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Overexpression of miR164b-resistant OsNAC2 improves plant architecture and grain yield in rice

机译:耐miR164b的OsNAC2的过表达改善水稻的植物结构和谷物产量

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摘要

Plant architecture is a major target of rice (Oryza sativa) breeding and selection, but the underlying regulatory networks remain unclear. Here, we overexpressed an OsNAC2 mutant (OErN) that cannot be cleaved by the miRNA miR164b. OErN plants had better plant architecture and longer panicles, and produced more grains. The parental line averaged 12.2 primary and 31.5 secondary branches in the main panicles; two OErN lines averaged 15.0 and 15.2 primary, and 41.5 and 44.3 secondary branches. In large-scale field trials, OErN plants produced at least 58.62% more total grain (by weight) compared with the parental line. They also had more large and small vascular bundles in the stem internodes and leaves. Overexpression of miR164b or down-regulation of OsNAC2 led to decreased panicle length and grain yield in the main panicle. The OErN plants showed significant up-regulation of the grain number and plant architecture-related genes IPA1 and DEP1. A survey of >3000 rice varieties found no natural mutations in the miR164b-binding site of OsNAC2. OErN increased yield in Nipponbare and the commonly grown Yangyujing 3 cultivars. In summary, we identified an efficient new strategy to increase rice yield substantially and improve plant architecture through overexpression of OsmiR164b-resistant OsNAC2.
机译:植物结构是水稻(Oryza sativa)育种和选择的主要目标,但基本的调控网络仍不清楚。在这里,我们过表达一个不能被miRNA miR164b切割的OsNAC2突变体(OErN)。 OEnN植物具有更好的植物结构和更长的圆锥花序,并产生更多的谷物。亲本平均在主穗上平均有12.2个初级分支和31.5个次级分支。两条OErN线平均主分支为15.0和15.2,次分支为41.5和44.3。在大规模的田间试验中,与亲本相比,OErN植物的总粒重(按重量计)至少高出58.62%。它们在茎节间和叶片中也有更多的大小血管束。 miR164b的过表达或OsNAC2的下调导致穗长缩短和主穗出粒减少。 OErN植物显示出谷物数量和植物结构相关基因IPA1和DEP1的显着上调。对超过3000个水稻品种的调查发现,OsNAC2的miR164b结合位点没有自然突变。 OErN增加了日本晴和常见的养育粳3品种的产量。总之,我们确定了一种有效的新策略,可通过过量表达OsmiR164b耐药的OsNAC2来大幅提高水稻产量并改善植物结构。

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