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花期后草甘膦的合理施用可降低玉米收获时的籽粒含水量并重新分配玉米中的非结构性碳水化合物。

Proper Glyphosate Application at Post-anthesis Lowers Grain Moisture Content at Harvest and Reallocates Non-structural Carbohydrates in Maize.

作者信息

Zhao Linmao, Xie Liuyong, Huang Jingli, Su Yingchun, Zhang Chunqing

机构信息

State Key Laboratory of Crop Biology, Agronomy College, Shandong Agricultural University, Tai'an, China.

出版信息

Front Plant Sci. 2020 Dec 10;11:580883. doi: 10.3389/fpls.2020.580883. eCollection 2020.

Abstract

Glyphosate (GP)-based herbicides have been widely applied to crops for weed control and pre-harvest desiccation. The objective of this research was to evaluate the effects of pre-harvest GP application on maize or how it physiologically alters this crop. Here, we applied four GP treatment (Control, GP150, GP200, and GP250) on maize lines of Z58 and PH6WC belonging to different maturity groups at grain-filling stages form DAP30 to DAP45. GP application significantly decreased the grain moisture content at harvest by 22-35% for Z58 and by 15-41% for PH6WC. However, the responses of grain weight to glyphosate vary with inbred lines and application time. A high concentration of glyphosate (GP250) reduced the grain weight of Z58 and low concentrations (GP150 and GP200) did not affect, while the grain weight of PH6WC significantly decreased under glyphosate treatment. In summary, our results revealed that timely and appropriate GP application lowers grain moisture content without causing seed yield and quality loss. GP application adversely affected photosynthesis by promoting maturation and leaf senescence. Meanwhile, it also enhanced non-structural carbohydrate (soluble sugars and starch) remobilization from the vegetative organs to the grains. Hence, GP treatment coordinates plant senescence and assimilate remobilization. RNA sequencing revealed that glyphosate regulated the transcript levels of sugar signaling-related genes and induced assimilate repartitioning in grains. This work indicates the practical significance of GP application for maize seed production and harvest, which highlights the contributions of source-sink communication to maize yield in response to external stress or pre-harvest desiccant application.

摘要

基于草甘膦(GP)的除草剂已广泛应用于农作物,用于杂草控制和收获前干燥处理。本研究的目的是评估收获前施用GP对玉米的影响,或其如何在生理上改变这种作物。在此,我们在籽粒灌浆期(从开花后天数30至45天),对属于不同成熟组的Z58和PH6WC两个玉米品系施加了四种GP处理(对照、GP150、GP200和GP250)。施用GP后,收获时Z58的籽粒含水量显著降低了22%-35%,PH6WC的籽粒含水量显著降低了15%-41%。然而,籽粒重量对草甘膦的反应因自交系和施用时间而异。高浓度草甘膦(GP250)降低了Z58的籽粒重量,低浓度(GP150和GP200)则没有影响,而在草甘膦处理下,PH6WC的籽粒重量显著下降。总之,我们的结果表明,适时且适当施用GP可降低籽粒含水量,而不会导致种子产量和质量损失。施用GP通过促进成熟和叶片衰老对光合作用产生不利影响。同时,它还增强了非结构性碳水化合物(可溶性糖和淀粉)从营养器官向籽粒的转运。因此,GP处理协调了植物衰老和同化物转运。RNA测序表明,草甘膦调节了糖信号相关基因的转录水平,并诱导了籽粒中的同化物重新分配。这项工作表明了GP施用对玉米种子生产和收获的实际意义,突出了源库通讯对玉米响应外部胁迫或收获前干燥剂施用时产量的贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/949e/7758537/2685bbb9c843/fpls-11-580883-g001.jpg

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