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Heat-Induced Cytokinin Transportation and Degradation Are Associated with Reduced Panicle Cytokinin Expression and Fewer Spikelets per Panicle in Rice

机译:加热诱导的细胞分裂素转运和降解与水稻穗细胞分裂素表达降低和每穗小穗数少相关

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摘要

Cytokinins (CTKs) regulate panicle size and mediate heat tolerance in crops. To investigate the effect of high temperature on panicle CTK expression and the role of such expression in panicle differentiation in rice, four rice varieties (Nagina22, N22; Huanghuazhan, HHZ; Liangyoupeijiu, LYPJ; and Shanyou63, SY63) were grown under normal conditions and subjected to three high temperature treatments and one control treatment in temperature-controlled greenhouses for 15 days during the early reproductive stage. The high temperature treatments significantly reduced panicle CTK abundance in heat-susceptible LYPJ, HHZ, and N22 varieties, which showed fewer spikelets per panicle in comparison with control plants. Exogenous 6-benzylaminopurine application mitigated the effect of heat injury on the number of spikelets per panicle. The high temperature treatments significantly decreased the xylem sap flow rate and CTK transportation rate, but enhanced cytokinin oxidase/dehydrogenase (CKX) activity in heat-susceptible varieties. In comparison with the heat-susceptible varieties, heat-tolerant variety SY63 showed less reduction in panicle CTK abundance, an enhanced xylem sap flow rate, an improved CTK transport rate, and stable CKX activity under the high temperature treatments. Enzymes involved in CTK synthesis (isopentenyltransferase, LONELY GUY, and cytochrome P450 monooxygenase) were inhibited by the high temperature treatments. Heat-induced changes in CTK transportation from root to shoot through xylem sap flow and panicle CTK degradation via CKX were closely associated with the effects of heat on panicle CTK abundance and panicle size. Heat-tolerant variety SY63 showed stable panicle size under the high temperature treatments because of enhanced transport of root-derived CTKs and stable panicle CKX activity. Our results provide insight into rice heat tolerance that will facilitate the development of rice varieties with tolerance to high temperature.
机译:细胞分裂素(CTK)调节穗的大小并调节作物的耐热性。为了研究高温对水稻穗CTK表达的影响及其在穗分化中的作用,在正常条件下种植了四个水稻品种(Nagina22,N22; Huanghuazhan,HHZ; Liangyoupeijiu,LYPJ; Shanyou63,SY63)。在生殖初期,在温控温室中进行了15天的3种高温处理和1种对照处理。高温处理显着降低了热敏感的LYPJ,HHZ和N22品种的穗CTK丰度,与对照植物相比,每穗的小穗数更少。外源6-苄基氨基嘌呤的施用减轻了热损伤对每穗小穗数目的影响。高温处理显着降低了木质部汁液流速和CTK转运速率,但增强了热敏感品种的细胞分裂素氧化酶/脱氢酶(CKX)活性。与耐热品种相比,耐热品种SY63在高温处理下显示出较低的穗CTK丰度降低,木质部汁液流量增加,CTK转运速率提高以及CKX活性稳定。高温处理可抑制参与CTK合成的酶(异戊烯基转移酶,LONELY GUY和细胞色素P450单加氧酶)。热诱导的木质部汁液流动从根部到茎部的CTK转运变化以及通过CKX引起的穗CTK降解与热量对穗CTK丰度和穗大小的影响密切相关。耐热品种SY63在高温处理下显示出稳定的穗粒大小,这是由于根源CTKs的转运增强和穗粒CKX活性稳定。我们的结果提供了对水稻耐热性的了解,这将有助于开发耐高温的水稻品种。

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