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首页> 外文期刊>Physiologia plantarum >Combining mapping of physiological quantitative trait loci and transcriptome for cold tolerance for counteracting male sterility induced by low temperatures during reproductive stage in rice
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Combining mapping of physiological quantitative trait loci and transcriptome for cold tolerance for counteracting male sterility induced by low temperatures during reproductive stage in rice

机译:结合生理定量性状基因座和转录组定位抗寒性,抵消水稻生育期低温诱导的雄性不育

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Male sterility induced by low temperatures (LTs) during the reproductive stage is a major constraint for temperate zone rice. To detect physiological quantitative trait loci (QTLs), we modeled genotypic variation in the physiological processes involved in low temperature spikelet sterility on the basis of anther length (AL), a proxy for microspore and pollen grain number per anther. The model accounted for 83% of the genotypic variation in potential AL at normal temperature and the ability to maintain AL at LT. We tested the model on 208 recombinant inbred lines of cold-tolerant 'Tohoku-PL3' (PL3) x cold-sensitive 'Akihikari' (AH) for 2 years. QTLs for spikelet fertility (FRT) at LT were detected on chromosomes 5 (QTL for Cold Tolerance at Reproductive stage, qCTR5) and 12 (qCTR12). qCTR12 was annotated with the ability to maintain AL under LTs. qCTR5 was in a region shared with QTLs for culm length and heading date. Genome-wide expression analysis showed 798 genes differentially expressed in the spikelets between the parents at LTs. Of these, 12 were near qCTR5 and 23 were near qCTR12. Gene expression analysis confirmed two candidate genes for qCTR5 (O-methyltransferase ZRP4, Os05g0515600; beta-1,3-glucanase-like protein, Os05g0535100) and one for qCTR12 (conserved hypothetical protein, Os12g0550600). Nucleotide polymorphisms (21 deletions, 2 insertions and 10 single nucleotide polymorphisms) in PL3 were found near the candidate conserved hypothetical protein (Os12g0550600) and upstream in PL3, but not in AH. Haplotype analysis revealed that this gene came from 'Kuchum'. The combination of mapping physiological QTLs with gene expression analysis can be extended to identify other genes for abiotic stress response in cereals.
机译:生育期低温引起的雄性不育是温带水稻的主要制约因素。为了检测生理数量性状基因座(QTL),我们基于花药长度(AL)(每株花药的小孢子和花粉粒数的代理),对涉及低温小穗不育的生理过程中的基因型变异进行了建模。该模型占正常温度下潜在AL的基因型变异的83%,以及在LT维持AL的能力。我们在耐寒的'Tohoku-PL3'(PL3)x耐寒的'Akihikari'(AH)的208个重组自交系上测试了该模型2年。在5号染色体(生殖阶段耐寒性QTL,qCTR5)和12号染色体(qCTR12)上检测到LT的小穗繁殖力(FRT)的QTL。 qCTR12具有在LT下维持AL的能力。 qCTR5位于与QTL共享的茎长和抽穗期的区域。全基因组表达分析表明,在LTs的父母之间的小穗中有798个基因差异表达。其中12个接近qCTR5,23个接近qCTR12。基因表达分析确认了qCT​​R5的两个候选基因(O-甲基转移酶ZRP4,Os05g0515600;β-1,3-葡聚糖酶样蛋白,Os05g0535100)和qCTR12的一个候选基因(保守的假设蛋白,Os12g0550600)。 PL3中的核苷酸多态性(21个缺失,2个插入和10个单核苷酸多态性)在候选保守假设蛋白(Os12g0550600)附近和PL3的上游发现,但在AH中未发现。单倍型分析显示该基因来自'Kuchum'。映射生理学QTL与基因表达分析的结合可以扩展,以识别谷物中非生物胁迫响应的其他基因。

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