豆粕对叶斑病、黄花叶病和豆皱病的抗性检测

Q4 Agricultural and Biological Sciences
M. Hussain, Amir Afzal, M. Zeeshan, Sairah Syed, T. Hussain, G. Nabi, B. Ahmad, M. Ijaz
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引用次数: 0

摘要

在叶面病害中,叶斑病、黄花叶病毒(YMV)和乌豆叶皱病毒(ULCV)是巴基斯坦土豆泥(Vigna mungo)的破坏性病害。在植物中加入抗生物胁迫能力是作物育种改良的传统策略。对生物胁迫的有效育种需要易于获得的抗性种质。在Chakwal巴拉尼农业研究所连续两年(2019年和2020年)对67个基因型进行了多病抗性评估。本着减少环境影响的思想,反复试验,选择了两年内性能相同的材料。在67个基因型中,12个基因型对叶斑病具有抗性,19个基因型对黄花叶病毒具有高度抗性。在2020年期间没有出现ULCV疾病。然而,19个基因型在第一年的试验中表现出对ULCV的抗性。2个基因型3CM-703和4CM-720对所研究的所有叶面病害均表现出抗性反应。4CM-716、4CM-720、5CM-708三个基因型对YMV和叶斑病均有抗性。4CM716、4CM720、5ccm708、7CM701、7CM702、7CM704、7CM705、7CM706同时表达对叶斑病和ULCV的抗性。所得数据对豆荚的育种改良有一定的参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detection of Resistance against Leaf Spot, Yellow Mosaic and Urdbean Leaf Crinkle Viruses in Mash Bean (Vigna mungo)
Among foliar diseases Leaf spot, yellow mosaic virus (YMV) and Urd bean leaf crinkle virus (ULCV) are destructive diseases of mash bean (Vigna mungo) in Pakistan. Incorporation of resistance against biotic stress in plants is traditional strategy of crop improvement through breeding. Effective breeding for biotic stresses entails readily accessible resistant germplasm. 67 genotypes were evaluated for multi disease resistance was tested for two consecutive years (2019 and 2020) at Barani Agricultural Research Institute, Chakwal. Experiment was repeated with an idea to decrease the effect of environment and those material was selected which performed same in both years. Out of 67 genotypes 12 were resistant against leaf spot infection and 19 genotypes were found highly resistant against yellow mosaic virus during both years. In case of ULCV disease did not appear during 2020. However, 19 genotypes showed resistance against ULCV during first year of experiment. Two genotypes namely 3CM-703 and 4CM-720 exhibited resistance response to all foliar diseases under study. Three genotypes viz. 4CM-716, 4CM-720, 5CM-708 demonstrated resistance against YMV as well as leaf spot. 4CM716, 4CM720, 5CM708, 7CM701, 7CM702, 7CM704, 7CM705, 7CM706 expressed resistance against leaf spot and ULCV simultaneously. The data generated is useful for improvement of mash bean through breeding.
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来源期刊
International Journal of Phytopathology
International Journal of Phytopathology Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
1.20
自引率
0.00%
发文量
11
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