
Transformation of Sucrose to Starch and Protein in Rice Leaves and Grains under Two Establishment Methods
Received date: 2015-11-17
Accepted date: 2016-05-05
Online published: 2016-06-12
Six rice varieties, PR120, PR116, FengAiZan, PR115, PAU201 and Punjab Mehak 1 were raised under aerobic and transplanting conditions to assess the effects of planting conditions on sucrose metabolising enzymes in relation to the transformation of free sugars to starch and protein in flag leaves and grains. Activities of sucrose synthase, sucrose phosphate synthase and acid invertase increased till flowering stage in leaves and mid-milky stage (14 d after flowering) in grains and thereafter declined in concomitant with the contents of reducing sugar. Under aerobic conditions, the activities of acid invertase and sucrose synthase (cleavage) significantly decreased in conjunction with the decrease in non-reducing sugars and starch content in all the varieties. Disruption of starch biosynthesis under the influence of aerobic conditions in both leaves and grains and the higher build up of sugars possibly resulted in their favoured utilization in nitrogen metabolism. FengAiZan, PR115 and PR120 maintained higher levels of sucrose synthase enzymes in grains and leaves and contents of metabolites (amino acid, protein and non-reducing sugar) under aerobic conditions, while PR116, Punjab Mehak 1 and PAU201 performed better under transplanting conditions, thus showing their adaptation to environmental stress. Yield gap between aerobic and transplanting rice is attributed primarily to the difference in sink activity and strength. Overall, it appear that up-regulation of sucrose synthase (synthesis) and sucrose phosphate synthase under aerobic conditions might be responsible in enhancing growth and productivity of rice varieties.
Kumari Manisha, Asthir Bavita . Transformation of Sucrose to Starch and Protein in Rice Leaves and Grains under Two Establishment Methods[J]. Rice Science, 2016 , 23(5) : 255 -265 . DOI: 10.1016/j.rsci.2016.08.003
| 1 | Bala S, Asthir B, Bains N S.2010. High temperature response leads to altered membrane permeability in conjunction with carbon utilization in wheat.Seed Sci Biotech, 4(1): 10-14. |
| 2 | Bernier J, Atlin G N, Serraj R, Kumar A, Spaner D.2008. Breeding upland rice for drought resistance.J Sci Food Agric, 88(6): 927-939. |
| 3 | Chaum S, Supaibulwatana K, Kirdmanee C.2007. Glycinebetaine accumulation, physiological characterizations and growth efficiency in salt-tolerance and salt-sensitive lines of indica rice (Oryza sativa L.) in response to salt stress.J Agron Crop Sci, 193(3): 157-166. |
| 4 | Chen S, Hajirezaei M, Bornke F.2005. Differential expression of sucrose-phosphate synthase iso enzymes in tobacco reflects their functional specialization during dark-governed starch mobilization in source leaves.Plant Physiol, 139(3): 1163-1174. |
| 5 | Danai-Tambhale S, Kumar V, Shriram V.2011. Differential response of two scented indica rice (Oryza sativa) cultivars under salt stress.J Stress Physiol Biochem, 7(4): 387-397. |
| 6 | Dubois M, Gilles K A, Hamilton J K, Rebers P A, Smith F.1956. Colorimetric method for the determination of sugars and related substances.Anal Chem, 28(3): 350-356. |
| 7 | Emam M M, Khattab H E, Helal N M, Deraz A E.2014. Effect of selenium and silicon on yield quality of rice plant grown under drought stress.Aust J Crop Sc, 8(4): 596-605. |
