Department of Plant Breeding, College of Agriculture, South China Agricultural University, Guangzhou, 510642, China.
Experimental Basis and Practical Training Center, South China Agricultural University, Guangzhou, 510642, China.
Planta. 2024 Mar 30;259(5):106. doi: 10.1007/s00425-024-04377-3.
The up-regulation of OsmiR5519 results in the decrease of grain size, weight and seed setting rate. OsmiR5519 plays important roles in the process of grain filling and down-regulates sucrose synthase gene RSUS2. MicroRNAs (miRNAs) are one class of small non-coding RNAs that act as crucial regulators of plant growth and development. In rice, the conserved miRNAs were revealed to regulate the yield components, but the function of rice-specific miRNAs has been rarely studied. The rice-specific OsmiR5519 was found to be abundantly expressed during reproductive development, but its biological roles remain unknown. In this study, the function of rice-specific OsmiR5519 was characterized with the miR5519-overexpressing line (miR5519-OE) and miR5519-silenced line (STTM5519). At seedling stage, the content of sucrose, glucose and fructose was obviously lower in the leaves of miR5519-OE lines than those of wild-type (WT) line. The grain size and weight were decreased significantly in miR5519-OE lines, compared to those of WT rice. The cell width of hull in miR5519-OE was smaller than that in WT. The seed setting rate was notably reduced in miR5519-OE lines, but not in STTM5519 lines. Cytological observation demonstrated that the inadequate grain filling was the main reason for the decline of seed setting rate in miR5519-OE lines. The percentage of the defects of grain amounted to 40% in miR5519-OE lines, which almost equaled to the decreased value of seed setting rate. Furthermore, the sucrose synthase gene RSUS2 was identified as a target of OsmiR5519 via RNA ligase-mediated 3'-amplification of cDNA ends (3'-RLM-RACE), dual luciferase assays and transient expression assays. In summary, our results suggest that OsmiR5519 regulates grain size and weight and down-regulates RSUS2 in rice.
OsmiR5519 的上调导致粒长、粒重和结实率降低。OsmiR5519 在灌浆过程中发挥重要作用,并下调蔗糖合酶基因 RSUS2。miRNAs(miRNAs)是一类小的非编码 RNA,作为植物生长和发育的关键调节剂。在水稻中,保守的 miRNAs 被揭示调节产量构成,但水稻特异性 miRNAs 的功能很少被研究。水稻特异性 OsmiR5519 在生殖发育过程中大量表达,但它的生物学功能尚不清楚。在本研究中,通过 miR5519 过表达系(miR5519-OE)和 miR5519 沉默系(STTM5519)对水稻特异性 OsmiR5519 的功能进行了表征。在幼苗期,miR5519-OE 系叶片中的蔗糖、葡萄糖和果糖含量明显低于野生型(WT)系。与 WT 水稻相比,miR5519-OE 系的粒长和粒重显著降低。miR5519-OE 系的颖壳细胞宽度较小。miR5519-OE 系的结实率明显降低,但在 STTM5519 系中没有降低。细胞学观察表明,灌浆不足是 miR5519-OE 系结实率下降的主要原因。miR5519-OE 系缺陷粒的比例达到 40%,几乎等于结实率的下降值。此外,通过 RNA 连接酶介导的 3'-cDNA 末端扩增(3'-RLM-RACE)、双荧光素酶测定和瞬时表达测定,确定蔗糖合酶基因 RSUS2 是 OsmiR5519 的靶标。总之,我们的结果表明,OsmiR5519 在水稻中调节粒长、粒重并下调 RSUS2。