Ahkami AH, WhiteHandakumbura RAPP, Jansson C (2017) Rhizosphere engineering: enhancing sustainable plant ecosystem productivity. Rhizosphere 3:233–243
Alengebawy A, Abdelkhalek ST, Qureshi SR, Wang MQ (2021) Heavy metals and pesticides toxicity in agricultural soil and plants: ecological risks and human health implications. Toxics 9(3):42. https://doi.org/10.3390/toxics9030042
Article CAS PubMed Central PubMed Google Scholar
Ali Q, Ashraf M (2011) Induction of drought tolerance in maize (Zea mays L.) due to exogenous application of trehalose: growth, photosynthesis, water relations and oxidative defence mechanism. J Agron Crop Sci 197:258–271
Ali SZ, Sandhya V, Grover M, Linga VR, Bandi V (2011) Effect of inoculation with a thermotolerant plant growth promoting Pseudomonas putida strain AKMP7 on growth of wheat (Triticum spp.) under heat stress. J Plant Interact 6:239–246
Ali Q, Anwar F, Ashraf M, Saari N, Perveen R (2013) Ameliorating effects of exogenously applied proline on seed composition, seed oil quality and oil antioxidant activity of maize (Zea mays L.) under drought stress. Int J Mol Sci 14:818–835
CAS PubMed Central PubMed Google Scholar
Angulo-Bejarano PI, Puente-Rivera J, Cruz-Ortega R (2021) Metal and metalloid toxicity in plants: an overview on molecular aspects. Plants (Basel) 10(4):635. https://doi.org/10.3390/plants10040635
Article CAS PubMed Google Scholar
Anwer S, Ashraf MY, Hussain M, Ashraf M, Jamil A (2012) Citric acid mediated phytoextraction of cadmium by maize (Zea mays L.). Pak J Bot 44:1831–1836
Badia MB, Maurino VG, Pavlovic T, Arias CL, Pagani MA, Andreo CS, Saigo M, Drincovich MF (2020) Loss of function of Arabidopsis NADP-malic enzyme 1 results in enhanced tolerance to aluminium stress. Plant J 101:653–665
Badri DV, Vivanco JM (2009) Regulation and function of root exudates. Plant Cell Environ 32:666–681
Badri DV, Loyola-Vargas VM, Broeckling CD, De-la-Peña C, Jasinski M, Santelia D, Martinoia E, Sumner LW (2008a) Altered profile of secondary metabolites in the root exudates of Arabidopsis ATP-binding cassette transporter mutants. Plant Physiol 146:762–771
CAS PubMed Central PubMed Google Scholar
Badri DV, Loyola-Vargas VM, Du J, Stermitz FR, Broeckling CD, Iglesias-Andreu L, Vivanco JM (2008b) Transcriptome analysis of Arabidopsis roots treated with signaling compounds: a focus on signal transduction, metabolic regulation and secretion. New Phytol 179:209–223
Badri DV, Weir TL, Van der Lelie D, Vivanco JM (2009) Rhizosphere chemical dialogues: plant–microbe interactions. Curr Opin Biotechnol 20:642–650
Badri DV, Loyola-Vargas VM, Broeckling CD, Vivanco JM (2010) Root secretion of phytochemicals in Arabidopsis is predominantly not influenced by diurnal rhythms. Mol Plant 3:491–498
Baetz U, Martinoia E (2014) Root exudates: the hidden part of plant defense. Trends Plant Sci 19(2):90–98
Bakker PAHM, Pieterse CMJ, de Jonge R, Berendsen RL (2018) The soil-borne legacy. Cell 172:1178–1180
Banasiak J, Jasiński M (2022) ATP-binding cassette transporters in nonmodel plants. New Phytol 233(4):1597–1612
Battey NH, Blackbourn HD (1993) The control of exocytosis in plant cells. New Phytol 125:307–308
Bechtold U, Field B (2018) Molecular mechanisms controlling plant growth during abiotic stress. J Exp Bot 69:2753–2758
CAS PubMed Central PubMed Google Scholar
Bekkara F, Jay M, Viricel MR, Rome S (1998) Distribution of phenolic compounds within seed and seedlings of two Vicia faba cvs differing in their see tannin content and study of their seed and root phenolic exudations. Plant Soil 203:27–36
Bertin C, Yang X, Weston LA (2003) The role of root exudates and allelochemicals in the rhizosphere. Plant Soil 256:67–83
Bhardwaj AK, Arya G, Kumar R, Hamed L, Pirasteh-Anosheh H, Jasrotia P, Kashyap PL, Singh GP (2022) Switching to nanonutrients for sustaining agroecosystems and environment: the challenges and benefits in moving up from ionic to particle feeding. J Nanobiotechnol 20:19. https://doi.org/10.1186/s12951-021-01177-9
Bharti N, Pandey SS, Barnawal D, Kumar V, Kalra A (2016) Plant growth promoting rhizobacteria Dietzia natronolimnaea modulates the expression of stress responsive genes providing protection of wheat from salinity stress. Sci Rep 6:34768
CAS PubMed Central PubMed Google Scholar
Bhat MA, Kumar V, Bhat MA, Wani IA, Dar FL, Farooq I, Bhatti F, Koser R et al (2020) Mechanistic insights of the interaction of plant growth-promoting rhizobacteria (PGPR) with plant roots toward enhancing plant productivity by alleviating salinity stress. Front Microbiol 11:1952
PubMed Central PubMed Google Scholar
