Durable panicle blast-resistance gene Pb1 encodes an atypical CC-NBS-LRR protein and was generated by acquiring a promoter through local genome duplication

生物 基因复制 基因 遗传学 R基因 节段重复 基因家族 植物抗病性 编码区 基因组 假基因 串联外显子复制
作者
Nagao Hayashi,Haruhiko Inoue,Takahiro A. Kato,Taketo Funao,M. Shirota,Takehiko Shimizu,Hiroyuki Kanamori,Hiroko Yamane,Yuriko Hayano‐Saito,Takashi Matsumoto,Masahiro Yano,Hiroshi Takatsuji
出处
期刊:Plant Journal [Wiley]
卷期号:64 (3): 498-510 被引量:296
标识
DOI:10.1111/j.1365-313x.2010.04348.x
摘要

Rice blast is one of the most widespread and destructive plant diseases worldwide. Breeders have used disease resistance (R) genes that mediate fungal race-specific 'gene-for-gene' resistance to manage rice blast, but the resistance is prone to breakdown due to high pathogenic variability of blast fungus. Panicle blast 1 (Pb1) is a blast-resistance gene derived from the indica cultivar 'Modan'. Pb1-mediated resistance, which is characterized by durability of resistance and adult/panicle blast resistance, has been introduced into elite varieties for commercial cultivation. We isolated the Pb1 gene by map-based cloning. It encoded a coiled-coil-nucleotide-binding-site-leucine-rich repeat (CC-NBS-LRR) protein. The Pb1 protein sequence differed from previously reported R-proteins, particularly in the NBS domain, in which the P-loop was apparently absent and some other motifs were degenerated. Pb1 was located within one of tandemly repeated 60-kb units, which presumably arose through local genome duplication. Pb1 transcript levels increased during the development of Pb1+ cultivars; this expression pattern accounts for their adult/panicle resistance. Promoter:GUS analysis indicated that genome duplication played a crucial role in the generation of Pb1 by placing a promoter sequence upstream of its coding sequence, thereby conferring a Pb1-characteristic expression pattern to a transcriptionally inactive 'sleeping' resistance gene. We discuss possible determinants for the durability of Pb1-mediated blast resistance.

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