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乙烯在水稻中起到挥发性物质产生抑制剂的作用。

Ethylene functions as a suppressor of volatile production in rice.

作者信息

Mujiono Kadis, Tohi Tilisa, Sobhy Islam S, Hojo Yuko, Ho Nhan Thanh, Shinya Tomonori, Galis Ivan

机构信息

Institute of Plant Science and Resources, Okayama University, Kurashiki, Japan.

Faculty of Agriculture, Mulawarman University, Samarinda, Indonesia.

出版信息

J Exp Bot. 2020 Oct 22;71(20):6491-6511. doi: 10.1093/jxb/eraa341.

Abstract

We examined the role of ethylene in the production of rice (Oryza sativa) volatile organic compounds (VOCs), which act as indirect defense signals against herbivores in tritrophic interactions. Rice plants were exposed to exogenous ethylene (1 ppm) after simulated herbivory, which consisted of mechanical wounding supplemented with oral secretions (WOS) from the generalist herbivore larva Mythimna loreyi. Ethylene treatment highly suppressed VOCs in WOS-treated rice leaves, which was further corroborated by the reduced transcript levels of major VOC biosynthesis genes in ethylene-treated rice. In contrast, the accumulation of jasmonates (JA), known to control VOCs in higher plants, and transcript levels of primary JA response genes, including OsMYC2, were not largely affected by ethylene application. At the functional level, flooding is known to promote internode elongation in young rice via ethylene signaling. Consistent with the negative role of ethylene on VOC genes, the accumulation of VOCs in water-submerged rice leaves was suppressed. Furthermore, in mature rice plants, which naturally produce less volatiles, VOCs could be rescued by the application of the ethylene perception inhibitor 1-methylcyclopropene. Our data suggest that ethylene acts as an endogenous suppressor of VOCs in rice plants during development and under stress.

摘要

我们研究了乙烯在水稻(Oryza sativa)挥发性有机化合物(VOCs)产生中的作用,这些挥发性有机化合物在三级营养相互作用中作为针对食草动物的间接防御信号。在模拟食草作用后,将水稻植株暴露于外源乙烯(1 ppm)中,模拟食草作用包括机械损伤并补充多食性食草动物幼虫粘虫(Mythimna loreyi)的口腔分泌物(WOS)。乙烯处理高度抑制了经WOS处理的水稻叶片中的VOCs,乙烯处理的水稻中主要VOC生物合成基因转录水平的降低进一步证实了这一点。相比之下,已知在高等植物中控制VOCs的茉莉酸(JA)的积累以及包括OsMYC2在内的初级JA反应基因的转录水平在施用乙烯后并未受到很大影响。在功能水平上,已知淹水通过乙烯信号传导促进幼嫩水稻节间伸长。与乙烯对VOC基因的负作用一致,水淹水稻叶片中VOCs的积累受到抑制。此外,在自然产生较少挥发性物质的成熟水稻植株中,施用乙烯感知抑制剂1-甲基环丙烯可以挽救VOCs。我们的数据表明,乙烯在水稻植株发育和胁迫期间作为VOCs的内源性抑制剂起作用。

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