AI Article Synopsis

  • Proplastids are key for the development of different types of plastids, including chloroplasts, which are crucial for photosynthesis.
  • A specific protein, AKRP, is localized in plastids and is essential for proper embryo development; loss of this protein leads to developmental issues.
  • Research using reverse genetics revealed that changes in AKRP affect gametophyte viability and embryo chlorophyll production, suggesting its significant role in gametophyte differentiation and embryo development.

Article Abstract

Proplastids are essential precursors for multi-fate plastid biogenesis, including chloroplast differentiation, a powerhouse for photosynthesis in plants. Arabidopsis ankyrin repeat protein (AKRP, AT5G66055) is a plastid-localized protein with a putative function in plastid differentiation and morphogenesis. Loss of function of leads to embryo developmental arrest. Whether AKRP is critical pre-fertilization has remained unresolved. Here, using reverse genetics, we report a new allele, , that exhibited a reduced frequency of mutant embryos (<13%) compared to previously reported alleles. affected both male and female gametophytes resulting in reduced viability, incompetence in pollen tube attraction, altered gametic cell fate, and embryo arrest that were depleted of chlorophyll. AKRP is widely expressed, and the AKRP-GFP fusion localized to plastids of both gametophytes, in isolated chloroplast and co-localized with a plastid marker in pollen and pollen tubes. Cell-type-specific complementation of hinted at the developmental timing at which AKRP might play an essential role. Our findings provide a plausible insight into the crucial role of AKRP in the differentiation of both gametophytes and coupling embryo development with chlorophyll synthesis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8958021PMC
http://dx.doi.org/10.3389/fpls.2022.767339DOI Listing

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