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中国科学院昆明植物研究所知识管理系统
Knowledge Management System of Kunming Institute of Botany,CAS
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昆明植物所硕博研究... [44]
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胡虹 [10]
张石宝 [10]
黄伟 [10]
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周浙昆 [6]
黄锦岭 [6]
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6 could use lots of photosynthates, but contributed little to the accumulation of biomass. 4. Photosynthetic rate of P. armeniacum decreased a little at the noon, and the highest photosynthetic rate was observed at 10:00h in the greenhouse. The variation of photosynthetic rate was in the same trend as stomatal conductance. Higher relative humidity seemed to be the key for higher photosynthetic rate in P. armeniacum. 5. The photosynthetic capacity of C. flavum was statistically larger than that of P. armeniacum. The lower leaf photosynthetic capacity of P. armeniacum was related to its lower leaf nitrogen concentration,leaf phosphorus concentration and enzyme activities. Meanwhile, the extremely lower stomatal conductance and internal mesophyll conductance might greatly limit the photosynthetic capacity of P. armeniacum. The lower stomatal conductance and photosynthetic rate of Paphiopedilum might partially caused by the lack of chloroplasts in the guard cell of Paphiopedilum. Compared with C. flavum, P. armeniacum was more fond of shade environment.6. The short longevity leaf of Cypripedium had bigger photosynthetic capacity and greater potential for fast growth. But the longer LL of Paphiopedilum enhanced nutrient conservation which could compensate its lower photosynthetic capacity. The short longevity leaf of Cypripedium usually had higher photosynthetic rate per unit leaf mass and dark respiration rate, and photosynthetic capacity decreased fast with leaf age. However, for Paphiopedilum, the situation was the opposite. 7. Compared with Cypripedium, Paphiopedilum had higher water use efficiency and lower photosynthetic nitrogen use efficiency. 8. The leaf of Paphiopedilum had higher leaf construction cost and longer repayment time than that of Cypripedium. The leaf structures and physiological functions of Paphiopedilum and Cypripedium reflected the adaptation to their habitats. The leaf morphological and physiological evolution of Paphiopedilum was related to water and resource-conserving traits in the karst habitat. The leaf traits of Cypripedium were the adaptation to the environment rich in water and nutrients but easy to change with seasons.Our results provided evidence of divergent evolution of congeneric orchids under natural 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Reproductive Allocation in Plants
期刊论文
Reproductive Allocation in Plants, 3111, 页码: 1—30
Authors:
Shuhei Tanaka
;
Shin-ichiro Kochi
;
Heigo Kunita
;
Shin-ichi Ito
;
Mitsuro Kameya-Iwaki
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Submit date:2017/07/19
Complete chloroplast genome sequences of two Alloteropsis species (Poaceae) from China
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MITOCHONDRIAL DNA PART B-RESOURCES, 2021, 卷号: 6, 期号: 2, 页码: 365-367
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Yang,Yang
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Zhang,Xianzhi
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Chen,Siyun
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Guo,Zhenhua
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Wang,Li
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Submit date:2022/04/02
Alloteropsis
chloroplast genome
C4 photosynthesis
phylogenomics
Adaptive innovation of green plants by horizontal gene transfer
期刊论文
BIOTECHNOLOGY ADVANCES, 2021, 卷号: 46, 页码: 107671
Authors:
Chen,Rujia
;
Huangfu,Liexiang
;
Lu,Yue
;
Fang,Huimin
;
Xu,Yang
;
Li,Pengcheng
;
Zhou,Yong
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Xu,Chenwu
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Huang,Jinling
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Yang,Zefeng
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Plant evolution
adaptation
exaptation
plant-to-plant HGT
crop breeding and improvement
ICE-BINDING PROTEINS
LAND PLANTS
TRANSPOSABLE ELEMENTS
EVOLUTION
GENOME
ORIGIN
DNA
BIOSYNTHESIS
ALGA
RETROTRANSPOSONS
Comprehensive analysis of thePpatg3mutant reveals that autophagy plays important roles in gametophore senescence inPhyscomitrella patens
期刊论文
BMC PLANT BIOLOGY, 2020
Authors:
Chen, Zexi
;
Wang, Wenbo
;
Pu, Xiaojun
;
Dong, Xiumei
;
Gao, Bei
;
Li, Ping
;
Jia, Yanxia
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Liu, Aizhong
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Liu, Li
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Impacts of CO2 elevation on the physiology and seed quality of soybean
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PLANT DIVERSITY, 2020
Authors:
Zheng, Guowei
;
Chen, Jia
;
Li, Weiqi
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Defining the biosynthesis of ketocarotenoids in Chromochloris zofingiensis
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PLANT DIVERSITY, 2020
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Ye, Ying
;
Huang, Jun-Chao
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Plastome Evolution in Dolomiaea (Asteraceae, Cardueae) Using Phylogenomic and Comparative Analyses
期刊论文
FRONTIERS IN PLANT SCIENCE, 2020
Authors:
Shen, Jun
;
Zhang, Xu
;
Landis, Jacob B.
;
Zhang, Huajie
;
Deng, Tao
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Sun, Hang
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Wang, Hengchang
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SMRT sequencing of the Oryza rufipogon genome reveals the genomic basis of rice adaptation
期刊论文
COMMUNICATIONS BIOLOGY, 2020
Authors:
Li, Wei
;
Li, Kui
;
Huang, Ying
;
Shi, Cong
;
Hu, Wu-Shu
;
Zhang, Yun
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Zhang, Qun-Jie
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Xia, En-Hua
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Hutang, Ge-Ran
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Zhu, Xun-Ge
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Liu, Yun-Long
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Liu, Yuan
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Tong, Yan
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Zhu, Ting
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Huang, Hui
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Zhang, Dan
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Zhao, Yuan
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Jiang, Wen-Kai
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Yuan, Jie
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Niu, Yong-Chao
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Gao, Cheng-Wen
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Gao, Li-Zhi
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Translocation of Drought-Responsive Proteins from the Chloroplasts
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CELLS, 2020
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Li, Ping
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Liu, Haoju
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Yang, Hong
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Pu, Xiaojun
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Li, Chuanhong
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Huo, Heqiang
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Chu, Zhaohui
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Chang, Yuxiao
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Lin, Yongjun
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Liu, Li
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Analysis of changes in the Panax notoginseng glycerolipidome in response to long-term chilling and heat
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PLANT DIVERSITY, 2020
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Liu, Tao
;
Chen, Jia
;
Xu, Furong
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He, Xiahong
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Yang, Shengchao
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Zhu, Youyong
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Li, Weiqi
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Zheng, Guowei
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