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Table S2. Homology analysis of AQP genes of Brassica rapa. Gene name Accession no. Bra040150 BrSIP1;1a Bra002151 Bra014661 BrSIP2;1a Bra003257 BrSIP2;1b Bra007285 BrSIP2;1c Bra013361 BrNIP1;2a Bra012567 Bra005430 BrNIP2;1a Bra005428 Bra035520 BrNIP3;1a BrNIP3;1b Aquaporin SIP1-1 Aquaporin SIP1;2-like Bra033867 Quary cover 88% e-value Identity 3e-126 87% Arabidopsis thaliana 94% 3e-79 52% Solanum lycopersicum XP002884428 SIP1;1 100% 1e-141 90% XP007030233 NP187059 XP007030233 XP002878121 Small basic intrinsic protein 1 Aquaporin SIP1;1 Small basic intrinsic protein 1 SIP2;1 98% 94% 97% 100% 2e-79 3e-95 6e-76 2e-152 63% 67% 57% 88% BAO18651 Small basic intrinsic protein 2;1 99% 1e-99 59% XP002878121 SIP2;1 100% 8e-154 90% BAO18651 Small basic intrinsic protein 2;1 100% 1e-100 92% XP002878121 SIP2;1 100% 8e-134 80% BAO18651 Small basic intrinsic protein 2;1 100% 1e-91 57% AAM61294 Major intrinsic protein (MIP)- like 100% 00 89% NP001274704 Aquaporin NIP1;1-like 94% 6e-128 83% XP010434480 Aquaporin NIP1;2-like 100% 00 88% BrNIP1;2b BrNIP2;1b Name of protein NP001274290 BrSIP1;1b Bra031946 BrSIP1;2 Top matched clone NP187059 NP001274704 Aquaporin NIP1;1-like 94% 6e-128 83% ACD75049 Aquaporin 100% 0 92% NP001274704 Aquaporin NIP1;1 98% 6e-88 51% ACD75049 Aquaporin 100% 6e-179 90% Nodulin-26-like 82% 5e-89 78% NP174472 Aquaporin NIP3;1 99% 0 86% NP001274279 Nodulin-26-like 76% 1e-95 59% NP174472 NP001274279 Aquaporin NIP3;1 Nodulin-26-like 95% 69% 0 2e-92 78% 61% NP001274279 Holologus species Function (1) Responsive to tissue-specific and development-specific expression; water and solute transport in leaves and during (2) fruit development. Arabidopsis lyrata subsp. lyrata Theobroma cacao Responsive to Pod colour A. thaliana T. cacao Responsive to Pod colour A. lyrata subsp. lyrata Responsive to tissue-specific and development-specific S. lycopersicum expression; water and solute transport in leaves and during fruit development. A. lyrata subsp. lyrata Responsive to tissue-specific and development-specific S. lycopersicum expression; water and solute transport in leaves and during fruit development. A. lyrata subsp. lyrata Responsive to tissue-specific and development-specific S. lycopersicum expression; water and solute transport in leaves and during fruit development. A.thaliana Responsive to tissue-specific and development-specific S. lycopersicum expression; water and solute transport in leaves and during fruit development. Camelina sativa S. lycopersicum A. thaliana S. lycopersicum A. thaliana S. lycopersicum A. thaliana S. lycopersicum A. thaliana S. lycopersicum Ref. Unpublished (3) (1) (3) Unpublished (2) Unpublished (2) Unpublished (2) Unpublished (2) Unpublished Responsive to tissue-specific and development-specific expression; water and solute transport in leaves and during (2) fruit development. Unpublished Responsive to tissue-specific and development-specific expression; water and solute transport in leaves and during (2) fruit development. Unpublished Responsive to tissue-specific and development-specific expression; water and solute transport in leaves and during (2) fruit