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Review Article

Advances in improvement of quality and resistance in a multipurpose crop: sea buckthorn

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Pages 126-144 | Received 29 Aug 2011, Accepted 05 Mar 2012, Published online: 08 Jun 2012

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G. Urbinati, P. Nota, A. Frattarelli, S. Lucioli, C. Forni & E. Caboni. (2020) Morpho-physiological responses of sea buckthorn (Hippophae rhamnoides) to NaCl stress. Plant Biosystems - An International Journal Dealing with all Aspects of Plant Biology 154:6, pages 827-834.
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J. Ding, C. J. Ruan, Y. H. Bao, Y. Guan, J. Y. Shan, H. Li & G. J. Ding. (2015) Analysis of genetic relationships in sea buckthorn (Hippophae rhamnoides) germplasm from China and other countries using ISSR markers. The Journal of Horticultural Science and Biotechnology 90:6, pages 599-606.
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Articles from other publishers (36)

Hilde Nybom, Chengjiang Ruan & Kimmo Rumpunen. (2023) The Systematics, Reproductive Biology, Biochemistry, and Breeding of Sea Buckthorn—A Review. Genes 14:12, pages 2120.
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Ewa Dorota Zalewska, Grażyna Zawiślak & Ewa Dorota Król. (2023) Fungi inhabiting aboveground organs of sea buckthorn (<i>Hippophae rhamnoides</i> L.) in organic farming. Acta Agrobotanica 76.
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Eliza Korkus, Marcin Szustak, Grzegorz Dąbrowski, Sylwester Czaplicki, Sławomir Kadłubowski, Maria Koziołkiewicz, Iwona Konopka & Edyta Gendaszewska-Darmach. (2023) The insulinotropic activity of oleosomes prepared from various sea buckthorn cultivars in mouse and human pancreatic β cell lines. NFS Journal 31, pages 142-154.
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Yu Xu, Jinmei Kou, Qian Zhang, Shudan Tan, Lichun Zhu, Zhihua Geng & Xuhai Yang. (2023) Visual Detection of Water Content Range of Seabuckthorn Fruit Based on Transfer Deep Learning. Foods 12:3, pages 550.
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Ankit Jain, Ashish Kumar & Prakash Chand Sharma. (2022) Morphometric and Microsatellite Diversity in Seabuckthorn (Hippophae rhamnoides L.) Natural Populations Originating from the Different Geographical Regions of the Indian Himalayas. Plant Molecular Biology Reporter 40:3, pages 566-578.
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Liyang Yu, Songfeng Diao, Guoyun Zhang, Jigao Yu, Tong Zhang, Hongmei Luo, Aiguo Duan, Jinpeng Wang, Caiyun He & Jianguo Zhang. (2022) Genome sequence and population genomics provide insights into chromosomal evolution and phytochemical innovation of Hippophae rhamnoides . Plant Biotechnology Journal 20:7, pages 1257-1273.
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Zefeng Wu, Hongyun Chen, Ya Pan, Huan Feng, Dongming Fang, Jun Yang, Yayu Wang, Jun Yang, Sunil Kumar Sahu, Jianling Liu, Yu'e Xing, Xiaolin Wang, Min Liu, Xinyue Luo, Peng Gao, Lifeng Li, Zhongjian Liu, Huanming Yang, Xin Liu, Xun Xu, Huan Liu & Ertao Wang. (2022) Genome of Hippophae rhamnoides provides insights into a conserved molecular mechanism in actinorhizal and rhizobial symbioses . New Phytologist 235:1, pages 276-291.
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Chunsong Cheng, Siqing Fan, Canjian Wang, Linlin Ye, Zupeng Wang & Hongwen Huang. (2022) Phylogenetic Analysis of Elaeagnus L. in China: A Basis for Genetic Improvement of a Berry Crop. Frontiers in Plant Science 13.
