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首页> 外文期刊>Computational Biology and Bioinformatics >Evaluation of Bread Wheat (Triticum Aestivum L.) Genotypes for Stem and Yellow Rust Resistance in Ethiopia
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Evaluation of Bread Wheat (Triticum Aestivum L.) Genotypes for Stem and Yellow Rust Resistance in Ethiopia

机译:评价面包小麦(Triticum Aestivum L.)基因型在埃塞俄比亚茎和黄色耐久性的基因型

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摘要

Wheat production in Ethiopia is challenged by different biotic stress. Among these biotic stresses, stem rust (Puccinia graminis f. sp. Tritici) and yellow rust (P. striiformis Westend. f. sp. Tritici) are the most devastating.. Improvement of wheat genotypes through incorporation of resistant genes to stem rust and yellow rust and testing them under hot spot areas is the most economical and environmentally friendly approach to develop resistant cultivars. Field experiment using an augmented design was undertaken at Kulumsa during 2016/17 and 2017/18 cropping season to evaluate the response of 119 elite spring bread wheat genotypes and three checks for stem and yellow rust. Based on the disease severity 71.4% and 96.6% of the genotypes showed the lowest score (0-10%) for stem rust in the first and second cropping season, respectively. About 59.7% and 66.4% of the genotypes were also showed the lowest disease severity (0-10%) for yellow rust during 2016/17 and 2017/18 cropping season, respectively. The genotypes showed significant (0.05) difference in Area Under Disease Progress Curve (AUDPC) for stem rust and yellow rust during 2016/17 and 2017/18 cropping season but there was significant difference (0.05) in Coefficient of Infection (CI) for stem rust during the first cropping season only. The genotypes exhibited significant difference (0.01) and (0.001) in CI for yellow rust in the first and second cropping season, respectively. Negative association of grain yield and thousand kernel weight with stem and yellow rust was found in both cropping season. Among the genotypes ASEEL-1//MILAN/PASTOR/3/SHAMISS-3, ZERBA6/FLAG6/3/TAM200/PASTOR//TOBA97, ZERBA-6/FLAG6/3/TAM200/PASTOR//TOBA97, NJOROSD-2/SHIHAB-12 and ICBW 206971//SHUHA-4/CHAM8/3/SIRAJ are highly resistant for both yellow and stem rust in both cropping season.
机译:埃塞俄比亚的小麦产量受到不同的生物压力的挑战。在这些生物应力中,茎锈病(Puccinia graminis f。sp。tritici)和黄色生锈(p. striformis westend .f。sp。tititici)是最毁灭的。通过将抗性基因掺入茎锈和腐蚀的茎生物术来改善小麦基因型的改善黄色锈和在热点地区测试它们是开发抗性品种的最经济和环保的方法。使用增强设计的现场实验在2016/17年和2017/18播种季节进行了Kulumsa,以评估119个精英春季面包小麦基因型的响应和三个检查茎和黄色锈。基于疾病严重程度71.4%和96.6%的基因型分别显示出第一和第二季的茎生锈的最低分(0-10%)。在2016/17和2017/18种植季节,还显示了大约59.7%和66.4%的基因型,疾病严重程度(0-10%)分别为黄锈病。在2016/17和2017/18种植季节期间,基因型显示出疾病进展曲线(AUDPC)的疾病进展曲线(AUDPC)差异显着(0.05)差异,但干燥系数(CI)系数有显着差异(0.05)在第一个种植季节里只生锈了。基因型在第一和第二作物季节中,在CI中表现出显着的差异(0.01)和(0.001),并在第一季作员的黄色生锈。两种裁剪季节都发现了籽粒产量和千粒重量与茎和黄色锈的负关联。 Genotypes Aseel-1 //米兰/牧师/ 3 / Shamiss-3,Zerba6 / Flag6 / 3 / Tam200 /牧师// Toba97,Zerba-6 / Flag6 / 3 / Tam200 /牧师// Toba97,Njorosd-2 / Shihab-12和ICBW 206971 // Shuha-4 / Cham8 / 3 / Siraj对裁剪季节的黄色和茎生锈具有高度抗性。

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