Q4 Agricultural and Biological Sciences International Journal of Plant Biology Pub Date : 2023-05-01 DOI:10.3390/ijpb14020034
L. Plotnikova, Valeria Knaub, V. Pozherukova
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引用次数: 0

摘要

茎锈病对小麦作物的危害对世界人口的粮食安全构成威胁。石竹属植物(足科植物,1902)刘和r.c。Wang, 1993)是茎锈菌graminis f. sp. tritici Eriks的非宿主。,嗯。(页面表)。Sr24, Sr25和Sr26基因是从Th转移过来的。Ponticum是小麦基因库的重要组成部分,可以保护世界不同地区的小麦品种免受该病的侵害。黄曲霉非宿主抗性(NHR)的研究。小麦中Sr24、Sr25和Sr26基因的渗入对选育耐久抗茎锈病品种具有重要意义。本研究的目的是研究Pgt与Th的相互作用。此外,我们还研究了具有Sr24、Sr25和Sr26基因的蓬蓬小麦和普通小麦品系的抗性。Sr24、Sr25和Sr26的小麦品系对西西伯利亚Pgt群体具有抗性。利用细胞学方法,发现Th。其中Sr24、Sr25和Sr26对植株表面的大部分接种发育有抑制作用。这主要是由于压迫胞发育受到抑制,在刺入气孔阶段即死亡。Pgt附着胞与气孔保护细胞接触后,超氧阴离子O2•−产生。这种相互作用类似于拟南芥对非致病菌的气孔免疫。研究结果表明,Sr24、Sr25和Sr26基因在小麦中复制了一些NHR机制的作用。
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Nonhost Resistance of Thinopyrum ponticum to Puccinia graminis f. sp. tritici and the Effects of the Sr24, Sr25, and Sr26 Genes Introgressed to Wheat
The damage to wheat crops by stem rust poses a threat to the food security of the world’s population. The species Thinopyrum ponticum (Podpěra, 1902) (Z.-W. Liu and R.-C. Wang, 1993) is a non-host for the stem rust fungus Puccinia graminis f. sp. tritici Eriks. and Henn. (Pgt). The Sr24, Sr25, and Sr26 genes, transferred from the Th. ponticum to the wheat gene pool, protect cultivars from the disease in different regions of the world. The study of the non-host resistance (NHR) of Th. ponticum and the effects of the introgressed Sr24, Sr25, and Sr26 genes in wheat is important for breeding cultivars with durable resistance to stem rust. The aim of the research is to study the interaction of Pgt with Th. ponticum and common wheat lines with the Sr24, Sr25, and Sr26 genes, in addition to determining the role of ROS in resistance. Wheat lines with Sr24, Sr25, and Sr26 were resistant to the West Siberian Pgt population. Using cytological methods, it was found that the NHR of Th. ponticum and Sr24, Sr25, and Sr26 led to inhibition of the most inoculumdevelopment on the plant surface. This was mainly due to the suppression of the appressoria development and their death at the stage of penetration into the stomata. Upon contact of Pgt appressoria with stomatal guard cells, the generation of the superoxide anion O2•− was revealed. This interaction is similar to the stomatal immunity of Arabidopsis thaliana to non-pathogenic bacteria. The results of our studies show that the Sr24, Sr25, and Sr26 genes reproduce the action of some NHR mechanisms in wheat.
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来源期刊
International Journal of Plant Biology
International Journal of Plant Biology Agricultural and Biological Sciences-Plant Science
CiteScore
2.00
自引率
0.00%
发文量
44
审稿时长
10 weeks
期刊介绍: The International Journal of Plant Biology is an Open Access, online-only, peer-reviewed journal that considers scientific papers in all different subdisciplines of plant biology, such as physiology, molecular biology, cell biology, development, genetics, systematics, ecology, evolution, ecophysiology, plant-microbe interactions, mycology and phytopathology.
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