Key Laboratory of Crop Gene Resources and Germplasm Enhancement, MOA, The National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Science, Chinese Academy of Agricultural Sciences , Beijing 100081, China.
Breed Sci. 2013 Jun;63(2):169-75. doi: 10.1270/jsbbs.63.169. Epub 2013 Jun 1.
The yellow-green leaf mutant has a non-lethal chlorophyll-deficient mutation that can be exploited in photosynthesis and plant development research. A novel yellow-green mutant derived from Triticum durum var. Cappelli displays a yellow-green leaf color from the seedling stage to the mature stage. Examination of the mutant chloroplasts with transmission electron microscopy revealed that the shape of chloroplast changed, grana stacks in the stroma were highly variable in size and disorganized. The pigment content, including chlorophyll a, chlorophyll b, total chlorophyll and carotene, was decreased in the mutant. In contrast, the chla/chlb ratio of the mutants was increased in comparison with the normal green leaves. We also found a reduction in the photosynthetic rate, fluorescence kinetic parameters and yield-related agronomic traits of the mutant. A genetic analysis revealed that two nuclear recessive genes controlled the expression of this trait. The genes were designated ygld1 and ygld2. Two molecular markers co-segregated with these genes. ygld 1 co-segregated with the SSR marker wmc110 on chromosome 5AL and ygld 2 co-segregated with the SSR marker wmc28 on chromosome 5BL. These results will contribute to the gene cloning and the understanding of the mechanisms underlying chlorophyll metabolism and chloroplast development in wheat.
黄绿叶突变体具有非致死性的叶绿素缺乏突变,可用于光合作用和植物发育研究。源自硬质小麦 Cappelli 变种的新型黄绿叶突变体从幼苗期到成熟期均表现为黄绿叶色。透射电子显微镜检查突变体叶绿体发现,叶绿体形状发生改变,基质中的类囊体堆叠大小变化且排列紊乱。突变体中的色素含量,包括叶绿素 a、叶绿素 b、总叶绿素和类胡萝卜素,均降低。相比之下,与正常绿叶相比,突变体的 chla/chlb 比值增加。我们还发现突变体的光合速率、荧光动力学参数和与产量相关的农艺性状降低。遗传分析表明,两个核隐性基因控制着该性状的表达。这些基因被命名为 ygld1 和 ygld2。两个分子标记与这些基因共分离。ygld1 与 5AL 染色体上的 SSR 标记 wmc110 共分离,ygld2 与 5BL 染色体上的 SSR 标记 wmc28 共分离。这些结果将有助于基因克隆,并深入理解小麦中叶绿素代谢和叶绿体发育的机制。