Understanding the salt overly sensitive pathway in Prunus: Identification and characterization of NHX, CIPK, and CBL genes.

IF 3.9 2区 生物学 Q1 GENETICS & HEREDITY
Plant Genome Pub Date : 2024-03-01 Epub Date: 2023-07-26 DOI:10.1002/tpg2.20371
Biswa R Acharya, Chaoyang Zhao, Lorenso Antonio Rodriguez Reyes, Jorge F S Ferreira, Devinder Sandhu
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引用次数: 0

Abstract

Salinity is a major abiotic stress factor that can significantly impact crop growth, and productivity. In response to salt stress, the plant Salt Overly Sensitive (SOS) signaling pathway regulates the homeostasis of intracellular sodium ion concentration. The SOS1, SOS2, and SOS3 genes play critical roles in the SOS pathway, which belongs to the members of Na+/H+ exchanger (NHX), CBL-interacting protein kinase (CIPK), and calcineurin B-like (CBL) gene families, respectively. In this study, we performed genome-wide identifications and phylogenetic analyses of NHX, CIPK, and CBL genes in six Rosaceae species: Prunus persica, Prunus dulcis, Prunus mume, Prunus armeniaca, Pyrus ussuriensis × Pyrus communis, and Rosa chinensis. NHX, CIPK, and CBL genes of Arabidopsis thaliana were used as controls for phylogenetic analyses. Our analysis revealed the lineage-specific and adaptive evolutions of Rosaceae genes. Our observations indicated the existence of two primary classes of CIPK genes: those that are intron-rich and those that are intron-less. Intron-rich CIPKs in Rosaceae and Arabidopsis can be traced back to algae CIPKs and CIPKs found in early plants, suggesting that intron-less CIPKs evolved from their intron-rich counterparts. This study identified one gene for each member of the SOS signaling pathway in P. persica: PpSOS1, PpSOS2, and PpSOS3. Gene expression analyses indicated that all three genes of P. persica were expressed in roots and leaves. Yeast two-hybrid-based protein-protein interaction analyses revealed a direct interaction between PpSOS3 and PpSOS2; and between PpSOS2 and PpSOS1C-terminus region. Our findings indicate that the SOS signaling pathway is highly conserved in P. persica.

了解梅花对盐过度敏感的途径:NHX、CIPK 和 CBL 基因的鉴定和特征描述。
盐分是一种主要的非生物胁迫因子,会严重影响作物的生长和产量。为应对盐胁迫,植物对盐过度敏感(SOS)信号通路调节细胞内钠离子浓度的平衡。SOS1、SOS2和SOS3基因在SOS通路中起着关键作用,它们分别属于Na+/H+交换子(NHX)、CBL-互作蛋白激酶(CIPK)和类钙神经蛋白B(CBL)基因家族的成员。在这项研究中,我们对六种蔷薇科植物的 NHX、CIPK 和 CBL 基因进行了全基因组鉴定和系统发育分析:这六种蔷薇科植物分别是:Prunus persica、Prunus dulcis、Prunus mume、Prunus armeniaca、Pyrus ussuriensis × Pyrus communis 和 Rosa chinensis。拟南芥的 NHX、CIPK 和 CBL 基因被用作系统发育分析的对照。我们的分析揭示了蔷薇基因的特异性和适应性演变。我们的观察结果表明存在两类主要的 CIPK 基因:内含子丰富的基因和无内含子的基因。蔷薇科和拟南芥中富含内含子的 CIPK 可以追溯到藻类 CIPK 和早期植物中的 CIPK,这表明无内含子的 CIPK 是由富含内含子的 CIPK 演化而来的。这项研究为波斯菊中的 SOS 信号通路的每个成员确定了一个基因:PpSOS1、PpSOS2 和 PpSOS3。基因表达分析表明,P. persica 的所有三个基因都在根和叶中表达。基于酵母双杂交的蛋白质相互作用分析表明,PpSOS3 和 PpSOS2 之间以及 PpSOS2 和 PpSOS1C 端区域之间存在直接相互作用。我们的研究结果表明,SOS 信号通路在 P. persica 中高度保守。
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来源期刊
Plant Genome
Plant Genome PLANT SCIENCES-GENETICS & HEREDITY
CiteScore
6.00
自引率
4.80%
发文量
93
审稿时长
>12 weeks
期刊介绍: The Plant Genome publishes original research investigating all aspects of plant genomics. Technical breakthroughs reporting improvements in the efficiency and speed of acquiring and interpreting plant genomics data are welcome. The editorial board gives preference to novel reports that use innovative genomic applications that advance our understanding of plant biology that may have applications to crop improvement. The journal also publishes invited review articles and perspectives that offer insight and commentary on recent advances in genomics and their potential for agronomic improvement.
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