State Key Laboratory of Cotton Biology, Institute of Cotton Research of Chinese Academy of Agricultural Sciences, Anyang, China.
School of Life Science, Nantong University, Nantong, China.
Physiol Plant. 2022 Nov;174(6):e13801. doi: 10.1111/ppl.13801.
Cotton fiber is one of the most important natural raw materials in the world textile industry. Improving fiber yield and quality has always been the main goal. MicroRNAs, as typical small noncoding RNAs, could affect fiber length during different stages of fiber development. Based on differentially expressed microRNA in the two interspecific backcross inbred lines (BILs) with a significant difference in fiber length, we identified the miR396 gene family in the two tetraploid cotton genomes and found MIR396b_D13 as the functional precursor to produce mature miR396 during the fiber elongation stage. Among 46 target genes regulated by miR396b, the GROWTH-REGULATING FACTOR 5 gene (GRF5, Gh_A10G0492) had a differential expression level in the two BILs during fiber elongation stage. The expression patterns indicated that the miR396b-GRF5 regulatory module has a critical role in fiber development. Furthermore, virus-induced gene silencing (VIGS) of miR396b significantly produced longer fiber than the wild type, and the expression level of GRF5 showed the reverse trends of the miR396b expression level. The analysis of co-expression network for the GRF5 gene suggested that a cytochrome P450 gene functions as an allene oxide synthase (Gh_D06G0089, AOS), which plays a critical role in jasmonate biosynthetic pathway. In conclusion, our results revealed that the miR396b-GRF5 module has a critical role in fiber development. These findings provide a molecular foundation for fiber quality improvement in the future.
棉花纤维是世界纺织工业最重要的天然原料之一。提高纤维产量和质量一直是主要目标。microRNAs 作为典型的小非编码 RNA,可以影响纤维在不同发育阶段的长度。基于两个在纤维长度上有显著差异的种间回交近交系(BIL)中差异表达的 microRNA,我们在两个四倍体棉基因组中鉴定了 miR396 基因家族,并发现 MIR396b_D13 是在纤维伸长阶段产生成熟 miR396 的功能前体。在受 miR396b 调控的 46 个靶基因中,Gh_A10G0492 基因在纤维伸长阶段的两个 BIL 中有不同的表达水平。表达模式表明,miR396b-GRF5 调控模块在纤维发育中具有关键作用。此外,miR396b 的病毒诱导基因沉默(VIGS)显著产生了比野生型更长的纤维,而 Gh_D06G0089 基因(AOS)的表达水平与 miR396b 的表达水平呈相反趋势。对 Gh_D06G0089 基因的共表达网络分析表明,Gh_D06G0089 基因作为细胞色素 P450 基因,发挥着茉莉酸生物合成途径中重要的作用。总之,我们的研究结果表明,miR396b-GRF5 模块在纤维发育中具有关键作用。这些发现为未来提高纤维质量提供了分子基础。