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Chromosome mapping, molecular cloning and expression analysis of a novel gene response for leaf width in rice

机译:水稻叶宽新基因应答的染色体作图,分子克隆和表达分析

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摘要

Genetic analysis revealed that narrow leaf, small panicle, thin and slender stems as well as low fertility rate of an Indica rice variety were recessive traits and controlled by a single gene. Applying map-based cloning strategy, a novel narrow leaf gene, which was named nal11 was delimited to an interval of 58.3 kb between the InDel markers N10 and InD5016. There are 9 genes in the mapping interval, and only a heat shock DNAJ protein encode gene (0s07g09450) has a specific G to T SNP, which was occurred at the last base of the second exon of 0s07g09450 in ZYX. 5' and 3' RACE result shown that there were two transcripts in NAL11, and the SNP in nal11 leads to a variable shear of mRNA. In addition, this type of mRNA alternative splicing together with a stop codon closely followed the SNP which caused termination of translation destroyed the DNAJ domain of nal11's product. These results suggested that the heat shock DNAJ gene was most likely to be the candidate gene of nal11. The results of RT-PCR and real-time PCR further verified that the SNP in the ZYX-nal11 gene affects mRNA splicing pattern. Phenotype of ZYX may be caused by a statistically significant reduction in the total number of small veins in leaf, size and number of small vascular bundles and cells in stems, similar to several previous reported mutations. The basic molecular information we provide here will be useful for further investigations of the physiological function of the heat shock DNAJ gene, which will be helpful in better understanding the role of the DNAJ family in regulation of plant type traits such as leaf width of rice. (C) 2016 Elsevier Inc. All rights reserved.
机译:遗传分析显示,narrow稻品种的窄叶,小圆锥花序,茎细而细长以及受精率低是隐性性状,并受单一基因控制。应用基于图谱的克隆策略,一个名为nal11的新型窄叶基因在InDel标记N10和InD5016之间的间隔为58.3 kb。在作图间隔中有9个基因,只有热休克DNAJ蛋白编码基因(0s07g09450)具有对T SNP的特异性G,该基因发生在ZYX中0s07g09450的第二个外显子的最后一个碱基。 5'和3'RACE结果显示在NAL11中有两个转录物,并且在nal11中的SNP导致mRNA的可变剪切。此外,这种类型的mRNA选择性剪接与终止密码子紧紧跟随SNP,导致翻译终止,破坏了nal11产物的DNAJ结构域。这些结果表明,热激DNAJ基因最有可能是nal11的候选基因。 RT-PCR和实时PCR的结果进一步证实ZYX-nal11基因中的SNP影响mRNA剪接模式。 ZYX的表型可能是由叶片上的小静脉总数,茎中的小血管束和细胞的大小以及数量的统计显着减少所致,类似于先前报道的几种突变。我们在这里提供的基本分子信息将有助于进一步研究热休克DNAJ基因的生理功能,这将有助于更好地理解DNAJ家族在调节植物类型性状(例如水稻的叶宽)中的作用。 (C)2016 Elsevier Inc.保留所有权利。

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