College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, PR China.
Provincial Key Laboratory of Agrobiology, Institute of Germplasm Resources and Biotechnology, Jiangsu Academy of Agricultural Sciences, Nanjing, PR China.
Plant Sci. 2023 Oct;335:111792. doi: 10.1016/j.plantsci.2023.111792. Epub 2023 Jul 14.
Fatty acid derivatives are key components of rice pollen exine. The synthesis of aliphatic sporopollenin precursors are initiated in the plastids of the tapetal cells, followed by multiple-step reactions conducted in the endoplasmic reticulum (ER). However, the relative contribution of different precursors to the precise structure of sporopollenin remains largely elusive, let alone the underlying mechanism. Here, we report that two complete male sterile mutants ostkpr1-3 (Tetraketide α-pyrone reductase 1-3, with OsTKPR1 substitution) and ostkpr1-4 (with truncated OsTKPR1) are defective in pollen exine, Ubisch body and anther cuticle development where ostkpr1-4 display severer phenotypes. Remarkably, OsTKPR1 could produce reduced hydroxylated tetraketide α-pyrone and reduced tetraketide α-pyrone, whereas OsTKPR1 fails to produce the latter. Pairwise interaction assays show that mutated OsTKPR1 is able to integrate into a recently characterized metabolon, thus its altered catalytic activity is not due to dis-integrity of the metabolon. In short, we find that reduced tetraketide α-pyrone is a key sporopollenin precursor required for normal exine formation, and the conserved 124th proline of OsTKPR1 is essential for the reduction activity. Therefore, this study provided new insights into the sporopollenin precursor constitution critical for exine formation.
脂肪酸衍生物是水稻花粉外壁的关键组成部分。亲脂性孢粉素前体的合成始于绒毡层细胞的质体中,然后在内质网(ER)中进行多步反应。然而,不同前体对孢粉素精确结构的相对贡献在很大程度上仍然难以捉摸,更不用说其潜在的机制了。在这里,我们报告说,两个完整的雄性不育突变体 ostkpr1-3(四酮 α-吡喃酮还原酶 1-3,OsTKPR1 取代)和 ostkpr1-4(具有截断的 OsTKPR1)在外壁、脐点体和花药表皮发育中均有缺陷,其中 ostkpr1-4 表现出更严重的表型。值得注意的是,OsTKPR1 可以产生还原的羟化四酮 α-吡喃酮和还原的四酮 α-吡喃酮,而 OsTKPR1 则不能产生后者。成对相互作用分析表明,突变的 OsTKPR1 能够整合到最近鉴定的代谢物中,因此其改变的催化活性不是由于代谢物的不完整性。简而言之,我们发现还原的四酮 α-吡喃酮是形成正常外壁所必需的关键孢粉素前体,而 OsTKPR1 的保守 124 位脯氨酸对于还原活性是必需的。因此,本研究为形成外壁的孢粉素前体组成提供了新的见解。