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Original Articles

Screening of water-efficient rice genotypes for dry direct seeding in South Asia

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Pages 103-115 | Received 04 Feb 2017, Accepted 31 May 2017, Published online: 09 Jun 2017

References

  • Ashraf M, Foolad MR. 2007. Role of glycine betaine and proline in improving plant abiotic stress resistance. Environ Exp Bot. 59:206–216.
  • Baheri SF, Javanshir A, Kazemi HA, Aharizad S. 2003. Evaluation of different drought tolerance indices in some spring barley genotypes. J Agri Sci. 13:95–100.
  • Bouman BAM, Wang H, Yang X, Zhao J, Wang C 2002. Aerobic rice (Han Dao): a new way of growing rice in water-short areas. In: Proceedings of the 12th International Soil Conservation Organization Conference; May 26–31, Beijing, China. Beijing: Tsinghua University Press, pp. 175–181.
  • Bridgit AJ, Potty NN. 2002. Influence of root characters on rice productivity in iron soils of Kerala. Int Rice Res Notes. 27:45–46.
  • Chakherchaman SA, Mostafaei H, Imanparast L, Eivazian MR. 2009. Evaluation of drought tolerance in lentil advanced genotypes in Ardabil region, Iran. J Food Agric Env. 7:283–288.
  • Chauhan BS, Jabran K, Mahajan G, editors. 2017. Rice production worldwide. Cham (Switzerland): Springer International Publishing AG; 549 p.
  • Chauhan BS, Kaur P, Mahajan G, Randhawa RK, Singh H, Kang MS. 2014. Global warming and its possible impact on Indian agriculture. Adv Agron. 123:65–112.
  • Chauhan JS, Tyagi MK, Kumar A, Nashaat NI, Singh M, Singh NB, Jakhar ML, Welham SJ. 2007. Drought effects on yield and its components in Indian mustard (Brassica juncea L.). Plant Breeding. 126:399–402.
  • Clarke JM, DePauw RM, Townley-Smith TM. 1992. Evaluation of methods for quantification of drought tolerance in wheat. Crop Sci. 32:728–732.
  • Clarke JM, Towenley-Smith TM, McCaig TN, Green DG. 1984. Growth analysis of spring wheat cultivars of varying drought resistance. Crop Sci. 24:537–541.
  • Ercin AE, Hoekstra AY. 2014. Water footprint scenarios for 2050: a global analysis. Environ Intl. 64:71–82.
  • Farshadfar E, Poursiahbidi MM, Abooghadareh ARP. 2012. Repeatability of drought tolerance indices in bread wheat genotypes. Int J Agric Crop Sci. 4:891–903.
  • Fernandez GCJ. 1992. Effective selection criteria for assessing plant stress tolerance. In: Kus, EG, editor. Adaptation of food crop temperature and water stress. Proceeding of 4th International Symposium, Asian vegetable and research and development center; Shantana, Taiwan; p. 257–270.
  • Fischer RA, Maurer R. 1978. Drought resistance in spring wheat cultivars. I. Grain yield responses in spring wheat. Aus J Agric. Sci. 29:892–912.
  • Gowri S. 2005. Physiological studies on aerobic rice (Oryza sativa L.) [ M.Sc., thesis]. Coimbatore (India): Tamil Nadu Agricultural University.
  • GRISP. 2013. Rice almanac. 4th ed. Los Baños: International Rice Research Institute.
  • Hira GS. 2009. Water management in northern states and the food security of India. J Crop Improv. 23:136–157.
  • Huang B. 2000. Role of root morphological and physiological characteristics in drought resistance of plants. In: Wilkinson, RE, editor. Plant-environment interactions. New York: Marcel Dekker Inc; p. 39–64.
  • Kanemasu ET. 1975. Measurement of stomatal aperture and diffusive resistance. Bulletin 809. College of Agricultural Research Center, Washington State University, Washington. Pullman; p. 24–25.
