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31 publications found

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Group #1

Matched potential author: Changlian Peng - author of 3 items
TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
Understanding the invasion mechanism of malignant alien weed Mikania micrantha from the perspective of photosynthetic capacity of stems[1]Minling Cai, [2]Lihua Chen, [3]Weiqian Ke, [4]Minghao Chen, [5]Junjie Zhang, [6]Jundong Huang, [7]Yanru Pan, [8]Changlian Peng [Full author list]Biological Invasions [missing]DOI: 10.1007/S10530-022-02973-6 [ORCID]
Mikania micrantha [missing]; invasion mechanism [missing]2022-12-13Changlian Peng (Q91254460; 3 items)
Adaptation of the Invasive Plant (Sphagneticola trilobata L. Pruski) to a High Cadmium Environment by Hybridizing With Native Relatives[1]Lei Gao, [2]Minling Cai, [3]Lingda Zeng, [4]Qilei Zhang, [5]Haoqiang Zhu, [6]Xiaoqian Gu, [7]Changlian Peng [Full author list]Frontiers in Plant Science [missing]DOI: 10.3389/FPLS.2022.905577 [ORCID]
invasive species [missing]; Sphagneticola trilobata [missing]; invasive plant [missing]2022-06-28Changlian Peng (Q91254460; 3 items)
The Patterns of Male and Female Flowers in Flowering Stage May Not Be Optimal Resource Allocation for Fruit and Seed Growth[1]Lei Gao, [2]Guozhu Yu, [3]Fangyu Hu, [4]Zhiqi Li, [5]Weihua Li, [6]Changlian Peng [Full author list]Plants [missing]DOI: 10.3390/PLANTS10122819 [ORCID]
2021-12-20
Physiological and transcriptomic responses of Mikania micrantha stem to shading yield novel insights into its invasiveness[1]Zhaoyang Jiang, [2]Yutao Wang, [3]Yaping Zheng, [4]Minling Cai, [5]Changlian Peng, [6]Weihua Li [Full author list]Biological Invasions [missing]DOI: 10.1007/S10530-021-02546-Z [ORCID]
invasive species [missing]; Mikania micrantha [missing]; invasiveness [missing]2021-05-12Changlian Peng (Q91254460; 3 items)
Why Is the Invasive Plant Sphagneticola trilobata More Resistant to High Temperature Than Its Native Congener?[1]Minling Cai, [2]Xiaohua Lin, [3]Jindi Peng, [4]Junjie Zhang, [5]Minghao Chen, [6]Jundong Huang, [7]Lihua Chen, [8]Feng Sun, [9]Wenqiao Ding, [10]Changlian Peng [Full author list]International Journal of Molecular Sciences [missing]DOI: 10.3390/IJMS22020748 [ORCID]
PubMed: 33451068 [ORCID]
invasive species [missing]; Sphagneticola trilobata [missing]; invasive plant [missing]; native congener [missing]2021-01-01Changlian Peng (Q91254460; 3 items)
Soil nitrogen dynamics and competition during plant invasion: insights from Mikania micrantha invasions in China[1]Hanxia Yu, [2]Johannes J. Le Roux, [3]Zhaoyang Jiang, [4]Feng Sun, [5]Changlian Peng, [6]Weihua Li [Full author list]New Phytologist [missing]DOI: 10.1111/NPH.17125 [ORCID]
PubMed: 33259063 [ORCID]
invasive species [missing]; Mikania micrantha [missing]; plant invasion [missing]2020-12-01
Priority effects and competition by a native species inhibit an invasive species and may assist restoration[1]Hanxia Yu, [2]Maofeng Yue, [3]Cui Wang, [4]Johannes J. Le Roux, [5]Changlian Peng, [6]Weihua Li [Full author list]Ecology and Evolution [missing]DOI: 10.1002/ECE3.6938 [ORCID]
PubMed: 33304543 [ORCID]
native species [missing]; invasive species [missing]; biological invasion [missing]; restoration ecology [missing]; ecological restoration [missing]2020-11-04
Isolation and identification of potassium-solubilizing bacteria from Mikania micrantha rhizospheric soil and their effect on M. micrantha plants[1]Feng Sun, [2]Qiaojing Ou, [3]Nan Wang, [4]Zi xuan Guo, [5]Yuyi Ou, [6]Na Li, [7]Changlian Peng [Full author list]Global Ecology and Conservation [missing]DOI: 10.1016/J.GECCO.2020.E01141 [ORCID]
rhizosphere [missing]; Mikania micrantha [missing]2020-05-30
Mikania micrantha genome provides insights into the molecular mechanism of rapid growth[1]Bo Liu, [2]Jian Yan, [3]Weihua Li, [4]Lijuan Yin, [5]Ping Li, [6]Hanxia Yu, [7]Longsheng Xing, [8]Minling Cai, [9]Hengchao Wang, [10]Mengxin Zhao, ..., [30]Haihong Wang, [31]Hui Dong, [32]Changlian Peng, [33]Wanqiang Qian, [34]Wei Fan, ... [Full author list]Nature Communications [missing]DOI: 10.1038/S41467-019-13926-4 [ORCID]
PubMed: 31953413 [ORCID]
Mikania micrantha [missing]2020-01-17Changlian Peng (Q91254460; 3 items)
The invasive potential of a hybrid species: insights from soil chemical properties and soil microbial communities[1]Feng Sun, [2]Yuyi Ou, [3]Qiaojing Ou, [4]Lingda Zeng, [5]Hanxia Yu, [6]Jin Zheng, [7]Lei Gao, [8]Weihua Li, [9]Na Li, [10]Changlian Peng [Full author list]Journal of Plant Ecology [missing]DOI: 10.1093/JPE/RTZ050 [ORCID]
2019-11-15
The invasive plant Mikania micrantha affects the soil foodweb and plant-soil nutrient contents in orchards[1]Feng Sun, [2]Qiaojing Ou, [3]Hanxia Yu, [4]Na Li, [5]Changlian Peng [Full author list]Soil Biology and Biochemistry [missing]DOI: 10.1016/J.SOILBIO.2019.107630 [ORCID]
invasive species [missing]; Mikania micrantha [missing]; invasive plant [missing]; plant-soil relationship [missing]2019-10-24
Effects of Simulated Defoliation on Growth and Photosynthetic Characteristics of an Invasive Liana, Ipomoea cairica (Convolvulaceae)[1]Weihua Li, [2]Xingshan Tian, [3]Jianning Luo, [4]Yanhong Dai, [5]Changlian Peng [Full author list]Invasive plant science and management [missing]DOI: 10.1614/IPSM-D-11-00088.1 [ORCID]
Convolvulaceae [missing]; Ipomoea cairica [missing]; plant invasion [missing]; invasion management [missing]2012-06-01

