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百合杂交品种对椭圆葡萄孢菌抗性的评价。

Evaluation of resistance to Botrytis elliptica in Lilium hybrid cultivars.

机构信息

Beijing Key Laboratory of Ornamental Plants Germplasm Innovation and Molecular Breeding, National Engineering Research Center for Floriculture, Beijing Laboratory of Urban and Rural Ecological Environment, Key Laboratory of Genetics and Breeding in Forest Trees and Ornamental Plants of Ministry of Education, School of Landscape Architecture, Beijing Forestry University, Beijing 100083, PR China.

Beijing Key Laboratory of Ornamental Plants Germplasm Innovation and Molecular Breeding, National Engineering Research Center for Floriculture, Beijing Laboratory of Urban and Rural Ecological Environment, Key Laboratory of Genetics and Breeding in Forest Trees and Ornamental Plants of Ministry of Education, School of Landscape Architecture, Beijing Forestry University, Beijing 100083, PR China.

出版信息

Plant Physiol Biochem. 2018 Feb;123:392-399. doi: 10.1016/j.plaphy.2017.12.025. Epub 2017 Dec 15.

Abstract

Gray mold disease, caused by the fungus Botrytis elliptica, is one of the major diseases affecting Lilium species, and it has become a limiting factor in the production of ornamental lilies. To support selecting and breeding Botrytis-resistant cultivars, a total of 50 Lilium cultivars belonging to seven hybrid types were evaluated using a detached leaf technique for resistance to B. elliptica. Through resistance evaluations, Oriental × Trumpet and Oriental hybrid cultivars were classified as resistant lines, while Asiatic and Trumpet hybrids were classified as susceptible lines. A highly resistant (HR) Oriental hybrid, 'Sorbonne', and a highly susceptible (HS) Asiatic hybrid, 'Tresor', were selected for further study of early host-parasite interactions. After infection, B. elliptica grew faster and more easily on the leaves of 'Tresor' than on those of 'Sorbonne' during initial infection; when 'Tresor' leaves were completely infected, only a few lesions were observed on 'Sorbonne' leaves. Biochemical differences between these two cultivars were found following inoculation with B. elliptica, as shown by studies of reactive oxygen species (ROS) and the enzymatic antioxidant system. Rapid accumulation of HO and ·O to trigger a defense response was detected in HR 'Sorbonne'. Meanwhile, higher levels of antioxidant activity, including SOD, POD and CAT, were found in HR 'Sorbonne' than in HS 'Tresor' before 48 h post-inoculation, but antioxidant activity was reduced with subsequent infection progress. These large and timely increases in ROS and antioxidant activities could be the main contributors to the high resistance of the 'Sorbonne' cultivar.

摘要

灰霉病是由真菌 Botrytis elliptica 引起的,是影响百合属植物的主要病害之一,也是影响观赏百合生产的限制因素。为了支持选育对 Botrytis 具有抗性的品种,采用离体叶片法对 50 个百合品种(属 7 个杂种类型)进行了对 B. elliptica 的抗性评价。通过抗性评价,东方×喇叭形和东方杂种品种被归类为抗性品系,而亚洲百合和喇叭形杂种品种被归类为易感性品系。选择高抗(HR)东方杂种品种“Sorbonne”和高感(HS)亚洲杂种品种“Tresor”进行进一步研究,以研究早期的寄主-寄生虫相互作用。感染后,在初始感染阶段,B. elliptica 在 'Tresor' 叶片上的生长速度比在 'Sorbonne' 叶片上更快更容易;当 'Tresor' 叶片完全感染时,在 'Sorbonne' 叶片上仅观察到少数病斑。接种 B. elliptica 后,这两个品种之间存在生化差异,这可以通过研究活性氧(ROS)和酶抗氧化系统来证明。在 HR 'Sorbonne' 中检测到 HO 和·O 的快速积累,以触发防御反应。同时,在接种后 48 小时内,HR 'Sorbonne' 中的抗氧化活性,包括 SOD、POD 和 CAT,都高于 HS 'Tresor',但随着后续感染的进展,抗氧化活性降低。ROS 和抗氧化活性的这种大量和及时增加可能是 'Sorbonne' 品种高抗性的主要原因。

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