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钾胁迫下低钾耐受和敏感甘薯基因型的比较生理和转录组分析。

Comparative physiological and transcriptome analysis between potassium-deficiency tolerant and sensitive sweetpotato genotypes in response to potassium-deficiency stress.

机构信息

Xuzhou Sweetpotato Research Center, Xuzhou Institute of Agricultural Sciences, Xuzhou, Jiangsu, China.

Key Laboratory of Sweetpotato Biology and Genetic Breeding, Ministry of Agriculture, National Agricultural Experimental Station for Soil Quality, Xuzhou, Jiangsu, China.

出版信息

BMC Genomics. 2024 Jan 15;25(1):61. doi: 10.1186/s12864-023-09939-5.

Abstract

BACKGROUND

Sweetpotato is a typical ''potassium (K) favoring'' food crop, which root differentiation process needs a large supply of potassium fertilizer and determine the final root yield. To further understand the regulatory network of the response to low potassium stress, here we analyze physiological and biochemical characteristics, and investigated root transcriptional changes in two sweetpotato genotypes, namely, - K tolerant "Xu32" and - K susceptible"NZ1".

RESULT

We found Xu32 had the higher capability of K absorption than NZ1 with better growth performance, higher net photosynthetic rate and higher chlorophyll contents under low potassium stress, and identified 889 differentially expressed genes (DEGs) in Xu32, 634 DEGs in NZ1, 256 common DEGs in both Xu32 and NZ1. The Gene Ontology (GO) term in molecular function enrichment analysis revealed that the DEGs under low K stress are predominately involved in catalytic activity, binding, transporter activity and antioxidant activity. Moreover, the more numbers of identified DEGs in Xu32 than that in NZ1 responded to K-deficiency belong to the process of photosynthesis, carbohydrate metabolism, ion transport, hormone signaling, stress-related and antioxidant system may result in different ability to K-deficiency tolerance. The unique genes in Xu32 may make a great contribution to enhance low K tolerance, and provide useful information for the molecular regulation mechanism of K-deficiency tolerance in sweetpotato.

CONCLUSIONS

The common and distinct expression pattern between the two sweetpotato genotypes illuminate a complex mechanism response to low potassium exist in sweetpotato. The study provides some candidate genes, which can be used in sweetpotato breeding program for improving low potassium stress tolerance.

摘要

背景

甘薯是一种典型的“钾(K)偏好”作物,其根系分化过程需要大量的钾肥供应,并决定最终的根产量。为了进一步了解低钾胁迫响应的调控网络,我们分析了两种甘薯基因型(即耐低钾“Xu32”和低钾敏感“NZ1”)的生理生化特性和根系转录变化。

结果

我们发现 Xu32 比 NZ1 具有更高的钾吸收能力,在低钾胁迫下具有更好的生长性能、更高的净光合速率和更高的叶绿素含量,并在 Xu32 中鉴定出 889 个差异表达基因(DEGs),在 NZ1 中鉴定出 634 个 DEGs,在 Xu32 和 NZ1 中共同鉴定出 256 个 DEGs。分子功能富集分析的基因本体(GO)术语表明,低 K 胁迫下的 DEGs 主要涉及催化活性、结合、转运活性和抗氧化活性。此外,Xu32 中鉴定出的对 K 缺乏响应的 DEGs 数量多于 NZ1,这些 DEGs 涉及光合作用、碳水化合物代谢、离子转运、激素信号转导、应激相关和抗氧化系统,可能导致不同的低钾耐性。Xu32 中的特有基因可能对增强低钾耐性有很大贡献,并为甘薯低钾耐性的分子调控机制提供了有用信息。

结论

两种甘薯基因型的共同和独特表达模式阐明了甘薯对低钾存在复杂的机制响应。该研究提供了一些候选基因,可用于甘薯的低钾胁迫耐性改良的育种计划。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d32/10789036/d95829832a7a/12864_2023_9939_Fig1_HTML.jpg

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