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Effect of 1-MCP on Cotton Plants under Abiotic Stress Caused by Ethephon

机译:1-MCP对乙烯利非生物胁迫下棉花植株的影响

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Many environmental stress factors have been identified to increase square and boll abscission and thus result in reduced cotton yield. Under stress conditions, ethylene is elicited. Ethylene peaks before abscission to promote the formation of the abscission layer and plays a major role in early season square and boll abortion in cotton (Gossypium hirsutum L.). In addition, ethylene stimulates the leaf senescence process. Thus, it is desirable to protect plants from ethylene-induced fruit loss and premature leaf senescence under stress conditions. The objective of this study was to evaluate the ability of 1-methylcyclopropene (1-MCP) to protect cotton plants against abiotic stress caused by ethephon (ethylene promoting effect). Field studies using a randomized complete block design with four replications were conducted in 2010 and 2011 at Texas A&M AgriLIFE Research Farm in Burleson County, TX. Eight treatments that consisted of two 1-MCP rates (0 and 10 g a.i. ha-1) in combination with four ethephon rates (0, 146, 292, 438 mL·ha-1) were imposed at the first flower (FF) stage of the development. 1-MCP increased plant height and number of main stem nodes in both years. In addition, 1-MCP-treated plants exhibited greater membrane integrity and increased photosystem II quantum efficiency and thus delayed senescence in both years. These potentials for yield increase were realized in 2011 with 1-MCP treatment exhibiting a higher lint yield. In 2012, although 1-MCP treatment increased number of open fruit and open fruit weight per plant significantly, no significant lint yield increase was detected.
机译:已经发现许多环境压力因素会增加平方和铃的脱落,从而导致棉花单产下降。在压力条件下,会引发乙烯。乙烯在脱落之前达到峰值,以促进脱落层的形成,并在棉花季初和铃流产中起重要作用(棉(Gossypium hirsutum L.))。另外,乙烯刺激叶片衰老过程。因此,期望在胁迫条件下保护植物免受乙烯诱导的果实损失和叶片过早衰老。这项研究的目的是评估1-甲基环丙烯(1-MCP)保护棉花植物免受乙烯利引起的非生物胁迫(乙烯促进作用)的能力。在2010年和2011年,在德克萨斯州Burleson县的Texas A&M AgriLIFE研究农场进行了使用四次重复的随机完整区组设计的现场研究。在第一花期(FF)实施了八种处理,包括两种1-MCP速率(0和10 g ai ha-1)和四种乙烯利速率(0、146、292、438 mL·ha-1)。的发展。在过去的两年中,1-MCP增加了株高和主要茎节的数量。此外,用1-MCP处理的植物在这两年中均表现出更高的膜完整性和更高的光系统II量子效率,从而延缓了衰老。这些提高产量的潜力在2011年实现,1-MCP处理的皮棉产量更高。在2012年,尽管1-MCP处理显着增加了单株的未成熟果实数量和未成熟果实重量,但未检测到皮棉产量显着增加。

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