| 8 | Farooq M, Siddique K H M, Rehman H, Aziz T, Lee D J, Wahid A.2011. Rice direct seeding: Experiences, challenges and opportunities.Soil Till Res, 111(2): 87-98. |
| 9 | Fresneau C, Ghashghaie J, Gabriel C.2007. Drought effect on nitrate reductase and sucrose-phosphate synthase activities in wheat (Triticum durum L.): Role of leaf internal CO2.J Exp Bot, 58(11): 2983-2992. |
| 10 | Haryanto T A D, Suwarto S, Yoshida T.2008. Yield stability of aromatic upland rice with high yielding ability in Indonesia.Plant Prod Sci, 11(1): 96-103. |
| 11 | Heidary R, Heidary M, Jameiy R.2007. Study on tolerance to salinity and drought of 4 barley cultivar in germination phase.Res Recon Mag, 4: 34-42. |
| 12 | Hubbard N L, Huber S C, Pharr D M.1989. Sucrose phopshate synthase and acid invertase as determinants of sucrose concentration in developing muskmelon (Cucumis melo L.) fruits.Plant Physiol, 91(4): 1527-1534. |
| 13 | Jayashree B, Pradeep R, Kumar A, Gopal B.2008. Correlation between the sucrose synthase protein subfamilies variations in structure and expression in stress-derived expressed sequence tag datasets.J Proteomic Bioinform, 1(8): 408-423. |
| 14 | Ke Y Q, Han G Q, He H Q, Li J X.2009. Differential regulation of proteins and phosphoproteins in rice under drought stress.Biochem Biophys Res Commun, 379(1): 133-138. |
| 15 | Lee Y P, Takahashi T.1966. An improved colorimetric determination of amino acids with the use of ninhydrin.Anal Biochem, 14(1): 71-77. |
| 16 | Li X J, Wang H G, Li H B, Zhang L Y, Teng N J, Lin Q Q, Wang J, Kuang T Y, Li Z S, Li B, Zhang A M, Lin J X.2006. Awns play a dominant role in carbohydrate production during the grain-filling stages in wheat (Triticum aestivum L.).Physiol Plant, 127: 701-709. |
| 17 | Liang J S, Zhang J H, Cao X Z.2001. Grain sink strength may be related to the poor grain filling of indica-japonica rice (Oryza sativa) hybrids.Physiol Plant, 112(4): 470-477. |
| 18 | Liao J L, Zhou H W, Zhang H Y, Zhong P A, Huang Y J.2014. Comparative proteomic analysis of differentially expressed proteins in the early milky stage of rice grains during high temperature stress.J Exp Bot, 65(2): 655-671. |
| 19 | Liu Y H, Cao J S, Li G J, Wu X H, Wang B G, Xu P, Hu T T, Lu Z F, Patrick J W, Ruan Y L.2012. Genotypic differences in pod wall and seed growth relate to invertase activities and assimilate transport pathways in asparagus bean.Ann Bot, 109: 1277-1284. |
| 20 | Loomis W E, Shull C A.1937. Methods in Plant Physiology. Mund W. Sinnot. Mc Graw-Hill Publication in Bbotanical Science: 290. |
| 21 | Lowry O H, Rosebrough N J, Farr A L, Randall R J.1951. Protein measurement with the folin phenol reagent.J Biol Chem, 193(1): 265-275. |
| 22 | Meena R K, Verulkar S B, Chandel G.2012. Nutrient characters analysis in rice genotypes under different environmental conditions.Bull Environ Pharmacol Life Sci, 1: 61-64. |
| 23 | Nelson N.1944. A photometric adaptation of the Somogyi method for the determination of glucose.J Biol Chem, 153: 375-380. |
| 24 | Parvaiz A, Satyawati S.2008. Salt stress and phyto-biochemical responses of plants: A review. Plant Soil Environ, 54(3): 89-99. |
| 25 | Patel D P, Das A, Munda G C, Ghosh P K, Bordoloi J S, Kumar M.2010. Evaluation of yield and physiological attributes of high yielding rice varieties under aerobic and flood irrigated management practices in mid-hills ecosystem.Agric Water Manage, 97(9): 1269-1276. |
| 26 | Pyngrope S, Kumari B, Dubey R S.2013. Oxidative stress, protein carbonylation, proteolysis and antioxidative defense system as a model for depicting water deficit tolerance in indica rice seedlings.Plant Growth Regul, 69(2): 149-165. |
