Examining factors influencing varietal resistance to Rhyzopertha dominica (F.) in stored rice

IF 2.5 2区 农林科学 Q1 AGRONOMY
Ethan M. Doherty, Nohelys Camano-Flores, Qian Sun, Blake E. Wilson
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Abstract

Host-plant resistance is an important pest management tool that is often overlooked in stored grain systems where the mechanisms of resistance are poorly understood. Here, we evaluated 13 varieties of rice for resistance toward the lesser grain borer, Rhyzopertha dominica (F.) (Coleoptera: Bostrichidae), one of the most devastating pests of stored rice. Over a two-month period, we measured each variety's damage by adult beetles and larvae, as well as progeny counts, progeny mass, and days to eclosion. We found large differences among varieties, with over 5-fold differences in damage by adults and 14-fold differences in larval damage. Subsequently, we evaluated the physical and nutritional characteristics of these varieties and compared these qualities with our susceptibility data. We found that while nutritional components of a variety did not affect susceptibility, the physical characteristics of the grain did. Varieties with longer, thinner grains were more susceptible to damage by R. dominica adults, while varieties with wide, stout grains were more resistant. Finally, we ran another resistance assay comparing single varieties to mixes of two varieties. We found that varietal mixes generally did not create any sort of associational resistance or susceptibility, expect in one instance. Mixes containing Jazzman 2 and CL151 received less damage from R. dominica adults and larvae than would be expected from the mixture. By understanding stored rice varietal resistance, growers can better anticipate pest impacts. Moreover, by understanding the mechanisms underlying resistance, resistant varieties can be more easily selected and bred to prevent insect infestation.
储藏水稻品种对褐曲霉抗性的影响因素研究
寄主-植物抗性是一种重要的害虫管理工具,但在对抗性机制了解甚少的储粮系统中往往被忽视。本研究对13个水稻品种对储粮水稻最具破坏性害虫之一的小螟虫(纹螟)的抗性进行了评价。在两个月的时间里,我们测量了每个品种被成年甲虫和幼虫破坏的情况,以及后代的数量、后代的质量和羽化的天数。我们发现不同品种间的差异很大,成虫的伤害差异超过5倍,幼虫的伤害差异超过14倍。随后,我们评估了这些品种的物理和营养特性,并将这些品质与我们的敏感性数据进行了比较。我们发现,虽然品种的营养成分不影响易感性,但谷物的物理特性会影响易感性。籽粒较长、较细的品种更容易受到多米尼克成虫的伤害,而籽粒较宽、粗壮的品种则更有抵抗力。最后,我们进行了另一项抗性试验,比较了单一品种和两个品种的混合。我们发现,除了一个例子外,品种混合通常不会产生任何类型的关联抗性或易感性。含有Jazzman 2和CL151的混合物对多米尼加白僵虫成虫和幼虫的伤害比预期的要小。通过了解储藏水稻品种的抗性,种植者可以更好地预测虫害的影响。此外,通过了解抗性机制,可以更容易地选择和培育抗性品种,以防止虫害。
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来源期刊
Crop Protection
Crop Protection 农林科学-农艺学
CiteScore
6.10
自引率
3.60%
发文量
200
审稿时长
29 days
期刊介绍: The Editors of Crop Protection especially welcome papers describing an interdisciplinary approach showing how different control strategies can be integrated into practical pest management programs, covering high and low input agricultural systems worldwide. Crop Protection particularly emphasizes the practical aspects of control in the field and for protected crops, and includes work which may lead in the near future to more effective control. The journal does not duplicate the many existing excellent biological science journals, which deal mainly with the more fundamental aspects of plant pathology, applied zoology and weed science. Crop Protection covers all practical aspects of pest, disease and weed control, including the following topics: -Abiotic damage- Agronomic control methods- Assessment of pest and disease damage- Molecular methods for the detection and assessment of pests and diseases- Biological control- Biorational pesticides- Control of animal pests of world crops- Control of diseases of crop plants caused by microorganisms- Control of weeds and integrated management- Economic considerations- Effects of plant growth regulators- Environmental benefits of reduced pesticide use- Environmental effects of pesticides- Epidemiology of pests and diseases in relation to control- GM Crops, and genetic engineering applications- Importance and control of postharvest crop losses- Integrated control- Interrelationships and compatibility among different control strategies- Invasive species as they relate to implications for crop protection- Pesticide application methods- Pest management- Phytobiomes for pest and disease control- Resistance management- Sampling and monitoring schemes for diseases, nematodes, pests and weeds.
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