Group #6

Matched potential author: Changlian Peng - author of 3 items
TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
Comparison of the Ability to Control Water Loss in the Detached Leaves of Wedelia trilobata, Wedelia chinensis, and Their Hybrid[1]Qilei Zhang, [2]Guangxin Chen, [3]Jundong Huang, [4]Changlian Peng [Full author list]Plants [missing]DOI: 10.3390/PLANTS9091227 [ORCID]
PubMed: 32961869 [ORCID]
Chinese Wedelia [missing]; Wedelia trilobata [missing]2020-09-18Changlian Peng (Q91254460; 3 items)
The hybridization between Sphagneticola trilobata (L.) Pruski and Sphagneticola calendulacea (L.) Pruski improved the tolerance of hybrid to cadmium stress[1]Qilei Zhang, [2]Guangxin Chen, [3]Ling Shao, [4]Xiaoqian Gu, [5]Jundong Huang, [6]Changlian Peng [Full author list]Chemosphere [missing]DOI: 10.1016/J.CHEMOSPHERE.2020.126540 [ORCID]
PubMed: 32208221 [ORCID]
Sphagneticola trilobata [missing]; Sphagneticola calendulacea [missing]2020-03-18Changlian Peng (Q91254460; 3 items)
Accumulation of Anthocyanins: An Adaptation Strategy of Mikania micrantha to Low Temperature in Winter[1]Qilei Zhang, [2]Junjie Zhai, [3]Ling Shao, [4]Wei Lin, [5]Changlian Peng [Full author list]Frontiers in Plant Science [missing]DOI: 10.3389/FPLS.2019.01049 [ORCID]
PubMed: 31555311 [ORCID]
Mikania micrantha [missing]2019-08-29Changlian Peng (Q91254460; 3 items)
Corrigendum: Accumulation of Anthocyanins: An Adaptation Strategy of Mikania micrantha to Low Temperature in Winter[1]Qilei Zhang, [2]Junjie Zhai, [3]Ling Shao, [4]Wei Lin, [5]Changlian Peng [Full author list]Frontiers in Plant Science [missing]DOI: 10.3389/FPLS.2019.01796 [ORCID]
PubMed: 32117349 [ORCID]
Mikania micrantha [missing]2019-01-01Changlian Peng (Q91254460; 3 items)

