Zobrazeno 1 - 10
of 1 479
pro vyhledávání: '"Chlorophyll synthesis"'
Autor:
Hongzhen Jiang1,2, Anpeng Zhang3, Banpu Ruan4, Haitao Hu1, Rui Guo1, Jingguang Chen2 chenjg28@mail.sysu.edu.cn, Qian Qian1 qianqian188@hotmail.com, Zhenyu Gao1 gaozhenyu@caas.cno
Publikováno v:
Crop Journal (2095-5421). Aug2023, Vol. 11 Issue 4, p1171-1180. 10p.
Autor:
Yunzhi Liu, Junrong Xu, Xuefang Lu, Mengxiao Huang, Yuanzhi Mao, Chuanghao Li, Wenjin Yu, Changxia Li
Publikováno v:
BMC Plant Biology, Vol 24, Iss 1, Pp 1-15 (2024)
Abstract Background Drought is thought to be a major abiotic stress that dramatically limits tomato growth and production. As signal molecule, melatonin (MT) and carbon monoxide (CO) can enhance plant stress resistance. However, the effect and underl
Externí odkaz:
https://doaj.org/article/6cfe8c17ab6d4ef99e3af3671f182959
Publikováno v:
Agronomy, Vol 14, Iss 11, p 2464 (2024)
Aminolevulinic acid (5-ALA) and dihydroporphyrin iron chelates (DHFe) play roles in plant growth regulation under normal and stressful conditions. However, definitive data on their roles in regulating chlorophyll synthesis in wheat are lacking. In th
Externí odkaz:
https://doaj.org/article/2eb63342ac614700ad96e5cfffd1404f
Autor:
JongCheol Pyo1 jcp01@unist.ac.kr, Yakov Pachepsky2 Yakov.Pachepsky@ARS.USDA.GOV, Sang-Soo Baek1 kbcqr@naver.com, YongSeong Kwon1 wizkys@naver.com, MinJeong Kim1 paekhap0835@naver.com, Hyuk Lee3 ehyuk@korea.kr, Sanghyun Park3 pbaby75@korea.kr, YoonKyung Cha4 ykcha@uos.ac.kr, Rim Ha3 rim486@korea.kr, Gibeom Nam3 gbnam@korea.kr, Yongeun Park1 phdyongeun@gmail.com, Kyung Hwa Cho1 khcho@unist.ac.kr
Publikováno v:
Remote Sensing. Jun2017, Vol. 9 Issue 6, following p542. 32p.
Autor:
Sheng, Zhonghua1, Lv, Yusong1,2, Li, Wei3, Luo, Rongjian1, Wei, Xiangjin1, Xie, Lihong1, Jiao, Guiai1, Shao, Gaoneng1, Wang, Jianlong3, Tang, Shaoqing1 sqtang@126.com, Hu, Peisong1 peisonghu@126.com
Publikováno v:
PLoS ONE. 5/30/2017, Vol. 12 Issue 5, p1-17. 17p.
Publikováno v:
Agronomy, Vol 14, Iss 8, p 1810 (2024)
Salt stress is a critical abiotic factor that adversely affects plant growth and productivity by impairing photosynthesis. This study explores the impact of exogenous ascorbic acid (AsA) on the photosynthetic performance of tomato seedlings (Solanum
Externí odkaz:
https://doaj.org/article/203018a690f34fd2bc798dd4a03a6c1f
Autor:
Shmakov, Nickolay A.1,2 shmakov@bionet.nsc.ru, Vasiliev, Gennadiy V.1, Shatskaya, Natalya V.1, Doroshkov, Alexey V.1, Gordeeva, Elena I.1, Afonnikov, Dmitry A.1,2, Khlestkina, Elena K.1,2
Publikováno v:
BMC Plant Biology. 2016 Suppl 3, Vol. 16, p119-138. 20p. 2 Color Photographs, 5 Diagrams, 9 Charts, 7 Graphs.