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Dual role of SND1 facilitates efficient communication between abiotic stress signalling and normal growth in Arabidopsis

机译:SND1的双重作用促进了拟南芥中非生物胁迫信号与正常生长之间的有效交流

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Certain plant cells synthesize secondary cell walls besides primary cell walls. This biosynthesis is strictly controlled by an array of transcription factors. Here, we show that SND1, a regulator of cell-wall biosynthesis, regulates abscisic acid (ABA) biosynthesis to ensure optimal plant growth. In Arabidopsis, the lack of SND1 and its homolog NST1 leads to the deficiency of secondary cell walls, preventing snd1nst1 double mutant seedlings from growing upright. Compared to wild type seedlings, the snd1 knockout mutant seedlings accumulated less anthocyanin and exhibited low tolerance to salt stress. Compared to wild type seedlings, the snd1 knockout seedlings were more sensitive to salt stress. Although SND1 can bind to the promoter of Myb46, we observed that SND1 binds directly to the promoter of the ABI4 gene, thereby reducing ABA levels under normal growth conditions. Thus, plants adjust secondary cell wall thickening and growth via SND1. SND1 has a dual function: it activates the Myb46 pathway, fostering lignin biosynthesis to produce sufficient cell wall components for growth, while maintaining a low ABA concentration, as it inhibits growth. This dual function of SND1 may help plants modulate their growth efficiently.
机译:某些植物细胞除了初级细胞壁外还合成次级细胞壁。这种生物合成受到一系列转录因子的严格控制。在这里,我们显示SND1,细胞壁生物合成的调节器,调节脱落酸(ABA)的生物合成,以确保最佳的植物生长。在拟南芥中,缺少SND1及其同系物NST1导致次级细胞壁的缺乏,从而阻止snd1nst1双突变体幼苗直立生长。与野生型幼苗相比,snd1基因敲除突变体幼苗积累的花色苷较少,并且对盐胁迫的耐受性较低。与野生型幼苗相比,snd1基因敲除幼苗对盐胁迫更为敏感。尽管SND1可以与Myb46的启动子结合,但我们观察到SND1直接与ABI4基因的启动子结合,从而降低了正常生长条件下的ABA水平。因此,植物通过SND1调节次生细胞壁的增厚和生长。 SND1具有双重功能:它激活Myb46途径,促进木质素的生物合成,以产生足够的细胞壁成分来生长,同时保持低ABA浓度,因为它抑制了生长。 SND1的这种双重功能可以帮助植物有效地调节其生长。

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