Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Bingze Chai"'
Autor:
Hao Wu, Gaoxing Dai, Rao Yuchun, Kaixiong Wu, Junge Wang, Peng Hu, Yi Wen, Yueying Wang, Lixin Zhu, Bingze Chai, Jialong Liu, Guofu Deng, Qian Qian, Jiang Hu
Publikováno v:
Crop Journal, Vol 11, Iss 5, Pp 1341-1352 (2023)
Lesion mimic mutants (LMMs) are advantageous materials for studying programmed cell death (PCD). Although some rice LMM genes have been cloned, the diversity of functions of these genes indicates that the mechanism of cell death regulation in LMMs ne
Externí odkaz:
https://doaj.org/article/a53f5188f31445809f7747dde9cc4cb3
Autor:
Yi Wen, Kaixiong Wu, Bingze Chai, Yunxia Fang, Peng Hu, Yiqing Tan, Yueying Wang, Hao Wu, Junge Wang, Li Zhu, Guangheng Zhang, Zhenyu Gao, Deyong Ren, Dali Zeng, Lan Shen, Guojun Dong, Qiang Zhang, Qing Li, Qian Qian, Jiang Hu
Publikováno v:
BMC Plant Biology, Vol 23, Iss 1, Pp 1-15 (2023)
Abstract Background Mitochondrion is the key respiratory organ and participate in multiple anabolism and catabolism pathways in eukaryote. However, the underlying mechanism of how mitochondrial membrane proteins regulate leaf and grain development re
Externí odkaz:
https://doaj.org/article/23346f11b91b49229beca5cda081b05d
Autor:
Peng Hu, Yiqing Tan, Yi Wen, Yunxia Fang, Yueying Wang, Hao Wu, Junge Wang, Kaixiong Wu, Bingze Chai, Li Zhu, Guangheng Zhang, Zhenyu Gao, Deyong Ren, Dali Zeng, Lan Shen, Dawei Xue, Qian Qian, Jiang Hu
Publikováno v:
Frontiers in Plant Science, Vol 13 (2022)
Leaf and panicle are important nutrient and yield organs in rice, respectively. Although several genes controlling lesion mimic leaf and panicle abortion have been identified, a few studies have reported the involvement of a single gene in the produc
Externí odkaz:
https://doaj.org/article/1b2d108c98b3425a8e6701f692c7fe99
Autor:
Yi Wen, Kaixiong Wu, Bingze Chai, Peng Hu, Yiqing Tan, Yueying Wang, Hao Wu, Junge Wang, Li Zhu, Guangheng Zhang, Zhenyu Gao, Deyong Ren, Dali Zeng, Lan Shen, Guojun Dong, Qiang Zhang, Qing Li, Qian Qian, Jiang Hu
Background Mitochondrion is the key respiratory organ and participates in various anabolic and catabolic metabolic pathways in eukaryote. However, the underlying mechanism of how mitochondrial membrane proteins regulate leaf and grain development rem
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::b9a4f2060a01abef87fd39e37d470ef8
https://doi.org/10.21203/rs.3.rs-2612655/v1
https://doi.org/10.21203/rs.3.rs-2612655/v1
Autor:
Peng, Hu, Yi, Wen, Yueying, Wang, Hao, Wu, Junge, Wang, Kaixiong, Wu, Bingze, Chai, Lixin, Zhu, Guangheng, Zhang, Zhenyu, Gao, Deyong, Ren, Li, Zhu, Longbiao, Guo, Dali, Zeng, Jing, Xu, Song, Yan, Qian, Qian, Yuchun, Rao, Jiang, Hu
Publikováno v:
International Journal of Molecular Sciences
Crown roots are essential for plants to obtain water and nutrients, perceive environmental changes, and synthesize plant hormones. In this study, we identified and characterized short crown root 8 (scr8), which exhibited a defective phenotype of crow
Autor:
Lixin Zhu, Guangheng Zhang, Li Zhu, Hao Wu, Deyong Ren, Longbiao Guo, Song Yan, Dali Zeng, Jing Xu, Kaixiong Wu, Yueying Wang, Yi Wen, Jiang Hu, Junge Wang, Yuchun Rao, Peng Hu, Qian Qian, Bingze Chai, Zhenyu Gao
Publikováno v:
International Journal of Molecular Sciences, Vol 22, Iss 9868, p 9868 (2021)
International Journal of Molecular Sciences
Volume 22
Issue 18
International Journal of Molecular Sciences
Volume 22
Issue 18
Crown roots are essential for plants to obtain water and nutrients, perceive environmental changes, and synthesize plant hormones. In this study, we identified and characterized short crown root 8 (scr8), which exhibited a defective phenotype of crow