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Differential Proteomic Analysis Using iTRAQ Reveals Alterations in Hull Development in Rice (Oryza sativa L.)

机译:使用iTRAQ的差异蛋白质组学分析揭示了水稻(Oryza sativa L.)稻壳发育的变化

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摘要

Rice hull, the outer cover of the rice grain, determines grain shape and size. Changes in the rice hull proteome in different growth stages may reflect the underlying mechanisms involved in grain development. To better understand these changes, isobaric tags for relative and absolute quantitative (iTRAQ) MS/MS was used to detect statistically significant changes in the rice hull proteome in the booting, flowering, and milk-ripe growth stages. Differentially expressed proteins were analyzed to predict their potential functions during development. Gene ontology (GO) terms and pathways were used to evaluate the biological mechanisms involved in rice hull at the three growth stages. In total, 5,268 proteins were detected and characterized, of which 563 were differentially expressed across the development stages. The results showed that the flowering and milk-ripe stage proteomes were more similar to each other (r=0.61) than either was to the booting stage proteome. A GO enrichment analysis of the differentially expressed proteins was used to predict their roles during rice hull development. The potential functions of 25 significantly differentially expressed proteins were used to evaluate their possible roles at various growth stages. Among these proteins, an unannotated protein (Q7X8A1) was found to be overexpressed especially in the flowering stage, while a putative uncharacterized protein (B8BF94) and an aldehyde dehydrogenase (Q9FPK6) were overexpressed only in the milk-ripe stage. Pathways regulated by differentially expressed proteins were also analyzed. Magnesium-protoporphyrin IX monomethyl ester [oxidative] cyclase (Q9SDJ2), and two magnesium-chelatase subunits, ChlD (), and ChlI (), were associated with chlorophyll biosynthesis at different developmental stages. The expression of Q9SDJ2 in the flowering and milk-ripe stages was validated by qRT-PCR. The 25 candidate proteins may be pivotal markers for controlling rice hull development at various growth stages and chlorophyll biosynthesis pathway related proteins, especially magnesium-protoporphyrin IX monomethyl ester [oxidative] cyclase (Q9SDJ2), may provide new insights into the molecular mechanisms of rice hull development and chlorophyll associated regulation.
机译:稻壳是稻谷的外壳,它决定了谷粒的形状和大小。稻壳蛋白质组在不同生长阶段的变化可能反映了谷物发育的潜在机制。为了更好地理解这些变化,使用了相对定量和绝对定量(iTRAQ)MS / MS的同量异位标记来检测在孕穗期,开花期和乳熟阶段的稻壳蛋白质组的统计学显着变化。分析差异表达的蛋白质以预测其在发育过程中的潜在功能。基因本体论(GO)术语和途径被用于评估在三个生长阶段稻壳涉及的生物学机制。总共检测和鉴定了5268种蛋白质,其中563种在整个发育阶段差异表达。结果表明,开花期和乳熟期蛋白质组之间的相似度(r = 0.61)比引导期蛋白质组更为相似。对差异表达的蛋白质进行GO富集分析可预测其在稻壳发育过程中的作用。 25种显着差异表达的蛋白质的潜在功能被用来评估其在各个生长阶段的可能作用。在这些蛋白质中,未注释的蛋白质(Q7X8A1)特别在开花期被发现过表达,而推定的未鉴定蛋白质(B8BF94)和醛脱氢酶(Q9FPK6)仅在牛奶成熟阶段被过表达。还分析了差异表达蛋白调控的途径。镁原卟啉IX单甲酯[氧化]环化酶(Q9SDJ2)和两个镁螯合酶亚基ChlD()和ChlI()与叶绿素在不同发育阶段的生物合成有关。通过qRT-PCR验证了Q9SDJ2在开花和乳熟阶段的表达。这25种候选蛋白可能是控制稻壳在各个生长阶段发育的关键标志物,而叶绿素生物合成途径相关蛋白,尤其是镁-原卟啉IX单甲酯[氧化]环化酶(Q9SDJ2),可能为稻壳的分子机制提供新见解。发育和叶绿素相关调节。

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