Rice OsLHT1 Functions in Leaf-to-Panicle Nitrogen Allocation for Grain Yield and Quality

Nan Guo, Mingji Gu, Jinqi Hu, Hongye Qu, Guohua Xu

Frontiers in Plant Science · 2020 · 97 citations · 55 references

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Abstract

Proper allocation of nitrogen (N) from source leaves to grains is essential step for high crop grain yield and N use efficiency. In rice (<i>Oryza sativa</i>) grown in flooding paddy field, amino acids are the major N compounds for N distribution and re-allocation. We have recently identified that <i>Lysine-Histidine-type Transporter 1</i> (<i>OsLHT1</i>) is the major transporter for root uptake and root-to-shoot allocation of amino acids in rice. In this study, we planted knockout mutant lines of <i>OsLHT1</i> together wild-type (WT) in paddy field for evaluating OsLHT1 function in N redistribution and grain production. OsLHT1 is expressed in vascular bundles of leaves, rachis, and flowering organs. <i>Oslht1</i> plants showed lower panicle length and seed setting rate, especially lower grain number per panicle and total grain weight. The concentrations of both total N and free amino acids in the flag leaf were similar at anthesis between <i>Oslht1</i> lines and WT while significantly higher in the mutants than WT at maturation. The <i>Oslht1</i> seeds contained higher proteins and most of the essential free amino acids, similar total starch but less amylose with lower paste viscosity than WT seeds. The mutant seeds showed lower germination rate than WT. Knockout of <i>OsLHT1</i> decreased N uptake efficiency and physiological utilization efficiency (kg-grains/kg-N) by about 55% and 72%, respectively. Taken together, we conclude that OsLHT1 plays critical role in the translocation of amino acids from vegetative to reproductive organs for grain yield and quality of nutrition and functionality.

References

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