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52. Analysis of the Arabidopsiscoilinmutant reveals a positive role of AtCOILIN in plant immunity

53. The Arabidopsis D27-like1 is a cis/cis/trans-β-carotene Isomerase that Contributes to Strigolactone Biosynthesis and Negatively Impacts Abscisic Acid Level

56. RETINOBLASTOMA RELATED (RBR) interaction with key factors of the RNA-directed DNA methylation (RdDM) pathway

58. The Arabidopsis D27‐LIKE1 is a cis/cis/trans‐β‐carotene isomerase that contributes to Strigolactone biosynthesis and negatively impacts ABA level.

64. The wheat stem rust resistance gene Sr43encodes an unusual protein kinase

66. The genome of single-petal jasmine (Jasminum sambac) provides insights into heat stress tolerance and aroma compound biosynthesis.

80. Generation of cell polarity in plants links endocytosis, auxin distribution and cell fate decisions

81. In vivo FRETFLIM reveals cell-type-specific protein interactions in Arabidopsis roots

82. Plethora proteins as dose-dependent master regulators of Arabidopsis root development

83. The RETINOBLASTOMA-RELATED gene regulates stem cell maintenance in Arabidopsis roots

86. The PIN auxin efflux facilitator network controls growth and patterning in Arabidopsis roots

87. The Arabidopsis HOBBIT gene encodes a CDC27 homolog that links the plant cell cycle to progression of cell differentiation

88. AtPIN4 mediates sink-driven auxin gradients and root patterning in Arabidopsis

91. Anchorene is a carotenoid-derived regulatory metabolite required for anchor root formation in Arabidopsis

92. Arabidopsis RETINOBLASTOMA RELATED directly regulates DNA damage responses through functions beyond cell cycle control

93. Emergent Protective Organogenesis in Date Palms: A Morpho-devo-dynamic Adaptive Strategy During Early Development

94. Indeterminate-domain 4 4 (IDD4) coordinates immune responses with plant-growth in Arabidopsis thaliana

95. Polar PIN Localization Directs Auxin Flow in Plants

97. A Jasmonate Signaling Network Activates Root Stem Cells and Promotes Regeneration

99. INDETERMINATE-DOMAIN 4 (IDD4) coordinates immune responses with plant-growth in Arabidopsis thaliana

100. Transcription Factor-Mediated Control of Anthocyanin Biosynthesis in Vegetative Tissues1[OPEN]

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