Bres Cécile, Petit Johann, Reynoud Nicolas, Brocard Lysiane, Marion Didier, Lahaye Marc, Bakan Bénédicte, Rothan Christophe
UMR 1332 BFP, INRAE, Université de Bordeaux, 33140, Villenave d'Ornon, France.
Unité Biopolymères, Interactions, Assemblages, INRAE, BP71627, 44316, Nantes Cedex 3, France.
Mol Hortic. 2022 Jun 7;2(1):14. doi: 10.1186/s43897-022-00035-y.
Tomato (Solanum lycopersicum) is an established model for studying plant cuticle because of its thick cuticle covering and embedding the epidermal cells of the fruit. In this study, we screened an EMS mutant collection of the miniature tomato cultivar Micro-Tom for fruit cracking mutants and found a mutant displaying a glossy fruit phenotype. By using an established mapping-by-sequencing strategy, we identified the causal mutation in the SlSHN2 transcription factor that is specifically expressed in outer epidermis of growing fruit. The point mutation in the shn2 mutant introduces a K to N amino acid change in the highly conserved 'mm' domain of SHN proteins. The cuticle from shn2 fruit showed a ~ fivefold reduction in cutin while abundance and composition of waxes were barely affected. In addition to alterations in cuticle thickness and properties, epidermal patterning and polysaccharide composition of the cuticle were changed. RNAseq analysis further highlighted the altered expression of hundreds of genes in the fruit exocarp of shn2, including genes associated with cuticle and cell wall formation, hormone signaling and response, and transcriptional regulation. In conclusion, we showed that a point mutation in the transcriptional regulator SlSHN2 causes major changes in fruit cuticle formation and its coordination with epidermal patterning.
番茄(Solanum lycopersicum)因其果实表皮细胞覆盖并嵌入厚角质层,是研究植物角质层的成熟模型。在本研究中,我们筛选了微型番茄品种Micro-Tom的EMS突变体库以寻找果实开裂突变体,并发现了一个表现出果实光泽表型的突变体。通过使用既定的测序定位策略,我们确定了在发育中果实的外表皮中特异性表达的SlSHN2转录因子中的因果突变。shn2突变体中的点突变在SHN蛋白高度保守的“mm”结构域中引入了从K到N的氨基酸变化。shn2果实的角质层角质含量降低了约五倍,而蜡质的丰度和组成几乎没有受到影响。除了角质层厚度和性质的改变外,角质层的表皮图案化和多糖组成也发生了变化。RNAseq分析进一步突出了shn2果实外果皮中数百个基因的表达改变,包括与角质层和细胞壁形成、激素信号传导和反应以及转录调控相关的基因。总之,我们表明转录调节因子SlSHN2中的一个点突变导致果实角质层形成及其与表皮图案化的协调发生重大变化。