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首页> 外文期刊>Journal of Experimental Botany >The Arabidopsis plastid-signalling mutant gun1 (genomes uncoupled1) shows altered sensitivity to sucrose and abscisic acid and alterations in early seedling development
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The Arabidopsis plastid-signalling mutant gun1 (genomes uncoupled1) shows altered sensitivity to sucrose and abscisic acid and alterations in early seedling development

机译:拟南芥质体信号突变突变体枪1(基因组未耦合1)显示出对蔗糖和脱落酸的敏感性改变以及幼苗早期发育的改变

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Developing seedlings of the Arabidopsis gun1 (genomes uncoupled1) mutant, which is defective in retrograde plastid-to-nucleus signalling, show several previously unrecognized mutant phenotypes. gun1 seedlings accumulated less anthocyanin than wild-type seedlings when grown in the presence of 2% (w/v) sucrose, due to lower amounts of transcripts of early anthocyanin biosynthesis genes in gun1. Norflurazon and lincomycin, which induce retrograde signalling, further decreased the anthocyanin content of sucrose-treated seedlings, and altered the temporal pattern of anthocyanin accumulation. Lincomycin treatment altered the spatial pattern of sucrose-induced anthocyanin accumulation, suggesting that plastids provide information for the regulation of anthocyanin biosynthesis in Arabidopsis seedlings. The temporal pattern of accumulation of LHCB1 transcripts differed between wild-type and gun1 seedlings, and gun1 seedlings were more sensitive to sucrose suppression of LHCB1 transcript accumulation than wild-type seedlings. Growth and development of gun1 seedlings was more sensitive to exogenous 2% sucrose than wild-type seedlings and, in the presence of lincomycin, cotyledon expansion was enhanced in gun1 seedlings compared to the wild type. gun1 seedlings were more sensitive than wild-type seedlings to the inhibition of seedling growth and development by abscisic acid. These observations clearly implicate GUN1 and plastid signalling in the regulation of seedling development and anthocyanin biosynthesis, and indicate a complex interplay between sucrose and plastid signalling pathways.
机译:拟南芥gun1(基因组未耦合1)突变体的发育中的幼苗,逆行的质体到核信号转导是有缺陷的,显示了几个以前无法识别的突变体表型。在gun2中存在2%(w / v)蔗糖的情况下,gun1幼苗积累的花色苷比野生型幼苗少,这是由于gun1中早期花色苷生物合成基因的转录物含量较低。 Norflurazon和lincomycin诱导逆行信号传递,进一步降低了蔗糖处理过的幼苗中花色苷的含量,并改变了花色苷积累的时间模式。林可霉素处理改变了蔗糖诱导的花色苷积累的空间格局,表明质体为调节拟南芥幼苗中的花色苷生物合成提供了信息。野生型和gun1幼苗的LHCB1转录本积累的时间模式不同,并且gun1幼苗对蔗糖抑制LHCB1转录本积累的敏感性高于野生型幼苗。与野生型幼苗相比,gun1幼苗的生长和发育对外源2%蔗糖更敏感,并且在存在林可霉素的情况下,gun1幼苗的子叶扩展量比野生型增加。 gun1幼苗比野生型幼苗对脱落酸抑制幼苗生长和发育更敏感。这些观察清楚地暗示了GUN1和质体信号传导在幼苗发育和花色苷生物合成的调节中,并且表明了蔗糖和质体信号传导途径之间的复杂相互作用。

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