Disruption of a Rice Pentatricopeptide Repeat Protein Causes a Seedling-Specific Albino Phenotype and Its Utilization to Enhance Seed Purity in Hybrid Rice Production

Author:

Su Ning1,Hu Mao-Long1,Wu Dian-Xing1,Wu Fu-Qing1,Fei Gui-Lin1,Lan Ying1,Chen Xiu-Ling1,Shu Xiao-Li1,Zhang Xin1,Guo Xiu-Ping1,Cheng Zhi-Jun1,Lei Cai-Lin1,Qi Cun-Kou1,Jiang Ling1,Wang Haiyang1,Wan Jian-Min1

Affiliation:

1. National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Science, Chinese Academy of Agricultural Sciences, Beijing 100081, People’s Republic of China (N.S., F.-Q.W., G.-L.F., Y.L., X.-L.C.,X.Z., X.-P.G., Z.-J.C., C.-L.L., H.W., J.-M.W.); National Key Laboratory for Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, People’s R

Abstract

Abstract The pentatricopeptide repeat (PPR) gene family represents one of the largest gene families in higher plants. Accumulating data suggest that PPR proteins play a central and broad role in modulating the expression of organellar genes in plants. Here we report a rice (Oryza sativa) mutant named young seedling albino (ysa) derived from the rice thermo/photoperiod-sensitive genic male-sterile line Pei'ai64S, which is a leading male-sterile line for commercial two-line hybrid rice production. The ysa mutant develops albino leaves before the three-leaf stage, but the mutant gradually turns green and recovers to normal green at the six-leaf stage. Further investigation showed that the change in leaf color in ysa mutant is associated with changes in chlorophyll content and chloroplast development. Map-based cloning revealed that YSA encodes a PPR protein with 16 tandem PPR motifs. YSA is highly expressed in young leaves and stems, and its expression level is regulated by light. We showed that the ysa mutation has no apparent negative effects on several important agronomic traits, such as fertility, stigma extrusion rate, selfed seed-setting rate, hybrid seed-setting rate, and yield heterosis under normal growth conditions. We further demonstrated that ysa can be used as an early marker for efficient identification and elimination of false hybrids in commercial hybrid rice production, resulting in yield increases by up to approximately 537 kg ha−1.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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