AI Article Synopsis

  • Auxin Response Factors (ARF) are transcription factors that play a crucial role in regulating auxin signaling and various biological processes, including plant growth and yield.
  • A systematic analysis identified 12 ARF genes in pigeonpea, which are crucial for embryo and seed development, with these genes found across several chromosomes and showing specific DNA binding domains.
  • Expression studies indicated that certain ARF genes (like CcARF2, CcARF3, and CcARF18) are significantly related to higher seed numbers, suggesting they play an important role in seed development in different pigeonpea genotypes.

Article Abstract

Auxin Response Factors (ARF) are a family of transcription factors that mediate auxin signalling and regulate multiple biological processes. Their crucial role in increasing plant biomass/yield influenced this study, where a systematic analysis of ARF gene family was carried out to identify the key proteins controlling embryo/seed developmental pathways in pigeonpea. A genome-wide scan revealed the presence of 12 ARF genes in pigeonpea, distributed across the chromosomes 1, 3, 4, 8 and 11. Domain analysis of ARF proteins showed the presence of B3 DNA binding, AUX response, and IAA domains. Majority of them are of nuclear origin, and do not exhibit the level of genomic expansion as observed in Glycine max (51 members). The duplication events seem to range from 31.6 to 42.3 million years ago (mya). Promoter analysis revealed the presence of multiple cis-acting elements related to stress responses, hormone signalling and other development processes. The expression atlas data highlighted the expression of CcARF8 in hypocotyl, bud and flower whereas, CcARF7 expression was significantly high in pod. The real-time expression of CcARF2, CcARF3 and CcARF18 was highest in genotypes with high seed number indicating their key role in regulating embryo development and determining seed set in pigeonpea.

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Source
http://dx.doi.org/10.1016/j.ijbiomac.2023.126833DOI Listing

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