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DWARF27, an Iron-Containing Protein Required for the Biosynthesis of Strigolactones, Regulates Rice Tiller Bud Outgrowth[W][OA]

机译:DWARF27是Strigolactones生物合成所必需的一种含铁蛋白,可调节水稻分iller芽的生长[W] [OA]

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摘要

Tillering in rice (Oryza sativa) is one of the most important agronomic traits that determine grain yields. Previous studies on rice tillering mutants have shown that the outgrowth of tiller buds in rice is regulated by a carotenoid-derived MAX/RMS/D (more axillary branching) pathway, which may be conserved in higher plants. Strigolactones, a group of terpenoid lactones, have been recently identified as products of the MAX/RMS/D pathway that inhibits axillary bud outgrowth. We report here the molecular genetic characterization of d27, a classic rice mutant exhibiting increased tillers and reduced plant height. D27 encodes a novel iron-containing protein that localizes in chloroplasts and is expressed mainly in vascular cells of shoots and roots. The phenotype of d27 is correlated with enhanced polar auxin transport. The phenotypes of the d27 d10 double mutant are similar to those of d10, a mutant defective in the ortholog of MAX4/RMS1 in rice. In addition, 2′-epi-5-deoxystrigol, an identified strigolactone in root exudates of rice seedlings, was undetectable in d27, and the phenotypes of d27 could be rescued by supplementation with GR24, a synthetic strigolactone analog. Our results demonstrate that D27 is involved in the MAX/RMS/D pathway, in which D27 acts as a new member participating in the biosynthesis of strigolactones.
机译:水稻分O(Oryza sativa)是决定谷物产量的最重要的农艺性状之一。以前对水稻分ing突变体的研究表明,水稻中分till芽的生长受类胡萝卜素衍生的MAX / RMS / D(更多的腋生分支)途径调控,该途径在高等植物中可能是保守的。最近,人们已将Strigolactones(一组萜类内酯)鉴定为可抑制腋芽生长的MAX / RMS / D途径的产物。我们在这里报告d27的分子遗传特征,这是一个经典的水稻突变体,表现出增加的分till和降低的株高。 D27编码一种新型的含铁蛋白,该蛋白位于叶绿体中,主要在芽和根的血管细胞中表达。 d27的表型与极性植物生长素转运增强有关。 d27 d10双突​​变体的表型与水稻中MAX4 / RMS1直系同源基因缺陷的d10突变体相似。此外,在水稻幼苗的根系分泌物中未发现2′-epi-5-deoxystrigol(一种已鉴定的异草酮内酯),在d27中未检测到,可以通过补充合成的strigolactone类似物GR24来挽救d27的表型。我们的结果表明,D27参与了MAX / RMS / D途径,其中D27充当了参与松果内酯生物合成的新成员。

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