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甾醇酯生物合成受损对番茄果实和种子代谢组的差异影响。

Differential impact of impaired steryl ester biosynthesis on the metabolome of tomato fruits and seeds.

作者信息

López-Tubau Joan Manel, Laibach Natalie, Burciaga-Monge Alma, Alseekh Saleh, Deng Cuiyun, Fernie Alisdair R, Altabella Teresa, Ferrer Albert

机构信息

Plant Synthetic Biology and Metabolic Engineering Program, Centre for Research in Agricultural Genomics (CRAG), CSIC-IRTA-UAB-UB, Cerdanyola, Barcelona, Spain.

Hochshule Rhein-Waal. Faculty of Life Sciences, Rhine-Waal University of Applied Sciences, Kleve, Germany.

出版信息

Physiol Plant. 2025 Jan-Feb;177(1):e70022. doi: 10.1111/ppl.70022.

Abstract

Steryl esters (SE) are a storage pool of sterols that accumulates in cytoplasmic lipid droplets and helps to maintain plasma membrane sterol homeostasis throughout plant growth and development. Ester formation in plant SE is catalyzed by phospholipid:sterol acyltransferase (PSAT) and acyl-CoA:sterol acyltransferase (ASAT), which transfer long-chain fatty acid groups to free sterols from phospholipids and acyl-CoA, respectively. Comparative mass spectrometry-based metabolomic analysis between ripe fruits and seeds of a tomato (Solanum lycopersicum cv Micro-Tom) mutant lacking functional PSAT and ASAT enzymes (slasat1xslpsat1) shows that disruption of SE biosynthesis has a differential impact on the metabolome of these organs, including changes in the composition of free and glycosylated sterols. Significant perturbations were observed in the fruit lipidome in contrast to the mild effect detected in the lipidome of seeds. A contrasting response was also observed in phenylpropanoid metabolism, which is down-regulated in fruits and appears to be stimulated in seeds. Comparison of global metabolic changes using volcano plot analysis suggests that disruption of SE biosynthesis favours a general state of metabolic activation that is more evident in seeds than fruits. Interestingly, there is an induction of autophagy in both tissues, which may contribute along with other metabolic changes to the phenotypes of early seed germination and enhanced fruit tolerance to Botrytis cinerea displayed by the slasat1xslpsat1 mutant. The results of this study reveal unreported connections between SE metabolism and the metabolic status of plant cells and lay the basis for further studies aimed at elucidating the mechanisms underlying the observed effects.

摘要

甾醇酯(SE)是甾醇的一个储存库,它在细胞质脂滴中积累,并在植物整个生长发育过程中帮助维持质膜甾醇稳态。植物SE中的酯形成由磷脂:甾醇酰基转移酶(PSAT)和酰基辅酶A:甾醇酰基转移酶(ASAT)催化,它们分别将长链脂肪酸基团从磷脂和酰基辅酶A转移到游离甾醇上。对缺乏功能性PSAT和ASAT酶的番茄(Solanum lycopersicum cv Micro-Tom)突变体(slasat1xslpsat1)的成熟果实和种子进行基于比较质谱的代谢组学分析表明,SE生物合成的破坏对这些器官的代谢组有不同影响,包括游离和糖基化甾醇组成的变化。与在种子脂质组中检测到的轻微影响相反,在果实脂质组中观察到了显著扰动。在苯丙烷类代谢中也观察到了相反的反应,其在果实中下调,而在种子中似乎受到刺激。使用火山图分析对整体代谢变化进行比较表明,SE生物合成的破坏有利于代谢激活的一般状态,这种状态在种子中比在果实中更明显。有趣的是,两个组织中都有自噬的诱导,这可能与其他代谢变化一起促成了slasat1xslpsat1突变体所表现出的早期种子萌发表型和增强的果实对灰葡萄孢的耐受性。这项研究的结果揭示了SE代谢与植物细胞代谢状态之间未报道的联系,并为进一步研究旨在阐明观察到的效应背后的机制奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31dc/11663625/4c35997f41e1/PPL-177-e70022-g002.jpg

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