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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Differential metabolite profiles and salinity tolerance between two genetically related brown-seeded and yellow-seeded Brassica carinata lines.
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Differential metabolite profiles and salinity tolerance between two genetically related brown-seeded and yellow-seeded Brassica carinata lines.

机译:两个遗传相关的棕色种子和黄色种子芸苔属品系之间的差异代谢物谱和盐分耐性。

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摘要

Brassica carinata (Ethiopian mustard) has previously been identified as a potential crop species suitable for marginal land in the North American prairies due to its relatively high salt tolerance. Two genetically related B. carinata lines with brown-seeded (BS) and yellow-seeded (YS) phenotypes were assessed for their tolerance to sodium sulfate. Specifically, each line was greenhouse-grown under 0, 50 and 100 mM of salt, and analyzed after four weeks and eight weeks of treatment. Generally, the height of the BS line was greater than the YS line under both salt treatments, indicating enhanced salt tolerance of the BS line. NMR-based metabolite profiling and PCA analyses indicated a more pronounced shift in key stem metabolites after four weeks of treatment with the YS line compared to the BS line. For example, tryptophan and formate levels increased in the YS line after four weeks of 100 mM salt treatment, while proline and threonine levels varied uniquely compared to other metabolites of the lines. Together, the data indicate that the brown-seeded line has greater sodium tolerance than the yellow-seed line, provide clues to the biochemical underpinnings for the phenotypic variation, and highlight the utility of B. carinata as a biorefinery crop for saline land.
机译:芸苔(埃塞俄比亚芥菜)由于其较高的耐盐性,先前已被确定为适合北美大草原边缘土地的潜在作物。评估了两个遗传相关的卡氏芽孢杆菌(B. carinata)品系的棕色种子(BS)和黄色种子(YS)表型对硫酸钠的耐受性。具体来说,将每条线在0、50和100 mM的盐下温室生长,并在处理四周和八周后进行分析。通常,在两种盐处理下,BS线的高度均大于YS线,表明BS线的耐盐性增强。基于NMR的代谢物分析和PCA分析表明,与BS品系相比,用YS品系治疗4周后,关键茎代谢物的变化更为明显。例如,在100 mM盐处理四周后,YS品系中的色氨酸和甲酸盐含量增加,而脯氨酸和苏氨酸的含量与品系中的其他代谢产物相比却发生了独特的变化。总之,数据表明,棕色种子线比黄色种子线对钠的耐受性更高,为表型变异的生化基础提供了线索,并突出了卡氏芽孢杆菌作为盐碱地生物精炼​​作物的实用性。

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