Choudhary S B, Chowdhury I, Singh R K, Pandey S P, Sharma H K, Anil Kumar A, Karmakar P G, Kumari N, Souframanien J, Jambhulkar S J
ICAR-Central Research Institute for Jute and Allied Fibres, Barrackpore, Kolkata, West Bengal, 700120, India.
Indian Institute of Science Education and Research Kolkata, Mohanpur, West Bengal, 741246, India.
Appl Biochem Biotechnol. 2017 Nov;183(3):980-992. doi: 10.1007/s12010-017-2477-5. Epub 2017 May 11.
Lignin is a versatile plant metabolite challenging high-end industrial applications of several plant products including jute. Application of developmental mutant in regulation of lignification in jute may open up door for much awaited jute based diversified products. In the present study, a novel dark jute (Corchorus olitorius L.) mutant with low lignin (7.23%) in phloem fibre being compared to wild-type JRO 204 (13.7%) was identified and characterised. Unique morphological features including undulated stem, petiole and leaf vein distinguished the mutant in gamma ray irradiated mutant population. Histological and biochemical analysis revealed reduced lignification of phloem fibre cells of the plant. RT-PCR analysis demonstrated temporal transcriptional regulation of CCoAMT1 gene in the mutant. The mutant was found an extremely useful model to study phloem fibre developmental biology in the crop besides acting as a donor genetic stock for low lignin containing jute fibre in dark jute improvement programme.
木质素是一种用途广泛的植物代谢产物,对包括黄麻在内的多种植物产品的高端工业应用构成挑战。利用发育突变体调控黄麻木质化,可能为人们期待已久的基于黄麻的多样化产品打开大门。在本研究中,我们鉴定并表征了一种新型深色黄麻(Corchorus olitorius L.)突变体,其韧皮纤维中的木质素含量较低(7.23%),而野生型JRO 204的木质素含量为13.7%。在伽马射线辐照的突变体群体中,该突变体具有独特的形态特征,包括起伏的茎、叶柄和叶脉。组织学和生化分析表明,该植物韧皮纤维细胞的木质化程度降低。RT-PCR分析显示,突变体中CCoAMT1基因存在时间转录调控。除了作为深色黄麻改良计划中低木质素黄麻纤维的供体遗传种质外,该突变体还被发现是研究该作物韧皮纤维发育生物学的极其有用的模型。