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Comprehensive Overview of Populus simonii Research in the Recent Years

Comprehensive Overview of Populus simonii Research in the Recent Years
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摘要 As an important ecological tree species in northern China, Populus simonii plays a crucial role in maintaining ecological balance and promoting environmental sustainability. The academic community has conducted a series of in-depth studies on this species, covering key areas such as genomics, survival mechanisms, and genetic breeding. Through the analysis of the genomic structure and function of P. simonii, we have not only revealed the molecular basis for its adaptation to harsh environments but also identified key genes that promote its growth and resistance to pests and diseases. Furthermore, exploring the survival mechanisms of P. simonii has deepened our understanding of its stress resistance traits, including how it effectively copes with abiotic stresses such as drought, salinization, and heavy metal pollution. In genetic breeding, significant progress has been made through the application of modern biotechnology, improving the growth rate and wood quality of P. simonii and enhancing its environmental adaptability and disease resistance. These research findings have not only enriched our knowledge of the biological characteristics of P. simonii but also provided a solid scientific foundation for its application in ecological restoration, forestry production, and environmental management. As an important ecological tree species in northern China, Populus simonii plays a crucial role in maintaining ecological balance and promoting environmental sustainability. The academic community has conducted a series of in-depth studies on this species, covering key areas such as genomics, survival mechanisms, and genetic breeding. Through the analysis of the genomic structure and function of P. simonii, we have not only revealed the molecular basis for its adaptation to harsh environments but also identified key genes that promote its growth and resistance to pests and diseases. Furthermore, exploring the survival mechanisms of P. simonii has deepened our understanding of its stress resistance traits, including how it effectively copes with abiotic stresses such as drought, salinization, and heavy metal pollution. In genetic breeding, significant progress has been made through the application of modern biotechnology, improving the growth rate and wood quality of P. simonii and enhancing its environmental adaptability and disease resistance. These research findings have not only enriched our knowledge of the biological characteristics of P. simonii but also provided a solid scientific foundation for its application in ecological restoration, forestry production, and environmental management.
作者 Dandan Zhang Faujiah Nurhasanah Ritonga Tuya Siqin Runxian Song Zicheng Zhang Mingwei Tang Peilin Sun Wa Gao Dandan Zhang;Faujiah Nurhasanah Ritonga;Tuya Siqin;Runxian Song;Zicheng Zhang;Mingwei Tang;Peilin Sun;Wa Gao(Heilongjiang Institute of Atomic Energy, Harbin, China;Graduate School, Padjadjaran University, Bandung, Indonesia;Key Laboratory of Molecular Epigenetics of the Ministry of Education, Northeast Normal University, Changchun, China)
出处 《Open Journal of Ecology》 2024年第5期419-434,共16页 生态学期刊(英文)
关键词 BREEDING Ecological Restoration GENOMICS Populus simonii Resistance Mechanisms Breeding Ecological Restoration Genomics Populus simonii Resistance Mechanisms
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