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硅的施用提高水稻生产力、促进硅积累并上调硅转运蛋白基因表达。

Silicon Application Promotes Productivity, Silicon Accumulation and Upregulates Silicon Transporter Gene Expression in Rice.

作者信息

Chaiwong Nanthana, Pusadee Tonapha, Jamjod Sansanee, Prom-U-Thai Chanakan

机构信息

Division of Agronomy, Department of Plant and Soil Sciences, Faculty of Agriculture, Chiang Mai University, Chiang Mai 50200, Thailand.

Lanna Rice Research Center, Chiang Mai University, Chiang Mai 50200, Thailand.

出版信息

Plants (Basel). 2022 Apr 5;11(7):989. doi: 10.3390/plants11070989.

Abstract

Rice has been shown to respond positively to Si fertilizer in terms of growth and productivity. The objective of this study was to evaluate the effect of a series of Si application rates on grain yield, Si concentration, and the expression of the gene among three Thai rice varieties. The varieties CNT1, PTT1, and KDML105 were grown in a pot experiment under six levels of Si (0, 100, 150, 200, 250, and 300 kg Si/ha). Grain yield was the highest at 300 kg Si/ha, being increased by 35%, 53%, and 69% in CNT1, PTT1, and KDML105, respectively, compared with the plants grown without added Si. For Si concentrations in rice plants, rising Si fertilizer application up to 150 kg/ha significantly increased the Si concentration in straw, flag leaf, and husk in all varieties. The Si concentration in all tissues was higher under high Si (300 kg Si/ha). Applying Si fertilizer also increased the expression level of in both CNT1 and PTT1 varieties. The highest expression level of was associated with 300 kg Si/ha, being increased by 548% in CNT1 and 326% in PTT1 compared with untreated plants. These results indicate that Si application is an effective way to improve rice yield as well as Si concentration, and that the effect is related to the higher expression of the gene.

摘要

研究表明,水稻在生长和生产力方面对硅肥有积极反应。本研究的目的是评估一系列硅施用量对三个泰国水稻品种的籽粒产量、硅浓度以及该基因表达的影响。品种CNT1、PTT1和KDML105在盆栽试验中,在六个硅水平(0、100、150、200、250和300千克硅/公顷)下种植。在300千克硅/公顷时籽粒产量最高,与未添加硅种植的植株相比,CNT1、PTT1和KDML105的产量分别提高了35%、53%和69%。对于水稻植株中的硅浓度,硅肥施用量增加到150千克/公顷时,所有品种的秸秆、剑叶和稻壳中的硅浓度均显著增加。在高硅(300千克硅/公顷)条件下,所有组织中的硅浓度都更高。施用硅肥还提高了CNT1和PTT1两个品种中的表达水平。的最高表达水平与300千克硅/公顷相关,与未处理植株相比,CNT1中增加了548%,PTT1中增加了326%。这些结果表明,施用硅是提高水稻产量和硅浓度的有效方法,且这种效果与该基因的高表达有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9014/9003229/2332f62a539d/plants-11-00989-g001.jpg

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