成果/Result
- Over-Expression of Larch daL1 Accelerates Life-Cycle Progression in Arabidopsis被引量:0收藏
- 作者:Ye, Zha-Long[1] Zang, Qiao-Lu[1] Cheng, Dong-Xia[1] Li, Xiang-Yi[1] Qi, Li-Wang[1]
- 机构: State Key Laboratory of Tree Genetics and Breeding
- 来源:Forests 2022
- 关键词:Life cycle - Plants (botany) - Seed
- Regulation of synchronism by abscisic-acid-responsive small noncoding RNAs during somatic embryogenesis in larch (Larix leptolepis)被引量:0收藏
- 作者:Zhang, Jun-Hong[1,2] Zhang, Shou-Gong[1] Li, Shui-Gen[1] Han, Su-Ying[3] Li, Wan-Feng[1]
- 机构: Laboratory of Cell Biology; Nurturing Station for the State Key Laboratory of Subtropical Silviculture; Key Laboratory of Research Institute of Forest Ecology and Protection; Department of Pathology and Laboratory Medicine
- 来源:Plant Cell, Tissue and Organ Culture 2014
- 关键词:Animal cell culture
- Effects of cutting, pruning, and grafting on the expression of age-related genes in Larix kaempferi被引量:0收藏
- 作者:Zhang, Yao[1] Zang, Qiao-Lu[2] Qi, Li-Wang[2] Han, Su-Ying[1] Li, Wan-Feng[2]
- 机构: State Key Laboratory of Tree Genetics and Breeding; State Key Laboratory of Tree Genetics and Breeding
- 来源:Forests 2020
- 关键词:Clone cells - Seed - Transcription - Endocrinology
- Cloning and characterization of four differentially expressed cDNAs encoding NFYA homologs involved in responses to ABA during somatic embryogenesis in Japanese larch (Larix leptolepis)被引量:0收藏
- 作者:Zhang, Li-feng[1] Li, Wan-feng[1] Xu, Hai-yan[1] Qi, Li-wang[1] Han, Su-ying[2]
- 机构: Laboratory of Cell Biology; Research Institute of Forest Ecology
- 来源:Plant Cell, Tissue and Organ Culture 2014
- 关键词:Animal cell culture - Transcription - DNA sequences - Signal encoding
- Identification and characterization of lascl6 alleles in larix kaempferi (Lamb.) carr. based on analysis of simple sequence repeats and allelic expression被引量:0收藏
- 作者:Zang, Qiao-Lu[1] Li, Xiang-Yi[1] Qi, Li-Wang[1] Li, Wan-Feng[1]
- 机构: State Key Laboratory of Tree Genetics and Breeding
- 来源:Forests 2020
- 关键词:DNA sequences - Chlorine compounds - Lanthanum compounds
- Regulation of LaMYB33 by miR159 during maintenance of embryogenic potential and somatic embryo maturation in Larix kaempferi (Lamb.) Carr.被引量:0收藏
- 作者:Li, Wan-Feng[1] Zhang, Shou-Gong[1] Han, Su-Ying[2] Wu, Tao[1] Zhang, Jun-Hong[1]
- 机构: Laboratory of Cell Biology; Key Laboratory of Research Institute of Forest Ecology and Protection
- 来源:Plant Cell, Tissue and Organ Culture 2013
- 关键词:Animal cell culture - Cloning - Genes - Plants (botany) - RNA
- Transcriptional and post-transcriptional regulation of the miR171-LaSCL6 module during somatic embryogenesis in Larix kaempferi被引量:0收藏
- 作者:Zang, Qiao-Lu[1] Zhang, Yao[2] Han, Su-Ying[2] Li, Wan-Feng[1] Qi, Li-Wang[1]
- 机构: State Key Laboratory of Tree Genetics and Breeding; Environment and Protection
- 来源:Trees - Structure and Function 2021
- 关键词:Animal cell culture - RNA - Plants (botany) - Lanthanum compounds
- miRNA regulation in fast- and slow-growing hybrid Larix trees被引量:0收藏
- 作者:Zhang, Shougong[1] Han, Suying[3] Li, Wanfeng[1] Zhou, Jian[2] Li, Xinmin[2,3]
- 机构: Laboratory of Cell Biology; Department of Pathology and Laboratory Medicine; Key Laboratory of Research Institute of Forest Ecology and Protection
- 来源:Trees - Structure and Function 2012
- 关键词:RNA - Forestry - Gene expression - Gene expression regulation
- Over-expression of miR166a inhibits cotyledon formation in somatic embryos and promotes lateral root development in seedlings of Larix leptolepis被引量:0收藏
- 作者:Li, Zhe-Xin[1] Li, Shui-Gen[1] Zhang, Li-Feng[1] Han, Su-Ying[2] Li, Wan-Feng[1]
- 机构: State Key Laboratory of Tree Genetics and Breeding; Research Institute of Forest Ecology
- 来源:Plant Cell, Tissue and Organ Culture 2016
- 关键词:Gene expression - Plants (botany) - Reforestation
- Transcriptome Analysis Provides Insights into Korean Pine Tree Aging and Response to Shading被引量:0收藏
- 作者:Ye, Zha-Long[1] Liu, Jin-Yi[2] Feng, Jian[3] Li, Wan-Feng[1]
- 机构:Chinese Acad Forestry;State Owned Dabiangou Forest Farm Qingyuan Man Aut;Liaoning Acad Forest Sci
- 来源:FORESTS 2024
- 关键词:adaptation age conifer shading silviculture transcriptome