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Natural Variation and Domestication Selection of ZmPGP1 Affects Plant Architecture and Yield-Related Traits in Maize

机译:ZmPGP1的自然变异和驯化选择影响玉米的结构和产量相关性状

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摘要

ZmPGP1, involved in the polar auxin transport, has been shown to be associated with plant height, leaf angle, yield traits, and root development in maize. To explore natural variation and domestication selection of ZmPGP1, we re-sequenced the ZmPGP1 gene in 349 inbred lines, 68 landraces, and 32 teosintes. Sequence polymorphisms, nucleotide diversity, and neutral tests revealed that ZmPGP1 might be selected during domestication and improvement processes. Marker–trait association analysis in inbred lines identified 11 variants significantly associated with 4 plant architecture and 5 ear traits. SNP1473 was the most significant variant for kernel length and ear grain weight. The frequency of an increased allele T was 40.6% in teosintes, and it was enriched to 60.3% and 89.1% during maize domestication and improvement. This result revealed that ZmPGP1 may be selected in the domestication and improvement process, and significant variants could be used to develop functional markers to improve plant architecture and ear traits in maize.
机译:ZmPGP1,参与极性植物生长素的运输,已被证明与玉米的株高,叶角,产量性状和根系发育有关。为了探索ZmPGP1的自然变异和驯化选择,我们对349个自交系,68个地方品种和32个teosintes的ZmPGP1基因进行了重测序。序列多态性,核苷酸多样性和中性测试表明,在驯化和改良过程中可能会选择ZmPGP1。近交系的标记-性状关联分析确定了11个与4种植物结构和5个耳性状显着相关的变异。 SNP1473是籽粒长度和穗粒重最显着的变异。 teosintes中等位基因T增加的频率为40.6%,在玉米驯化和改良过程中被丰富到60.3%和89.1%。该结果表明,可以在驯化和改良过程中选择ZmPGP1,并且可以使用重要的变体来开发功能标记,以改善玉米的植物结构和穗性状。

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