Chen Hsian-Jun, Sawasdee Anuchart, Lin Yu-Ling, Chiang Min-Yu, Chang Hsin-Yi, Li Wen-Hsiung, Wang Chang-Sheng
Department of Agronomy, National Chung Hsing University, Taichung 402, Taiwan.
Biodiversity Research Center, Academia Sinica, Taipei 115, Taiwan.
Curr Issues Mol Biol. 2024 Nov 22;46(12):13328-13346. doi: 10.3390/cimb46120795.
Pigmentation in rice is due mainly to the accumulation of anthocyanins. Five color mutant lines, AZ1701, AZ1702, AZ1711, AZ1714, and AZ1715, derived from the sodium azide mutagenesis on the non-pigmented IR64 variety, were applied to study inheritance modes and genes for pigmentation. The mutant line AZ1711, when crossed with IR64, displays pigmentation in various tissues, exhibiting a 3:1 pigmented to non-pigmented ratio in the F progeny, indicating a single dominant locus controlling pigmentation. Eighty-four simple sequence repeat (SSR) markers were applied to map the pigment gene using 92 F individuals. RM6773, RM5754, RM253, and RM2615 markers are found to be linked to the color phenotype. RM253 explains 78% of the phenotypic variation, implying linkage to the pigmentation gene(s). Three candidate genes, (), , and , as anthocyanin biosynthesis-related genes, were identified within a 0.83 Mb region tightly linked to RM253. PCR cloning and sequencing revealed 10 bp and 72 bp insertions in the and genes, respectively, restoring pigmentation as in wild rice. The 72 bp insertion is highly homologous to a sequence of - retrotransposon and shows a particular secondary structure, suggesting that it was derived from the transposition of - in the IR64 genome.
水稻中的色素沉着主要归因于花青素的积累。从非色素沉着的IR64品种经叠氮化钠诱变获得的五个颜色突变系AZ1701、AZ1702、AZ1711、AZ1714和AZ1715,被用于研究色素沉着的遗传模式和基因。突变系AZ1711与IR64杂交时,在各种组织中均表现出色素沉着,在F子代中色素沉着与非色素沉着的比例为3:1,表明有一个单一的显性基因座控制色素沉着。使用92个F个体,应用84个简单序列重复(SSR)标记来定位色素基因。发现RM6773、RM5754、RM253和RM2615标记与颜色表型相关联。RM253解释了78%的表型变异,这意味着它与色素沉着基因连锁。在与RM253紧密连锁的0.83 Mb区域内,鉴定出三个作为花青素生物合成相关基因的候选基因,即()、和。PCR克隆和测序显示,和基因中分别有10 bp和72 bp的插入,恢复了野生稻中的色素沉着。72 bp的插入与一个-反转录转座子的序列高度同源,并呈现出特定的二级结构,表明它是由IR64基因组中的-转座产生的。