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  • 61. CcRR5 interacts with CcRR14 and CcSnRK2s to regulate the root development in citrus

    文献信息:Zhang, M. M., Wang, F. S., Hu, Z., Wang, X. L., Yi, Q., Feng, J. P., Zhao, X. C. and Zhu, S. P.等.  请登录

    简介: Response regulator (RR) is an important component of the cytokinin (CK) signal transduction system associated with root development and stress resistance in model plants. However, the function of RR gene and the molecular mechanism on regulating the root development in woody plants such as citrus remain unclear. Here, we demonstrate that CcRR5, a member of the type A RR, regulates the morphogenes...

    62. Citrus beta-carotene hydroxylase 2 (BCH2) participates in xanthophyll synthesis by catalyzing the hydroxylation of beta-carotene and compensates for BCH1 in citrus carotenoid metabolism

    文献信息:Zhang, Yingzi, Jin, Jiajing, Zhu, Shenchao, Sun, Quan, Zhang, Yin, Xie, Zongzhou, Ye, Junli and Deng, Xiuxin等.  请登录

    简介: As an essential horticultural crop, Citrus has carotenoid diversity, which affects its aesthetic and nutritional values. beta,beta-Xanthophylls are the primary carotenoids accumulated in citrus fruits, and non-heme di-iron carotene hydroxylase (BCH) enzymes are mainly responsible for beta,beta-xanthophyll synthesis. Previous studies have focused on the hydroxylation of BCH1, but the role of its p...

    63. Highly Efficient Generation of Canker-Resistant Sweet Orange Enabled by an Improved CRISPR/Cas9 System

    文献信息:Huang, Xiaoen, Wang, Yuanchun and Wang, Nian等.  请登录

    简介:Sweet orange (Citrus sinensis) is the most economically important species for the citrus industry. However, it is susceptible to many diseases including citrus bacterial canker caused by Xanthomonas citri subsp. citri (Xcc) that triggers devastating effects on citrus production. Conventional breeding has not met the challenge to improve disease resistance of sweet orange due to the long juvenility...

    64. Host-derived chimeric peptides clear the causative bacteria and augment host innate immunity during infection: A case study of HLB in citrus and fire blight in apple

    文献信息:Basu, Supratim, Sineva, Elena, Nguyen, Liza, Sikdar, Narattam, Park, Jong Won, Sinev, Mikhail, Kunta, Madhurababu and Gupta, Goutam等.  请登录

    简介: Bacterial diseases cause severe losses in the production and revenue of many fruit crops, including citrus and apple. Huanglongbing (HLB) in citrus and fire blight in apple are two deadly diseases without any cure. In this article, we introduce a novel therapy for HLB and fire blight by enhancing the innate immunity of the host plants. Specifically, we constructed in silico a library of chimeras ...

    65. Characterization of three tandem-duplicated calcium binding protein (CaBP) genes and promoters reveals their roles in the phytohormone and wounding responses in citrus

    文献信息:Bei, Xuejun, Wang, Shaohua, Huang, Xia, Zhang, Xiuli, Zhou, Jiayi, Zhang, Huiting, Li, Guoguo and Cheng, Chunzhen等.  请登录

    简介:Accumulated evidences have revealed the critical roles of calcium binding protein (CaBP) in growth and stress responses of plants. However, its function in woody plants is poorly understood. In this study, we cloned the CDS, gDNA and promoter sequences of three tandem-duplicated CaBPs (CsCaBP1, CsCaBP2 and CsCaBP3) from Citrus sinensis, analyzed their sequence characteristics, and investigated the...

    66. Reproductive Biology Factors Hampering Lemon Citrus limon (L.) Burm. f. Genetic Improvement

    文献信息:Catalano, Chiara, Casas, Giuseppina Las, Giuffrida, Alessio, Ferlito, Filippo, Di Guardo, Mario, Continella, Alberto, Bennici, Stefania, La Malfa, Ste等.  请登录

    简介:Background: Floral sterility and nucellar embryony are peculiar traits of several Citrus species and represent an obstacle to traditional breeding. Morphological sterility mainly results in pistil abortion and anther atrophy, while polyembryony is due to a mechanism known as sporophytic apomixis, which consists of the presence of embryos in the seed generated from the nucellar (maternal) tissue al...

