Abstract
Rice blast resistance is considered one of the most important traits in rice breeding and the disease, caused by Magnaporthe grisea Barr, has brought significant crop losses annually. Moreover, breakdown of resistance normally occurs in two to five years after cultivar release, thus a more durable resistance is needed for better control of this disease. We developed a new variety, Keumo3, which showed strong resistance to leaf blast. It was tested in 2003 to 2007 at fourteen blast nursery sites covering entire rice-growing regions of South Korea. It showed resistance reactions in 12 regions and moderate in 2 regions without showing susceptible reactions. Durability test by sequential planting method indicated that this variety had better resistance. Results showed that Keumo3 was incompatible against 19 blast isolates with the exception of KI101 by artificial inoculation. To understand the genetic control of blast resistance in rice cultivar Keumo3 and facilitate its utilization, recombinant inbred lines (RIL) consisting of 290 F5 lines derived from Akidagomachi/Keumo3 were analyzed and genotyped with Pizt InDel marker zt56591. The recombination value between the marker allele of zt56591 and bioassay data of blast nursery test was 1.1%. These results indicated that MAS can be applied in selecting breeding populations for blast resistance using zt56591 as DNA marker.
벼 조생종 품종 금오3호의 잎도열병 저항성 및 도열병 저항성 연관마커 zt56591과의 관계를 분석한 결과, '03~'07년까지 5년간 전국 14개 지역 잎도열병 밭못자리 검정의 평균 발병정도는 금오3호가 1.6으로 진부벼 3.6, 금오벼 5.3 및 일품벼 6.4에 비해 낮았다. 저항성(0-3) 12개소, 중도 저항성(4-6) 2개소이며, 감수성(7-9)을 보인 곳은 없었다. 도열병 내구저항성에서 병반 면적율이 0.1~5.0%사이로 지속적인 저항성을 보였으며, 29개 균주에 저항성반응을 보였고, 1개 균주에 대해서는 이병성 반응을 보였다. 도열병 저항성과 연관된 DNA marker를 이용하여 분석한 결과 '금오3호'는 도열병 광범위 저항성 유전자로 알려진 Pizt와 연관된 마커 zt56591에 저항성 밴드 패턴을 나타내었다. 또한, 아끼다고마찌/금오3호 RIL집단에서 Pizt 연관마커와 잎도열병 저항성과의 관계를 분석한 결과 조환가가 1.1%로 밀접히 연관되어 있어 '금오3호'와 교배된 후대집단에서 zt56591마커를 이용한 MAS선발도 가능할 것으로 판단되었다.