J Integr Plant Biol ›› 2016, Vol. 58 ›› Issue (12): 971-982.DOI: 10.1111/jipb.12487

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RLS3, a protein with AAA+ domain localized in chloroplast, sustains leaf longevity in rice

Yanhui Lin, Lubin Tan, Lei Zhao, Xianyou Sun and Chuanqing Sun*   

  • 收稿日期:2016-04-22 接受日期:2016-06-28 出版日期:2016-06-30 发布日期:2016-06-30

RLS3, a protein with AAA+ domain localized in chloroplast, sustains leaf longevity in rice

Yanhui Lin, Lubin Tan, Lei Zhao, Xianyou Sun and Chuanqing Sun*   

  1. State Key Laboratory of Plant Physiology and Biochemistry, National Center for Evaluation of Agricultural Wild Plants (Rice), MOE Key Laboratory of Crop Heterosis and Utilization, Department of Plant Genetics and Breeding, China Agricultural University, Beijing 100193, China
  • Received:2016-04-22 Accepted:2016-06-28 Online:2016-06-30 Published:2016-06-30
  • About author:*Correspondence: E-mail: Chuanqing Sun (suncq@cau.edu.cn)

摘要: Leaf senescence is the final stage in plant development and associated with grain yield and plant quality. Here we isolated RLS3 gene, which delayed leaf senescence and restored grain yield in rice. Loss function of RLS3 gene caused growth retardation and grain yield reduction.

Abstract:

Leaf senescence plays an important role in crop developmental processes that dramatically affect crop yield and grain quality. The genetic regulation of leaf senescence is complex, involving many metabolic and signaling pathways. Here, we identified a rapid leaf senescence 3 (rls3) mutant that displayed accelerated leaf senescence, shorter plant height and panicle length, and lower seed set rate than the wild type. Map-based cloning revealed that RLS3 encodes a protein with AAA+ domain, localizing it to chloroplasts. Sequence analysis found that the rls3 gene had a single-nucleotide substitution (G[RIGHTWARDS ARROW]A) at the splice site of the 10th intron/11th exon, resulting in the cleavage of the first nucleotide in 11th exon and premature termination of RLS3 protein translation. Using transmission electron microscope, the chloroplasts of the rls3 mutant were observed to degrade much faster than those of the wild type. The investigation of the leaf senescence process under dark incubation conditions further revealed that the rls3 mutant displayed rapid leaf senescence. Thus, the RLS3 gene plays key roles in sustaining the normal growth of rice, while loss of function in RLS3 leads to rapid leaf senescence. The identification of RLS3 will be helpful to elucidate the mechanisms involved in leaf senescence in rice.

Key words: AAA+ domain, rapid leaf senescence, rice, RLS3

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