A novel zebra mutant, zebra-15, derived from the restorer line JinhuilO (Oryza sativa L. ssp. indica) treated by EMS, displayed a distinctive zebra leaf from seedling stage to jointing stage. Its chlorophyll content...A novel zebra mutant, zebra-15, derived from the restorer line JinhuilO (Oryza sativa L. ssp. indica) treated by EMS, displayed a distinctive zebra leaf from seedling stage to jointing stage. Its chlorophyll content decreased (55.4%) and the ratio of Chla/Chlb increased (90.2%) significantly in the yellow part of the zebra-15, compared with the wild type. Net photosynthetic rate and fluorescence kinetic parameters showed that the decrease of chlorophyll content significantly influenced the photosynthetic efficiency of the mutant. Genetic analysis of F2 segregation populations derived from the cross of XinonglA and zebra-15 indicated that the zebra leaf trait is controlled by a single recessive nuclear gene. Ninety-eight out of four hundred and eighty pairs of SSR markers showed the diversity between the XinonglA and the zebra-15, their F2 population was then used for gene mapping. Zebra-15 (Z-15) gene was primarily restricted on the short arm of chromosome 5 by 150 F2 recessive individuals, 19.6 cM from marker RM3322 and 6.0 cM from marker RM6082. Thirty-six SSR markers were newly designed in the restricted location, and the Z-15 was finally located between markers nSSR516 and nSSR502 with the physical region 258 kb by using 1,054 F2 recessive individuals.展开更多
基金国家高技术研究发展计划(863计划)项目"强优势水稻杂交种的创制与应用"(2011AA10A101)衡阳市科技局重点项目"黄色带状标记基因在两用核不育系中的利用"(2011KZ15)资助+1 种基金supported by the grants from National High-tech R&D Program of China(863 Program)(2011AA10A101)the Key Project Funded by the Hengyang Science and Technology Bureau(2011KZ15)
文摘从恢复系育种材料[R128//(R318/R1025)F1]F6中获得一个新的斑马叶突变体zebra1349,突变体秧苗期如果不移栽,与野生型一样表现绿色,移栽后5 d新抽出的叶片包括叶鞘会呈现出与叶脉垂直的黄绿相间的条纹,移栽后30 d抽出的叶片又表现正常绿色,成熟期主要农艺性状与野生型无明显差异。与野生型相比,突变体六叶期斑马叶黄区部位的总叶绿素、叶绿素a、叶绿素b和类胡萝卜素的含量分别下降了55.86%、61.02%、39.34%和47.03%。透射电镜(TEM)观察表明,突变体斑马叶绿区部位叶绿体发育正常;黄区部位叶肉细胞中叶绿体结构异常,类囊体膜退化和分解严重,类囊体基粒片层数量明显减少,片层间距拉大,排列疏松。对zebra1349与正常叶色品种杂交F1、F2代的遗传分析表明该性状受1对隐性核基因调控。利用1192株zebra1349/02428 F2隐性定位群体,最终把ZEBRA1349基因定位在水稻第12染色体In Del标记indel39和indel44之间,其遗传距离分别为0.04 c M和0.17 c M,根据日本晴基因组序列推测,两标记之间的物理距离约为89 kb。本研究为ZEBRA1349基因的图位克隆和功能研究以及分子标记辅助育种奠定了基础。
基金funded by the Excellent Youth Foundation Project of Chongqing (No. 2008BA1033)the Fine Animals and Plants Breeding Project of Chongqing (No. 2007AA1019, 2007AA1012 and 2007AB1033)the National Key Technology R&D Program of China (No. 2006BAD01A01)
文摘A novel zebra mutant, zebra-15, derived from the restorer line JinhuilO (Oryza sativa L. ssp. indica) treated by EMS, displayed a distinctive zebra leaf from seedling stage to jointing stage. Its chlorophyll content decreased (55.4%) and the ratio of Chla/Chlb increased (90.2%) significantly in the yellow part of the zebra-15, compared with the wild type. Net photosynthetic rate and fluorescence kinetic parameters showed that the decrease of chlorophyll content significantly influenced the photosynthetic efficiency of the mutant. Genetic analysis of F2 segregation populations derived from the cross of XinonglA and zebra-15 indicated that the zebra leaf trait is controlled by a single recessive nuclear gene. Ninety-eight out of four hundred and eighty pairs of SSR markers showed the diversity between the XinonglA and the zebra-15, their F2 population was then used for gene mapping. Zebra-15 (Z-15) gene was primarily restricted on the short arm of chromosome 5 by 150 F2 recessive individuals, 19.6 cM from marker RM3322 and 6.0 cM from marker RM6082. Thirty-six SSR markers were newly designed in the restricted location, and the Z-15 was finally located between markers nSSR516 and nSSR502 with the physical region 258 kb by using 1,054 F2 recessive individuals.