Molecular and physiological control of adventitious rooting in cuttings: phytohormone action meets resource allocation

U Druege, A Hilo, JM Pérez-Pérez, Y Klopotek… - Annals of …, 2019 - academic.oup.com
Background Adventitious root (AR) formation in excised plant parts is a bottleneck for
survival of isolated plant fragments. AR formation plays an important ecological role and is a …

De novo transcriptome analysis provides insights into formation of in vitro adventitious root from leaf explants of Arnebia euchroma

J Devi, E Kaur, MK Swarnkar, V Acharya, S Bhushan - BMC Plant Biology, 2021 - Springer
Background Adventitious root formation is considered a major developmental step during
the propagation of difficult to root plants, especially in horticultural crops. Recently …

Integrating Histology and Phytohormone/Metabolite Profiling to Understanding Rooting in Yellow Camellia Cuttings

X Lu, X Chen, J Liu, M Zheng, H Liang - Plant Science, 2024 - Elsevier
Vegetative propagation through cutting is a widely used clonal approach for maintaining
desired genotypes. However, some woody species have difficulty forming adventitious roots …

Fine root dynamics in organic and mineral soil layers of Cryptomeria japonica D. Don plantation

Y Tawa, H Takeda - Journal of forest research, 2016 - Taylor & Francis
Fine root dynamics and root architecture were studied in the organic and mineral soil layers
of a Cryptomeria japonica plantation. Fine root biomass (< 1 mm) showed seasonal changes …

Transcriptome Dynamics of Rooting Zone and Leaves during In Vitro Adventitious Root Formation in Eucalyptus nitens

PG Ayala, RM Acevedo, CV Luna, M Rivarola, C Acuña… - Plants, 2022 - mdpi.com
Wood properties and agronomic traits associated with fast growth and frost tolerance make
Eucalyptus nitens a valuable forest alternative. However, the rapid age-related decline in the …

Dynamic changes of phytohormone signaling in the base of Taxus media stem cuttings during adventitious root formation

H Ren, H Hu, X Luo, C Zhang, X Li, P Li, W Li… - Scientia …, 2019 - Elsevier
Adventitious root (AR) formation is an important process in vegetative propagation of most
forestry plants, such as Taxus species. Taxus media, a natural hybrid species containing …

Research advances in the mechanism of adventitious root occurrence in woody species.

D Miao, R Jia, S Li, S Xi, G Zhu, S Wen - 2022 - cabidigitallibrary.org
The difficulty in the occurrence of adventitious roots which are produced by non-pericyclic
tissues such as stems and leaves of plants, has been a bottleneck problem for the asexual …

Comprehensive transcriptome analysis unravels the existence of crucial genes regulating primary metabolism during adventitious root formation in Petunia hybrida

A Ahkami, U Scholz, B Steuernagel, M Strickert… - PLoS …, 2014 - journals.plos.org
To identify specific genes determining the initiation and formation of adventitious roots (AR),
a microarray-based transcriptome analysis in the stem base of the cuttings of Petunia …

Integration of genetic, genomic and transcriptomic information identifies putative regulators of adventitious root formation in Populus

CL Ribeiro, CM Silva, DR Drost, E Novaes… - BMC Plant …, 2016 - Springer
Background Adventitious roots (AR) develop from tissues other than the primary root, in a
process physiologically regulated by phytohormones. Adventitious roots provide structural …

De novo sequencing and comparative transcriptome analysis of adventitious root development induced by exogenous indole-3-butyric acid in cuttings of tetraploid …

J Quan, S Meng, E Guo, S Zhang, Z Zhao, X Yang - BMC genomics, 2017 - Springer
Abstract Background Indole-3-butyric acid (IBA) is applied to the cuttings of various plant
species to induce formation of adventitious roots (ARs) in commercial settings. Tetraploid …