Michailidis, Γεωργία Τάνου, et al.
Horticulture Research (2020) Vol. 7, Iss. 1
Open Access | Times Cited: 41

Physiological and biochemical characterization of bud dormancy: Evolution of carbohydrate and antioxidant metabolisms and hormonal profile in a low chill peach variety
José Antonio Hernández, Pedro Díaz‐Vivancos, Gema Martínez-Sánchez, et al.
Scientia Horticulturae (2021) Vol. 281, pp. 109957-109957
Open Access | Times Cited: 38

GA3 is superior to GA4 in promoting bud endodormancy release in tree peony (Paeonia suffruticosa) and their potential working mechanism
Yuxi Zhang, Yanchao Yuan, Zejun Liu, et al.
BMC Plant Biology (2021) Vol. 21, Iss. 1
Open Access | Times Cited: 36

Plant dormancy research: from environmental control to molecular regulatory networks
Hisayo Yamane, Anil Kumar Singh, Janice E. K. Cooke
Tree Physiology (2021) Vol. 41, Iss. 4, pp. 523-528
Open Access | Times Cited: 33

How Is Global Warming Affecting Fruit Tree Blooming? “Flowering (Dormancy) Disorder” in Japanese Pear (Pyrus pyrifolia) as a Case Study
Akiyoshi Tominaga, Akiko Ito, Toshihiko Sugiura, et al.
Frontiers in Plant Science (2022) Vol. 12
Open Access | Times Cited: 27

The Dual Prey-Inactivation Strategy of Spiders—In-Depth Venomic Analysis of Cupiennius salei
Lucia Kuhn‐Nentwig, Nicolas Langenegger, Manfred Heller, et al.
Toxins (2019) Vol. 11, Iss. 3, pp. 167-167
Open Access | Times Cited: 42

Metabolic mechanisms underpinning vegetative bud dormancy release and shoot development in sweet cherry
Michail Michailidis, Evangelos Karagiannis, Γεωργία Τάνου, et al.
Environmental and Experimental Botany (2018) Vol. 155, pp. 1-11
Closed Access | Times Cited: 41

Identification of early and late flowering time candidate genes in endodormant and ecodormant almond flower buds
Ángela S. Prudencio, Frank A. Hoeberichts, F. Dicenta, et al.
Tree Physiology (2020) Vol. 41, Iss. 4, pp. 589-605
Open Access | Times Cited: 39

Fine tuning of hormonal signaling is linked to dormancy status in sweet cherry flower buds
Noémie Vimont, Adrián Schwarzenberg, Mirela Domijan, et al.
Tree Physiology (2020) Vol. 41, Iss. 4, pp. 544-561
Open Access | Times Cited: 33

Ascorbic acid and prunasin, two candidate biomarkers for endodormancy release in almond flower buds identified by a nontargeted metabolomic study
Jesús Guillamón Guillamón, Ángela S. Prudencio, José Enrique Yuste, et al.
Horticulture Research (2020) Vol. 7, Iss. 1
Open Access | Times Cited: 33

Integrated transcriptome and proteome analysis provides insight into chilling-induced dormancy breaking in Chimonanthus praecox
Zhineng Li, Ning Liu, Wei Zhang, et al.
Horticulture Research (2020) Vol. 7, Iss. 1
Open Access | Times Cited: 33

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