Phytohormonal modulation alleviates arsenic toxicity in rice by enhancing antioxidant defenses, proline metabolism, and arsenic detoxification mechanisms. [PDF]
Shaghaleh H +5 more
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Brassinosteroids mediate proper coordination of sepal elongation
Scripts and MorphographX files and related data for the paper "Brassinosteroids mediate proper coordination of sepal elongation" by Rusnak et al.
Byron Rusnak, Adrienne H.K. Roeder
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Vascular-specific genome editing enhances low-phosphate tolerance in rice. [PDF]
Chia JC.
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NAC in the middle: the conserved NAC transcription factor OsCUC1 controls organ boundary formation in rice. [PDF]
González-Suárez P, Song Y.
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Coordinated physiological and molecular reprogramming by brassinosteroids improves soybean tolerance to combined salt and drought stress. [PDF]
Khan TA, Saeed T, Tran LSP, Gururani MA.
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AGP and EXO-LIKE genes promote brassinosteroid-dependent anisotropic growth. [PDF]
Novikova D +8 more
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Editorial for the Special Issue "Metabolic Analysis of Plant Development and Defense Responses". [PDF]
Amin A.
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Arbuscular Mycorrhizal Fungi Inoculation Mediated Changes in Phytohormones Under Drought Stress. [PDF]
Chandrasekaran M, Sivanesan I, Chun SC.
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Molecular Mechanisms of Plant Stress Tolerance: From Stress Perception to Phytohormonal Crosstalk and Transcriptional Regulation. [PDF]
Ali S, Moon YS.
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Spatial and single-cell transcriptomics uncover brassinosteroid-mediated coordination of sepal elongation in Arabidopsis. [PDF]
Rusnak B +3 more
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