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盐胁迫下具有不同反应的小扁豆(兵豆)品种的转录组分析。

Transcriptome skimming of lentil (Lens culinaris Medikus) cultivars with contrast reaction to salt stress.

机构信息

Division of Genetics, ICAR-Indian Agricultural Research Institute, New Delhi, 110012, India.

ICAR-National Institute of Plant Biotechnology, Pusa Campus, New Delhi, 110012, India.

出版信息

Funct Integr Genomics. 2021 Jan;21(1):139-156. doi: 10.1007/s10142-020-00766-5. Epub 2021 Jan 3.

Abstract

Extensive transcriptomic skimming was conducted to decipher molecular, morphological, physiological, and biochemical responses in salt-tolerant (PDL-1) and salt-sensitive (L-4076) cultivars under control (0 mM NaCl) and salinity stress (120 mM NaCl) conditions at seedling stage. Morphological, physiological, and biochemical studies revealed that PDL-1 exhibited no salt injury and had higher K/Na ratio, relative water content (RWC), chlorophyll, glycine betaine, and soluble sugars in leaves while lower HO induced fluorescence signals in roots as compared to L-4076. Transcriptomic profile revealed a total of 17,433 significant differentially expressed genes (DEGs) under different treatments and cultivar combinations that include 2557 upregulated and 1533 downregulated transcripts between contrasting cultivars under salt stress. Accuracy of transcriptomic analysis was validated through quantification of 10 DEGs via quantitative real-time polymerase chain reaction (qRT-PCR). DEGs were functionally characterized by Gene Ontology (GO) analysis and assigned to various metabolic pathways using MapMan. DEGs were found to be significantly associated with phytohormone-mediated signal transduction, cellular redox homoeostasis, secondary metabolism, nitrogen metabolism, and cellular stress signaling. The present study revealed putative molecular mechanism of salinity tolerance in lentil together with identification of 5643 simple sequence repeats (SSRs) and 176,433 single nucleotide polymorphisms (SNPs) which can be utilized to enhance linkage maps density along with detection of quantitative trait loci (QTLs) associated with traits of interests. Stress-related pathways identified in this study divulged plant functioning that can be targeted to improve salinity stress tolerance in crop species.

摘要

进行了广泛的转录组学分析,以解析耐盐(PDL-1)和盐敏感(L-4076)品种在幼苗期对照(0 mM NaCl)和盐胁迫(120 mM NaCl)条件下的分子、形态、生理和生化反应。形态学、生理学和生物化学研究表明,与 L-4076 相比,PDL-1 没有盐害,具有更高的 K/Na 比、相对含水量(RWC)、叶片中的叶绿素、甘氨酸甜菜碱和可溶性糖,而根系中的 HO 诱导荧光信号较低。转录组谱显示,在不同处理和品种组合下共鉴定出 17433 个显著差异表达基因(DEGs),包括盐胁迫下对照品种间 2557 个上调和 1533 个下调转录本。通过定量实时聚合酶链反应(qRT-PCR)对 10 个 DEG 的定量验证了转录组分析的准确性。通过基因本体(GO)分析对 DEGs 进行功能表征,并使用 MapMan 将其分配到各种代谢途径中。发现 DEGs 与植物激素介导的信号转导、细胞氧化还原稳态、次生代谢、氮代谢和细胞应激信号密切相关。本研究揭示了小扁豆耐盐的潜在分子机制,同时鉴定了 5643 个简单重复序列(SSR)和 176433 个单核苷酸多态性(SNP),可用于提高连锁图谱密度,并检测与感兴趣性状相关的数量性状位点(QTL)。本研究中鉴定的应激相关途径揭示了植物的功能,可以针对这些功能进行改进,以提高作物物种的耐盐性。

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