Taggar Gaurav Kumar, Gill Ranjit Singh, Gupta Anil Kumar, Singh Sarvjeet
J Environ Biol. 2014 Nov;35(6):1037-45.
Antioxidative compounds were quantified from the leaves of nine black gram (Vigna mungo (L.) Hepper) genotypes over a period of two years, for potential whitefly, Bemisia tabaci (Gennadius) (Hemiptera: Aleryrodidae) resistance. Oviposition preference, nymphal and adult development were evaluated under screen-house conditions. Biochemical analysis revealed that higher per cent increase in the total phenol and o-dihydroxy phenol contents both at 30 and 50 days after sowing was evident in moderately resistant genotypes NDU 5-7 (49.6 and 50.8%, respectively) and KU 99-20 (47.8 and 50.8%, respectively) under whitefly stress conditions as compared to non-stressed plants. Tannin and flavonol contents in leaves increased to varying degrees (up to 11.1 and 7.1%, respectively) in resistant plants after whitefly infestation, indicating that the changes in tannin and flavonol contents were closely associated with the resistance to whitefly. Correlation studies relating leaf content of black gram antioxidative compounds from different genotypes with whitefly population were also worked out. Total phenols (r = -0.71 & -0.88), o- dihydroxy phenols (r = -0.56 & -0.76), flavonols (r = -0.80 & -0.81) and tannins (r= -0.16 & -0.26) showed significant negative correlation with whitefly population (nymphs and adults) suggesting that enhanced level of these biochemicals may contribute to bioprotection of black gram plants against B. tabaci infestation. Comparatively higher level of resistance in genotype NDU 5-7 and KU 99-20 can serve as base for genetic improvement of black gram, focusing on the development of resistant varieties to B. tabaci.
在两年时间里,对9种黑绿豆(Vigna mungo (L.) Hepper)基因型的叶片中的抗氧化化合物进行了定量分析,以研究其对烟粉虱(Bemisia tabaci (Gennadius),半翅目:粉虱科)的潜在抗性。在网室条件下评估了烟粉虱的产卵偏好、若虫和成虫发育情况。生化分析表明,在烟粉虱胁迫条件下,与未受胁迫的植株相比,中度抗性基因型NDU 5-7(分别为49.6%和50.8%)和KU 99-20(分别为47.8%和50.8%)在播种后30天和50天总酚和邻二羟基酚含量的百分比增幅更高。烟粉虱侵染后,抗性植株叶片中的单宁和黄酮醇含量有不同程度增加(分别高达11.1%和7.1%),这表明单宁和黄酮醇含量的变化与对烟粉虱的抗性密切相关。还开展了不同基因型黑绿豆抗氧化化合物的叶片含量与烟粉虱种群的相关性研究。总酚(r = -0.71和-0.88)、邻二羟基酚(r = -0.56和-0.76)、黄酮醇(r = -0.80和-0.81)和单宁(r = -0.16和-0.26)与烟粉虱种群(若虫和成虫)呈显著负相关,这表明这些生化物质水平的提高可能有助于黑绿豆植株抵御烟粉虱的侵害。基因型NDU 5-7和KU 99-20相对较高的抗性水平可为黑绿豆的遗传改良奠定基础,重点是培育抗烟粉虱的品种。