Drought Responses in Poaceae: Exploring the Core Components of the ABA Signaling Pathway in Setaria italica and Setaria viridis

Plants Pub Date : 2024-05-23 DOI:10.3390/plants13111451
Isabella Peres de Oliveira, Camila Schaaf, Nathalia de Setta
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Abstract

Drought severely impacts plant development and reproduction, reducing biomass and seed number, and altering flowering patterns. Drought-tolerant Setaria italica and Setaria viridis species have emerged as prominent model species for investigating water deficit responses in the Poaceae family, the most important source of food and biofuel biomass worldwide. In higher plants, abscisic acid (ABA) regulates environmental stress responses, and its signaling entails interactions between PYR/PYL/RCAR receptors and clade A PP2C phosphatases, which in turn modulate SnRK2 kinases via reversible phosphorylation to activate ABA-responsive genes. To compare the diversity of PYR/PYL/RCAR, PP2C, and SnRK2 between S. italica and S. viridis, and their involvement in water deficit responses, we examined gene and regulatory region structures, investigated orthology relationships, and analyzed their gene expression patterns under water stress via a meta-analysis approach. Results showed that coding and regulatory sequences of PYR/PYL/RCARs, PP2Cs, and SnRK2s are highly conserved between Setaria spp., allowing us to propose pairs of orthologous genes for all the loci identified. Phylogenetic relationships indicate which clades of Setaria spp. sequences are homologous to the functionally well-characterized Arabidopsis thaliana PYR/PYL/RCAR, PP2C, and SnRK2 genes. Gene expression analysis showed a general downregulation of PYL genes, contrasting with upregulation of PP2C genes, and variable expression modulation of SnRK2 genes under drought stress. This complex network implies that ABA core signaling is a diverse and multifaceted process. Through our analysis, we identified promising candidate genes for further functional characterization, with great potential as targets for drought resistance studies, ultimately leading to advances in Poaceae biology and crop-breeding strategies.
菊科植物的干旱响应:探索意大利鼠李属(Setaria italica)和野鼠李属(Setaria viridis)ABA 信号途径的核心成分
干旱严重影响植物的发育和繁殖,减少生物量和种子数量,并改变开花模式。耐旱的意大利荠属(Setaria italica)和桔梗属(Setaria viridis)物种已成为研究全球最重要的粮食和生物燃料生物量来源--蒲科植物缺水反应的重要模式物种。在高等植物中,脱落酸(ABA)调节环境胁迫反应,其信号传导需要PYR/PYL/RCAR受体和A族PP2C磷酸酶之间的相互作用,后者又通过可逆磷酸化调节SnRK2激酶以激活ABA反应基因。为了比较PYR/PYL/RCAR、PP2C和SnRK2在S. italica和S. viridis之间的多样性,以及它们在缺水响应中的参与情况,我们考察了基因和调控区结构,研究了同源关系,并通过荟萃分析方法分析了它们在水分胁迫下的基因表达模式。结果表明,PYR/PYL/RCARs、PP2Cs和SnRK2s的编码和调控序列在不同节间高度保守,因此我们可以为所有鉴定出的位点提出成对的直向同源基因。系统发育关系表明,哪些节肢动物属序列与功能表征良好的拟南芥PYR/PYL/RCAR、PP2C 和 SnRK2 基因同源。基因表达分析表明,在干旱胁迫下,PYL 基因普遍下调,而 PP2C 基因上调,SnRK2 基因的表达也发生了变化。这一复杂的网络表明,ABA 核心信号转导是一个多样化和多层面的过程。通过分析,我们发现了有望进一步进行功能表征的候选基因,这些基因极有可能成为抗旱性研究的靶标,最终推动蒲葵生物学和作物育种策略的发展。
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