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首页> 外文期刊>BMC Plant Biology >Genome-wide systematic characterization of the HAK/KUP/KT gene family and its expression profile during plant growth and in response to low-K + stress in Saccharum
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Genome-wide systematic characterization of the HAK/KUP/KT gene family and its expression profile during plant growth and in response to low-K + stress in Saccharum

机译:植物生长期间HAK / KUP / KT基因家族及其表达谱的基因组系统特征及其表达谱系在糖粉中低k +胁迫

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摘要

Plant genomes contain a large number of HAK/KUP/KT transporters, which play important roles in potassium uptake and translocation, osmotic potential regulation, salt tolerance, root morphogenesis and plant development. Potassium deficiency in the soil of a sugarcane planting area is serious. However, the HAK/KUP/KT gene family remains to be characterized in sugarcane (Saccharum). In this study, 30 HAK/KUP/KT genes were identified in Saccharum spontaneum. Phylogenetics, duplication events, gene structures and expression patterns were analyzed. Phylogenetic analysis of the HAK/KUP/KT genes from 15 representative plants showed that this gene family is divided into four groups (clades I-IV). Both ancient whole-genome duplication (WGD) and recent gene duplication contributed to the expansion of the HAK/KUP/KT gene family. Nonsynonymous to synonymous substitution ratio (Ka/Ks) analysis showed that purifying selection was the main force driving the evolution of HAK/KUP/KT genes. The divergence time of the HAK/KUP/KT gene family was estimated to range from 134.8 to 233.7 Mya based on Ks analysis, suggesting that it is an ancient gene family in plants. Gene structure analysis showed that the HAK/KUP/KT genes were accompanied by intron gain/loss in the process of evolution. RNA-seq data analysis demonstrated that the HAK/KUP/KT genes from clades II and III were mainly constitutively expressed in various tissues, while most genes from clades I and IV had no or very low expression in the tested tissues at different developmental stages. The expression of SsHAK1 and SsHAK21 was upregulated in response to low-K+ stress. Yeast functional complementation analysis revealed that SsHAK1 and SsHAK21 could rescue K+ uptake in a yeast mutant. This study provided insights into the evolutionary history of HAK/KUP/KT genes. HAK7/9/18 were mainly expressed in the upper photosynthetic zone and mature zone of the stem. HAK7/9/18/25 were regulated by sunlight. SsHAK1 and SsHAK21 played important roles in mediating potassium acquisition under limited K+ supply. Our results provide valuable information and key candidate genes for further studies on the function of HAK/KUP/KT genes in Saccharum.
机译:植物基因组含有大量的Hak / Kup / Kt转运蛋白,其在钾摄取和易位,渗透势调节,耐盐性,根系形态发生和植物发育中起重要作用。甘蔗种植区域的土壤中缺乏钾是严重的。然而,Hak / Kup / Kt基因家族仍有特征在于甘蔗(Saccharum)。在该研究中,在Saccharum Spontaneum中鉴定了30个Hak / Kup / Kt基因。分析了系统发育,复制事件,基因结构和表达模式。来自15个代表性植物的Hak / Kup / Kt基因的系统发育分析表明,该基因家族分为四组(Clades I-IV)。古代全基因组重复(WGD)和最近的基因重复促成了Hak / Kup / Kt基因家族的扩展。非同义于同义替代比(KA / KS)分析表明,净化选择是驱动Hak / Kup / Kt基因的演变的主力。基于KS分析,Hak / Kup / Kt基因家族的分歧时间估计为134.8至233.7 mya,这表明它是植物中的古老基因家族。基因结构分析表明,Hak / Kup / Kt基因伴随着进化过程中的内含子增益/损失。 RNA-SEQ数据分析表明,来自胰蛋白II和III的HAK / KUP / KT基因主要在各种组织中组成型表达,而来自C片和IV的大多数基因在不同发育阶段的测试组织中没有或非常低的表达。响应于低k +应力,SSHAK1和SSHAK21的表达是上调的。酵母功能互补分析显示SSHAK1和SSHAK21可以拯救酵母突变体中的K +摄取。本研究提供了洞察Hak / Kup / Kt基因的进化史。 Hak7 / 9/18主要在茎的上光合区和成熟区中表达。 Hak7 / 9/18/25由阳光调节。 SSHAK1和SSHAK21在介导限量K +供应下介导钾采集时发挥了重要作用。我们的结果提供了有价值的信息和关键候选基因,用于进一步研究Hak / Kup / Kt基因在Saccharum中的功能。

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