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Becerra-Garcia, R. E.

Publications and source records attributed to Becerra-Garcia, R. E..

2 recordsLinked to original sources

The transcription factor NO TRANSMITTING TRACT / WIP2 regulates cytokinin homeostasis in Arabidopsis

NO TRANSMITTING TRACT / WIP2 (NTT/WIP2) is a zinc finger transcription factor that alters developmental programs in Arabidopsis when overexpressed. Loss of NTT function, alone or in combination with closely related genes, leads to developmental defects in gynoecia and roots, respectively. Its overexpression phenotype resembles the effects of cytokinin treatments, suggesting a potential connection to this hormonal pathway. To further investigate this connection, we conducted cytokinin content and response evaluations, and transcriptome analyses in an inducible NTT line. Alterations in cytokinin content and response, as evaluated with the TCSn::GFP line, were observed. In both cases, as in the global expression analyses, the observed changes were dependent on the tissue analyzed. Moreover, Y1H and transactivation assays suggested direct NTT binding to the IPT5, AHP6 and CKX7, regulatory regions. We propose that NTT, among other mechanisms, regulates development through the modulation of cytokinin homeostasis at different levels, including its local concentration. Since NTT is a target of AUXIN RESPONSE FACTOR 5 / MONOPTEROS, the results presented here indicate that NTT connects an auxin input to a change in cytokinin levels.

plant biology↗

Characterization of the Tuta absoluta virome reveals higher viral diversity in field populations

A significant number of insect-specific viruses (ISVs) have been discovered in agriculturally important insect pests, facilitated by high-throughput sequencing (HTS). Despite its global impact on tomato crops, the RNA virome of the South American tomato pinworm, Tuta absoluta, remains uncharacterized. In this study, we utilized meta-transcriptomics and bioinformatic approaches to discover the RNA virome of T. absoluta across worldwide populations. We identified ten novel ISVs, classified into six groups: Nidovirales, Bunyavirales, Mononegavirales, Virgaviridae, Iflaviridae, Nodaviridae, Solemoviridae, and Phasmaviridae. Notably, no core virus was consistently present across the studied populations, and field-collected samples revealed a greater diversity of ISVs compared to those from laboratory samples. In addition, we detected plant-infecting viruses and mycoviruses associated with the pest. This study represents the first description of the RNA virome associated with T. absoluta, providing valuable insights into its biological and ecological interactions. It also lay the foundation for future studies aimed to clarify the biological roles of ISVs.

microbiology↗