Singh Shipra, Vergish Satyam, Jain Nitin, Sharma Arun Kumar, Khurana Paramjit, Khurana Jitendra P
Interdisciplinary Centre for Plant Genomics & Department of Plant Molecular Biology, University of Delhi, South Campus, New Delhi 110021, India.
Interdisciplinary Centre for Plant Genomics & Department of Plant Molecular Biology, University of Delhi, South Campus, New Delhi 110021, India.
Plant Sci. 2023 May;330:111631. doi: 10.1016/j.plantsci.2023.111631. Epub 2023 Feb 10.
Cryptochromes (CRYs) are a class of photoreceptors that perceive blue/ultraviolet-A light of the visible spectrum to mediate a vast number of physiological responses in bacteria, fungi, animals and plants. In the present study, we have characterized OsCRY2 in a photoperiod sensitive indica variety, Basmati 370, by generating and analyzing overexpression (OE) and knock-down (KD) transgenic lines. The OsCRY2 lines displayed dwarfism as shown in their reduced plant height and leaf length, attributed largely by an overall reduction in their cell size. The OsCRY2 lines flowered significantly earlier and showed shorter and broader seeds with an overall reduced seed weight. The OsCRY2 lines showed contrasting phenotypes, such as increased plant height and delayed flowering, however, decreased seed size and weight were also observed in the KD lines, along with reduced spikelet fertility and high seed shattering rate in mature panicles. Novel interactions were confirmed between OsCRY2 and members of ZEITLUPE family of blue/ultraviolet-A light photoreceptors, encoded by OsFBO8, OsFBO9 and OsFBO10 which are orthologous to ZEITLUPE (ZTL), LOV KELCH PROTEIN2 (LKP2) and FLAVIN BINDING, KELCH REPEAT F-BOX1 (FKF1), respectively, of Arabidopsis thaliana. Since FKF1 is known to play a role in regulating photoperiodic flowering, OsFBO10 was chosen for further studies. OsCRY2 and OsFBO10 interacted in the nucleus and cytoplasm of the cell and cross-regulated the expression of each other. They were also found to regulate the expression of several genes involved in photoperiodic flowering in rice. Both OsCRY2 and OsFBO10 played a positive role in photomorphogenic responses in different light conditions. The physical interaction of OsCRY2 with OsFBO10, their involvement in common physiological and developmental pathways and their cross-regulation of each other suggest that the two photoreceptors may regulate common developmental pathways in plants, either jointly or redundantly.
隐花色素(CRYs)是一类光感受器,可感知可见光谱中的蓝光/紫外线-A,以介导细菌、真菌、动物和植物中的大量生理反应。在本研究中,我们通过生成和分析过表达(OE)和敲低(KD)转基因系,对光周期敏感籼稻品种巴斯马蒂370中的OsCRY2进行了表征。OsCRY2系表现出矮化,其株高和叶长降低,这主要归因于其细胞大小的整体减小。OsCRY2系开花明显提前,种子更短更宽,种子重量总体降低。OsCRY2系表现出相反的表型,如株高增加和开花延迟,然而,KD系中也观察到种子大小和重量减小,以及小穗育性降低和成熟穗的高落粒率。证实了OsCRY2与由OsFBO8、OsFBO9和OsFBO10编码的蓝光/紫外线-A光感受器的ZEITLUPE家族成员之间存在新的相互作用,它们分别与拟南芥的ZEITLUPE(ZTL)、LOV KELCH PROTEIN2(LKP2)和FLAVIN BINDING、KELCH REPEAT F-BOX1(FKF1)直系同源。由于已知FKF1在调节光周期开花中起作用,因此选择OsFBO10进行进一步研究。OsCRY2和OsFBO10在细胞核和细胞质中相互作用,并相互交叉调节表达。还发现它们调节水稻中几个参与光周期开花的基因的表达。OsCRY2和OsFBO10在不同光照条件下的光形态建成反应中均起积极作用。OsCRY2与OsFBO10的物理相互作用、它们参与共同的生理和发育途径以及它们之间的相互交叉调节表明,这两种光感受器可能共同或冗余调节植物中的共同发育途径。