development. Unpublished Responsive to tissue-specific and development-specific expression; water and solute transport in leaves and during (2) fruit development. Unpublished Responsive to tissue-specific and development-specific (2) expression; water and solute transport in leaves and during fruit development. Bra025437 BrNIP4;1 NP_198597 Aquaporin NIP4;1 BAO18645 XP002302955 BrNIP4;2a Bra028151 BrNIP4;2b Bra025436 Bra025435 100% 2e-178 87% Nodulin26-like intrinsic protein 4;1 98% 1e-125 68% Aquaporin, MIP family, NIP subfamily 1e-124 66% 98% BAO18645 Nodulin26-like intrinsic protein 4;1 94% 4e-125 86% BAO18645. Nodulin26-like intrinsic protein 4;1 93% 2e-91 74% XP007033055 Nodulin26-like intrinsic protein 4;1 91% 2e-85 64% BAO18645. Nodulin26-like intrinsic protein 4;1 92% 7e-65 59% XP007033055 Nodulin26-like intrinsic protein 4;1 90% 4e-58 56% NP001105021 Aquaporin NIP3;1 95% 2e-136 72% ABY19373 Major intrinsic protein NIP5;1 98% 6e-142 71% NP001105021 Aquaporin NIP3;1 95% 1e-135 72% ABY19373 Major intrinsic protein NIP5;1 98% 2e-137 69% A. thaliana S. lycopersicum P. trichocarpa S. lycopersicum S. lycopersicum T. cacao S. lycopersicum BrNIP4;2c BrNIP5;1a Bra033181 BrNIP5;1b Bra000710 AFN44229 BrNIP6;1a Bra008442 XP007023401 AFN44229 BrNIP6;1b Bra035156 ABY19374 ABY19373 BrNIP7;1 Bra020777 XP007034632 ACI95283 BrTIP1;1 100% 6e-167 85% 100% 3e-169 81% 100% 9e-167 80% 99% 1e-155 75% 77% 4e-48 46% 90% 3e-90 57% 100% 1e-169 98% 100% 3e-157 90% tonoplast intrinsic protein Salt-stress induced tonoplast intrinsic protein 100% 7e-171 98% 100% 2e-152 84% Tonoplast intrinsic protein 100% 6e-165 94% Aquaporin NIP6,1 T. cacao Unpublished Responsive to tissue-specific and development-specific expression; water and solute transport in leaves and during (2) fruit development. Responsive to tissue-specific and development-specific expression; water and solute transport in leaves and during (2) fruit development. Responsive to Pod colour development Responsive to Pod colour development (3) Zea mays Lotus japonicus Responsive to tissue specific expression (4) Responsive to arsenic transportation in crops plant (5) Z. mays L. japonicus Responsive to tissue specific expression (4) Responsive to arsenic transportation in crops plant (5) Gossypium hirsutum T. cacao Unpublished Responsive to Pod colour development G. hirsutum Aquaporin Major intrinsic protein NIP6;1 Major intrinsic protein NIP5;1 Aquaporin NIP1;1, Tonoplast intrinsic protein (3) Responsive to tissue-specific and development-specific expression; water and solute transport in leaves and during (2) fruit development. (3) Unpublished L. japonicus Responsive to arsenic transportation in crops plant (5) L. japonicus T. cacao Responsive to arsenic transportation in crops plant Responsive to Pod colour development (5) (3) Sinapis arvensis ------------------ Unpublished G. hirsutum Responsive to cell freezing-tolerance (6) Responsive to water transportation and cell growth associated with radicle protrusion. Responsive to salt stress and ABA treatment (7) B. napus Responsive to water transportation and cell growth associated with radicle protrusion. (7) Bra017222 ACP28878 Bra025210 AAD39372 BrTIP1;2a