Gangwar Manali, Sood Hemant, Chauhan Rajinder Singh
Department of Biotechnology and Bioinformatics, Jaypee University of Information Technology, Waknaghat, 173234, Solan, Himachal Pradesh, India.
Mol Biol Rep. 2016 Apr;43(4):305-22. doi: 10.1007/s11033-016-3953-7. Epub 2016 Feb 16.
Jatropha curcas, has been projected as a major source of biodiesel due to high seed oil content (42 %). A major roadblock for commercialization of Jatropha-based biodiesel is low seed yield per inflorescence, which is affected by low female to male flower ratio (1:25-30). Molecular dissection of female flower development by analyzing genes involved in phase transitions and floral organ development is, therefore, crucial for increasing seed yield. Expression analysis of 42 genes implicated in floral organ development and sex determination was done at six floral developmental stages of a J. curcas genotype (IC561235) with inherently higher female to male flower ratio (1:8-10). Relative expression analysis of these genes was done on low ratio genotype. Genes TFL1, SUP, AP1, CRY2, CUC2, CKX1, TAA1 and PIN1 were associated with reproductive phase transition. Further, genes CUC2, TAA1, CKX1 and PIN1 were associated with female flowering while SUP and CRY2 in female flower transition. Relative expression of these genes with respect to low female flower ratio genotype showed up to 7 folds increase in transcript abundance of SUP, TAA1, CRY2 and CKX1 genes in intermediate buds but not a significant increase (1.25 folds) in female flowers, thereby suggesting that these genes possibly play a significant role in increased transition towards female flowering by promoting abortion of male flower primordia. The outcome of study has implications in feedstock improvement of J. curcas through functional validation and eventual utilization of key genes associated with female flowering.
麻疯树因种子含油量高(42%)而被视为生物柴油的主要来源。基于麻疯树的生物柴油商业化的一个主要障碍是每花序种子产量低,这受到雌花与雄花比例低(1:25 - 30)的影响。因此,通过分析参与阶段转变和花器官发育的基因来对雌花发育进行分子剖析,对于提高种子产量至关重要。在一种雌花与雄花比例固有较高(1:8 - 10)的麻疯树基因型(IC561235)的六个花发育阶段,对42个与花器官发育和性别决定相关的基因进行了表达分析。对这些基因在低比例基因型上进行了相对表达分析。基因TFL1、SUP、AP1、CRY2、CUC2、CKX1、TAA1和PIN1与生殖阶段转变有关。此外,基因CUC2、TAA1、CKX1和PIN1与雌花开花有关,而SUP和CRY2与雌花转变有关。这些基因相对于低雌花比例基因型的相对表达显示,SUP、TAA1、CRY2和CKX1基因在中间芽中的转录丰度增加了约7倍,但在雌花中没有显著增加(约1.25倍),从而表明这些基因可能通过促进雄花原基的败育在增加向雌花开花的转变中发挥重要作用。该研究结果对于通过功能验证以及最终利用与雌花开花相关的关键基因来改良麻疯树的原料具有重要意义。