首页> 外文期刊>Weed Science: Journal of the Weed Science Society of America >ALS inhibitor-resistant smallflower umbrella sedge (Cyperus difformis) seed germination requires fewer growing degree days and lower soil moisture
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ALS inhibitor-resistant smallflower umbrella sedge (Cyperus difformis) seed germination requires fewer growing degree days and lower soil moisture

机译:ALS抑制剂抗性小花伞腹腹(Cypetus Difformis)种子萌发需要较少的程度,降低土壤水分

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摘要

The repetitive use of ALS inhibitors for smallflower umbrella sedge (Cyperus difformis L.) control has selected for herbicide-resistant (R) populations that threaten the sustainability of rice (Oryza sativa L.) production and demand alternative control measures be developed. A better understanding of seedling recruitment patterns at the field level is required to optimize the timing and efficacy of control measures. Therefore, a population-based threshold model was developed for optimizing germination prediction in multiple acetolactate synthase (ALS)-R and ALS-susceptible (ALS-S) C. difformis biotypes and applied to field-level emergence predictions. Estimated base temperatures (T-b) ranged from 16.5 to 17.6 C with no clear pattern between biotypes; such values are higher than T-b values of other important rice weeds, as well as for rice. Germination rates increased linearly from 16 to 33.7 C. ALS-R seeds germinate faster due to smaller median thermal times to germination (theta(T(50))) while also displaying lower germination synchronicity across water potentials. Interestingly, ALS-R biotypes were capable of germinating under lower moisture availability, as indicated by their lower (more negative) base water potential values (psi(b(50))) for seed germination; psi(b(50)) values ranged from -0.24 to -1.13 MPa. In-field soil germination measurements found thermal times to emergence varied across three water regimes (daily water, flooded, or saturated). Seedling emergence under the daily water treatment was fastest; however, total seedling density was lower than for the other water regimes. In order to optimize springtime C. difformis seedling emergence, soil moisture should be kept around field capacity, as germination is hindered at lower moisture contents. By predicting when most of the seed population germinates, the thermal-time model can address issues regarding the optimal timing for herbicide applications, thereby allowing for improved C. difformis management in rice fields.
机译:Als抑制剂对小花伞腹腹(Cypetus Difformis L.)对照的重复用途为除草剂(R)抗胁迫(r)抗植物的群体(Oryza Sativa L.)生产和需求替代控制措施进行了抑制的抗药性(R)群体。需要更好地理解现场等级的幼苗招聘模式来优化控制措施的时序和功效。因此,开发了一种基于群体的阈值模型,用于优化多种乙酰乳酸合酶(ALS)-R和ALS易感(ALS-S)C. difformis生物型的萌发预测并应用于现场水平的出现预测。估计的基础温度(T-B)的范围为16.5至17.6℃,生物型之间没有明确的模式;这些值高于其他重要稻瘟病的T-B值,以及米饭。由于较小的热次数为萌发(Theta(50))),萌发率从16至33.7℃的萌发速率线性发芽更快地升高。有趣的是,Als-R生物型能够在较低的水分可用性下发芽,如它们的较低(更负)基础水电位值(Psi(B(50)))的种子萌发所示; PSI(B(50))值范围为-0.24至-1.13 MPa。现场土壤萌发测量发现出现的热量在三种水中变化(日常水,淹没或饱和)变化。日常水处理下的幼苗出现最快;然而,总幼苗密度低于其他水域。为了优化春天C. difformis幼苗出苗,土壤水分应保持围绕现场能力,因为在较低的水分含量下搅拌萌发。通过预测大多数种子种群发芽时,热时间模型可以解决关于除草剂应用的最佳时间的问题,从而允许在稻田中改善C. Difformis管理。

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