Aug 2026· New Phytologist· Vol 252, pp. 724-739· 0 citations· 49 references
Medicine
TL;DR
Using the perennial herb chrysanthemum, the results demonstrated that the CmABI5‐CmKN1 module mediates extension growth and flowering competence in response to chilling, thereby facilitating the perennial growth habit of chrysanthemum.
Abstract
Perennial plants have evolved complex regulatory networks that allow them to perceive environmental changes and trigger adaptive growth responses. Many perennial herbs exhibit a rosette growth habit during winter, and then undergo extension growth/stem elongation growth and flowering in the following spring. However, the mechanisms underlying this seasonal transition are still not well understood. Here, using the perennial herb chrysanthemum (Chrysanthemum morifolium), we identified CmKN1, a class I KNOTTED (KN1)‐like homeobox transcription factor, that mediates extension growth and flowering competence in response to prolonged chilling exposure. The rosette growth of chrysanthemum rhizomes in late autumn coincides with downregulation of CmKN1 expression. Overexpression of CmKN1 promotes premature rhizome extension growth and flowering, whereas the kn1 heterozygous mutant shows suppression of these processes. Furthermore, seasonal growth regulation involves the abscisic acid (ABA) signaling pathway. Shoot apices in the rosette state accumulate higher levels of ABA than those in the extension growth state. Notably, in response to ABA, CmKN1 expression is downregulated by CmABI5. Our results demonstrated that the CmABI5‐CmKN1 module mediates extension growth and flowering competence in response to chilling, thereby facilitating the perennial growth habit of chrysanthemum.
Flowering is a key ornamental trait in chrysanthemum and a major agronomic trait affecting rice yield. Strigolactones (SLs) are a class of phytohormones that regulate diverse aspects of plant growth and development, including flowering time. However, the molecular mechanisms underlying SL-mediated regulation of floweri...
Yi Zhang, Ying-Ying Xing, Xin-Hui Wang et al.· The Plant Cell· 0 citations
Exogenous spraying of CuB can alleviate the low-temperature stress injury of melon and tomato seedlings and is explored a new way to alleviate the abiotic stress injury of seedlings, which is of great significance for the early seedling development of oriental melons.
Yu-Shan Huang, Hao-Xiong Tang, Fei Luo et al.· Plant, Cell and Environment· 0 citations
It is shown that salt stress–induced ABA accumulation up-regulates Heat Shock Factor 4 (CmHSFA4), a gene that is known to enhance chrysanthemum salt tolerance, and an ABA-SnRK2.2-ABF1/BRM signaling module that integrates phosphorylation-dependent protein stabilization and degradation with histone methylation dynamics t...
Xin-Hui Wang, Han Wang, Hong-Yu Wei et al.· Science Advances· 0 citations
Evidence is provided suggesting that StFKF1 influences the timing of flowering and tuber initiation, as well as the expression patterns of key regulatory genes, under long-day conditions, thereby contributing to a theoretical foundation for understanding developmental transitions in this specific environmental context.
Zefeng Zhai, Yongguang Liu, Haicai Li et al.· Molecular breeding· 0 citations
It is established that CmELF4-LIKE 3 interacts with CmPIF7 to cooperatively regulate short-day-induced flowering in chrysanthemum, and offers new insights into the crosstalk between the circadian clock and light signaling pathways in plants.
Wan-Wan Zhang, Binyao Yin, Yvhan Ye et al.· Physiologia Plantarum : An I...· 0 citations
Plant architecture results from the integration of developmental regulatory networks and environmental signaling pathways. In soybean, the erect growth habit of cultivated soybean (Glycine max) contrasts markedly with the vine growth habit (VGH) of wild soybean (Glycine soja). However, the genetic and transcriptional m...
Kihwan Kim, Deokmoon Lee, Hyun Jo et al.· Plant physiology and biochem...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.