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A common wild rice-derived BOC1 allele reduces callus browning in indica rice transformation

机译:常见的野生水稻衍生的BOC1等位基因在籼稻转化中减少了愈伤组织褐变

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Callus browning, a common trait derived from the indica rice cultivar (Oryza sativa L.), is a challenge to transformation regeneration. Here, we report the map-based cloning of BROWNING OF CALLUS1 (BOC1) using a population derived from crossing Teqing, an elite indica subspecies exhibiting callus browning, and Yuanjiang, a common wild rice accession (Oryza rufipogon Griff.) that is less susceptible to callus browning. We show that BOC1 encodes a SIMILAR TO RADICAL-INDUCED CELL DEATH ONE (SRO) protein. Callus browning can be reduced by appropriate upregulation of BOC1, which consequently improves the genetic transformation efficiency. The presence of a Tourist-like miniature inverted-repeat transposable element (Tourist MITE) specific to wild rice in the promoter of BOC1 increases the expression of BOC1 in callus. BOC1 may decrease cell senescence and death caused by oxidative stress. Our study provides a?gene target for improving tissue culturability and genetic transformation.
机译:Callus Browning是衍生自籼稻品种(Oryza Sativa L.)的常见性状,对转化再生来说是一种挑战。在这里,我们使用来自Crossing Teqing的人口来报告基于地图的CALLUS1(BOC1)的褐变,这是一种展示愈伤组织的精英籼稻亚种,以及袁江,伴随着普通的野生稻瘟病(Oryza Rufipogon Griff。)不易受到影响愈伤组织褐变。我们表明BOC1编码了类似于激进的细胞死亡一(SRO)蛋白质。通过适当上调BOC1可以减少愈伤组织褐变,从而提高了遗传转化效率。在Boc1的启动子中存在特异于野生米的旅游微型倒置转换元素(旅游螨)增加了Boc1在愈伤组织中的表达。 BOC1可能降低由氧化应激引起的细胞衰老和死亡。我们的研究提供了一种改善组织培养性和遗传转化的基因靶标。

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