Molecular mechanisms of natural de novo shoot organogenesis and their applications [0.03%]
天然的从头式 shoots 发育的分子机制及其应用
Hanim Kim,Lin Xu,Pil Joon Seo
Hanim Kim
Natural de novo shoot organogenesis (DNSO) is the spontaneous regeneration of shoots from wound sites outside the shoot apical region through endogenous developmental programs. This regenerative capacity enables plants to recover from sever...
Jingwei Yu,Yushan Huang,Ancheng C Huang
Jingwei Yu
Plants display remarkable metabolic plasticity for environmental adaptation. Precise spatiotemporal biosynthesis of specialized metabolites in plants is critical for such adaptation. Despite the vast chemical diversity unveiled hitherto, th...
Abscisic acid activity across tissues: Linking biosynthesis, transport, and target-site action [0.03%]
脱落酸在不同组织中的活性:生物合成、运输及作用部位之间的联系
Moran Anfang,Eilon Shani
Moran Anfang
Abscisic acid (ABA) coordinates plant development and water-stress responses through mechanisms that extend beyond local biosynthesis and signaling. Increasing evidence indicates that ABA function depends on the spatial organization of horm...
The life and legacy of the root endodermis: A spatiotemporal view of function and development [0.03%]
根内皮层的生命与遗产:功能和发育的时空观
Swati Mahiwal,Tonni Grube Andersen
Swati Mahiwal
The root endodermis forms a selective interface between the soil environment and the vasculature, which is essential for radial transport. Traditionally defined by its barriers, it is increasingly understood that the endodermis is a dynamic...
Going viral - Plant selective autophagy swiping left and right on viral infections [0.03%]
顶刊导读:植物选择性自噬左右互搏抗病毒入侵
Jens Christian Mülders,Marion Clavel
Jens Christian Mülders
Selective autophagy has emerged as a central interface in plant-virus interactions, acting at once as an antiviral defense, a proviral vulnerability, and a regulator of host immune homeostasis. In plants, autophagy can directly target viral...
Arnold J Bloom
Arnold J Bloom
Vascular plants distribute reducing power among organelles, cells, and tissues in the form of malate, a stable metabolite from which organisms can quickly generate the strong reductants NADH and NADPH. Current thought is that malate in chlo...
Ralf Müller-Xing,Sara Farrona
Ralf Müller-Xing
Kilian Duijts,Christa Testerink
Kilian Duijts
Plant architectural innovations have been fundamental in improving plant production. With a changing climate, salt stress is an increasing threat to agricultural production, but if and how plant architecture contributes to salt tolerance re...
First glimpses into the molecular kaleidoscope of pyrenoid diversity [0.03%]
揭秘.pyrenoid.多样性的分子万花筒初探
Poojaa Ragunathan,Adam Lee Xin Hong,Oliver Mueller-Cajar
Poojaa Ragunathan
A significant proportion of global photosynthetic carbon fixation relies on the pyrenoid, a biomolecular condensate found in the chloroplast of most unicellular algae, where the CO2-fixing enzyme Rubisco is exposed to saturating concentrati...
A blind spot in jasmonate biology - How does JA-Ile biosynthesis start? [0.03%]
茉藜素生物学中的盲点-JA-Ile生物合成是如何开始的?
Yunjing Ma,Stefan Mielke,Debora Gasperini
Yunjing Ma
The lipid-derived phytohormone JA-Ile is a critical regulator of environmental and developmental responses in flowering plants. This signaling molecule protects plants against biotic and abiotic challenges and plays essential roles in repro...