State Key Laboratory of Plant Physiology and Biochemistry, National Center for Evaluation of Agricultural Wild Plants (Rice), MOE Laboratory of Crop Heterosis and Utilization, Beijing Key Laboratory of Crop Genetic Improvement, Department of Plant Genetics and Breeding, China Agricultural University, Beijing, China.
Plant Biotechnol J. 2020 Mar;18(3):756-769. doi: 10.1111/pbi.13243. Epub 2019 Sep 11.
Nonspecific lipid transfer proteins (nsLTPs) play critical roles in plant development and response to abiotic stresses. Here, we found that a rice lipid transfer protein, OsLTPL159, was associated with cold tolerance at the early seedling stage. Overexpression of an OsLTPL159 allele from the cold-tolerant introgression line IL112 in either the japonica variety Zhonghua17 (ZH17) or the indica variety Teqing background dramatically enhanced cold tolerance. In addition, down-regulation of the expression of OsLTPL159 in the japonica variety ZH17 by RNA interference (RNAi) significantly decreased cold tolerance. Further transcriptomic, physiological and histological analysis showed that the OsLTPL159 allele likely enhanced the cold tolerance of rice at the early seedling stage by decreasing the toxic effect of reactive oxygen species, enhancing cellulose deposition in the cell wall and promoting osmolyte accumulation, thereby maintaining the integrity of the chloroplasts. Notably, overexpression of another allele, OsLTPL159 , from the recipient parent Guichao 2 (GC2), an indica variety, did not improve cold tolerance, indicating that the variations in the OsLTPL159 coding region of GC2 might disrupt its function for cold tolerance. Further sequence comparison found that all 22 japonica varieties surveyed had an OsLTPL159 haplotype identical to IL112 and were more cold-tolerant than the surveyed indica varieties, implying that the variations in OsLTPL159 might be associated with differential cold tolerance of japonica and indica rice. Therefore, our findings suggest that the OsLTPL159 allele of japonica rice could be used to improve cold tolerance of indica rice through a molecular breeding strategy.
非特异性脂质转移蛋白(nsLTPs)在植物发育和应对非生物胁迫中发挥着关键作用。在这里,我们发现一个水稻脂质转移蛋白 OsLTPL159 与幼苗期的耐寒性有关。在粳稻品种中华 17 号(ZH17)或籼稻品种特青背景下,过表达来自耐寒导入系 IL112 的 OsLTPL159 等位基因,显著提高了耐寒性。此外,通过 RNA 干扰(RNAi)下调粳稻品种 ZH17 中 OsLTPL159 的表达,显著降低了耐寒性。进一步的转录组学、生理学和组织学分析表明,OsLTPL159 等位基因可能通过降低活性氧的毒性作用、增强细胞壁中纤维素的沉积和促进渗透物的积累,从而维持叶绿体的完整性,增强水稻幼苗期的耐寒性。值得注意的是,过表达另一个来自籼稻品种桂朝 2(GC2)的等位基因 OsLTPL159 并没有提高耐寒性,这表明 GC2 的 OsLTPL159 编码区的变异可能破坏了其耐寒性的功能。进一步的序列比较发现,所有调查的 22 个粳稻品种都具有与 IL112 相同的 OsLTPL159 单倍型,并且比调查的籼稻品种更耐寒,这表明 OsLTPL159 的变异可能与粳稻和籼稻的耐寒性差异有关。因此,我们的研究结果表明,粳稻的 OsLTPL159 等位基因可以通过分子育种策略用于提高籼稻的耐寒性。