AAB62692 BrTIP1;2b Aquaporin Unpublished Responsive to tissue-specific and development-specific expression; water and solute transport in leaves and during (2) fruit development. Bra032937 AAD39372 Tonoplast intrinsic protein (8) A. thaliana B. napus AAB62692 XP002872891 BrTIP1;3 BrTIP2;1a Bra027181 BrTIP2;1b Bra001626 100% 4e-155 5e-169 85% 97% Bra021171 Bra026245 BrTIP2;3a Bra024943 Bra022131 BrTIP2;3b 100% 1e-145 83% AAL38357 Tonoplast intrinsic protein 1,3 Delta-tonoplast intrinsic protein 100% 2e-160 96% ADE34289. Aquaporin TIP2;3 100% 2e-145 85% AAL38357 Alpha-tonoplast intrinsic protein 100% 4e-158 94% AFH36343 Aquaporin TIP2;1 100% 5e-141 83% Aquaporin TIP2-1 97% 1e-131 96% AFH36343 Aquaporin TIP2;1 98% 3e-117 85% NP199556 Aquaporin TIP2-3 98% 2e-154 91% NP188245 BrTIP2;2 100% Bra037415 XP007009482 BrTIP2;1c Salt-stress induced tonoplast intrinsic protein Aquaporin TIP1;3 XP007039804 A. thaliana Quercus petraea A. thaliana Q. petraea A. thaliana T. cacao 86% 1e-156 91% Aquaporin 97% 2e-133 80% NP199556 Aquaporin TIP2;3 98% 2e-128 94% A. thaliana NP001274703 TIP protein 97% 1e-110 84% S. lycopersicum Alpha-tonoplast intrinsic protein 100% 4e-168 94% BAO18638 Tonoplast intrinsic protein 3;1 90% 3e-113 71% XP002887476 Alpha-tonoplast intrinsic protein 100% 1e-160 90% 90% 9e-114 70% CAA65187 BAO18638 BrTIP5;1 A. thaliana G. hirsutum 1e-138 BrTIP3;1b Bra016014 BrTIP4;1 T. cacao 100% Tonoplast intransic protein2;3 Aquaporin TIP2;3 BrTIP3;1a Bra008079 BrTIP3;2b Bra031005 A. thaliana A. lyrata subsp. lyrata 99% NP199556 XP002887476 BrTIP3;2a Bra025947 Responsive to high salt condition and ABA treatments Tonoplast intrinsic protein 3;1 XP002890250 Beta-tonoplast intrinsic protein 100% 8e-163 91% NP001105045 XP007099759 Aquaporin TIP3;2 Beta-tonoplast intrinsic prote in 98% 97% 1e-112 2e-125 62% 74% NP001241721 Aquaporin TIP3;2 98% 5e-112 62% XP002878889 TIP4;1 100% 8e-153 93% DAA33872 TPA: aquaporin TIP4;1 97% 3e-128 81% EOY22874 Tonoplast intrinsic protein 5.1 Aquaporin TIP5;1 98% 86% 3e-109 1e-63 68% 78% A. thaliana Helianthus annuus Unpublished Responsive to pod colour Unpublished (9) Responsive to root development Unpublished (10) Salanoubat et al., 2000 Responsive to root development Unpublished (3) Unpublished Responsive to drought (11) Unpublished Responsive to tissue-specific and development-specific expression; water and solute transport in leaves and during fruit development. (2) Unpublished Responsive to tissue-specific and development-specific expression; water and solute transport in leaves and during (2) fruit development. Unpublished Responsive to tissue-specific and development-specific expression; water and solute transport in leaves and during (2) fruit development. A. lyrata subsp. lyrata Z. mays T. cacao Z. mays (10) Responsive to pod colour A. lyrata subsp. lyrata S. lycopersicum (3) Responsive to water balance and nutrient uptake in cotton A. lyrata subsp. lyrata S. lycopersicum (8) Unpublished Responsive to tissue specific expression of the genes Responsive to Pod colour development (4) (3) Responsive to tissue specific expression of the genes (4) A. lyrata subsp. lyrata Unpublished Bra034271 Bra018148 NP001105036 