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  • 收录类型=SCI-EXPANDED x
  • 人物=张苗苗 x

8 条 记 录,以下是 1-8

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Diversity-decomposition relationships in forests worldwide被引量:59收藏 分享
作者:Kou, Liang[1,2] Jiang, Lei[1,2] Hattenschwiler, Stephan[3] Zhang, Miaomiao[4] Niu, Shuli[1,2]
机构:Chinese Acad Sci;Univ Chinese Acad Sci;Univ Montpellier 3;Chinese Acad Forestry
来源:ELIFE  2020
关键词:ecology   none  
Mycorrhizal symbiosis pathway and edaphic fertility frame root economics space among tree species被引量:43收藏 分享
作者:Yan, Han[1,2] Freschet, Gregoire T.[3] Wang, Huimin[1,2] Hogan, James Aaron[4,5] Li, Shenggong[1,2]
机构:Chinese Acad Sci;Univ Chinese Acad Sci;CNRS;Florida Int Univ;Univ Florida
来源:NEW PHYTOLOGIST  2022
关键词:absorptive root   arbuscular mycorrhizas and ectomycorrhizas   root economics   root trait variation   trait interplay   trait-function linkage  
Construction of a high-density genetic map and QTL mapping of leaf traits and plant growth in an interspecific F-1 population of Catalpa bungei x Catalpa duclouxii Dode被引量:18收藏 分享
作者:Lu, Nan[1] Zhang, Miaomiao[1] Xiao, Yao[1] Han, Donghua[2] Liu, Ying[3]
机构:Chinese Acad Forestry;Nanjing Forestry Univ;Northwest A&F Univ;Northeast Forestry Univ
来源:BMC PLANT BIOLOGY  2019
关键词:Catalpa bungei   Genetic map   RAD-seq   QTL mapping   Leaf traits   Plant growth  
Genetic architecture of leaf morphology revealed by integrated trait module in Catalpa bungei被引量:6收藏 分享
作者:Zhang, Miaomiao[1] Liu, Bingyang[1] Fei, Yue[1] Yang, Xiaowei[1] Zhao, Linjiao[1]
机构:Chinese Acad Forestry;Acad Forest & Grassland Inventory & Planning;Wenxian Forestry Sci Res Inst
来源:HORTICULTURE RESEARCH  2023
A Bivariate Mapping Model Identifies Major Covariation QTLs for Biomass Allocation Between Leaf and Stem Growth of Catalpa bungei被引量:4收藏 分享
作者:Zhang, Miaomiao[1] Lu, Nan[1] Zhu, Tianqing[1] Yang, Guijuan[1] Qu, Guanzheng[2]
机构:Chinese Acad Forestry;Northeast Forestry Univ
来源:FRONTIERS IN GENETICS  2021
关键词:bivariate mapping model   biomass allocation   covariation   quantitative trait locus   Catalpa bungei  
Multiple dynamic models reveal the genetic architecture for growth in height of Catalpa bungei in the field被引量:1收藏 分享
作者:Zhang, Miaomiao[1] Lu, Nan[1] Jiang, Libo[2] Liu, Bingyang[1] Fei, Yue[1]
机构:Chinese Acad Forestry;Shandong Univ Technol
来源:TREE PHYSIOLOGY  0
关键词:Catalpa bungee   epistasis   functional mapping   multiple dynamic models   quantitative trait loci  
Climate of origin shapes variations in wood anatomical properties of 17 Picea species被引量:0收藏 分享
作者:Yang, Xiaowei[1,2] Yan, Huiling[2] Hao, Chunhui[2] Hu, Jiwen[2] Yang, Guijuan[2]
机构:Cent South Univ Forestry & Technol;Chinese Acad Forestry;Res Inst Forestry Xiaolong Mt;Beijing Bot Garden
来源:BMC PLANT BIOLOGY  2024
关键词:Spruce   Xylem anatomy   Environmental factor   Phylogenetic signal  
Cbuhdz34, a Homeodomain Leucine Zipper Transcription Factor, Positively Regulates Tension Wood Formation and Xylem Fibre Cell Elongation in Catalpa bungei被引量:0收藏 分享
作者:Yao, Chengcheng[1] Fei, Yue[1] Yan, Zhenfan[1] Wu, Chuangye[2] Xiao, Yao[1]
机构:Chinese Acad Forestry;Wenxian Forestry Sci Res Inst;Chinese Acad Forestry;Chinese Acad Forestry
来源:PLANT CELL AND ENVIRONMENT  2025
关键词:Catalpa bungei   HD-Zip gene family   hierarchical genetic regulatory network   tension wood formation   transcriptional regulation  
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