4.7 Article

Medicago ABI3 Splicing Isoforms Regulate the Expression of Different Gene Clusters to Orchestrate Seed Maturation

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PLANTS-BASEL
卷 10, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/plants10081710

关键词

ABI3; seed maturation; desiccation tolerance; Medicago; transcriptomics; alternative splicing

资金

  1. ANR DESWITCH project [ANR-19-CE20-0027]

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The study investigated the role of the ABI3 gene in seed maturation in Medicago, revealing three MtABI3 expression isoforms with distinct regulatory functions and gene clusters. Complementation experiments in Arabidopsis showed that all isoforms restored seed viability and desiccation tolerance, highlighting the importance of understanding the ABI3 network in seed development.
Seed maturation comprises important developmental processes, such as seed filling and the acquisition of seed germination capacity, desiccation tolerance, longevity, and dormancy. The molecular regulation of these processes is tightly controlled by the LAFL transcription factors, among which ABSCISIC ACID INSENSITIVE 3 (ABI3) was shown to be involved in most of these seed maturation processes. Here, we studied the ABI3 gene from Medicago truncatula, a model legume plant for seed studies. With the transcriptomes of two loss-of-function Medicago abi3 mutants, we were able to show that many gene classes were impacted by the abi3 mutation at different stages of early, middle, and late seed maturation. We also discovered three MtABI3 expression isoforms, which present contrasting expression patterns during seed development. Moreover, by ectopically expressing these isoforms in Medicago hairy roots generated from the abi3 mutant line background, we showed that each isoform regulated specific gene clusters, suggesting divergent molecular functions. Furthermore, we complemented the Arabidopsis abi3 mutant with each of the three MtABI3 isoforms and concluded that all isoforms were capable of restoring seed viability and desiccation tolerance phenotypes even if not all isoforms complemented the seed color phenotype. Taken together, our results allow a better understanding of the ABI3 network in Medicago during seed development, as well as the discovery of commonly regulated genes from the three MtABI3 isoforms, which can give us new insights into how desiccation tolerance and seed viability are regulated.

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