Mehra Poonam, Pandey Bipin K, Verma Lokesh, Prusty Ankita, Singh Ajit Pal, Sharma Shivam, Malik Naveen, Bennett Malcolm J, Parida Swarup K, Giri Jitender, Tyagi Akhilesh K
Department of Plant Molecular Biology University of Delhi South Campus New Delhi India.
National Institute of Plant Genome Research New Delhi India.
Plant Direct. 2022 May 10;6(5):e401. doi: 10.1002/pld3.401. eCollection 2022 May.
Seed size is one of the major determinants of seed weight and eventually, crop yield. As the global population is increasing beyond the capacity of current food production, enhancing seed size is a key target for crop breeders. Despite the identification of several genes and QTLs, current understanding about the molecular regulation of seed size/weight remains fragmentary. In the present study, we report novel role of a jasmonic acid (JA) signaling repressor, controlling rice seed width and weight. Transgenic rice lines overexpressing exhibited up to a 14% increase in seed width and ~30% increase in seed weight compared to wild type (WT). Constitutive expression of dramatically influenced spikelet morphogenesis leading to extra glume-like structures, open hull, and abnormal numbers of floral organs. Furthermore, overexpression lines accumulated higher JA levels in spikelets and developing seeds. Expression studies uncovered altered expression of JA biosynthesis/signaling and MADS box genes in overexpression lines compared to WT. Yeast two-hybrid and pull-down assays revealed that OsJAZ11 interacts with OsMADS29 and OsMADS68. Remarkably, expression of , a key negative regulator of grain size, was significantly reduced in overexpression lines. We propose that participates in the regulation of seed size and spikelet development by coordinating the expression of JA-related, and MADS genes.
种子大小是决定种子重量乃至作物产量的主要因素之一。随着全球人口增长超过当前粮食生产能力,增加种子大小是作物育种者的关键目标。尽管已经鉴定出多个基因和数量性状位点(QTL),但目前对种子大小/重量分子调控的理解仍然支离破碎。在本研究中,我们报道了茉莉酸(JA)信号抑制因子的新作用,其控制水稻种子宽度和重量。与野生型(WT)相比,过表达的转基因水稻品系种子宽度增加了14%,种子重量增加了约30%。 的组成型表达显著影响小穗形态发生,导致出现额外的颖片样结构、颖壳张开和花器官数量异常。此外,过表达品系在小穗和发育中的种子中积累了更高水平的JA。表达研究发现,与WT相比,过表达品系中JA生物合成/信号转导和MADS盒基因的表达发生了改变。酵母双杂交和下拉试验表明,OsJAZ11与OsMADS29和OsMADS68相互作用。值得注意的是,籽粒大小关键负调控因子 的表达在过表达品系中显著降低。我们提出, 通过协调JA相关基因、 和MADS基因的表达来参与种子大小和小穗发育的调控。