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在粳稻背景下与幼苗耐冷性提高相关的渗入籼稻等位基因的全基因组基因表达谱分析。

Genome-wide gene expression profiling of introgressed indica rice alleles associated with seedling cold tolerance improvement in a japonica rice background.

作者信息

Zhang Fan, Huang Liyu, Wang Wensheng, Zhao Xiuqin, Zhu Linghua, Fu Binying, Li Zhikang

出版信息

BMC Genomics. 2012 Sep 7;13:461. doi: 10.1186/1471-2164-13-461.

Abstract

BACKGROUND

Rice in tropical and sub-tropical areas is often subjected to cold stress at the seedling stage, resulting in poor growth and yield loss. Although japonica rice is generally more cold tolerant (CT) than indica rice, there are several favorable alleles for CT exist in indica that can be used to enhance CT in rice with a japonica background. Genome-wide gene expression profiling is an efficient way to decipher the molecular genetic mechanisms of CT enhancement and to provide valuable information for CT improvement in rice molecular breeding. In this study, the transcriptome of the CT introgression line (IL) K354 and its recurrent parent C418 under cold stress were comparatively analyzed to explore the possible CT enhancement mechanisms of K354.

RESULTS

A total of 3184 differentially expressed genes (DEGs), including 195 transcription factors, were identified in both lines under cold stress. About half of these DEGs were commonly regulated and involved in major cold responsive pathways associated with OsDREB1 and OsMyb4 regulons. K354-specific cold-induced genes were functionally related to stimulus response, cellular cell wall organization, and microtubule-based movement processes that may contribute to increase CT. A set of genes encoding membrane fluidity and defensive proteins were highly enriched only in K354, suggesting that they contribute to the inherent CT of K354. Candidate gene prediction based on introgressed regions in K354 revealed genotype-dependent CT enhancement mechanisms, associated with Sir2, OsFAD7, OsWAK112d, and programmed cell death (PCD) related genes, present in CT IL K354 but absent in its recurrent parent C418. In K354, a number of DEGs were co-localized onto introgressed segments associated with CT QTLs, providing a basis for gene cloning and elucidation of molecular mechanisms responsible for CT in rice.

CONCLUSIONS

Genome-wide gene expression analysis revealed that genotype-specific cold induced genes and genes with higher basal expression in the CT genotype contribute jointly to CT improvement. The molecular genetic pathways of cold stress tolerance uncovered in this study, as well as the DEGs co-localized with CT-related QTLs, will serve as useful resources for further functional dissection of the molecular mechanisms of cold stress response in rice.

摘要

背景

热带和亚热带地区的水稻在幼苗期常遭受冷胁迫,导致生长不良和产量损失。尽管粳稻通常比籼稻更耐冷,但籼稻中存在几个有利于耐冷性的等位基因,可用于增强粳稻背景水稻的耐冷性。全基因组基因表达谱分析是解析耐冷性增强分子遗传机制以及为水稻分子育种中耐冷性改良提供有价值信息的有效方法。在本研究中,对耐冷渗入系(IL)K354及其轮回亲本C418在冷胁迫下的转录组进行了比较分析,以探索K354可能的耐冷性增强机制。

结果

在冷胁迫下,两个品系共鉴定出3184个差异表达基因(DEG),其中包括195个转录因子。这些DEG中约一半受到共同调控,并参与与OsDREB1和OsMyb4调控子相关的主要冷响应途径。K354特有的冷诱导基因在功能上与刺激响应、细胞细胞壁组织以及基于微管的运动过程相关,这些可能有助于提高耐冷性。一组编码膜流动性和防御蛋白的基因仅在K354中高度富集,表明它们对K354的固有耐冷性有贡献。基于K354渗入区域的候选基因预测揭示了与Sir2、OsFAD7、OsWAK112d以及程序性细胞死亡(PCD)相关基因有关的基因型依赖性耐冷性增强机制,这些基因存在于耐冷渗入系K354中,而在其轮回亲本C418中不存在。在K354中,许多DEG共定位到与耐冷QTL相关的渗入片段上,为水稻耐冷性基因克隆和分子机制解析提供了基础。

结论

全基因组基因表达分析表明,基因型特异性冷诱导基因以及在耐冷基因型中具有较高基础表达的基因共同促进了耐冷性的提高。本研究中揭示的冷胁迫耐受性分子遗传途径以及与耐冷相关QTL共定位的DEG,将为进一步深入解析水稻冷胁迫响应分子机制提供有用资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d126/3526417/f3f2ee99d231/1471-2164-13-461-1.jpg

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