G. hirsutum T. cacao Z. mays Responsive to water balance and nutrient uptake in cotton (9) Responsive to Pod colour development Responsive to tissue specific expression (3) (4) BrPIP1;1a BrPIP1;1b BrPIP1;2a Bra007603 BAA32777 KC969669 100% 100 0 99% 75% 100% 0 98% KC969669 Plasma membrane aquaporin Aquaporin MaPIP1;1 Plasma membrane aquaporin (PAQ1) Aquaporin MaPIP1;1 100 1e-65 74% M. acuminata CAA64896 Transmembrane channel protein 100% 1e-174 88% B. oleracea AAG23180 Aquaporin PIP1b2 100% 2e-173 87% B. oleracea AAG23179 Aquaporin PIP1b2 100% 00 98% B. oleracea KC969669 Aquaporin MaPIP1;1 100 2e-107 75% M. acuminata AAG23180 Aquaporin PIP1b2 100% 00 95% B. oleracea BAA32777 Bra014437 Bra039301 BrPIP1;2b Bra004950 BrPIP1;3a Bra032644 AEA40491 BrPIP1;3b Bra033248 AAL32688 KC969669 BrPIP1;4 BrPIP1;5 Bra000974 Bra019307 NP567178 KC969669 XP002869782 KC969669 AAD39373 BrPIP2;1 Bra006997 ABK60195 BAA92261 Aquaporin PIP1-3 Plasma membrane intrinsic protein 1C Aquaporin MaPIP1;1 Plasma membrane intrinsic protein 1;4 Aquaporin MaPIP1;1 PIP1_5/PIP1D Aquaporin MaPIP1;1 Plasma membrane intrinsic protein 1 PIP2 protein Plasma membrane aquaporin 2C Bra005215 (14) (15) (15) (13) (15) 0 97% A. thaliana 100 13-65 75% M. acuminata 99% 0 98% A. thaliana Unpublished 100 100% 100 1e-65 0 1e-107 75% 97% 75% M. acuminata Responsive to drought and salt stress A. lyrata subsp.lyrata M. acuminata Responsive to drought and salt stress (13) Unpublished (13) 100% 0 100% B. napus Responsive to water transportation (7) 99% 4e-175 86% G. hirsutum Responsive to root development and in stresses (NaCl, cold, PEG). Regulated in certain tissues at the translational level and by the rate of protein turnover. Responsive to water transport between xylem parenchyma cells and embolized vessels Regulated in an organ- and tissue-specific manner, water transport in plant body during growth and development. Responsive to root development and in stresses (NaCl, cold, PEG). Regulated in an organ- and tissue-specific manner 100% 0 99% R. sativus Juglans regia 7e-173 83% BAA92260 Plasma membrane aquaporin 2b 99% 2e-156 82% R. sativus 98% 4e-131 69% G. hirsutum BAA92261.1 Plasma membrane aquaporin 2c 99% 0 97% AEQ29857 Aquaporin PIP2 99% 1e-172 84% R. sativus Malus prunifolia BAA92260 Plasma membrane aquaporin 2b 99% 1e-155 99% BrPIP2;3b Bra005216 BrPIP2;4b (16) (13) 100% 100% ABK60195 PIP2 protein 94% 4e-137 87% ACU00103 Plasma membrane intrinsic protein2;1 100% 2e-172 82% AAO39008 Plasma intrinsic protein 2,2 100% 5e-170 81% BAA32778 Plasma membrane aquaporin 100% 4e-175 84% BrPIP2;4a Bra020238 Responsive to Salinity (12) 96% Plasma intrinsic protein 2,2 PIP2 protein (12) (13) 0.0 AAO39008 BK60195 BrPIP2;3a Bra023103 B. oleracea var. italica Responsive to organ- and tissue-specific manner Responsive to drought and salt stress Regulated in certain tissues at the translational level and by the rate of protein turnover. Responsive to drought and salt stress Responsive to drought inducibility and constituents of the pollen coat Responsive to water flow between the pollen and stigma papillae Responsive to water flow between the pollen and stigma papillae Responsive to drought and salt stress