BUST 发表于 2025-3-23 10:55:46
http://reply.papertrans.cn/84/8302/830123/830123_11.png单纯 发表于 2025-3-23 17:32:46
Dynamic Pool of Nitric Oxide (NO) in Rhizosphere Modulates Root Architecture, Nutrient Acquisition derived-NO contributes to the total available NO in the rhizosphere which in turn affects root functioning. Soils harbour different types of microbes which involve nitrifying-denitryifying bacteria, photoautotrophs, chemotrophs or facultative/obligate symbionts. Nitric oxide levels in the rhizospher敏捷 发表于 2025-3-23 21:28:26
Interaction of Cytokinin and Ethylene in the Regulation of Primary Root Growth and Development,tem and cell expansion within the elongation zone, respectively, are discussed. Auxin-independent mechanisms to regulate root growth by these hormones are also considered. A model is proposed that provides a framework for the interaction of these hormones in the regulation of primary root growth.infringe 发表于 2025-3-24 02:14:14
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Crosstalk of Jasmonates with Phytohormones Accompanying Root Growth, Development and Microbe-Interaadventitious roots, gravitotropic response, root—microbe interactions. In this chapter we have given an overview on mechanism of JA action and its effects on various aspects of root growth and development.亵渎 发表于 2025-3-24 14:07:47
Jasmonates: A Thorough Insight into the Mechanism of Biosynthesis, Signaling and Action in Root Gro60s when MeJA was first identified from jasmine flower. Since then the physiological functions, biosynthesis, distribution, perception, signalling and crosstalk of JA have been elucidated. A balance between production, distribution and abolishment contributes to the fine-tuning of JA responses. TheSpinal-Fusion 发表于 2025-3-24 17:56:20
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http://reply.papertrans.cn/84/8302/830123/830123_19.png碎石 发表于 2025-3-24 23:45:46
Book 2021n the tolerance and modulatory mechanisms of root physiology in response to light burst, ROS generation, agravitrophic response, abiotic stress and biotic interactions..Root Apex Cognition: From Neuronal Molecules to Root-Fungal Networks and Suberin in Monocotyledonous Crop Plants: Structure and Fun