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Guoyun Zhang, Songfeng Diao, Yating Song, Caiyun He & Jianguo Zhang. (2022) Genome-wide DNA N6-adenine methylation in sea buckthorn ( Hippophae rhamnoides L.) fruit development . Tree Physiology 42:6, pages 1286-1295.
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Jian Ding, Chengjiang Ruan, Ying Guan, He Li, Wei Du, Shunguang Lu, Xiufeng Wen, Ke Tang & Ye Chen. (2022) Nontargeted metabolomic and multigene expression analyses reveal the mechanism of oil biosynthesis in sea buckthorn berry pulp rich in palmitoleic acid. Food Chemistry 374, pages 131719.
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Anshul Kumar, Pankaj Kumar, Ajit Sharma, Dharam Paul Sharma & Manisha Thakur. (2022) Scientific insights to existing know-how, breeding, genetics, and biotechnological interventions pave the way for the adoption of high-value underutilized super fruit Sea buckthorn (Hippophae rhamnoides L.). South African Journal of Botany 145, pages 348-359.
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Ankit Jain, Ashish Kumar & Prakash C. Sharma. 2022. The Seabuckthorn Genome. The Seabuckthorn Genome 187 212 .
Atul Grover, Sanjay Mohan Gupta & Madhu Bala. 2022. The Seabuckthorn Genome. The Seabuckthorn Genome 173 186 .
Tsering Stobdan, Gyan P. Mishra, Ashish Yadav & O. P. Chaurasia. 2022. The Seabuckthorn Genome. The Seabuckthorn Genome 331 344 .
Parneeta Chaudhary & Prakash C. Sharma. 2022. The Seabuckthorn Genome. The Seabuckthorn Genome 247 262 .
Stefan ZerbeStefan Zerbe. 2022. Restoration of Multifunctional Cultural Landscapes. Restoration of Multifunctional Cultural Landscapes 381 437 .
Anca-Mihaela Gâtlan & Gheorghe Gutt. (2021) Sea Buckthorn in Plant Based Diets. An Analytical Approach of Sea Buckthorn Fruits Composition: Nutritional Value, Applications, and Health Benefits. International Journal of Environmental Research and Public Health 18:17, pages 8986.
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Xiuzhu Li, Weijie Chen, Jesus Simal-Gandara, Milen I. Georgiev, Hongyi Li, Hao Hu, Xu Wu, Thomas Efferth & Shengpeng Wang. (2021) West meets east: open up a dialogue on phytomedicine. Chinese Medicine 16:1.
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Bhavana Sharma & Renu Deswal. (2021) “Comparative proteome profiling of seabuckthorn leaves from low altitude ‘Sikkim’ and high altitude ‘Himachal Pradesh’ Himalayan region hints towards differential stress adaptive responses”. Journal of Proteins and Proteomics 12:2, pages 125-141.
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Ruru Ren, Nan Li, Chao Su, Yingli Wang, Xiaojun Zhao, Lingling Yang, Yanting Li, Bo Zhang, Jianyu Chen & Xueqin Ma. (2020) The bioactive components as well as the nutritional and health effects of sea buckthorn. RSC Advances 10:73, pages 44654-44671.
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Juliana Lukša, Iglė Vepštaitė-Monstavičė, Violeta Apšegaitė, Laima Blažytė-Čereškienė, Ramunė Stanevičienė, Živilė Strazdaitė-Žielienė, Bazilė Ravoitytė, Dominykas Aleknavičius, Vincas Būda, Raimondas Mozūraitis & Elena Servienė. (2020) Fungal Microbiota of Sea Buckthorn Berries at Two Ripening Stages and Volatile Profiling of Potential Biocontrol Yeasts. Microorganisms 8:3, pages 456.
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Karolina Tkacz, Aneta Wojdyło, Igor P. Turkiewicz, Federico Ferreres, Diego A. Moreno & Paulina Nowicka. (2020) UPLC-PDA-Q/TOF-MS profiling of phenolic and carotenoid compounds and their influence on anticholinergic potential for AChE and BuChE inhibition and on-line antioxidant activity of selected Hippophaë rhamnoides L. cultivars. Food Chemistry 309, pages 125766.
