首页> 外文期刊>Pest Management Science >Host perception and signal transduction studies in wild-type Blumena grammis f. sp. hordei and a quinoxyfen-resistant mutant implicate quinoxyfen in the inhibition of serine esterase activity
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Host perception and signal transduction studies in wild-type Blumena grammis f. sp. hordei and a quinoxyfen-resistant mutant implicate quinoxyfen in the inhibition of serine esterase activity

机译:野生型蓝藻的宿主感知和信号转导研究。 sp。大麦和一个对喹喔酚有抗性的突变体表明喹喔酚对丝氨酸酯酶活性的抑制作用

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BACKGROUND: Quinoxyfen is a potent and effective fungicide, hitherto considered to control powdery mildew disease by perturbing signal transduction during early germling differentiation. The aim of this paper is to understand the mode of action of quinoxyfen by comparing the perception of host-derived signals and signal relay in a wild-type Blumeria graminis f. sp. hordei EM Marchal (Bgh) (WT/IM82) and a quinoxyfen-resistant field isolate (QR/2B11). RESULTS: QR/2B11 germinates more promiscuously on host-like and artificial surfaces than the quinoxyfen-sensitive WT/IM82. The pivotal role of host cuticle deprivation in the formation of hooked appressorial germ tubes (hAGTs) in WT/IM82 and a dramatic drop in germling differentiation in the presence of the mildewicide are demonstrated. QR/2B11 strain shows a dependence on host cuticle-like features for hAGT formation but no significant difference between germling differentiation in the presence or absence of quinoxyfen. PKC-inhibitor Ro 318220 induces morphological changes similar to those seen in quinoxyfen-treated germlings. PKC1 transcript accumulation is equivalently upregulated by quinoxyfen in QR/2B11 and WT/IM82 strains, but Bgh cutinase CUT1 transcript is 8 times more abundant in QR/2B11 conidia than in WT/IM82 conidia. Quinoxyfen inhibits serine esterase activity in WT/IM82, but not in QR/2B11. CONCLUSION: Collectively, these data suggest that quinoxyfen interferes with the perception of host-derived signals required for full germling differentiation, and that QR/2B11 bypasses the need for such signals. Moreover, quinoxyfen appears to target serine esterase activity, with a downstream perturbation in signal transduction; this represents the first demonstrable biochemical difference between the quinoxyfen-resistant and -sensitive isolates.
机译:背景:奎诺昔芬是一种有效的杀菌剂,迄今为止被认为可以通过在早期种胚分化过程中干扰信号转导来控制白粉病。本文的目的是通过比较野生型Blumeria graminis f中宿主衍生信号和信号中继的感知来了解喹诺芬的作用方式。 sp。 hordei EM Marchal(Bgh)(WT / IM82)和耐喹氧芬的现场隔离株(QR / 2B11)。结果:QR / 2B11在宿主样和人造表面上的发芽比对喹喔芬敏感的WT / IM82更加发芽。已证明宿主表皮剥夺在WT / IM82中钩状附生细菌管(hAGT)的形成中的关键作用,以及在有防霉剂存在下胚芽分化的急剧下降。 QR / 2B11菌株显示hAGT形成依赖于宿主表皮样特征,但是在存在或不存在喹氧芬的情况下,幼芽分化之间没有显着差异。 PKC抑制剂Ro 318220诱导的形态变化类似于在喹氧芬处理的幼苗中观察到的形态变化。奎宁芬在QR / 2B11和WT / IM82菌株中PKC1转录物积累被上调,但Bgh角质酶CUT1转录物在QR / 2B11孢子中的含量是在WT / IM82孢子中的8倍。喹喔芬抑制WT / IM82中的丝氨酸酯酶活性,但不抑制QR / 2B11中的丝氨酸酯酶活性。结论:总体而言,这些数据表明奎诺芬干扰了完全幼芽分化所需的宿主来源信号的感知,而QR / 2B11绕开了对此类信号的需求。此外,奎诺芬似乎靶向丝氨酸酯酶活性,并在信号转导中产生下游干扰。这代表了对奎尼芬耐药和敏感的菌株之间第一个可证明的生化差异。

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