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Divergent N Deficiency-Dependent Senescence and Transcriptome Response in Developmentally Old and Young Brassica napus Leaves

机译:发育中的甘蓝型油菜叶片的不同氮缺乏依赖性衰老和转录组反应。

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摘要

In the spring oilseed rape (OSR) cultivar ‘Mozart’ grown under optimal N supply (NO) or mild N deficiency (NL) the transcriptome changes associated with progressing age until early senescence in developmentally old lower canopy leaves (leaf #4) and younger higher canopy leaves (leaf #8) were investigated. Twelve weeks old NO and NL plants appeared phenotypically and transcriptomically identical, but thereafter distinct nutrition-dependent differences in gene expression patterns in lower and upper canopy leaves emerged. In NO leaves #4 of 14-week-old compared to 13-week-old plants, ∼600 genes were up- or downregulated, whereas in NL leaves #4 ∼3000 genes were up- or downregulated. In contrast, in 15-week-old compared to 13-week-old upper canopy leaves #8 more genes were up- or downregulated in optimally N-supplied plants (∼2000 genes) than in N-depleted plants (∼750 genes). This opposing effect of N depletion on gene regulation was even more prominent among photosynthesis-related genes (PSGs). Between week 13 and 14 in leaves #4, 99 of 110 PSGs were downregulated in NL plants, but none in NO plants. In contrast, from weeks 13 to 16 in leaves #8 of NL plants only 11 PSGs were downregulated in comparison to 66 PSGs in NO plants. Different effects of N depletion in lower versus upper canopy leaves were also apparent in upregulation of autophagy genes and NAC transcription factors. More than half of the regulated NAC and WRKY transcription factor, autophagy and protease genes were specifically regulated in NL leaves #4 or NO leaves #8 and thus may contribute to differences in senescence and nutrient mobilization in these leaves. We suggest that in N-deficient plants the upper leaves retain their N resources longer than in amply fertilized plants and remobilize them only after shedding of the lower leaves.
机译:在春季油菜(OSR)品种“莫扎特”(Mozart)在最佳氮供应(NO)或轻度氮缺乏(NL)下生长,其转录组的变化与年龄增长相关,直到发育较早的下部冠层叶片(叶片#4)衰老为止。研究了较高的冠层叶(第8叶)。十二周龄的NO和NL植物在表型和转录组上都表现出相同,但此后在上部和下部冠层叶片的基因表达模式中出现了明显的营养依赖性差异。在14周龄的NO叶片中,与13周龄的植物相比,第4叶片中约有600个基因被上调或下调,而在NL叶中,第4〜3000个基因中则有上调或下调。相反,在15周龄的上部冠层叶片中,与13周龄的上部冠层叶片#8相比,最佳氮供应植物(约2000个基因)的基因被上调或下调的数量要比贫氮植物(约750个基因)的上调或下调的基因更多。 。 N耗竭对基因调控的这种相反影响在光合作用相关基因(PSG)中更为突出。在第4叶的第13周到第14周之间,NL植物中110个PSG中的99个被下调,而NO植物中没有一个。相反,从第13周到第16周,NL植物的#8叶中只有11个PSG被下调,而NO植物中只有66个PSG被下调。自噬基因和NAC转录因子的上调也明显影响了下层冠层叶和上层冠层叶中氮耗竭的不同作用。超过一半的NAC和WRKY转录因子,自噬和蛋白酶基因受NL 4号叶片或NO 8号叶片的特异性调节,因此可能导致这些叶片的衰老和营养动员方面的差异。我们建议,在缺氮植物中,上部叶片保留的氮素资源比充分施肥的植物更长,并且仅在下部叶片脱落后才可动员。

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