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Karolina Tkacz, Aneta Wojdyło, Igor Piotr Turkiewicz, Łukasz Bobak & Paulina Nowicka. (2019) Anti-Oxidant and Anti-Enzymatic Activities of Sea Buckthorn (Hippophaë rhamnoides L.) Fruits Modulated by Chemical Components. Antioxidants 8:12, pages 618.
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Jian Ding, Chengjiang Ruan, Wei Du & Ying Guan. (2019) RNA-seq data reveals a coordinated regulation mechanism of multigenes involved in the high accumulation of palmitoleic acid and oil in sea buckthorn berry pulp. BMC Plant Biology 19:1.
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Jingbin Li, Jian Ding, Xue Yu, He Li & Chengjiang Ruan. (2019) Identification and expression analysis of critical microRNA-transcription factor regulatory modules related to seed development and oil accumulation in developing Hippophae rhamnoides seeds. Industrial Crops and Products 137, pages 33-42.
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Wei Du, Chao-Wei Xiong, Jian Ding, Hilde Nybom, Cheng-Jiang Ruan & Hai Guo. (2019) Tandem Mass Tag Based Quantitative Proteomics of Developing Sea Buckthorn Berries Reveals Candidate Proteins Related to Lipid Metabolism. Journal of Proteome Research 18:5, pages 1958-1969.
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Jian Ding, Chengjiang Ruan, Ying Guan & Priti Krishna. (2018) Identification of microRNAs involved in lipid biosynthesis and seed size in developing sea buckthorn seeds using high-throughput sequencing. Scientific Reports 8:1.
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Jian Ding, Li Wang & Chengjiang Ruan. (2017) Comparative transcriptome analysis of lipid biosynthesis in seeds and non-seed tissues of sea buckthorn. Genes & Genomics 39:9, pages 1021-1033.
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C.-J. Ruan, R. Yan, B.-X. Wang, S. Mopper, W.-K. Guan & J. Zhang. (2017) The importance of yellow horn (Xanthoceras sorbifolia) for restoration of arid habitats and production of bioactive seed oils. Ecological Engineering 99, pages 504-512.
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Faezehossadat Abtahi & Seydeh Lavin Nourani. 2017. Medicinal Plants and Environmental Challenges. Medicinal Plants and Environmental Challenges 279 293 .
Zilin Cao, Tianjiang Li, Genqian Li, Chunhong Liu, Haiyin Gao, Guanghui Dai, Zhiyong Xiao & Sunling Li. (2016) Modular growth and clonal propagation of Hippophae rhamnoides subsp. sinensis in response to irrigation intensity. Journal of Forestry Research 27:5, pages 1019-1028.
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Khalid Anwar, Nita Lakra, Sneh L. Singla-Pareek & Ashwani Pareek. 2016. Innovative Saline Agriculture. Innovative Saline Agriculture 303 319 .
Igor V. Bartish. 2016. Gene Pool Diversity and Crop Improvement. Gene Pool Diversity and Crop Improvement 415 446 .
Longsheng Fu, Huidan Su, Rui Li & Yongjie Cui. (2014) Harvesting technologies for sea buckthorn fruit. Engineering in Agriculture, Environment and Food 7:2, pages 64-69.
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Ankit Jain, Saurabh Chaudhary & Prakash Chand Sharma. (2013) Mining of microsatellites using next generation sequencing of seabuckthorn (Hippophae rhamnoides L.) transcriptome. Physiology and Molecular Biology of Plants 20:1, pages 115-123.
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Paweł Rodziewicz, Barbara Swarcewicz, Klaudia Chmielewska, Anna Wojakowska & Maciej Stobiecki. (2013) Influence of abiotic stresses on plant proteome and metabolome changes. Acta Physiologiae Plantarum 36:1, pages 1-19.
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