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Homologues of the Arabidopsis thaliana SHI/STY/LRP1 genes control auxin biosynthesis and affect growth and development in the moss Physcomitrella patens.

机译:拟南芥SHI / STY / LRP1基因的同源物控制植物生长素的生物合成,并影响苔藓小立碗藓的生长和发育。

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The plant hormone auxin plays fundamental roles in vascular plants. Although exogenous auxin also stimulates developmental transitions and growth in non-vascular plants, the effects of manipulating endogenous auxin levels have thus far not been reported. Here, we have altered the levels and sites of auxin production and accumulation in the moss Physcomitrella patens by changing the expression level of homologues of the Arabidopsis SHI/STY family proteins, which are positive regulators of auxin biosynthesis genes. Constitutive expression of PpSHI1 resulted in elevated auxin levels, increased and ectopic expression of the auxin response reporter GmGH3pro:GUS, and in an increased caulonema/chloronema ratio, an effect also induced by exogenous auxin application. In addition, we observed premature ageing and necrosis in cells ectopically expressing PpSHI1. Knockout of either of the two PpSHI genes resulted in reduced auxin levels and auxin biosynthesis rates in leafy shoots, reduced internode elongation, delayed ageing, a decreased caulonema/chloronema ratio and an increased number of axillary hairs, which constitute potential auxin biosynthesis sites. Some of the identified auxin functions appear to be analogous in vascular and non-vascular plants. Furthermore, the spatiotemporal expression of the PpSHI genes and GmGH3pro:GUS strongly overlap, suggesting that local auxin biosynthesis is important for the regulation of auxin peak formation in non-vascular plants.
机译:植物激素生长素在维管植物中起着基本作用。尽管外源生长素还刺激非维管植物的发育过渡和生长,但迄今为止尚未见到操纵内源生长素水平的作用。在这里,我们通过改变拟南芥SHI / STY家族蛋白的同系物的表达水平,改变了苔藓小立碗藓中植物生长素的产生和积累的水平和位点,后者是植物生长素生物合成基因的正向调节剂。 PpSHI1的组成型表达导致植物生长素水平升高,生长素反应报告基因GmGH3pro:GUS的异位表达增加和异位表达,以及Caulonema / chloronema比率的增加,外源生长素的应用也引起了这种效应。此外,我们观察到异位表达PpSHI1的细胞中过早衰老和坏死。两种PpSHI基因之一的敲除导致叶梢中的植物生长素水平和植物生长素生物合成速率降低,节间伸长降低,衰老延迟,Caulonema / chloronema比率降低以及腋毛数量增加,构成潜在的植物生长素生物合成位点。在血管和非血管植物中,某些已确定的生长素功能似乎相似。此外,PpSHI基因和GmGH3pro:GUS的时空表达强烈重叠,这表明局部生长素的生物合成对于调节非维管植物中生长素峰的形成很重要。

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