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首页> 外文期刊>Physiological and Molecular Plant Pathology >Coordination of multiple regulation pathways contributes to the tolerance of a wild citrus species (Citrus ichangensis '2586') against Huanglongbing
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Coordination of multiple regulation pathways contributes to the tolerance of a wild citrus species (Citrus ichangensis '2586') against Huanglongbing

机译:对多种调节途径的协调有助于对黄龙兵的野生柑橘物种(柑橘ICHANGENSIS'2586')的耐受性

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Huanglongbing (HLB), a highly destructive disease of citrus production worldwide, is presumably caused by `Candidates Liberibacter asiaticus' (CLas) because Koch's postulates have not been fulfilled. No HLB resistant genotypes have been so far identified in commercial citrus species, hindering the development of resistance breeding. China is an important center of citrus germplasm resources with abundant wild citrus species. However, studies on the susceptibility or resistance of these wild citrus and their response mechanisms to CLas infection have been limited. In this study, we evaluated the symptom development and transcriptional differences among two wild citrus species, Citrus ichangensis '2586' and C. daoxianensis, and the highly susceptible C. sinensis. No typical symptoms was observed and much less CLas accumulated in C. ichangensis, compared with C. daoxianensis and C. sinensis. Much greater number of differentially expressed genes were identified and pathways were perturbed in diseased C. sinensis, followed by diseased C. daoxianensis then C. sinensis. Many pathways including cell wall, secondary metabolism, stress responses, RNA transcriptional regulation and protein modification were differentially regulated in three diseased citrus species but with different preferences. Particularly, genes associated with carbohydrate metabolism, callose deposition and photosynthesis process were significantly regulated in CLas-infected C. daoxianensis and C. sinensis but not in CLas-infected C. ichangensis. Taken together, it seem to indicate that the relatively successful defenses of C. ichangensis against multiplication of CLas and its symptom development may involve a novel mechanism in which the carbohydrate metabolism and photosynthesis process was balanced with the normal physiology of the plant, and coordinated with other regulation pathways. Evaluation of wild citrus resources to CLas infection is promising for citrus HLB resistance breeding in the future.
机译:黄龙兵(HLB)是全球柑橘生产的高度破坏性的疾病,可能是由“候选候选者无情的Asiaticus”(CLAs)引起,因为Koch的假设尚未得到满足。迄今为止,在商业柑橘种类中,没有HLB抗性基因型,妨碍了抗性育种的发展。中国是柑橘种质资源的重要中心,具有丰富的野生柑橘类物种。然而,对这些野生柑橘的敏感性或抗性及其对Clas感染的抗性机制的研究受到限制。在这项研究中,我们评估了两种野生柑橘类物种,柑橘伊古氏体'2586'和C. daoxianensis的症状开发和转录差异,以及高易感的C. sinensis。与C. daoxianensis和C. sinensis相比,在C.伊昔尼斯累积的C. Ichangensis中没有观察到典型的症状。鉴定了更多数量的差异表达基因,并且在患病C. sinensis中扰乱了途径,其次是患病的D. daoxianensis。许多途径包括细胞壁,次级代谢,应力应答,RNA转录调节和蛋白质改性在三种患病柑橘类物种中差异调节,但偏好不同。特别地,在Clas感染的C. daoxianensis和C. sinensis中显着调节与碳水化合物代谢,胼舌和光合作用过程相关的基因,但不在Clas感染的C. ichangensis中受到显着调节。似乎在一起表明,C.伊奇森斯对Clas繁殖的相对成功的防御及其症状发育可能涉及一种新的机制,其中碳水化合物代谢和光合作用过程与植物的正常生理学,并协​​调其他调节途径。野生柑橘资源对CLAS感染的评价是未来柑橘HLB抗性育种的对应。

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