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Genetic analysis of heat tolerance at anthesis in rice.

机译:水稻花期耐热性的遗传分析。

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摘要

Genetic analysis of heat tolerance will help breeders produce rice (Oryza sativa L.) varieties adapted to future climates. An F6 population of 181 recombinant inbred lines of Bala (tolerant) x Azucena (susceptible) was screened for heat tolerance at anthesis by measuring spikelet fertility at 30 degrees C (control) and 38 degrees C (high temperature) in experiments conducted in the Philippines and the United Kingdom. The parents varied significantly for absolute spikelet fertility under control (79-87%) and at high temperature (2.9-47.1%), and for relative spikelet fertility (high temperature/control) at high temperature (3.7-54.9%). There was no correlation between spikelet fertility in control and high-temperature conditions and no common quantitative trait loci (QTLs) were identified. Two QTLs for spikelet fertility under control conditions were identified on chromosomes 2 and 4. Eight QTLs for spikelet fertility under high-temperature conditions were identified on chromosomes 1, 2, 3, 8, 10, and 11. The most significant heat-responsive QTL, contributed by Bala and explaining up to 18% of the phenotypic variation, was identified on chromosome 1 (38.35 mega base pairs on the rice physical genome map). This QTL was also found to influence plant height, explaining 36.6% of the phenotypic variation. A comparison with other studies of abiotic (drought, cold, salinity) stresses showed QTLs at similar positions on chromosomes 1, 3, 8, and 10, suggesting common underlying stress-responsive regions of the genome.Digital Object Identifier http://dx.doi.org/10.2135/cropsci2009.09.0516
机译:耐热性的遗传分析将帮助育种者生产适应未来气候的水稻(Oryza sativa L.)品种。通过测量30°C(对照)和38°C(高)的小穗繁殖力,筛选了181个Bala(耐性)x Azucena(易感)重组近交系的F 6 群体的花期耐热性。温度)在菲律宾和英国进行的实验中。父母在控制下(79-87%)和高温下(2.9-47.1%)的绝对小穗受精率和高温下(3.7-54.9%)的相对小穗受精率(高温/对照)差异显着。对照和高温条件下的小穗繁殖力之间没有相关性,也没有鉴定出常见的数量性状基因座(QTL)。在染色体2和4上确定了两个在对照条件下的小穗繁殖力的QTL。在染色体1、2、3、8、10和11上鉴定了八个在高温条件下的小穗繁殖力QTL。是由巴拉(Bala)贡献的,并解释了多达18%的表型变异,已在1号染色体(水稻物理基因组图谱上的38.35兆碱基对)中鉴定出来。还发现该QTL影响植物高度,解释了36.6%的表型变异。与其他非生物(干旱,寒冷,盐度)胁迫研究的比较显示,QTL位于1号,3号,8号和10号染色体上的相似位置,表明基因组共有潜在的基础胁迫反应区域。 .doi.org / 10.2135 / cropsci2009.09.0516

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