Biochemical characteristics of sorghum cultivars affect life table parameters, feeding performance, and digestive enzyme activities of Helicoverpa armigera

IF 1.4 3区 农林科学 Q2 ENTOMOLOGY Entomologia Experimentalis et Applicata Pub Date : 2024-02-03 DOI:10.1111/eea.13416
Ali Bonvari, Seyed Ali Hemmati, Parviz Shishehbor
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Abstract

The cotton bollworm, Helicoverpa armigera (Hübner) (Lepidoptera: Noctuidae), is a major insect pest of various agricultural crops worldwide. In this study, the effects of eight sorghum [Sorghum bicolor (L.) Moench, Poaceae] cultivars (Payam, Pegah, Sepideh, Spidfid, Kimia, KGS23, KFS2, and KFS18) on life table parameters, feeding performance, and activities of digestive enzymes in H. armigera were assessed under laboratory conditions. The insects were fed grains of the eight cultivars. Furthermore, the phytochemicals starch, proteins, flavonoids, and phenolic compounds in the grains were quantified to investigate their relationship with ecological and physiological parameters in H. armigera. Our results revealed that H. armigera had the shortest development time when reared on cv. Sepideh and the longest development time when reared on cv. Payam. The insects reached the highest and lowest intrinsic rate of increase (r) on cv. Sepideh and Payam, respectively. The relative growth rate (RGR) and efficiency of conversion of digested food (ECD) of larvae were highest and lowest on cv. Sepideh and Payam, respectively. Larval proteolytic activity was highest on cv. KFS18 and lowest on cv. Sepideh. Concerning phytochemicals, protein content was highest in cv. KFS18 and lowest in cv. Payam and KGS 23. Total phenolic levels were highest in cv. Payam and lowest in cv. Sepideh. According to the correlation analysis, overall, plant protein content was negatively correlated with insect development time, but positively correlated with pupal weight and r. Total phenolic content was positively correlated with insect development time, and negatively correlated with r and RGR. Cluster analysis indicated that cv. Sepideh was the most susceptible host, whereas cv. Payam was the most resistant. Therefore, cv. Payam may be a candidate for use in integrated pest management (IPM) against H. armigera.

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高粱栽培品种的生化特性对 Helicoverpa armigera 的生命表参数、取食性能和消化酶活性的影响
棉铃虫(Helicoverpa armigera (Hübner),鳞翅目:夜蛾科)是世界上多种农作物的主要害虫。本研究在实验室条件下评估了八种高粱 [Sorghum bicolor (L.) Moench, Poaceae] 栽培品种(Payam、Pegah、Sepideh、Spidfid、Kimia、KGS23、KFS2 和 KFS18)对棉铃虫生命表参数、取食性能和消化酶活性的影响。昆虫喂食了这八个品种的谷物。此外,还对谷物中的植物化学物质淀粉、蛋白质、黄酮类化合物和酚类化合物进行了定量分析,以研究它们与 H. armigera 的生态和生理参数之间的关系。结果表明,H. armigera 在 Cv.Sepideh 上饲养的 H. armigera 发育时间最短,而在 Cv.Payam。昆虫在 Sepideh 和 Payam 品种上的内在增长率(r)分别最高和最低。分别达到最高和最低。幼虫的相对生长率(RGR)和消化食物转化效率(ECD)在 Sepideh 和 Payam 品种上分别最高和最低。Sepideh和Payam上的幼虫相对生长率(RGR)和消化食物转化效率(ECD)分别最高和最低。幼虫的蛋白分解活性在 KFS18 上最高,在 Payam 上最低。KFS18 的幼虫蛋白水解活性最高,而 Sepideh.Sepideh。在植物化学物质方面,KFS18 的蛋白质含量最高,Sepideh 的最低。蛋白质含量以 KFS18 为最高,以 Payam 和 KGS 23 为最低。Payam 和 KGS 23 的蛋白质含量最低。总酚含量最高的是 KFS18,最低的是 Payam 和 KGS 23。总酚含量最高的是 Payam,最低的是 Sepideh。Sepideh。相关分析表明,总体而言,植物蛋白含量与昆虫发育时间呈负相关,但与蛹重和 RGR 呈正相关;总酚含量与昆虫发育时间呈正相关,与 RGR 呈负相关。聚类分析表明,Cv.Sepideh 是最易感的寄主,而 cv. Payam 是最抗虫的寄主。因此,Cv.因此,Payam 品种可能是虫害综合防治(IPM)中防治 H. armigera 的候选品种。
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来源期刊
CiteScore
3.90
自引率
5.30%
发文量
138
审稿时长
4-8 weeks
期刊介绍: Entomologia Experimentalis et Applicata publishes top quality original research papers in the fields of experimental biology and ecology of insects and other terrestrial arthropods, with both pure and applied scopes. Mini-reviews, technical notes and media reviews are also published. Although the scope of the journal covers the entire scientific field of entomology, it has established itself as the preferred medium for the communication of results in the areas of the physiological, ecological, and morphological inter-relations between phytophagous arthropods and their food plants, their parasitoids, predators, and pathogens. Examples of specific areas that are covered frequently are: host-plant selection mechanisms chemical and sensory ecology and infochemicals parasitoid-host interactions behavioural ecology biosystematics (co-)evolution migration and dispersal population modelling sampling strategies developmental and behavioural responses to photoperiod and temperature nutrition natural and transgenic plant resistance.
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