Council of Scientific and Industrial Research - National Botanical Research Institute, Lucknow, 226001, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.
Sci Rep. 2018 Nov 20;8(1):17092. doi: 10.1038/s41598-018-35304-8.
Prickles are epidermal outgrowth found on the aerial surface of several terrestrial plants. Microscopic studies on prickles of S. viarum Dunal indicated a crucial role of glandular trichomes (GTs) in their development. A spontaneously obtained prickleless mutant showed normal epidermal GTs, but its downstream developmental process to prickle was perturbed. Thus, prickleless mutant offers an ideal opportunity to unveil molecular regulators working downstream to GTs in the prickle formation. Differential transcriptome analysis of epidermis of prickly and prickleless mutant revealed that expression of several defense regulators like ethylene, salicylic acid, PR-proteins, etc. were significantly down-regulated in prickleless mutant, provide an important link between defense and prickle development. It was also noteworthy that the expression of few essential development related TFs like MADS-box, R2R3-MYB, REM, DRL1, were also down-regulated in the stem, petioles, and leaves of prickleless mutant indicating their potential role in prickle development. Interestingly, the gene expression of terpenoid, steroid, flavonoid, glucosinolate, and lignin biosynthesis pathways were up-regulated in prickleless mutant. The biochemical and qRT-PCR analysis also confirmed metabolite elevation. These results indicated that the loss of prickle was compensated by elevated secondary metabolism in the prickleless mutant which played important role in the biotic and abiotic stress management.
刺是几种陆生植物气生表面的表皮突起。对 S. viarum Dunal 刺的微观研究表明,腺毛(GTs)在其发育中起着关键作用。一个自发获得的无刺突变体显示出正常的表皮 GTs,但它向刺的下游发育过程受到干扰。因此,无刺突变体为揭示 GTs 下游在刺形成中起作用的分子调节剂提供了一个理想的机会。对有刺和无刺突变体表皮的差异转录组分析表明,几类防御调节剂的表达,如乙烯、水杨酸、PR 蛋白等,在无刺突变体中显著下调,为防御和刺发育之间提供了重要联系。值得注意的是,少数必需发育相关 TF 的表达,如 MADS 盒、R2R3-MYB、REM、DRL1,在无刺突变体的茎、叶柄和叶片中也下调,表明它们在刺发育中的潜在作用。有趣的是,无刺突变体中萜类、甾体、类黄酮、硫代葡萄糖苷和木质素生物合成途径的基因表达上调。生化和 qRT-PCR 分析也证实了代谢物的升高。这些结果表明,无刺突变体通过次生代谢物的升高来补偿刺的缺失,这在生物和非生物胁迫管理中起着重要作用。