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二代测序转录组分析揭示了油橄榄对叶斑病感染的可能抗性机制。

NGS transcriptomic analysis uncovers the possible resistance mechanisms of olive to leaf spot infection.

作者信息

Marchese Annalisa, Balan Bipin, Trippa Daniela Antonina, Bonanno Floriana, Caruso Tiziano, Imperiale Valeria, Marra Francesco Paolo, Giovino Antonio

机构信息

Department of Agricultural, Food and Forest Sciences, University of Palermo, Palermo, Italy.

Research Centre for Plant Protection and Certification, Council for Agricultural Research and Economics, Palermo, Italy.

出版信息

Front Plant Sci. 2023 Jul 17;14:1219580. doi: 10.3389/fpls.2023.1219580. eCollection 2023.

Abstract

is a dangerous obligate fungal pathogen of olive, feared in the Mediterranean countries, causing or , which can lead to a serious yield loss of approximately 20% or higher depending on climatic conditions. Coping with this disease is much more problematic for organic farms. To date, knowledge on the genetic control of possible mechanisms of resistance/low susceptibility is quite limited. In this work, comparative transcriptomic analysis (RNA-seq) was conducted in leaf tissues of a low susceptible cultivar Koroneiki and a high susceptible cultivar Nocellara del Belice, both tested in the field using the NaOH test, considering two stages-"zero sign of disease" and "evident sign of infection". Cultivars showed a very large number of differentially expressed genes (DEGs) in both stages. 'Koroneiki' showed an extensive hormonal crosstalk, involving Abscisic acid (ABA) and ethylene synergistically acting with Jasmonate, with early signaling of the disease and remarkable defense responses against through the over-expression of many resistance gene analogs or pathogenesis-related (PR) genes: non-specific lipid-transfer genes (nsLTPs), LRR receptor-like serine/threonine-protein kinase genes, GDSL esterase lipase, defensin Ec-AMP-D2-like, pathogenesis-related leaf protein 6-like, Thaumatin-like gene, Mildew resistance Locus O (MLO) gene, glycine-rich protein (GRP), MADS-box genes, STH-21-like, endochitinases, glucan endo-1,3-beta-glucosidases, and finally, many proteinases. Numerous genes involved in cell wall biogenesis, remodeling, and cell wall-based defense, including lignin synthesis, were also upregulated in the resistant cultivar, indicating the possible role of wall composition in disease resistance. It was remarkable that many transcription factors (TS), some of which involved in Induced Systemic Resistance (ISR), as well as some also involved in abiotic stress response, were found to be uniquely expressed in 'Koroneiki', while 'Nocellara del Belice' was lacking an effective system of defense, expressing genes that overlap with wounding responses, and, to a minor extent, genes related to phenylpropanoid and terpenoid pathways. Only a Thaumatin-like gene was found in both cultivars showing a similar expression. In this work, the genetic factors and mechanism underlying the putative resistance trait against this fungal pathogen were unraveled for the first time and possible target genes for breeding resistant olive genotypes were found.

摘要

是一种危险的橄榄专性真菌病原体,在地中海国家令人畏惧,会引发或,根据气候条件,这可能导致约20%或更高的严重产量损失。对于有机农场来说,应对这种疾病要困难得多。迄今为止,关于抗性/低易感性可能机制的遗传控制的知识相当有限。在这项工作中,对低感品种科罗内基(Koroneiki)和高感品种诺切拉·德尔·贝利切(Nocellara del Belice)的叶片组织进行了比较转录组分析(RNA测序),这两个品种均在田间使用氢氧化钠试验进行测试,考虑了两个阶段——“无病害迹象”和“明显感染迹象”。两个品种在两个阶段均显示出大量差异表达基因(DEG)。“科罗内基”表现出广泛的激素相互作用,涉及脱落酸(ABA)和乙烯与茉莉酸协同作用,具有疾病早期信号,并通过许多抗性基因类似物或病程相关(PR)基因的过表达对产生显著的防御反应:非特异性脂质转运蛋白基因(nsLTP)、富含亮氨酸重复序列的受体样丝氨酸/苏氨酸蛋白激酶基因、GDSL酯酶脂肪酶、防御素Ec-AMP-D2样、病程相关叶蛋白6样、类甜蛋白基因、抗白粉病基因座O(MLO)基因、富含甘氨酸蛋白(GRP)、MADS盒基因、STH-21样、内切几丁质酶、葡聚糖内切-1,3-β-葡糖苷酶,最后还有许多蛋白酶。抗性品种中许多参与细胞壁生物合成、重塑以及基于细胞壁的防御(包括木质素合成)的基因也被上调,表明细胞壁组成在抗病性中的可能作用。值得注意的是,发现许多转录因子(TF),其中一些参与诱导系统抗性(ISR),还有一些也参与非生物胁迫反应,在“科罗内基”中独特表达,而“诺切拉·德尔·贝利切”缺乏有效的防御系统,表达与伤口反应重叠的基因,以及在较小程度上与苯丙烷类和萜类途径相关的基因。在两个品种中仅发现一个类甜蛋白基因表达相似。在这项工作中,首次揭示了针对这种真菌病原体的假定抗性性状背后的遗传因素和机制,并发现了培育抗性橄榄基因型的可能靶基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b776/10388255/579b2a8bfa9c/fpls-14-1219580-g001.jpg

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