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Perspectives of Using L-Tryptophan for Improving Productivity of Agricultural Crops: A Review 被引量:2

Perspectives of Using L-Tryptophan for Improving Productivity of Agricultural Crops: A Review
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摘要 Plant growth regulators are biologically active signaling molecules that regulate a number of plant physiological processes. Auxin(indole-3-acetic acid) is an important plant growth regulator and is synthesized within plant tissues through L-tryptophan(L-TRP)-dependent and-independent pathways. It has been found that plants respond to exogenously applied L-TRP due to insufficient endogenous auxin biosynthesis. The exogenous application of L-TRP is highly significant for normal plant growth and development.L-tryptophan is applied through foliar spray, seed priming, and soil application. Soil-applied L-TRP is either directly taken up by plants or metabolized to auxin by soil microbiota and then absorbed by plant roots. Similarly, foliar spray and seed priming with L-TRP stimulates auxin synthesis within plants and improves the growth and productivity of agricultural crops. Furthermore, L-TRP contains approximately 14% nitrogen(N) in its composition, which is released upon its metabolism within a plant or in the rhizosphere and plays a role in enhancing crop productivity. This review deals with assessing crop responses under the exogenous application of L-TRP in normal and stressed environments, mode of action of L-TRP, advantages of using L-TRP over other auxin precursors, and role of the simultaneous use of L-TRP and auxin-producing microbes in improving the productivity of agricultural crops. To the best of our knowledge, this is the first review reporting the importance of the use of L-TRP in agriculture. Plant growth regulators are biologically active signaling molecules that regulate a number of plant physiological processes. Auxin(indole-3-acetic acid) is an important plant growth regulator and is synthesized within plant tissues through L-tryptophan(L-TRP)-dependent and-independent pathways. It has been found that plants respond to exogenously applied L-TRP due to insufficient endogenous auxin biosynthesis. The exogenous application of L-TRP is highly significant for normal plant growth and development.L-tryptophan is applied through foliar spray, seed priming, and soil application. Soil-applied L-TRP is either directly taken up by plants or metabolized to auxin by soil microbiota and then absorbed by plant roots. Similarly, foliar spray and seed priming with L-TRP stimulates auxin synthesis within plants and improves the growth and productivity of agricultural crops. Furthermore, L-TRP contains approximately 14% nitrogen(N) in its composition, which is released upon its metabolism within a plant or in the rhizosphere and plays a role in enhancing crop productivity. This review deals with assessing crop responses under the exogenous application of L-TRP in normal and stressed environments, mode of action of L-TRP, advantages of using L-TRP over other auxin precursors, and role of the simultaneous use of L-TRP and auxin-producing microbes in improving the productivity of agricultural crops. To the best of our knowledge, this is the first review reporting the importance of the use of L-TRP in agriculture.
出处 《Pedosphere》 SCIE CAS CSCD 2018年第1期16-34,共19页 土壤圈(英文版)
关键词 生产率 色氨酸 庄稼 农业 评论 植物生长素 新陈代谢 管理者 auxin biosynthesis auxin precursors auxin-producing microbes crop productivity indole-3-acetic acid plant growth-promoting rhizobacteria plant response to abiotic stresses
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  • 1魏道智,宁书菊,林文雄.小麦根系活力变化与叶片衰老的研究[J].应用生态学报,2004,15(9):1565-1569. 被引量:70
  • 2Muhammad IQBAL Muhammad ASHRAF.Presowing Seed Treatment with Cytokinins and Its Effect on Growth, Photosynthetic Rate, Ionic Levels and Yield of Two Wheat Cultivars Differing in Salt Tolerance[J].Journal of Integrative Plant Biology,2005,47(11):1315-1325. 被引量:4
  • 3余让才,李明启,范燕萍.高等植物硝酸还原酶的光调控[J].植物生理学通讯,1997,33(1):61-65. 被引量:39
  • 4鲁如坤.Methods of Agrochemical Soil Analysis[M].Beijng:China Agriculrural Science Press,2000.(inChinese).
  • 5汤章城.Modern Experimental Guidance of Plant Physiology[M].Beijing:Science Press,1999.(inChinese).
  • 6Tena M,Pinilla JA,et al.1986.L-Phenylalanine delaminating activity in soil. Soil Biol Biochem,18(3):321~325
  • 7Arshad M, Frankenberger WT Jr. 1990. Response of Zea mays and Lycopersicon esculentum to the ethylene precursors, L-methionine and L-ethionine applied to soil. Plant Soil, 122:219~227
  • 8Frankenberger WT Jr, Poth M. 1987. Biosynthesis of indole-3-acetic acid by the Pine ectomycorrhizal fungus Pisolithus tinctorius . A ppl Environ Microbiol , 53 (12): 2908~ 2913
  • 9Frankenberger WT Jr, Chang AC, Arshad M. 1990. Response of Raphanus sativus to the auxin precursor, L-tryptophan applied to soil. Plant Soil, 129:235~241
  • 10Frankenberger WT Jr, Arshad M. 1991. Yield response of watermelon and muskmelon to L- tryptophan applied to soil. Hortscience,26:35~37

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