Roles of small-molecule compounds in plant adventitious root development
Y Deng, C Wang, N Wang, L Wei, W Li, Y Yao, W Liao - Biomolecules, 2019 - mdpi.com
Adventitious root (AR) is a kind of later root, which derives from stems and leaf petioles of
plants. Many different kinds of small signaling molecules can transmit information between …
plants. Many different kinds of small signaling molecules can transmit information between …
Molecular bases for the regulation of adventitious root generation in plants
SW Li - Frontiers in Plant Science, 2021 - frontiersin.org
The formation of adventitious roots (ARs) is an ecologically and economically important
developmental process in plants. The evolution of AR systems is an important way for plants …
developmental process in plants. The evolution of AR systems is an important way for plants …
Role of various auxins in adventitious root formation
A Arya, A Husen - Environmental, Physiological and Chemical Controls of …, 2022 - Elsevier
Adventitious rooting (AR) is a crucial step toward vegetative cloning of horticultural,
agricultural, and forest-based plant species of economic importance. AR is governed by …
agricultural, and forest-based plant species of economic importance. AR is governed by …
Mediators, genes and signaling in adventitious rooting
SW Li, L Xue, S Xu, H Feng, L An - The Botanical Review, 2009 - Springer
Adventitious roots are a post-embryonic root which arise from the stem and leaves and from
non-pericycle tissues in old roots and it is one of the most important ways of vegetative …
non-pericycle tissues in old roots and it is one of the most important ways of vegetative …
Nitric oxide is involved in hydrogen gas-induced cell cycle activation during adventitious root formation in cucumber
Y Zhu, W Liao, L Niu, M Wang, Z Ma - BMC Plant Biology, 2016 - Springer
Background Adventitious root development is a complex process regulated through a variety
of signaling molecules. Hydrogen gas (H 2) and nitric oxide (NO), two new signaling …
of signaling molecules. Hydrogen gas (H 2) and nitric oxide (NO), two new signaling …
Adventitious root formation in plants: The implication of hydrogen peroxide and nitric oxide
PA Roussos - Antioxidants, 2023 - mdpi.com
Adventitious root formation is defined as the formation of new roots on above-ground plant
parts and is considered crucial for the survival of a plant under harsh environmental …
parts and is considered crucial for the survival of a plant under harsh environmental …
Transcriptomic analyses provide insight into adventitious root formation of Euryodendron excelsum HT Chang during ex vitro rooting
Y Xiong, S Chen, Z Wei, X Chen, B Guo… - Plant Cell, Tissue and …, 2022 - Springer
Euryodendron excelsum HT Chang, a critically endangered species endemic to China, is a
source of valuable material for the furniture and construction industries. However, this …
source of valuable material for the furniture and construction industries. However, this …
Horticultural potential of chemical biology to improve adventitious rooting
The first reports that auxins promoted root formation in cuttings and that indole-3-butyric acid
(IBA) was a particularly effective treatment date from the early 1930s. Since its introduction …
(IBA) was a particularly effective treatment date from the early 1930s. Since its introduction …
A positive role for hydrogen gas in adventitious root development
Y Zhu, W Liao - Plant signaling & behavior, 2016 - Taylor & Francis
Our recent study highlights the role of hydrogen gas (H2) in adventitious root development in
cucumber. H2 is an effective gaseous signal molecule with the abilities to regulate plant …
cucumber. H2 is an effective gaseous signal molecule with the abilities to regulate plant …
NO is involved in H2-induced adventitious rooting in cucumber by regulating the expression and interaction of plasma membrane H+-ATPase and 14-3-3
C Li, D Huang, C Wang, N Wang, Y Yao, W Li, W Liao - Planta, 2020 - Springer
Main conclusion NO was involved in H 2-induced adventitious rooting by regulating the
protein and gene expressions of PM H+-ATPase and 14-3-3. Simultaneously, the interaction …
protein and gene expressions of PM H+-ATPase and 14-3-3. Simultaneously, the interaction …