Responsive to water flow between the pollen and stigma papillae 97% BrPIP2;2a Bra023102 BrPIP2;2b R. sativus Musa acuminata R. sativus R. sativus G. hirsutum P. trichocarpa x P. deltoides Juglans regia R. sativus Unpublished Responsive to drought and salt stress Responsive to high salinity conditions Regulated in an organ- and tissue-specific manner, water transport in plant body during growth and development Responsive to root development and in stresses (NaCl, cold, PEG). (13) (6) (12) (17) (12) (6) (12) (18) (12) (6) Unpublished Responsive to water transport between xylem parenchyma (17) cells and embolized vessels Regulated in an organ- and tissue-specific manner (12) Bra006650 BrPIP2;4c Bra002462 BrPIP2;5a Bra007100 BrPIP2;5b Bra003196 BrPIP2;6 Bra000111 Bra034675 AAV69744 (PAQ2) Aquaporin 99% 6e-172 82% Vitis vinifera NP200874 Aquaporin PIP2;4 99% 1e-163 83% A. thaliana AAV69744 Aquaporin PIP2 100% 9e-151 77% XP002876271 PIP2_5/PIP2D 100% AAV69744 Aquaporin 100% 9e-170 83% XP002876271 PIP2;5/PIP2D 100% 0 92% AAV69744 Aquaporin 100% 5e-168 82% AEQ29857 Aquaporin PIP2 97% 3e-160 78% AAV69744 ACB42441 Aquaporin Aquaporin PIP2;4 0 94% 97% 3e-160 79% 100% 6e-179 89% BrPIP2;7a BrPIP2;7b BrPIP2;7c AFB83067 Plasma intrinsic protein PIP2.1 100% 2e-178 89% NP001267957 Aquaporin PIP 2;2 100% 0 88% Bra011585 AFB83067 Bra017697 AAG30607 AAB65787 Plasma intrinsic protein PIP2.1 100% 0.0 89% aquaporin Plasma membrane intrinsic protein 100% 100% 0 0.0 95% 95% Malus prunifolia A. lyrata subsp. lyrata V. vinifera A. lyrata subsp. lyrata V. vinifera M. prunifolia V. vinifera G. hirsutum H. almeriense Vitis vinifera H. almeriense B. oleracea A. thaliana Responsive to water transport and drought stress (19) Unpublished Responsive to water transport and drought stress (18) Unpublished Responsive to water transport and drought stress (19) Unpublished Responsive to water transport and drought stress (19) Responsive to salt stress (18) Responsive to water transport and drought stress (19) Regulate their water channel activities and are required for (20) fibre development Responsive to drought stress (morphophysiological (21) adaptation of this symbiosis to drought conditions) Water transport and drought stress responses (19) Responsive to drought conditions (21) Responsive to salt stress and ABA treatment Unpublished (8) References: 1. Salanoubat M, Lemcke K, Rieger M et al., Sequence and analysis of chromosome 3 of the plant Arabidopsis thaliana. Nature. 2000; 408(6814):820-2. 2. Reuscher S, Akiyama M, Mori C, Aoki K, Shibata D, Shiratake K. Genome-wide identification and expression analysis of aquaporins in tomato. PLoS One. 2013; 8(11):e79052. doi: 10.1371/journal.pone.0079052. 3. Motamayor JC, Mockaitis K, Schmutz J, Haiminen N, et al. The genome sequence of the most widely cultivated cacao type and its use to identify candidate genes regulating pod color. Genome Biol. 2013; 14(6):r53. doi: 10.1186/gb-2013-14-6-r53. 4. Chaumont F, Barrieu F, Wojcik E, Chrispeels MJ, Jung R. Aquaporins constitute a large and highly divergent protein family in maize. Plant Physiol. 2001; 125(3):1206-15. 