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比较根尖端的代谢组学揭示了赋予不同水稻基因型耐旱性的不同代谢途径。

Comparative metabolomics of root-tips reveals distinct metabolic pathways conferring drought tolerance in contrasting genotypes of rice.

机构信息

Department of Systems Biology, Agricultural Biotechnology Research Institute of Iran (ABRII), Agricultural Research Education and Extension Organization (AREEO), Karaj, Iran.

Department of Plant Breeding, Cotton Research Institute of Iran (CRII), Agricultural Research, Education and Extension Organization (AREEO), Gorgan, Iran.

出版信息

BMC Genomics. 2023 Mar 27;24(1):152. doi: 10.1186/s12864-023-09246-z.

Abstract

BACKGROUND

The mechanisms underlying rice root responses to drought during the early developmental stages are yet unknown.

RESULTS

This study aimed to determine metabolic differences in IR64, a shallow-rooting, drought-susceptible genotype, and Azucena, a drought-tolerant and deep-rooting genotype under drought stress. The morphological evaluation revealed that Azucena might evade water stress by increasing the lateral root system growth, the root surface area, and length to access water. At the same time, IR64 may rely mainly on cell wall thickening to tolerate stress. Furthermore, significant differences were observed in 49 metabolites in IR64 and 80 metabolites in Azucena, for which most metabolites were implicated in secondary metabolism, amino acid metabolism, nucleotide acid metabolism and sugar and sugar alcohol metabolism. Among these metabolites, a significant positive correlation was found between allantoin, galactaric acid, gluconic acid, glucose, and drought tolerance. These metabolites may serve as markers of drought tolerance in genotype screening programs. Based on corresponding biological pathways analysis of the differentially abundant metabolites (DAMs), biosynthesis of alkaloid-derivatives of the shikimate pathway, fatty acid biosynthesis, purine metabolism, TCA cycle and amino acid biosynthesis were the most statistically enriched biological pathway in Azucena in drought response. However, in IR64, the differentially abundant metabolites of starch and sucrose metabolism were the most statistically enriched biological pathways.

CONCLUSION

Metabolic marker candidates for drought tolerance were identified in both genotypes. Thus, these markers that were experimentally determined in distinct metabolic pathways can be used for the development or selection of drought-tolerant rice genotypes.

摘要

背景

水稻在早期发育阶段对干旱的根系响应机制尚不清楚。

结果

本研究旨在确定在干旱胁迫下,浅根、耐旱基因型 Azucena 和易感旱基因型 IR64 的代谢差异。形态学评价表明,Azucena 可能通过增加侧根系统生长、根表面积和长度来获取水分,从而逃避水分胁迫。与此同时,IR64 可能主要依赖于细胞壁增厚来耐受胁迫。此外,在 IR64 中观察到 49 种代谢物和 Azucena 中 80 种代谢物存在显著差异,其中大多数代谢物与次生代谢物、氨基酸代谢物、核苷酸代谢物和糖和糖醇代谢物有关。在这些代谢物中,天门冬氨酸、半乳糖酸、葡萄糖酸、葡萄糖与耐旱性呈显著正相关。这些代谢物可作为耐旱性在基因型筛选中的标志物。基于差异丰度代谢物(DAMs)的相应生物途径分析,在干旱响应中,Azucena 中生物合成生物碱衍生的莽草酸途径、脂肪酸生物合成、嘌呤代谢、TCA 循环和氨基酸生物合成是最具统计学意义的富集生物途径。然而,在 IR64 中,淀粉和蔗糖代谢的差异丰度代谢物是最具统计学意义的富集生物途径。

结论

在两种基因型中都鉴定出了耐旱性的代谢标志物候选物。因此,这些在不同代谢途径中实验确定的标记物可用于开发或选择耐旱性水稻基因型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4d1/10044761/8b431a8cc6ad/12864_2023_9246_Fig1_HTML.jpg

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