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163 related items for PubMed ID: 30853962
1. Nutrient Deficiency Tolerance in Citrus Is Dependent on Genotype or Ploidy Level. Oustric J, Morillon R, Luro F, Herbette S, Martin P, Giannettini J, Berti L, Santini J. Front Plant Sci; 2019; 10():127. PubMed ID: 30853962 [Abstract] [Full Text] [Related]
2. Influence of Rootstock Genotype and Ploidy Level on Common Clementine (Citrus clementina Hort. ex Tan) Tolerance to Nutrient Deficiency. Oustric J, Herbette S, Morillon R, Giannettini J, Berti L, Santini J. Front Plant Sci; 2021; 12():634237. PubMed ID: 33897725 [Abstract] [Full Text] [Related]
3. Tetraploid citrus seedlings subjected to long-term nutrient deficiency are less affected at the ultrastructural, physiological and biochemical levels than diploid ones. Oustric J, Quilichini Y, Morillon R, Herbette S, Luro F, Giannettini J, Berti L, Santini J. Plant Physiol Biochem; 2019 Feb; 135():372-384. PubMed ID: 30616112 [Abstract] [Full Text] [Related]
5. Better salinity tolerance in tetraploid vs diploid volkamer lemon seedlings is associated with robust antioxidant and osmotic adjustment mechanisms. Khalid MF, Hussain S, Anjum MA, Ahmad S, Ali MA, Ejaz S, Morillon R. J Plant Physiol; 2020 Jan 26; 244():153071. PubMed ID: 31756571 [Abstract] [Full Text] [Related]
6. Tetraploid citrus rootstocks are more tolerant to salt stress than diploid. Saleh B, Allario T, Dambier D, Ollitrault P, Morillon R. C R Biol; 2008 Sep 26; 331(9):703-10. PubMed ID: 18722990 [Abstract] [Full Text] [Related]
8. Tetraploidy enhances the ability to exclude chloride from leaves in carrizo citrange seedlings. Ruiz M, Quiñones A, Martínez-Cuenca MR, Aleza P, Morillon R, Navarro L, Primo-Millo E, Martínez-Alcántara B. J Plant Physiol; 2016 Oct 20; 205():1-10. PubMed ID: 27589221 [Abstract] [Full Text] [Related]
9. Insight into Physiological and Biochemical Determinants of Salt Stress Tolerance in Tetraploid Citrus. Bonnin M, Favreau B, Soriano A, Leonhardt N, Oustric J, Lourkisti R, Ollitrault P, Morillon R, Berti L, Santini J. Antioxidants (Basel); 2023 Aug 19; 12(8):. PubMed ID: 37627635 [Abstract] [Full Text] [Related]
10. Tetraploidy Enhances Boron-Excess Tolerance in Carrizo Citrange (Citrus sinensis L. Osb. × Poncirus trifoliata L. Raf.). Ruiz M, Quiñones A, Martínez-Alcántara B, Aleza P, Morillon R, Navarro L, Primo-Millo E, Martínez-Cuenca MR. Front Plant Sci; 2016 Aug 19; 7():701. PubMed ID: 27252717 [Abstract] [Full Text] [Related]
11. Physiological and biochemical responses of Kinnow mandarin grafted on diploid and tetraploid Volkamer lemon rootstocks under different water-deficit regimes. Khalid MF, Hussain S, Anjum MA, Morillon R, Ahmad S, Ejaz S, Hussain M, Jaafar HZE, Alrashood ST, Ormenisan AN. PLoS One; 2021 Aug 19; 16(4):e0247558. PubMed ID: 33831006 [Abstract] [Full Text] [Related]
12. Better tolerance to Huanglongbing is conferred by tetraploid Swingle citrumelo rootstock and is influenced by the ploidy of the scion. Sivager G, Calvez L, Bruyere S, Boisne-Noc R, Hufnagel B, Cebrian-Torrejon G, Doménech-Carbó A, Gros O, Ollitrault P, Morillon R. Front Plant Sci; 2022 Aug 19; 13():1030862. PubMed ID: 36407590 [Abstract] [Full Text] [Related]
13. Citrus rootstocks modify scion antioxidant system under drought and heat stress combination. Balfagón D, Terán F, de Oliveira TDR, Santa-Catarina C, Gómez-Cadenas A. Plant Cell Rep; 2022 Mar 19; 41(3):593-602. PubMed ID: 34232376 [Abstract] [Full Text] [Related]
14. Tetraploidization events by chromosome doubling of nucellar cells are frequent in apomictic citrus and are dependent on genotype and environment. Aleza P, Froelicher Y, Schwarz S, Agustí M, Hernández M, Juárez J, Luro F, Morillon R, Navarro L, Ollitrault P. Ann Bot; 2011 Jul 19; 108(1):37-50. PubMed ID: 21586529 [Abstract] [Full Text] [Related]
15. Comparative metabolic and transcriptional analysis of a doubled diploid and its diploid citrus rootstock (C. junos cv. Ziyang xiangcheng) suggests its potential value for stress resistance improvement. Tan FQ, Tu H, Liang WJ, Long JM, Wu XM, Zhang HY, Guo WW. BMC Plant Biol; 2015 Mar 18; 15():89. PubMed ID: 25848687 [Abstract] [Full Text] [Related]
16. Involvement of ascorbate peroxidase and heat shock proteins on citrus tolerance to combined conditions of drought and high temperatures. Balfagón D, Zandalinas SI, Baliño P, Muriach M, Gómez-Cadenas A. Plant Physiol Biochem; 2018 Jun 18; 127():194-199. PubMed ID: 29609175 [Abstract] [Full Text] [Related]
17. Expression profiling of two stress-inducible genes encoding for miraculin-like proteins in citrus plants under insect infestation or salinity stress. Podda A, Simili M, Del Carratore R, Mouhaya W, Morillon R, Maserti BE. J Plant Physiol; 2014 Jan 01; 171(1):45-54. PubMed ID: 24001970 [Abstract] [Full Text] [Related]
18. Rootstock selection for 'Swatow' Mandarin trees grown at different locations throughout the Brazilian subtropics. de Carvalho DU, da Cruz MA, Vidal TCM, Colombo RC, Yada IFU, Neves CSVJ, Leite Junior RP, Tazima ZH. Heliyon; 2024 Sep 15; 10(17):e36791. PubMed ID: 39296164 [Abstract] [Full Text] [Related]
19. Chloride absorption in salt-sensitive Carrizo citrange and salt-tolerant Cleopatra mandarin citrus rootstocks is linked to water use. Moya JL, Gómez-Cadenas A, Primo-Millo E, Talon M. J Exp Bot; 2003 Feb 15; 54(383):825-33. PubMed ID: 12554725 [Abstract] [Full Text] [Related]
20. Salt-stress induced changes in the leaf proteome of diploid and tetraploid mandarins with contrasting Na+ and Cl- accumulation behaviour. Podda A, Checcucci G, Mouhaya W, Centeno D, Rofidal V, Del Carratore R, Luro F, Morillon R, Ollitrault P, Maserti BE. J Plant Physiol; 2013 Aug 15; 170(12):1101-12. PubMed ID: 23608743 [Abstract] [Full Text] [Related] Page: [Next] [New Search]