Misc

TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
A SWI/SNF subunit regulates chromosomal dissociation of structural maintenance complex 5 during DNA repair in plant cells[1]Jieming Jiang, [2]Ning Mao, [3]Huan Hu, [4]Jiahang Tang, [5]Danlu Han, [6]Song Liu, [7]Qian Wu, [8]Yiyang Liu, [9]Changlian Peng, [10]Jianbin Lai, [11]Chengwei Yang [Full author list]Proceedings of the National Academy of Sciences of the United States of America [missing]DOI: 10.1073/PNAS.1900308116 [ORCID]
PubMed: 31285327 [ORCID]
2019-07-08
A Putative Chloroplast-Localized Ca(2+)/H(+) Antiporter CCHA1 Is Involved in Calcium and pH Homeostasis and Required for PSII Function in Arabidopsis.[1]Chao Wang, [2]Weitao Xu, [3]Honglei Jin, [4]Taijie Zhang, [5]Jianbin Lai, [6]Xuan Zhou, [7]Shengchun Zhang, [8]Shengjie Liu, [9]Xuewu Duan, [10]Hongbin Wang, [11]Changlian Peng, [12]Chengwei Yang [Full author list]Plant Physiology Journal [missing]DOI: 10.1016/J.MOLP.2016.05.015 [ORCID]
PubMed: 27302341 [ORCID]
2016-06-11
The over-expression of calmodulin from Antarctic notothenioid fish increases cold tolerance in tobacco[1]Na Yang, [2]Changlian Peng, [3]Deng Cheng, [4]Qiao Huang, [5]Guanghui Xu, [6]Fei Gao, [7]Liangbiao Chen [Full author list]Gene [missing]DOI: 10.1016/J.GENE.2013.03.048 [ORCID]
PubMed: 23528224 [ORCID]
cold hardiness [missing]2013-03-22
Gibberellin indirectly promotes chloroplast biogenesis as a means to maintain the chloroplast population of expanded cells[1]Xingshan Jiang, [2]Heying Li, [3]Ting Wang, [4]Changlian Peng, [5]Haiyang Wang, [6]Hong Wu, [7]Xiaojing Wang [Full author list]The Plant Journal [missing]DOI: 10.1111/J.1365-313X.2012.05118.X [ORCID]
PubMed: 23020316 [ORCID]
2012-10-01
Responses of chlorophyll fluorescence and xanthophyll cycle in leaves of Schima superba Gardn. & Champ. and Pinus massoniana Lamb. to simulated acid rain at Dinghushan Biosphere Reserve, China[1]Juxiu Liu, [2]Guoyi Zhou, [3]Chengwei Yang, [4]Zhiying Ou, [5]Changlian Peng [Full author list]Acta Physiologiae Plantarum [missing]DOI: 10.1007/S11738-006-0005-2 [ORCID]
acid rain [missing]; biospherel [missing]; biosphere reserve [missing]; Pinus massoniana [missing]; Schima superba [missing]2006-12-14

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NameDescriptionAuthored itemsIdentifiersEmployer(s)
Changlian Pengresearcher3ORCID: 0000-0001-6497-4515
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