| 27 | Reguera M, Peleg Z, Abdel-Tawab Y M, Tumimbang E B, Delatorre C A, Blumwald E.2013. Stress-induced cytokinin synthesis increases drought tolerance through the coordinated regulation of carbon and nitrogen assimilation in rice.Plant Physiol, 163(4): 1609-1622. |
| 28 | Roe J H.1934. A colorimetric method for the determination of fructose in blood and urine.J Biol Chem, 107: 15-22. |
| 29 | Ruan Y L, Jin Y, Yang Y J, Li G J, Boyer J S.2010. Sugar input, metabolism, and signaling mediated by invertase: Roles in development, yield potential, and response to drought and heat.Mol Plant, 3(6): 942-955. |
| 30 | Ruan Y L.2014. Sucrose metabolism: Gateway to diverse carbon use and sugar signaling.Annu Rev Plant Biol, 65: 33-67. |
| 31 | Saeedipour S.2011. Effect of drought at the post-flowering stage on remobilization of carbon reserves in two wheat cultivars differing in senescence properties.Afr J Biotech, 10(18): 3549-3557. |
| 32 | Schaffer A A, Rylski L, Fogelman M.1989. Carbohydrate content and sucrose metabolism in developing Solanum muricatum fruits.Phytochem, 28(3): 737-739. |
| 33 | Singh S, Asthir B, Bains N S.2008. High temperature tolerance in relation to carbohydrate metabolism in barley.Ecol Environ Cons, 14: 55-59. |
| 34 | Singh N, Kaur R, Sharma N, Mahajan G, Bharaj T S.2012. Changes in yield and grain quality characteristics of irrigated rice (Oryza sativa) genotypes under aerobic conditions.Ind J Agric Sci, 82: 589-595. |
| 35 | Tang R S, Zheng J C, Jin Z Q, Zhang D D, Huang Y H, Chen L G.2008. Possible correlation between high temperature-induced floret sterility and endogenous levels of IAA, GAs and ABA in rice (Oryza sativa L.).Plant Growth Regul, 54(1): 37-43. |
| 36 | Tang T, Xie H, Wang Y X, Lu B, Liang J S.2009. The effect of sucrose and abscisic acid interaction on sucrose synthase and its relationship of grain filling of rice (Oryza sativa L.).J Exp Bot, 60(9): 2641-2652. |
| 37 | Tuong T P, Bouman B A M.2003. Rice production in water scarce environments. In: Kijne J W, Barker R, Molden D J. Water Productivity in Agriculture: Limits and Opportunities, for Improvement. Colombo, Sri Lanka: International Water Management Institute: 53-67. |
| 38 | Vanitha K, Mohandass S.2014. Drip fertigation could improve source-sink relationship of aerobic rice (Oryza sativa L.).Afr J Agric Res, 9(2): 294-301. |
| 39 | Winder T L, Sun J D, Okita T W, Edwards G E.1998. Evidence for the occurrence of feedback inhibition of photosynthesis in rice.Plant Cell Physiol, 39(8): 813-820. |
| 40 | Xue G P, Mclntyre C L, Jenkins C L D, Glassop D, van Herwaarden A F, Shorter R.2008. Molecular dissection of variation in carbohydrate metabolism related to water-soluble carbohydrate accumulation in stem of wheat.Plant Physiol, 146: 441-454. |
| 41 | Yang J C, Zhang J H, Wang Z Q, Zhu Q S, Liu L J.2003. Activities of enzymes involved in source-to-starch metabolism in rice grains subjected to water stress during filling.Field Crops Res, 81(1): 69-81. |
| 42 | Yoshida S, Forno D A, Cock J H, Gomez K A.1976. Laboratory Manual for Physiological Studies of Rice. Los Banos, the Philippines: International Rice research Institute: 46-49. |
| 43 | Zhao D L, Bastiaans L, Atlin G N, Spiertz J H J.2007. Interaction of genotype × management on vegetative growth and weed suppression of aerobic rice.Field Crops Res, 100: 327-340. |
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