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Suppressor Screen and Phenotype Analyses Revealed an Emerging Role of the Monofunctional Peroxisomal Enoyl-CoA Hydratase 2 in Compensated Cell Enlargement

机译:抑制物筛选和表型分析揭示了单功能过氧化物酶体烯醇酰辅酶A水合酶2在补偿细胞扩大中的新兴作用。

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摘要

Efficient use of seed nutrient reserves is crucial for germination and establishment of plant seedlings. Mobilizing seed oil reserves in Arabidopsis involves β-oxidation, the glyoxylate cycle, and gluconeogenesis, which provide essential energy and the carbon skeletons needed to sustain seedling growth until photoautotrophy is acquired. We demonstrated that H+-PPase activity is required for gluconeogenesis. Lack of H+-PPase in fugu5 mutants increases cytosolic pyrophosphate (PPi) levels, which partially reduces sucrose synthesis de novo and inhibits cell division. In contrast, post-mitotic cell expansion in cotyledons was unusually enhanced, a phenotype called compensation. Therefore, it appears that PPi inhibits several cellular functions, including cell cycling, to trigger compensated cell enlargement (CCE). Here, we mutagenized fugu5-1 seeds with 12C6+ heavy-ion irradiation and screened mutations that restrain CCE to gain insight into the genetic pathway(s) involved in CCE. We isolated A#3-1, in which cell size was severely reduced, but cell number remained similar to that of original fugu5-1. Moreover, cell number decreased in A#3-1 single mutant (A#3-1sm), similar to that of fugu5-1, but cell size was almost equal to that of the wild type. Surprisingly, A#3-1 mutation did not affect CCE in other compensation exhibiting mutant backgrounds, such as an3-4 and fugu2-1/fas1-6. Subsequent map-based cloning combined with genome sequencing and HRM curve analysis identified enoyl-CoA hydratase 2 (ECH2) as the causal gene of A#3-1. The above phenotypes were consistently observed in the ech2-1 allele and supplying sucrose restored the morphological and cellular phenotypes in fugu5-1, ech2-1, A#3-1sm, fugu5-1 ech2-1, and A#3-1; fugu5-1. Taken together, these results suggest that defects in either H+-PPase or ECH2 compromise cell proliferation due to defects in mobilizing seed storage lipids. In contrast, ECH2 alone likely promotes CCE during the post-mitotic cell expansion stage of cotyledon development, probably by converting indolebutyric acid to indole acetic acid.
机译:有效利用种子养分储备对于发芽和建立植物幼苗至关重要。动员拟南芥中的种子油储备涉及β-氧化,乙醛酸循环和糖异生,这些提供必需的能量和维持幼苗生长直至获得光自养所需的碳骨架。我们证明了糖原异生需要H + -PPase活性。 fugu5突变体中缺少H + -PPase会增加胞质焦磷酸(PPi)的水平,从而部分降低蔗糖的从头合成并抑制细胞分裂。相反,子叶的有丝分裂后细胞扩增异常增强,这种表型称为补偿。因此,看来PPi抑制了几种细胞功能,包括细胞循环,从而触发了补偿的细胞扩大(CCE)。在这里,我们用 12 C 6 + 重离子辐照诱变了fugu5-1种子,并筛选了限制CCE的突变,以了解CCE涉及的遗传途径。我们分离出A#3-1,其中细胞大小显着减小,但细胞数量仍与原始的fugu5-1相似。而且,与fugu5-1相似,A#3-1单突变体(A#3-1sm)的细胞数减少,但细胞大小几乎与野生型相同。出乎意料的是,A#3-1突变在其他表现出突变背景的补偿中不影响CCE,例如an3-4和fugu2-1 / fas1-6。随后基于图的克隆,结合基因组测序和HRM曲线分析,确定了烯酰辅酶A水合酶2(ECH2)是A#3-1的致病基因。在ech2-1等位基因中始终观察到上述表型,供应的蔗糖恢复了fugu5-1,ech2-1,A#3-1sm,fug5-1 ech2-1和A#3-1的形态和细胞表型。 fugu5-1。综上所述,这些结果表明,由于动员种子贮藏脂质中的缺陷,H + -PPase或ECH2中的缺陷会损害细胞增殖。相反,单独的ECH2可能在子叶发育的有丝分裂后细胞扩增阶段促进CCE,可能是通过将吲哚丁酸转化为吲哚乙酸来实现的。

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