  • Kato Y, Katsura K. 2014. Rice adaptation to aerobic soils: physiological considerations and implications for agronomy. Plant Prod Sci. 17:1–12.
  • Kato Y, Nemoto K, Yamagishi J. 2009. QTL analysis of panicle morphology response to irrigation regime in aerobic rice culture. Field Crops Res. 114:295–303.
  • Kato Y, Okami M, Katsura K. 2009. Yield potential and water use efficiency of aerobic rice (Oryza sativa L.) in Japan. Field Crops Res. 11:328–334.
  • Khalili M, Naghavi MR, Pour-Aboughadareh A, Talebzadeh SJ. 2012. Evaluating of drought stress tolerance based on selection indices in spring canola cultivars (Brassica napus L.). J Agri Sci. 4:78–85.
  • Khalili M, Pour-Aboughadareh A, Naghavi MR. 2016. Assessment of drought tolerance in barley: integrated selection criterion and drought tolerance indices. Environ Exp Biol. 14:33–41.
  • Khawar J, Ehsan U, Nadeem A, Muhammad Y, Umar Z, Wajid N, Muhammad R, Tuba A, Muhammad FA, Mubshar H. In press. Growth and physiology of basmati rice under conventional and water-saving production systems. Arch Agron Soil Sci.
  • Khush GS. 2015. Punjab’s water woes and India’s food security. J Crop Improv. 29:1–5.
  • Kumar S, Dwivesi SK, Singh SS, Jha SK, Lekshmy S, Elanchezhian R, Singh ON, Bhatt BP. 2014. Identification of drought tolerant rice genotypes by analyzing drought tolerance indices and morpho-physiological traits. SABRAO J. 46:217–230.
  • Lilley JM, Fukai S. 1994. Effect of timing and severity of water deficit on four diverse rice cultivars. III. Phenological development, Crop growth and grain yield. Field Crops Res. 37:225–234.
  • Mahajan G, Chauhan BS. 2013. Herbicide options for weed control in dry-seeded aromatic rice in India. Weed Technol. 27:682–689.
  • Mahajan G, Chauhan BS, Gill MS. 2013. Dry-seeded rice culture in Punjab state of India: lesson learned from farmers. Field Crops Res. 144:89–99.
  • Mahajan G, Chauhan BS, Timsina J, Singh PP, Singh K. 2012. Crop performance and water- and nitrogen-use efficiencies in dry-seeded rice in response to irrigation and fertilizer levels in North West India. Field Crops Res. 134:59–70.
  • Mahajan G, Timsina J, Singh K. 2011. Performance and water use efficiency of rice relative to establishment methods in northwestern Indo-Gangetic Plains. J Crop Improv. 25:597–617.
  • Maheswari J, Margatham N, Martin GJ. 2007. Relatively simple irrigation scheduling and N application enhances the productivity of aerobic rice (Oryza sativa). Am J Plant Physiol. 2:261–268.
  • McCaig TN, Clarke JM. 1982. Seasonal changes in nonstructural carbohydrate levels of wheat and oats grown in semiarid environment. Crop Sci. 22:963–970.
  • McCauley GN. 1990. Sprinkler vs. flooded irrigation in traditional rice production regions of southeast Texas. Agron J. 82:677–683.
  • Mitra J. 2001. Genetics and genetic improvement of drought resistance in crop plants. Curr Sci. 80:758–762.
  • Mohammadi R. 2016. Efficiency of yield-based drought tolerance indices to identify tolerant genotypes in durum wheat. Euphytica. 211:71–89.
  • Moldenhauer K, Slaton N. 2001. Rice growth and development. In: Slaton, NA, editor. Rice production handbook. Misc. Publ. 192. Coop. Ext. Service. Little Rock: University of Arkansas; p. 7–14.
  • Naghavi MR, Aboughadareh AP, Khalili M. 2013. Evaluation of drought tolerance indices for screening some of corn (Zea mays L.) cultivars under environmental conditions. Notulae Scientia Biologicae. 5:388–393.
