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Evidence of Duck Activity Induced Anatomical Structure Change and Lodging Resistance of Rice Plant

机译:鸭活动诱导水稻植株解剖结构变化和抗倒伏的证据

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The system of rice cultivation associated with duck raising is known as an integrated rice-duck (RD) farming system and has a long history in China and Asia. However, the roles of duck activities on rice physiological characteristics are unknown. Field and laboratory experiments were conducted to investigate mechanical stimulations of duck activities on rice physiological characteristics, and hence on morphology and anatomy. Here, we found that there were substantial variations in anatomical structure of the rice culm internodes and in lodging resistance of rice plants with and without the duck activities. Anatomical analysis showed a distinct difference between the RD and rice-no-duck (RND) treatments in culm wall thickness of the rice internodes. For internode N4, the culm wall from the RD treatment was more than 35% thicker than that from the RND treatment. In general, the epidermal layer of the rice culm was significantly denser for the internodes and the thickness of the culm walls increased from N1 to N4 under the RD farming system. Additionally, the areas of vascular bundles were larger and were better organized and structured in the RD treatment. Our results further revealed that the breaking-resistant strength increased whereas the lodging index of the rice culm decreased with duck activities.
机译:与鸭饲养相关的水稻耕作系统被称为稻鸭综合养殖系统,在中国和亚洲有着悠久的历史。然而,鸭子活动对水稻生理特性的作用尚不清楚。进行了野外和实验室实验,以研究鸭活动对水稻生理特性以及形态和解剖结构的机械刺激。在这里,我们发现在有或没有鸭活动的情况下,稻草茎节的解剖结构和抗倒伏性都存在很大差异。解剖学分析表明,RD和水稻无鸭(RND)处理在水稻节间的茎秆壁厚方面存在明显差异。对于节间N4,RD处理的茎秆壁厚比RND处理的茎壁厚35%以上。通常,在RD耕作系统下,水稻茎秆的表皮层在节间明显更致密,茎秆壁的厚度从N1增加到N4。此外,在RD治疗中,血管束的面积更大,组织和结构更好。我们的结果进一步表明,随着鸭的活动,稻谷茎的抗断裂强度增加,而倒伏指数下降。

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