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基于籼稻品种 Rathu Heenati 的广谱抗性的微阵列分析。

Microarray analysis of broad-spectrum resistance derived from an indica cultivar Rathu Heenati.

机构信息

Key Laboratory of Insect Developmental and Evolutionary Biology, Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200032, People's Republic of China.

出版信息

Planta. 2012 Apr;235(4):829-40. doi: 10.1007/s00425-011-1546-1. Epub 2011 Nov 15.

Abstract

Rathu Heenati (RHT) is a Sri Lankan rice cultivar that carries a brown planthopper (BPH) resistance gene, Bph3, and shows broad-spectrum resistance to all four biotypes of BPH. The BPH-resistance loci in RHT has been studied extensively and assigned to four different rice chromosomes (3, 4, 6, and 10) by different research groups, but the gene has not been cloned previously. An Affymetrix rice genome array containing 48,564 japonica and 1,260 indica sequences was used to analyze the potential resistance-related genes on the four chromosomes by comparative analysis of the differentially expressed genes between resistant and susceptible rice cultivars exposed to BPH attack. The microarray results showed that at least 17 genes related to induced resistance and at least 193 genes related to constitutive resistance in RHT. On chromosome 3, the AOC4 was hypothesized to be the most important candidate gene. On chromosome 6, no valuable candidate resistance gene was identified in the Bph3 localization region. In the three Quantitative trait locus regions of chromosomes 3, 4, and 10, the numbers of constitutive and induced resistance-related genes found were 17, 26, and 12, respectively. The major probe on chromosome 10 represents a constitutive expression gene with a very high absolute fold-change of 2,588.82. The microarray analysis indicated that BPH resistance in RHT is probably controlled by a series of resistance-related genes. This study provides valuable information for cloning, functional analysis and marker-assisted breeding of these BPH resistance genes.

摘要

拉殊-Heenati(RHT)是一种斯里兰卡水稻品种,携带褐飞虱(BPH)抗性基因 Bph3,并对所有四种生物型褐飞虱表现出广谱抗性。RHT 中的 BPH 抗性基因座已被广泛研究,并由不同的研究小组分配到四个不同的水稻染色体(3、4、6 和 10)上,但该基因尚未被克隆。利用含有 48564 个粳稻和 1260 个籼稻序列的 Affymetrix 水稻基因组芯片,通过比较抗感水稻品种在褐飞虱攻击下差异表达基因的比较分析,分析了四个染色体上潜在的与抗性相关的基因。微阵列结果表明,在 RHT 中至少有 17 个与诱导抗性相关的基因和至少 193 个与组成型抗性相关的基因。在 3 号染色体上,推测 AOC4 是最重要的候选基因。在 6 号染色体上,在 Bph3 定位区域未鉴定出有价值的候选抗性基因。在 3、4 和 10 号染色体的三个数量性状位点区域中,发现的组成型和诱导抗性相关基因的数量分别为 17、26 和 12。10 号染色体上的主要探针代表一个组成型表达基因,绝对倍数变化高达 2588.82。微阵列分析表明,RHT 中的 BPH 抗性可能由一系列抗性相关基因控制。这项研究为这些 BPH 抗性基因的克隆、功能分析和标记辅助育种提供了有价值的信息。

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