5. Bienert GP, Thorsen M, Schüssler MD, Nilsson HR, Wagner A, Tamás MJ, Jahn TP. A subgroup of plant aquaporins facilitate the bi-directional diffusion of As(OH)3 and Sb(OH)3 across membranes. BMC Biol. 2008; 6:26. doi: 10.1186/1741-7007-6-26. 6. Li DD, Wu YJ, Ruan XM, Li B, Zhu L, Wang H, Li XB. Expressions of three cotton genes encoding the PIP proteins are regulated in root development and in response to stresses. Plant Cell Rep. 2009; 28(2):291-300. doi: 10.1007/s00299-008-0626-6. 7. 7. Gao YP, Young L, Bonham-Smith P, Gusta LV. Characterization and expression of plasma and tonoplast membrane aquaporins in primed seed of Brassica napus during germination under stress conditions. Plant Mol Biol. 1999; 40(4):635-44. 8. Pih KT, Kabilan V, Lim JH, Kang SG, Piao HL, Jin JB, Hwang I. Characterization of two new channel protein genes in Arabidopsis. Mol Cells. 1999; 9(1):84-90. 9. Park W, Scheffler BE, Bauer PJ, Campbell BT. Identification of the family of aquaporin genes and their expression in upland cotton (Gossypium hirsutum L.). BMC Plant Biol. 2010; 10:142. doi: 10.1186/1471-2229-10-142. 10. Rasheed-Depardieu C, Parent C, Crèvecoeur M, Parelle J, Tatin-Froux F, Le Provost G, Capelli N. Identification and expression of nine oak aquaporin genes in the primary root axis of two oak species, Quercus petraea and Quercus robur. PLoS One. 2012; 7(12):e51838.doi: 10.1371/journal.pone.0051838. 11. Sarda X, Tousch D, Ferrare K, Cellier F, Alcon C, Dupuis JM, Casse F, Lamaze T. (1999) Characterization of closely related delta-TIP genes encoding aquaporins which are differentially expressed in sunflower roots upon water deprivation through exposure to air. , 1999; 40(1):179-91. 12. Suga S, Imagawa S, Maeshima M. Specificity of the accumulation of mRNAs and proteins of the plasma membrane and tonoplast aquaporins in radish organs. Planta, 2001; 212(2):294-304. 13. Xu Y, Hu W, Liu J, Zhang J, Jia C, Miao H, Biyu X, Jin Z. A banana aquaporin gene, MaPIP1; 1, is involved in tolerance to drought and salt stresses. BMC Plant Biology. 2014; doi:10.1186/1471-2229-14-59 14. 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Differential expression of ion transporters and aquaporins in leaves may contribute to different salt tolerance in Malus species. Plant Physiol Biochem. 2012; 58:159-65. doi: 10.1016/j.plaphy.2012.06.019. 19. Vandeleur RK, Mayo G, Shelden MC, Gilliham M, Kaiser BN, Tyerman SD. The role of plasma membrane intrinsic protein aquaporins in water transport through roots: diurnal and drought stress responses reveal different strategies between isohydric and anisohydric cultivars of grapevine. Plant Physiol, 2008; 149(1):445-60. doi: 10.1104/pp.108.128645. Epub 2008 Nov 5. 20. Li DD, Ruan XM, Zhang J, Wu YJ, Wang XL, Li XB. Cotton plasma membrane intrinsic protein 2s (PIP2s) selectively interact to regulate their water channel activities and are required for fibre development. New Phytol. 2013; 199(3):695-707. doi: 10.1111/nph.12309. 21. Navarro-Ródenas A, Bárzana G, Nicolás E, Carra A, Schubert A, Morte A. Expression analysis of aquaporins from desert truffle mycorrhizal symbiosis reveals a fine-tuned regulation under drought. Mol Plant Microbe Interact. 2013; 26(9):1068-78. doi: 10.1094/MPMI-07-12-0178-R.