Research Article4410.1016/j.plantsci.2024.111987Lignin reduction in sugarcane by performing CRISPR/Cas9 site-direct mutation of SoLIM transcription factorJan 13, 2024Plant ScienceChanakan Laksana + 2 more +2CiteListenSave
Research Article1210.1016/j.plantsci.2023.111970An open-source machine-learning approach for obtaining high-quality quantitative wood anatomy data from E. grandis and P. radiata xylemDec 30, 2023Plant ScienceRafael Keret + 6 more +6CiteListenSave
Research Article810.1016/j.plantsci.2023.111962Dephosphorylation of the MAP kinases MPK6 and MPK3 fine-tunes responses to wounding and herbivory in ArabidopsisDec 15, 2023Plant ScienceClaire T Hann + 5 more +5CiteListenSave
Research Article210.1016/j.plantsci.2023.111951Exploring soybean cultivar susceptibility to sudden death syndrome: Insights into isoflavone responses and biocontrol potentialDec 08, 2023Plant ScienceLuciana Daniela Lario + 9 more +9CiteListenSave
Research Article110.1016/j.plantsci.2023.111950Trees need closure too: Wound-induced secondary vascular tissue regenerationDec 07, 2023Plant ScienceSachinthani I Karunarathne + 3 more +3Trees play a pivotal role in terrestrial ecosystems as well as being an important natural resource. These attributes are primarily associated with the capacity of trees to continuously produce woody tissue from the vascular cambium, a ring of stem cells located just beneath the bark. Long-lived trees are exposed to a myriad of biological and environmental stresses that may result in wounding, leading to a loss of bark and the underlying vascular cambium. This affects both wood formation and the quality of timber arising from the tree. In addition, the exposed wound site is a potential entry point for pathogens that cause disease. In response to wounding, trees have the capacity to regenerate lost or damaged tissues at this site. Investigating gene expression changes associated with different stages of wound healing reveals complex and dynamic changes in the activity of transcription factors, signalling pathways and hormone responses. In this review we summarise these data and discuss how they relate to our current understanding of vascular cambium formation and xylem differentiation during secondary growth. Based on this analysis, a model for wound healing that provides the conceptual foundations for future studies aimed at understanding this intriguing process is proposed.Read moreCiteListenSave
Research Article10.1016/j.plantsci.2023.111932Identification of nitric oxide regulated low abundant myrosinases from seeds and seedlings of Brassica junceaNov 28, 2023Plant ScienceYaiphabi Sougrakpam + 1 more +1CiteListenSave
Research Article1210.1016/j.plantsci.2023.111924Alteration of carbon and nitrogen allocation in winter wheat under elevated ozoneNov 20, 2023Plant ScienceYanru Feng + 3 more +3CiteListenSave
Research Article1110.1016/j.plantsci.2023.111915FtsH proteases confer protection against salt and oxidative stress in Medicago sativa L.Nov 08, 2023Plant ScienceMingna Li + 9 more +9CiteListenSave
Research Article2010.1016/j.plantsci.2023.111920Physiological and transcriptional analyses reveal formation of memory under recurring drought stresses in seedlings of cotton (Gossypium hirsutum)Nov 07, 2023Plant ScienceZailong Tian + 9 more +9CiteListenSave
Research Article5510.1016/j.plantsci.2023.111904The intricate role of lipids in orchestrating plant defense responsesNov 03, 2023Plant ScienceTanashvi Seth + 3 more +3CiteListenSave