L. C. Baccin, A. Albrecht, R. M. Pedroso, L. S. Araújo, Mateus Augusto Dotta, R. V. Filho
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For resistance level characterization, C. bonariensis biotypes with contrasting responses were selected for glyphosate dose-response assays. Leaf tissues for epicuticular surface analysis were harvested from newly-obtained R and S biotypes at two growth stages. Histological cuts were made on a leaf area of 25 mm² with a blade. Samples were fixed in Karnowsky solution, gradually changed to 100% ethanol, critical-point dried with CO2, and coated with gold, followed by stomatal and trichome density quantification using scanning electron microscopy. Results indicated a poor control with glyphosate in 33 of 36 Conyza spp. biotypes, and a high (31.5) resistance factor was calculated after dose-response trials. Leaf surface analysis indicated that C. bonariensis leaves are amphistomatic and exhibit tectorial trichomes. 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引用次数: 0
摘要
在采用抗草甘膦作物后,草甘膦喷洒频率增加,而其他除草剂作用模式的使用被忽视。据报道,巴西的三个主要稻属物种,包括博纳里稻,都存在抗除草剂的生物型,这增加了种植者的底线。考虑到叶片表面结构会影响除草剂的适当沉积、吸收和性能,本研究旨在表征耐草甘膦(R)和易感草甘膦(S)的博纳氏C.bonariensis的表皮表面成分。在巴西的36个地点采集了稻属植物的种子,并通过喷洒720和1440 g ae ha-1的草甘膦(分别为标签推荐速率的0.5X和1X)对植物进行抗性筛选测试。对于抗性水平的表征,选择具有对比反应的博纳里C.bonariensis生物型进行草甘膦剂量反应测定。用于表皮表面分析的叶组织是在两个生长阶段从新获得的R和S生物型中收获的。用刀片在25 mm²的叶片上进行组织学切割。将样品固定在Karnowsky溶液中,逐渐变为100%乙醇,用CO2干燥临界点,并用金包被,然后使用扫描电子显微镜对气孔和毛状体密度进行定量。结果表明,在36个稻属生物型中,33个稻属的草甘膦控制效果较差,在剂量反应试验后计算出高(31.5)抗性因子。叶片表面分析表明,博纳叶为两孔型,具有被毛。与S对应物相比,R中毛状体的数量更高,气孔密度改变(数量.mm²),这可能会降低草甘膦的吸收和有效性。
Glyphosate-resistant hairy fleabane (Conyza bonariensis) exhibits a larger number of trichomes and altered stomatal density relative to the susceptible counterpart
Following the adoption of Roundup Ready crops, glyphosate spraying frequency increased, while the use of other herbicide modes of action was neglected. Herbicide-resistant biotypes were reported in three major Conyza species in Brazil, including Conyza bonariensis, increasing growers’ bottom line. Considering that leaf surface structures affect proper herbicide deposition, uptake, and performance, this study aimed to characterize epicuticular surface components in glyphosate-resistant (R) and -susceptible (S) C. bonariensis. Conyza spp. seeds were collected in 36 locations in Brazil, and plants were subjected to resistance screening tests by spraying glyphosate at 720 and 1440 g ae ha-1 (0.5X and 1X the label recommended rate, respectively). For resistance level characterization, C. bonariensis biotypes with contrasting responses were selected for glyphosate dose-response assays. Leaf tissues for epicuticular surface analysis were harvested from newly-obtained R and S biotypes at two growth stages. Histological cuts were made on a leaf area of 25 mm² with a blade. Samples were fixed in Karnowsky solution, gradually changed to 100% ethanol, critical-point dried with CO2, and coated with gold, followed by stomatal and trichome density quantification using scanning electron microscopy. Results indicated a poor control with glyphosate in 33 of 36 Conyza spp. biotypes, and a high (31.5) resistance factor was calculated after dose-response trials. Leaf surface analysis indicated that C. bonariensis leaves are amphistomatic and exhibit tectorial trichomes. A higher number of trichomes and altered stomatal density (number.mm²) were quantified in R compared to the S counterpart, potentially reducing glyphosate uptake and effectiveness.
Bioscience JournalAgricultural and Biological Sciences-General Agricultural and Biological Sciences
CiteScore
1.00
自引率
0.00%
发文量
90
审稿时长
48 weeks
期刊介绍:
The Bioscience Journal is an interdisciplinary electronic journal that publishes scientific articles in the areas of Agricultural Sciences, Biological Sciences and Health Sciences. Its mission is to disseminate new knowledge while contributing to the development of science in the country and in the world. The journal is published in a continuous flow, in English. The opinions and concepts expressed in the published articles are the sole responsibility of their authors.