    67. Characterization of copper-induced-release of exudates by Citrus sinensis roots and their possible roles in copper-tolerance

    文献信息:Chen, Huan-Huan, Chen, Xu-Feng, Zheng, Zhi-Chao, Huang, Wei-Lin, Guo, Jiuxin, Yang, Lin-Tong and Chen, Li Song等.  请登录

    简介:Copper (Cu) excess is often observed in old Citrus orchards. Little information is available on the characterization of Cu-induced-release of root exudates and their possible roles in plant Cu-tolerance. Using sweet orange [Citrus sinensis (L.) Osbeck cv. Xuegan] seedlings as materials, we investigated the impacts of 0, 0.5, 25, 150, 350, 550, 1000, 2000 or 5000 mu M CuCl2 (pH 4.8) on Cu uptake, r...

    68. The Upregulated Expression of the Citrus RIN4 Gene in HLB Diseased Citrus Aids Candidatus Liberibacter Asiaticus Infection

    文献信息:Cheng, Chunzhen, Zhong, Yun, Wang, Bin, Zhang, Yongyan, Wu, Huan, Jiang, Nonghui, Wu, Bo, Lv, Yuanda and Jiang, Bo等.  请登录

    简介:The citrus industry has been threatened by Huanglongbing (HLB) for over a century. Here, an HLB-induced Arabidopsis RPM1-interacting protein 4 (RIN4) homologous gene was cloned from Citrus clementina, and its characteristics and function were analyzed to determine its role during citrus-Candidatus Liberibacter asiaticus (CLas) interactions. Quantitative real-time PCR showed that RIN4 was expressed...

    69. Increasing the production of limonin 17-beta-D-glucopyranoside in hairy roots of Citrus x paradisi. cv Duncan by overexpression of limonoid UDP-glucosyltransferase via Agrobacterium rhizogenes mediat

    文献信息:Cheraei, Solmaz, Eskandari, Forough, Yadollahi, Abbas and Zaare-Nahandi, Fariborz Year: 2022等.  请登录

    简介:Limonin 17-beta-D-glucopyranoside (LG) is a terpenoid compound with a high medicinal value produced in different Citrus species. This substance has high anti-cancer and antioxidant properties and protects the liver from damage. Although LG is tasteless, many compounds related to it are very bitter, although these bitter substances also have significant medicinal properties. Usually, in most Citrus...

    70. Disease resistance induction by K. marxianus against green mold in citrus via transcriptome analysis and verification based on metabolites

    文献信息:Delali, Kottoh Isaac, Chen, Ou, Wang, Wenjun and Zeng, Kaifang等.  请登录

    简介: This study examined the transcriptional composition and changes in gene expression patterns in citrus fruit tissue treated with Kluyveromyces marxianus and its effects on key defense-related enzyme activities and metabolites. This analysis was carried out by the technique of RNA sequencing, the use of HPLC-MS, and GC-MS equipment. The sequencing data revealed that the induction of K. marxianus in...

    71. Overexpression of a "Candidatus Liberibacter Asiaticus" Effector Gene CaLasSDE115 Contributes to Early Colonization in Citrus sinensis

    文献信息: Du, M., Wang, S., Dong, L., Qu, R., Zheng, L., He, Y., Chen, S. and Zou, X.等.  2022-03-11 请登录

    简介:Huanglongbing (HLB), caused by "Candidatus liberibacter asiaticus" (CaLas), is one of the most devastating diseases in citrus but its pathogenesis remains poorly understood. Here, we reported the role of the CaLasSDE115 (CLIBASIA_05115) effector, encoded by CaLas, during pathogen-host interactions. Bioinformatics analyses showed that CaLasSDE115 was 100% conserved in all reported CaLas strains but...

    72. Foliar Phosphate Applications Influence Organic Acid Composition in the Citrus Phloem and Could Reduce Huanglongbing Disease by Limiting CLas Titers

    文献信息: Glusberger, Paula Rios, Petrone, Joseph R. R., Munoz-Beristain, Alam, Li, Jinyun, Wang, Nian, Guha, Anirban, Vincent, Christopher, Killiny, Nabil and等.  请登录

    简介: Citrus greening disease is now completely endemic to Florida citrus trees, having spread rapidly across all counties in the past 20 years and causing devastating economic losses. The disease's etiological agent is the phloem-restricted bacterium 'Candidatus Liberibacter asiaticus' (CLas). Liberibacter crescens, the closest culturable relative, was discovered to prefer citrate as its most effectiv...