  • Pal R, Mahajan G, Sardana V, Chauhan BS. 2017. Impact of sowing date on yield, dry matter and nitrogen accumulation, and nitrogen translocation in dry-seeded rice in north-west India. Field Crops Res. 206:138–148.
  • Peng S, Bouman B, Visperas RM, Casteneda A, Nie L, Park HK. 2006. Comparison between aerobic and flooded rice in the tropics: agronomic performance in an eight season experiment. Field Crops Res. 96:252–259.
  • Pour-Aboughadareh AR, Naghavi MR, Khalili M. 2013. Water deficit stress tolerance in some of barley genotypes and landraces under field conditions. Notulae Scientia Biologicae. 5:249–255.
  • Pour-Siahbidi MM, Pour-Aboughadareh A. 2013. Evaluation of grain yield and repeatability of drought tolerance indices for screening chickpea (Cicer aritinum L.) genotypes under rainfed conditions. Iranian J Genetics Plant Breed. 2:28–37.
  • Ramirez P, Kelly JD. 1998. Traits related to drought resistance in common bean. Euphytica. 99:127–136.
  • Richards RA, Rebetzke GJ, Condon AG, Herwaarden AF. 2002. Breeding opportunities for increasing the efficiency of water use and crop yield in temperate cereals. Crop Sci. 42:111–121.
  • Rodell M, Velicigna I, Famiglietti JS. 2009. Satellite-based estimates of groundwater depletion in India. Nature (London). 460:999–1002.
  • Rosielle AA, Hamblin J. 1981. Theoretical aspects of selection for yield in stress and non-stress environment. Crop Sci. 21:943–946.
  • Sharma PK, De Datta SK, Redulla CA. 1987. Root growth and yield response of rainfed lowland rice to planting method. Exp Agric. 23:305–313.
  • Shirinzadeh A, Zarghami R, Azghandi AV, Shiri MR, Mirabdulbaghi M. 2010. Evaluation of drought tolerance in mid and late mature corn hybrids using stress tolerance indices. Asian J Plant Sci. 9:67–73.
  • Simane B, Pea Cock JM, Struik PC. 1993. Differences in developmental plasticity and growth rate among drought resistant and susceptible cultivars of durum wheat (Triticum turgidum var. durum). Plant Soil. 157:155–166.
  • Singh DP. 2003. Water deficit stress in stress physiology. New Delhi: New Age Publishers; p. 64–79.
  • Singh N, Kaur R, Sharma N, Mahajan G, Bharaj TS. 2012. Changes in yield and grain quality characteristics of irrigated rice (Oryza sativa) genotypes under aerobic conditions. Indian J Agric Sci. 82:589–595.
  • Stansel JW 1967. Rice grain yields and stages of plant growth as influenced by weather conditions. Texas Agricultural Experiment Station (Progress report P.R. 462).J.J. Pastoriza, Printer and Stationer, Weslaco.
  • Thangaraj M, Sivasubramanian V. 1990. Physiological response of rice to water stress at reproductive phase. Oryza. 27:493–495.
  • Tuong TP, Bouman BAM, Mortimer M. 2005. More rice, less water. Plant Prod Sci. 8:231–241.
  • Wang H, Bouman BAM, Dule Z, Wang C, Moya PF. 2002. Aerobic rice in northern China. Opportunities and challenges. In: Bouman, BAM, Hengsdijk, H, Hardy, B, Bindraban, PS, Tuong, TP, Ladha, JK, editors. Water-wise rice production. Proceedings of the international workshop on water-wise rice production; Apr 8–11. Los Banos, Philippines: International Rice Research Institute; p. 143–154.
  • Zhang H, Xue Y, Wang Z, Yang J, Zhang J. 2009. Morphological and physiological traits of roots and their relationship with shoot growth in super rice. Field Crops Res. 113:31–40.

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