油菜(Brassica napus var. oleifera)与黑麦(Avena strigosa)在亚热带环境下的竞争能力

L. Galon, G. Concenço, L. R. Agazzi, F. Nonemacher, T. S. Melo, Laryssa Barbosa Xavier Da Silva, G. F. Perin, I. Aspiazú
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引用次数: 1

摘要

研究了亚热带环境下油菜(Brassicanapus var. oleifera)杂交种与黑麦(Avena strigosa)的竞争能力。实验是在一个温室里进行的,分别测试了杂交油菜“Hyola 61”、“Hyola 76”、“Hyola 433”、“Hyola 571”与黑燕麦的竞争性能。改变黑燕麦与油菜杂交种的种植比例(100%:0%;75%: 25%;50%: 50%;25%: 75%;0%:100%),同时保持植物总数不变(20个植物plot‑1)。羽化55 d后,用红外气体分析仪测定光合速率(μmol m-2 s-1)、体内CO2浓度(μmol mol mol-1)和蒸腾速率(mol H2O m-2 s-1)。叶片面积(m2 - m-2)和干物质(g - m-2)也在同一天进行了评估。采用竞争研究的替代序列法对数据集进行分析。有证据表明,油菜和黑燕麦之间存在着激烈的竞争,而不依赖于植株比例。杂交种间油菜竞争能力明显;Hyola 571在与黑燕麦的竞争中表现较好。选择最具竞争力的杂交品种,如Hyola 571,有助于在黑燕麦肆虐的地区保持较高的油菜籽产量。油菜杂交种与黑燕麦的竞争存在差异;Hyola 571在竞争中表现较好;应优先选择对杂草竞争能力最强的油菜基因型,并在干扰关键时期尽早进行杂草防治;在确定对杂草竞争能力较强的油菜基因型时,侵略性是最有利的参数。
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Competitive ability of canola (Brassica napus var. oleifera) hybrids with black oat (Avena strigosa) in a subtropical environment
The objective of this study was to assess the competitive ability of canola (Brassicanapus var. oleifera) hybrids in competition with black oat (Avena strigosa) in a subtropical environment. The experiments were conducted in a greenhouse where canola hybrids ‘Hyola 61,’ ‘Hyola 76,’ ‘Hyola 433,’ and ‘Hyola 571’ were tested individually for their competitive performance with black oat. The plant proportion between black oat and the canola hybrid was changed (100%:0%; 75%:25%; 50%:50%; 25%:75%; and 0%:100%) while keeping the total population of plants constant (20 plants plot‑1). Photosynthesis rate (μmol m-2 s-1), internal CO2 concentration (μmol mol-1), and  transpiration rate (mol H2O m-2 s-1) were assessed using an infrared gas analyzer 55 days after emergence. Leaf area (m2 m-2) and dry matter (g m-2) were also assessed on the same day. The data set was analyzed by the replacement series method for competition studies. There was evidence of intense competition between canola and black oat, independent of plant proportion. The competitive ability of canola was distinct among hybrids; Hyola 571 performed better than the others in the competition against black oat. Choosing the most competitive hybrid, such as Hyola 571, helps maintain high canola grain yield levels in areas infested with black oat. Highlights: There is difference in competition among canola hybrids against black oat; Hyola 571 performed better in the competition; Preference should be given for most competitive canola genotypes against weeds, and weed control should be carried out early in the critical period of interference; Aggressiveness is the most preponderant parameter in determining canola genotypes with superior ability in competition against weeds.
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