4.4 Review

GOLDEN2-LIKE transcription factors: A golden ticket to improve crops?

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Summary: Although leaves are often considered the primary site for photosynthesis, other green nonfoliar tissues also play a significant role in carbon assimilation. Understanding the physiology and contribution of these nonfoliar tissues to overall plant carbon gain has become increasingly important due to the potential improvements it can bring to crop productivity. This review provides an overview of nonfoliar photosynthesis, including the role of stomata in these tissues and the quantification methods used to determine their contribution to overall carbon assimilation.

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Chloroplasts prevent precocious flowering through a GOLDEN2-LIKE-B-BOX DOMAIN PROTEIN module

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BBX16 mediates the repression of seedling photomorphogenesis downstream of the GUN1/GLK1 module during retrograde signalling

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Summary: Plastid-to-nucleus retrograde signaling affects photomorphogenic development. The GUN1/GLK1 module suppresses photomorphogenesis to protect seedlings when chloroplasts are damaged. BBX16 is identified as a direct target of GLK1 and acts as a regulatory branching point in the retrograde signaling pathway.

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TCP15 interacts with GOLDEN2-LIKE 1 to control cotyledon opening in Arabidopsis

Antonela L. Alem et al.

Summary: GLK1 is a key transcriptional regulator of photomorphogenesis, and, together with TCP15, it regulates the light-induced cotyledon opening and expression of related genes in plants. TCP15 forms a complex with GLK1 to coordinate the expression of cell expansion genes and genes involved in the development of the photosynthetic apparatus.

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Maize Golden2-like transcription factors boost rice chloroplast development, photosynthesis, and grain yield

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Limited conservation in cross-species comparison of GLK transcription factor binding suggested wide-spread cistrome divergence

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NATURE COMMUNICATIONS (2022)

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Antagonistic modules regulate photosynthesis-associated nuclear genes via GOLDEN2-LIKE transcription factors

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Summary: Salicylic acid-related transcription coregulators, SIB1 and LSD1, have antagonistic effects on the activity of GLK1/2 transcription factors, thereby regulating chloroplast development and stress response. SIB1 and LSD1 interact with GLK1/2 to enhance or repress the expression of PhANGs, modulating the ROS homeostasis and cell death in chloroplasts.

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Long-term abscisic acid promotes golden2-like1 degradation through constitutive photomorphogenic 1 in a light intensity-dependent manner to suppress chloroplast development

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Mutations in a Golden2-Like Gene Cause Reduced Seed Weight in Barley albino lemma 1 Mutants

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