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Comparative Morphophysiological Analyses and Molecular Profiling Reveal Pi-Efficient Strategies of a Traditional Rice Genotype

机译:比较形态生理分析和分子谱揭示了传统水稻基因型的Pi高效策略。

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摘要

Phosphate (Pi) deficiency severely affects crop yield. Modern high yielding rice genotypes are sensitive to Pi deficiency whereas traditional rice genotypes are naturally compatible with low Pi ecosystems. However, the underlying molecular mechanisms for low Pi tolerance in traditional genotypes remain largely elusive. To delineate the molecular mechanisms for low Pi tolerance, two contrasting rice genotypes, Dular (low Pi tolerant), and PB1 (low Pi sensitive), have been selected. Comparative morphophysiological, global transcriptome and lipidome analyses of root and shoot tissues of both genotypes grown under Pi deficient and sufficient conditions revealed potential low Pi tolerance mechanisms of the traditional genotype. Most of the genes associated with enhanced internal Pi utilization (phospholipid remobilization) and modulation of root system architecture (RSA) were highly induced in the traditional rice genotype, Dular. Higher reserves of phospholipids and greater accumulation of galactolipids under low Pi in Dular indicated it has more efficient Pi utilization. Furthermore, Dular also maintained greater root growth than PB1 under low Pi, resulting in larger root surface area due to increased lateral root density and root hair length. Genes involved in enhanced low Pi tolerance of the traditional genotype can be exploited to improve the low Pi tolerance of modern high yielding rice cultivars.
机译:磷酸盐(Pi)缺乏严重影响农作物产量。现代高产水稻基因型对缺磷敏感,而传统水稻基因型与低磷生态系统自然相容。然而,在传统基因型中,低磷耐受性的潜在分子机制仍然难以捉摸。为了描述低磷耐受性的分子机制,已选择了两种不同的水稻基因型,Dular(低Pi耐受)和PB1(低Pi敏感)。在缺磷和充足条件下生长的两种基因型的根和茎组织的形态生理,整体转录组和脂质组比较分析表明,传统基因型可能具有低磷耐受性机制。在传统水稻基因型Dular中,与内部磷利用率提高(磷脂固定化)和调节根系构架(RSA)相关的大多数基因都被高度诱导。在低磷下,Dular的磷脂储量更高,半乳糖脂的积累量更大,表明其对磷的利用率更高。此外,在低磷下,Dular还比PB1保持更大的根部生长,由于横向根部密度和根毛长度增加,根部表面积更大。可以利用涉及提高传统基因型的低磷耐受性的基因来改善现代高产水稻品种的低磷耐受性。

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