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Effects of 1-methylcyclopropene on function of flag leaf and development of superior and inferior spikelets in rice cultivars differing in panicle types

机译:1-甲基环丙烯对不同穗型水稻品种剑叶功能和上,下小穗发育的影响

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High ethylene production usually slackens spikelets development in compact panicled rice (Oryza sativa L) cultivars. 1-Methylcyclopropene (1-MCP) is a potent inhibitor of ethylene action that has been shown to prevent ethylene-induced effects in fruits. However, effects of 1-MCP on spikelets development in rice cultivars differing in panicle types are unclear. This study explored whether 1-MCP is involved in regulating rice flag leaf function, and superior and inferior spikelets development. Four rice cultivars were field grown in 2012 and 2013, including two lax-panicled cultivars, Liangyoupeijiu (LYP9) and Guodao 6 (GD6), and two compact-panicled cultivars, Yongyou 9 (YY9) and Yongyou 12 (YY12). Results showed that 1-MCP played a positive role in regulating photosynthetic rate of rice flag leaf. Application of 1-MCP was more effective on enhancing grain filling rate of LYP9, GD6, and YY9. 1-Aminocyclopropane-1-carboxylic acid synthase (ACS) activity and ethylene production of inferior spikelets were more sensitive to the regulation of 1-MCP comparing to that in superior spikelets. Compared to other cultivars, ACS activity and ethylene production in inferior spikelets of LYP9 with 1-MCP treatment were significantly lower than that in control (CK). Effect of 1-MCP on starch content in superior and inferior spikelets varied with rice cultivars, but application of 1-MCP significantly enhanced starch content of inferior spikelets for LYP9. To compare with CK, application of 1-MCP greatly increased grain yield, spikelet fertility, and harvest index for LYP9, GD6, and YY9, especially for LYP9. Results indicate that 1-MCP favorably regulated flag leaf photosynthesis and inferior spikelets development in rice cultivars used in this trial, and LYP9 showed the best performances after application of 1-MCP. (C) 2015 Elsevier B.V. All rights reserved.
机译:较高的乙烯产量通常会使紧凑型穗型水稻(Oryza sativa L)品种的小穗发育缓慢。 1-甲基环丙烯(1-MCP)是一种有效的乙烯作用抑制剂,已证明可以防止乙烯对水果的诱导作用。然而,尚不清楚1-MCP对穗型不同的水稻品种小穗发育的影响。这项研究探讨了1-MCP是否参与调节水稻的旗叶功能以及上,下小穗的发育。分别在2012年和2013年种植了4个水稻品种,其中包括2个松花椒品种(两优培九(LYP9)和Guodao 6(GD6))和2个紧凑穗稻品种永优9(YY9)和Yongyou 12(YY12)。结果表明1-MCP在调节水稻旗叶的光合速率中发挥了积极作用。 1-MCP的使用对提高LYP9,GD6和YY9的籽粒填充率更为有效。与高级小穗相比,下小穗的1-氨基环丙烷-1-羧酸合酶(ACS)活性和乙烯生成对1-MCP的调节更为敏感。与其他品种相比,使用1-MCP处理的LYP9下小穗的ACS活性和乙烯产量显着低于对照(CK)。 1-MCP对上,下小穗淀粉含量的影响随水稻品种的不同而不同,但是1-MCP的施用显着增强了LYP9的下小穗淀粉含量。与CK相比,施用1-MCP可以显着提高LYP9,GD6和YY9(特别是LYP9)的谷物产量,小穗育性和收获指数。结果表明,在本试验所用的水稻品种中,1-MCP良好地调节了旗叶的光合作用和小穗的发育,而LYP9在施用1-MCP后表现出最佳性能。 (C)2015 Elsevier B.V.保留所有权利。

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