首页> 外文期刊>Journal of Plant Breeding and Crop Science >High temperature combined with drought affect rainfed spring wheat and barley in south-eastern Russia: Yield, relative performance and heat susceptibility index
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High temperature combined with drought affect rainfed spring wheat and barley in south-eastern Russia: Yield, relative performance and heat susceptibility index

机译:高温和干旱共同影响俄罗斯东南部雨养春小麦和大麦:产量,相对表现和热敏指数

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Among all abiotic stresses, drought is undoubtedly the major factor, which, individually or combined with heat stress, limits crop productivity worldwide. Considering these facts, four spring barley and two spring wheat genotypes were evaluated under two stress (early and late) conditions in a southern arid region of Russia in order to identify suitable spring wheat and barley genotypes for that region and to assess the optimum sowing time for specific genotypes. High temperature followed by deficit soil moisture affected all stages from germination through to reproduction of crop when sown late, finally drastically reducing yield. On the other hand, due to low temperature, germination and stand establishment of crop sown early were highly affected, resulting in lower grain yield. Thus, high temperature (air and soil) followed by drought (deficit soil moisture) in the late-sown crop (from germination to reproductive stages) and low temperature in germination through vegetative stages of the early-sown crop are the most important constraints for crop production in this arid region. From the overall performance (yield, relative performance and stress susceptibility index), genotype ‘Zernograd.770’ is recommended for both early and late drought stressed areas and ‘Ratnik’ were sensitive to stress both at low temperatures when sown early and high temperatures followed by drought when sown late.
机译:在所有非生物胁迫中,干旱无疑是主要因素,无论是单独还是与热胁迫结合,干旱都限制了全球的作物生产力。考虑到这些事实,在俄罗斯南部干旱地区,在两种胁迫(早晚)条件下评估了四种春大麦和两种春小麦基因型,以便确定该地区合适的春小麦和大麦基因型,并评估最佳播种时间。对于特定的基因型。高温接着土壤水分不足,影响了从发芽到播种到播种后期的所有阶段,最终大大降低了产量。另一方面,由于温度低,早期播种的农作物的发芽和定植受到严重影响,导致谷物单产降低。因此,播种后期作物(从发芽到生殖阶段)的高温(空气和土壤),然后是干旱(土壤水分不足),以及早播作物的营养期的发芽过程中的低温是最重要的制约因素。该干旱地区的农作物产量。从总体表现(产量,相对表现和胁迫敏感性指数)来看,基因型“ Zernograd.770”被推荐用于干旱早期和晚期干旱地区,而“ Ratnik”在低温下播种早期和高温时均对压力敏感。播种时由于干旱而延迟。

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