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冬小麦品种试验中自然感染下的抗病性培育进展及病情严重度的影响。

Breeding progress of disease resistance and impact of disease severity under natural infections in winter wheat variety trials.

机构信息

Institute of Crop Science, Biostatistics Unit, University of Hohenheim, Fruwirthstrasse 23, 70599, Stuttgart, Germany.

Institute for Strategies and Technology Assessment, Julius Kühn-Institut (JKI), Federal Research Centre for Cultivated Plants, Stahnsdorfer Damm 81, 14532, Kleinmachnow, Germany.

出版信息

Theor Appl Genet. 2021 May;134(5):1281-1302. doi: 10.1007/s00122-020-03728-4. Epub 2021 Mar 13.

Abstract

Breeding progress of resistance to fungal wheat diseases and impact of disease severity on yield reduction in long-term variety trials under natural infection were estimated by mixed linear regression models. This study aimed at quantifying breeding progress achieved in resistance breeding towards varieties with higher yield and lower susceptibility for 6 major diseases, as well as estimating decreasing yields and increasing disease susceptibility of varieties due to ageing effects during the period 1983-2019. A further aim was the prediction of disease-related yield reductions during 2005-2019 by mixed linear regression models using disease severity scores as covariates. For yield and all diseases, overall progress of the fully treated intensity (I2) was considerably higher than for the intensity without fungicides and growth regulators (I1). The disease severity level was considerably reduced during the study period for mildew (MLD), tan spot (DTR) and Septoria nodorum blotch (ear) (SNB) and to a lesser extent for brown (leaf) rust (BNR) and Septoria tritici blotch (STB), however, not for yellow/stripe rust (YLR). Ageing effects increased susceptibility of varieties strongly for BNR and MLD, but were comparatively weak for SNB and DTR. Considerable yield reductions under high disease severity were predicted for STB (-6.6%), BNR (-6.5%) and yellow rust (YLR, -5.8%), but lower reductions for the other diseases. The reduction for resistant vs. highly susceptible varieties under high severity conditions was about halved for BNR and YLR, providing evidence of resistance breeding progress. The empirical evidence on the functional relations between disease severity, variety susceptibility and yield reductions based on a large-scale multiple-disease field trial data set in German winter wheat is an important contribution to the ongoing discussion on fungicide use and its environmental impact.

摘要

利用混合线性回归模型估计了在自然感染下长期品种试验中真菌性小麦病害抗性的选育进展以及病害严重度对产量降低的影响。本研究旨在量化在以下 6 种主要病害方面,通过提高产量和降低易感性选育出更高产和低感病品种的进展情况,并估计在 1983 年至 2019 年期间由于品种老化效应导致的产量降低和品种易感性增加。本研究的另一个目的是通过混合线性回归模型使用病害严重度评分作为协变量来预测 2005 年至 2019 年的病害相关产量损失。对于产量和所有病害,完全处理强度(I2)的整体进展明显高于没有使用杀菌剂和生长调节剂的强度(I1)。在研究期间,白粉病(MLD)、叶斑病(DTR)和颖枯壳斑病(SNB)的病害严重度水平明显降低,而条锈病(BNR)和叶锈病(STB)的严重度水平降低程度较小,但黄矮病(YLR)的严重度水平没有降低。品种老化效应使 BNR 和 MLD 的品种易感性大大增加,但对 SNB 和 DTR 的影响相对较弱。在高病害严重度下,预计 STB(-6.6%)、BNR(-6.5%)和黄矮病(YLR,-5.8%)的产量损失较大,但其他病害的损失较小。在高严重度条件下,抗性品种与高度敏感品种的产量降幅相比,BNR 和 YLR 降幅约减半,这为抗性选育进展提供了证据。基于德国冬小麦大规模多病害田间试验数据集的病害严重度、品种易感性和产量损失之间功能关系的实证证据,为正在进行的杀菌剂使用及其对环境影响的讨论提供了重要贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6416/8081715/3167a875f0b7/122_2020_3728_Fig1_HTML.jpg

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