Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Shanwen Ye"'
Publikováno v:
Frontiers in Plant Science, Vol 14 (2023)
Novel constitutive promoters are essential for plant biotechnology. Although in angiosperms, a number of promoters were applied in monocots or dicots genetic engineering, only a few promoters were used in gymnosperm. Here we identified two strong pro
Externí odkaz:
https://doaj.org/article/45f806887e6f4e51ae78c00f6b1e7e40
Autor:
Changyang Cai, Wenjia Wang, Shanwen Ye, Zhiliang Zhang, Wensha Ding, Mengqi Xiang, Chu Wu, Qiang Zhu
Publikováno v:
Frontiers in Plant Science, Vol 11 (2020)
With the development of sequencing technology, the availability of genome data is rapidly increasing, while functional annotation of genes largely lags behind. In Arabidopsis, the functions of nearly half of the proteins are unknown and this remains
Externí odkaz:
https://doaj.org/article/dde015b13b51445892b09ed9c632fe36
Autor:
Wenjia Wang, Lianfeng Gu, Shanwen Ye, Hangxiao Zhang, Changyang Cai, Mengqi Xiang, Yubang Gao, Qin Wang, Chentao Lin, Qiang Zhu
Publikováno v:
BMC Genomics, Vol 18, Iss 1, Pp 1-16 (2017)
Abstract Background Auxin is essential for plant growth and development. Although substantial progress has been made in understanding auxin pathways in model plants such as Arabidopsis and rice, little is known in moso bamboo which is famous for its
Externí odkaz:
https://doaj.org/article/6384bd031a724f03b1e8d33a72b32b6b
Autor:
Shanwen Ye, Changyang Cai, Huibo Ren, Wenjia Wang, Mengqi Xiang, Xiaoshan Tang, Caiping Zhu, Tengfei Yin, Li Zhang, Qiang Zhu
Publikováno v:
Frontiers in Plant Science, Vol 8 (2017)
Genetic engineering technology has been successfully used in many plant species, but is limited in woody plants, especially in bamboos. Ma bamboo (Dendrocalamus latiflorus Munro) is one of the most important bamboo species in Asia, and its genetic im
Externí odkaz:
https://doaj.org/article/94492ede91f54602bc7d1fb07944af8c
Autor:
Tang Xiaoshan, Qian Xu, Zhaojun Ding, Xin Hu, Chentao Lin, WenSha Ding, Zhu Caiping, Wenjia Wang, Qiang Zhu, Weiyuan Bai, Yushan Zheng, Changyang Cai, Chu Wu, Xiaomin Yu, Mengqi Xiang, Shanwen Ye, Nannan Wang
Publikováno v:
Planta. 254(3)
Overexpression of the leaf color (Lc) gene in Ma bamboo substantially increased the accumulation level of anthocyanin, and improved plant tolerance to cold and drought stresses, probably due to the increased antioxidant capacity. Most bamboos, includ
Autor:
Yushan Zheng, Markus V. Kohnen, Lianfeng Gu, WenSha Ding, Chu Wu, Chen Gang, Wenjia Wang, Ma Xiangqing, Shanwen Ye, Qiang Zhu, Chentao Lin, Changyang Cai
Publikováno v:
Plant biotechnology journal, vol 18, iss 7
Plant Biotechnology Journal
Plant Biotechnology Journal
Author(s): Ye, Shanwen; Chen, Gang; Kohnen, Markus V; Wang, Wenjia; Cai, Changyang; Ding, WenSha; Wu, Chu; Gu, Lianfeng; Zheng, Yushan; Ma, Xiangqing; Lin, Chentao; Zhu, Qiang
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::6f1aa2f5dc68549ca9d2bde4b9352c5d
https://escholarship.org/uc/item/5pc5w2ct
https://escholarship.org/uc/item/5pc5w2ct
Autor:
Changyang Cai, Yubang Gao, Qin Wang, Mengqi Xiang, Hangxiao Zhang, Qiang Zhu, Lianfeng Gu, Shanwen Ye, Wenjia Wang, Chentao Lin
Publikováno v:
BMC Genomics, Vol 18, Iss 1, Pp 1-16 (2017)
BMC Genomics
BMC genomics, vol 18, iss 1
BMC Genomics
BMC genomics, vol 18, iss 1
Background Auxin is essential for plant growth and development. Although substantial progress has been made in understanding auxin pathways in model plants such as Arabidopsis and rice, little is known in moso bamboo which is famous for its fast grow
Autor:
Wenjia Wang, Lianfeng Gu, Shanwen Ye, Hangxiao Zhang, Changyang Cai, Mengqi Xiang, Yubang Gao, Wang, Qin, Chentao Lin, Zhu, Qiang
General overview of auxin biosynthesis, transport, and signaling pathway. Figure S2. Multiple sequence alignment, conserved motif and gene structure analysis of members involved in auxin concentration. Figure S3. Multiple sequence alignment, conserve
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::03c52f20bc1eeee78b5327bb7c3b6536