Sahu Sovanlal, Gupta Payal, Gowtham Thirumalanahalli Prakash, Yogesh Kumar Shiva, Sanjay Tenkabailu Dharmanna, Singh Ayushi, Duong Hay Van, Pradhan Sharat Kumar, Bisht Deepak Singh, Singh Nagendra Kumar, Baig Mirza J, Rai Rhitu, Dash Prasanta K
ICAR-National Institute for Plant Biotechnology, Pusa Campus, New Delhi 110001, India.
Institute of Agricultural Sciences for Southern Vietnam, Ho Chi Minh City 71007, Vietnam.
Biology (Basel). 2023 Mar 10;12(3):428. doi: 10.3390/biology12030428.
Rice is the major staple food crop for more than 50% of the world's total population, and its production is of immense importance for global food security. As a photophilic plant, its yield is governed by the quality and duration of light. Like all photosynthesizing plants, rice perceives the changes in the intensity of environmental light using phytochromes as photoreceptors, and it initiates a morphological response that is termed as the shade-avoidance response (SAR). Phytochromes (PHYs) are the most important photoreceptor family, and they are primarily responsible for the absorption of the red (R) and far-red (FR) spectra of light. In our endeavor, we identified the morphological differences between two contrasting cultivars of rice: IR-64 (low-light susceptible) and Swarnaprabha (low-light tolerant), and we observed the phenological differences in their growth in response to the reduced light conditions. In order to create genomic resources for low-light tolerant rice, we constructed a subgenomic library of Swarnaprabha that expedited our efforts to isolate light-responsive photoreceptors. The titer of the library was found to be 3.22 × 10 cfu/mL, and the constructed library comprised clones of 4-9 kb in length. The library was found to be highly efficient as per the number of recombinant clones. The subgenomic library will serve as a genomic resource for the Gramineae community to isolate photoreceptors and other genes from rice.
水稻是全球超过50%人口的主要主食作物,其产量对全球粮食安全至关重要。作为一种喜光植物,其产量受光照质量和时长的影响。与所有进行光合作用的植物一样,水稻利用光敏色素作为光感受器来感知环境光强度的变化,并引发一种被称为避荫反应(SAR)的形态学反应。光敏色素(PHYs)是最重要的光感受器家族,它们主要负责吸收光的红光(R)和远红光(FR)光谱。在我们的研究中,我们确定了两个对比鲜明的水稻品种:IR-64(低光敏感型)和Swarnaprabha(低光耐受型)之间的形态差异,并观察了它们在弱光条件下生长的物候差异。为了创建耐低光水稻的基因组资源,我们构建了Swarnaprabha的亚基因组文库,这加快了我们分离光响应光感受器的工作。发现该文库的滴度为3.22×10 cfu/mL,构建的文库包含长度为4 - 9 kb的克隆。根据重组克隆的数量,该文库被发现效率很高。该亚基因组文库将作为禾本科群体从水稻中分离光感受器和其他基因的基因组资源。