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Alinsug, M. V.

Publications and source records attributed to Alinsug, M. V..

2 recordsLinked to original sources

Trends and Gaps on Philippine Scombrid Research: A bibliometric analysis

Philippine scombrids have been among the top priorities in fisheries research due primarily to their economic value worldwide. Assessment of the number of studies under general themes (diversity, ecology, taxonomy and systematics, diseases and parasites, and conservation) provides essential information to evaluate trends and gaps of research. This study presents a bibliometric evaluation of the temporal trends from 2000-2019 on Philippine scombrid research. Seven out of nine tuna species have SREA values equal to or higher than 1 with Thunnus albacares being the most researched tuna species. Twelve out of thirteen non-tuna species have SREA values less than one, thus indicating low research effort. It was apparent that there were significant differences in the number of studies in each thematic area except in chemical analysis and diseases and parasites between scombrid groups where there was low research effort observed. The research points at the uneven research distributions between scombrid groups in each thematic area. As locally published research are significantly behind foreign publications in terms of citation index, international collaborations by Filipino researchers have shown an increase research impact. Our study hopes to influence the local and international R&D agenda on Philippine scombrids and promote solidarity among nations towards its conservation and management.

bioinformatics

AtHDA15 attenuates COP1 via transcriptional quiescence, direct binding, and sub-compartmentalization during photomorphogenesis

Light is an essential environmental cue that determines the overall growth and development of plants. However, the molecular mechanisms underpinning the light signaling network are obscured by the epigenetic machinery where reversible acetylation and deacetylation play crucial roles in modulating light-regulated gene expression. In this paper, we demonstrate that HDA15 represses COP1, the master switch in the light signaling network, by deacetylation, protein interaction, and sub-compartmentalization. hda15 T-DNA mutant lines exhibited light hyposensitivity with significantly reduced HY5 and PIF3 transcript levels leading to long-hypocotyl phenotypes in the dark while its overexpression exhibited elevated HY5 transcripts and short hypocotyl phenotypes. In vivo and in vitro binding assays further show that HDA15 directly interacts with COP1 inside the nucleus modulating COP1s repressive activities. Crossing hda15-t27 with cop1-4 mutants resulted in short-hypocotyl and dwarfed phenotypes, reminiscent of cop1-4 mutants suggesting COP1 is epistatic to HDA15. Although light signals the nucleocytoplasmic shuttling of HDA15, the presence of COP1 triggers its nuclear localization. A working model is presented elucidating the concerted interplay between HDA15 and COP1 under light and dark conditions.

plant biology