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首页> 外文期刊>The New Phytologist >Identification of a novel mitochondrial protein, short postembryonic roots 1 (SPR1), involved in root development and iron homeostasis in Oryza sativa.
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Identification of a novel mitochondrial protein, short postembryonic roots 1 (SPR1), involved in root development and iron homeostasis in Oryza sativa.

机译:鉴定了一种新的线粒体蛋白,即胚后短根1(SPR1),它参与了稻的根发育和铁稳态。

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摘要

A rice mutant, Oryza sativa short postembryonic roots 1 (Osspr1), has been characterized. It has short postembryonic roots, including adventitious and lateral roots, and a lower iron content in its leaves. OsSPR1 was identified by map-based cloning. It encodes a novel mitochondrial protein with the Armadillo-like repeat domain. Osspr1 mutants exhibited decreased root cell elongation. The iron content of the mutant shoots was significantly altered compared with that of wild-type shoots. A similar pattern of alteration of manganese and zinc concentrations in shoots was also observed. Complementation of the mutant confirmed that OsSPR1 is involved in post-embryonic root elongation and iron homeostasis in rice. OsSPR1 was found to be ubiquitously expressed in various tissues throughout the plant. The transcript abundance of various genes involved in iron uptake and signaling via both strategies I and II was similar in roots of wild-type and mutant plants, but was higher in the leaves of mutant plants. Thus, a novel mitochondrial protein that is involved in root elongation and plays a role in metal ion homeostasis has been identified.
机译:已鉴定出水稻突变体 Oryza sativa短胚后根1 ( Osspr1 )。它具有短的胚后根,包括不定根和侧根,并且叶片中的铁含量较低。 OsSPR1 通过基于图的克隆进行鉴定。它编码具有Armadillo样重复域的新型线粒体蛋白。 Osspr1 突变体的根细胞伸长率降低。与野生型芽相比,突变型芽的铁含量发生了显着变化。还观察到芽中锰和锌浓度变化的相似模式。突变体的补充证实 OsSPR1 参与了水稻胚后根的伸长和铁稳态。发现 OsSPR1 在整个植物的各种组织中普遍表达。通过策略I和II参与铁吸收和信号传导的各种基因的转录丰度在野生型和突变植物的根部相似,但在突变植物的叶中较高。因此,已经鉴定出一种新的线粒体蛋白,其参与根的伸长并在金属离子稳态中起作用。

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