Burke EJ, Brown SJ, Christidis N (2006) Modeling the recent evolution of global drought and projections for the twenty-first century with the Hadley centre climate model. J Hydrometeorol 7:1113–1125
Calvo OC, Franzaring J, Schmid I, Müller M, Brohon N, Fangmeier A (2017) Atmospheric CO2 enrichment and drought stress modify root exudation of barley. Glob Change Biol 23:1292–1304
Canarini A, Merchant A, Dijkstra FA (2016) Drought effects on Helianthus annuus and Glycine max metabolites: from phloem to root exudates. Rhizosphere 2:85–97
Canarini A, Kaiser C, Merchant A, Richter A, Wanek W (2019) Root exudation of primary metabolites: mechanisms and their roles in plant responses to environmental stimuli. Front Plant Sci 10:157. https://doi.org/10.3389/fpls.2019.00157
Article PubMed Central PubMed Google Scholar
Carvalhais LC, Dennis PG, Fedoseyenko D, Hajirezaei MR, Borriss R, von Wiren N (2011) Root exudation of sugars, amino acids, and organic acids by maize as affected by nitrogen, phosphorus, potassium, and iron deficiency. J Plant Nutr Soil Sci 174:3–11. https://doi.org/10.1002/jpln.201000085
Chai YN, Schachtman DP (2022) Root exudates impact plant performance under abiotic stress. Trends Plant Sci 27:80–91
Chandra D, Srivastava R, Glick BR, Sharma AK (2020) Rhizobacteria producing ACC deaminase mitigate water-stress response in finger millet (Eleusine coracana (L.) Gaertn.). Biotech 10:65
Chen HJ, Hou WC, Kuc J, Lin YH (2001) Ca2+-dependent and Ca2+-independent excretion modes of salicylic acid in tobacco cell suspension culture. J Exp Bot 52:1219–1226
Chen Y, Yao Z, Sun Y, Wang E, Tian C, Sun Y, Liu J, Sun C (2022) Current studies of the effects of drought stress on root exudates and rhizosphere microbiomes of crop plant species. Int J Mol Sci 23:2374
CAS PubMed Central PubMed Google Scholar
Daei G, Ardekani MR, Rejali F, Teimuri S, Miransari M (2009) Alleviation of salinity stress on wheat yield, yield components, and nutrient uptake using arbuscular mycorrhizal fungi under field conditions. J Plant Physiol 66:617–625
Dardanelli MS, Manyani H, González-Barroso S, Rodríguez-Carvajal MA, Gil-Serrano AM, Espuny MR, López-Baena J, Bellogín RA (2010) Effect of the presence of the plant growth promoting rhizobacterium (PGPR) Chryseobacterium balustinum Aur9 and salt stress in the pattern of flavonoids exuded by soybean roots. Plant Soil 328:483–493
Dardanelli MS, de Córdoba FJF, Estévez J, Contreras R, Cubo MT, Rodríguez-Carvajal MA, Gil-Serrano AM, López-Baena FJ (2012) Changes in flavonoids secreted by Phaseolus vulgaris roots in the presence of salt and the plant growth-promoting rhizobacterium Chryseobacterium balustinum. Appl Soil Ecol 57:31–38
De Andrade SAL, Borghi AA, De Oliveira VH, Gouveia LdM, Martins API, Mazzafera P (2022) Phosphorus shortage induces an increase in root exudation in fifteen Eucalypts species. Agronomy 12(9):2041. https://doi.org/10.3390/agronomy12092041
De Schepper V, De Swaef T, Bauweraerts I, Steppe K (2013) Phloem transport: a review of mechanisms and controls. J Exp Bot 64:4839–4850
Deng L, Luo L, Li Y, Wang L, Zhang J, Zi B, Ye C, Liu Y, Huang H, Mei X, Deng W, He X, Zhu S, Min Yang M (2023) Autotoxic ginsenoside stress induces changes in root exudates to recruit the beneficial Burkholderia Strain B36 as revealed by transcriptomic and metabolomic approaches. J Agric Food Chem 71(11):4536–4549. https://doi.org/10.1021/acs.jafc.3c00311
Article CAS PubMed Google Scholar
Dilnashin H, Birla H, Hoat TX, Singh HB, Singh SP, Keswani C (2020) Applications of agriculturally important microorganisms for sustainable crop production. Molecular aspects of plant beneficial microbes in agriculture. Academic Press, Cambridge, pp 403–415
Ding L, Li Y, Wang Y, Gao L, Wang M, Chaumont F, Shen Q, Guo S (2016) Root ABA accumulation enhances rice seedling drought tolerance under ammonium supply: interaction with aquaporins. Front Plant Sci 7:1206
PubMed Central PubMed Google Scholar
Dinkeloo K, Boyd S, Pilot G (2018) Update on amino acid transporter functions and on possible amino acid sensing mechanisms in plants. Semin Cell Dev Biol 74:105–113
Doneva D, Pal M, Brankova L, Szalai G, Tajti J, Khalil R, Ivanovska B, Velikova V (2021) The effects of putrescine pre-treatment on osmotic stress responses in drought-tolerant and drought-sensitive wheat seedlings. Physiol Plant 171:200–216
Driouich A, Gaudry A, Pawlak B, Moore JP (2021) Root cap-derived cells and mucilage: a protective network at the root tip. Protoplasma 258(6):1179–1185. https://doi.org/10.1007/s00709-021-01660-y
Article CAS PubMed Google Scholar
Dwivedi P, Sopory SK (2023) Unravelling the mechanism of stress responses in crop plants. J Plant Growth Regul. https://doi.org/10.1007/s00344-023-11104-x
Comments (0)