    73. Localization of CgVPE1 in secondary cell wall formation during tracheary element differentiation in the pericarp of Citrus grandis 'Tomentosa' fruits

    文献信息:Huai, B., Liang, M. J., Bai, M., He, H. J., Chen, J. Z. and Wu, H. Year: 2022等.  请登录

    简介:Main conclusion CgVPE1 is important in the differentiation of TE cells in C. grandis 'Tomentosa' fruits as it may directly affects secondary cell wall construction while participating in PCD. The vacuolar processing enzyme (VPE) plays an important role in both developmental and environmentally inducible programmed cell death (PCD); it was originally identified as a cysteine protease localized in t...

    74. Anther Culture-Derived Haploids of Citrus aurantium L. (Sour Orange) and Genetic Verification of Haploid-Derived Regenerated Plants

    文献信息:Jin, Seong Beom, Kim, Min Ju, Choi, Cheol Woo, Park, Suk Man and Yun, Su Hyun等.  请登录

    简介:Citrus plants are important fruit tree species; however, the breeding of high-quality varieties of citrus species is a time-consuming process. Using haploid-derived plants from anther culture may reduce the time required for obtaining purebred lines. This study aimed to genetically verify whether anther culture-derived sour orange (Citrus aurantium L.) plants developed from somatic embryos or hapl...

    75. Better together: the use of virus-induced gene silencing technique to repress the expression of two endogenous citrus genes simultaneously

    文献信息:Killiny, Nabil等.  请登录

    简介:Virus-induced gene silencing is a promising technique for functional genomics studies. Citrus tristeza virus was employed successfully to create an infectious clone that was used to silence endogenous citrus genes. Phytoene desaturase (PDS) and delta (delta)-aminolevulinic add dehydratase (ALAD) were targeted successfully in citrus. Silencing PDS usually results in a photo-bleached leaf phenotype ...

    76. Overexpression of a VvMYB Transcription Factor Gene Enhances Tolerance to Cold Stress in Transgenic Citrus Plants

    文献信息:Mahmoud, Lamiaa M., Grosser, Jude W. and Dutt, Manjul等.  请登录

    77. A cationic lipid mediated CRISPR/Cas9 technique for the production of stable genome edited citrus plants

    文献信息:Mahmoud, Lamiaa M., Kaur, Prabhjot, Stanton, Daniel, Grosser, Jude W. and Dutt, Manjul等.  请登录

    简介: Background The genetic engineering of crops has enhanced productivity in the face of climate change and a growing global population by conferring desirable genetic traits, including the enhancement of biotic and abiotic stress tolerance, to improve agriculture. The clustered regularly interspaced short palindromic repeats (CRISPR/Cas9) system has been found to be a promising technology for genomi...

    78. Overexpression of the Arabidopsis NPR1 gene confers enhanced salt tolerance by regulating antioxidant and starch accumulation in citrus

    文献信息:Mahmoud, Lamiaa M., Stanton, Daniel, Amin, Basma H., Grosser, Jude W. and Dutt, Manjul等.  请登录

    简介:The Non-Expresser of Pathogenesis-Related Genes 1 (NPR1) is a principal regulator of plant responses to biotic and abiotic stresses. In this study, the response of 'Hamlin' (Citrus sinensis L.) sweet orange clones overexpressing the Arabidopsis thaliana NPR1 (AtNPR1; AT1G64280) were investigated under salt stress. Selected transgenic and non-transgenic lines were clonally propagated onto US-942 ro...

    79. Editing the CsDMR6 gene in citrus results in resistance to the bacterial disease citrus canker

    文献信息:Parajuli, Saroj, Huo, Heqiang, Gmitter, Fred G., Jr., Duan, Yongping, Luo, Feng and Deng, Zhanao等.  请登录

    80. A dual sgRNA-directed CRISPR/Cas9 construct for editing the fruit-specific beta-cyclase 2 gene in pigmented citrus fruits

    文献信息:Salonia, Fabrizio, Ciacciulli, Angelo, Pappalardo, Helena Domenica, Poles, Lara, Pindo, Massimo, Larger, Simone, Caruso, Paola, Caruso, Marco and Licc等.  请登录

    简介:CRISPR/Cas9 genome editing is a modern biotechnological approach used to improve plant varieties, modifying only one or a few traits of a specific variety. However, this technology cannot be easily used to improve fruit quality traits in citrus, due to the lack of knowledge of key genes, long juvenile stage, and the difficulty regenerating whole plants of specific varieties. Here, we introduce a g...

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