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首页> 外文期刊>Journal of Crop Improvement >Genetic Variation for Heat Tolerance in Primitive Cultivated Subspecies of Triticum turgidum L.
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Genetic Variation for Heat Tolerance in Primitive Cultivated Subspecies of Triticum turgidum L.

机译:小麦原始栽培亚种耐热性的遗传变异。

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High temperature (heat) stress is a major constraint for the productivity of crops worldwide. Wheat fTriticum spp.) is particularly vulnerable to high temperature stress compared to other crops. The principal way to mitigate heat damage is to developheat-tolerant varieties by identifying heat-tolerant germplasm and employing the tolerant lines in breeding programs. The objectives of this study were to investigate the genetic variation for heat tolerance in primitive cultivated subspecies of tetraploid wheat Triticum turgidum L. (AABB genome) and to identify heat-tolerant genotypes. Thirty-eight tetraploid wheat accessions belonging to five subspecies collected from 19 countries were studied for heat tolerance in dayight temperatures of 36/30°C beginning at anthe-sis. Several lines were classified as heat-tolerant based on small reductions in seed number, single-kernel weight, and total grain weight, as well as slow chlorophyll degradation under heat stress. T. turgidum subsp. polonicum IG110572from Algeria, T. turgidum subsp. dicoccum IG45067 from Oman, and T. turgidum subsp. dicoccum IG45393 from Eritrea had responses similar to the reference heat-tolerant hexaploid wheat, 'Kauz'. These heat-tolerant accessions may be useful to breeding programs for the improvement of heat tolerance in tetraploid or hexaploid wheat.
机译:高温(热)胁迫是全世界农作物生产力的主要制约因素。与其他农作物相比,小麦(Triticum spp。)特别容易遭受高温胁迫。减轻热损害的主要方法是通过鉴定耐热种质并在育种计划中采用耐热品系来开发耐热品种。这项研究的目的是调查四倍体小麦小麦(AABB基因组)的原始栽​​培亚种中耐热性的遗传变异并鉴定耐热基因型。从花期开始,研究了来自19个国家的5个亚种的38种四倍体小麦种质的昼夜温差,耐热性为36/30°C。根据种子数量,单粒重和总粒重的少量减少,以及在热胁迫下缓慢的叶绿素降解,将几条品系归为耐热品系。 T. turgidum亚种来自阿尔及利亚T. turgidum亚种的polonicum IG110572。来自阿曼的dicoccum IG45067和T. turgidum subsp。厄立特里亚的dicoccum IG45393具有类似于参考耐热六倍体小麦“ Kauz”的响应。这些耐热种质可能对提高四倍体或六倍体小麦的耐热性的育种程序有用。

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