农业抗逆性和农业生物盐碱战略下灌溉仙人掌-高粱间作系统的形态生理指标、物候期和切割时间

C. P. Alves, Thieres George Freire da Silva, G. D. N. Araújo Júnior, L. S. B. de Souza, Alexandre Maniçoba da Rosa Ferraz Jardim, Gherman Garcia Leal de Araújo, Mário Adriano Ávila Queiroz, S. Silva, A. G. Pinheiro, Kaique Renan da Silva Salvador
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摘要

本研究的目的是评估灌溉仙人掌-高粱间作系统在不同策略下的生长发育情况,以提高农业抗逆性。研究于 2018 年至 2020 年在巴西伯南布哥州的塞拉塔尔哈达(Serra Talhada)进行,采用随机区组设计进行了四项实验,每项实验有四个重复。第一项实验包括仙人掌-高粱间作系统的不同配置(Orelha de Elefante Mexicana [OEM]-single crop [SNG], IPA Sertânia [IPA]-SNG, Miúda [MIU]-SNG, OEM-SF11, OEM-Progenitor 288 [P.288], OEM-467, IPA-SF11, IPA-P.288, IPA-467, MIU-SF11, MIU-P.288和 MIU-467);在第二和第三项实验中,仙人掌-高粱系统分别以不同的种植密度(仙人掌为 100,000 株/公顷、50,000 株/公顷、33,333 株/公顷、25,000 株/公顷和 20,000 株/公顷,高粱为 200,000 株/公顷)进行东西向和南北向种植;第四个实验包括仙人掌和高粱的不同种植密度(分别为 50,000 株、40,000 株、33,333 株和 28,571 株/公顷,以及 200,000 株、160,000 株、133,333 株和 114,285 株/公顷)。干物质积累率的最大值出现在含有 OEM 克隆和密度最高的栽培配置中。不同的栽培配置影响了表层的持续时间和数量。随着种植密度的增加(50,000 株/公顷和 100,000 株/公顷),以及使用 OEM 克隆时,切割时间也会增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Morphophysiological indicators, phenophase and cutting time in an irrigated forage cactus–sorghum intercropping system under strategies of agricultural resilience and agriculture biosaline
The objective of this study was to evaluate growth and development in an irrigated forage cactus–sorghum intercropping system under different strategies for improving agricultural resilience. The research was carried out from 2018 to 2020 in Serra Talhada, Pernambuco, Brazil, in four experiments in a randomized block design, each with four replications. The first experiment consisted of different configurations for the cactus–sorghum intercropping system (Orelha de Elefante Mexicana [OEM]‐single crop [SNG], IPA Sertânia [IPA]‐SNG, Miúda [MIU]‐SNG, OEM–SF11, OEM–Progenitor 288 [P.288], OEM–467, IPA–SF11, IPA–P.288, IPA–467, MIU–SF11, MIU–P.288 and MIU–467); in the second and third experiments, the cactus–sorghum system was planted under different planting densities (100,000; 50,000; 33,333; 25,000 and 20,000 plants ha−1 for forage cactus and 200,000 plants ha−1 for sorghum) in east–west and north–south orientations, respectively; and the fourth experiment consisted of different planting densities for the cactus and sorghum (50,000; 40,000; 33,333; and 28,571 plants ha−1 and 200,000; 160,000; 133,333; and 114,285 plants ha−1, respectively). The maximum values of the dry matter accumulation rate were observed in the cultivation configurations that contained the OEM clone and at the highest densities. The different cultivation configurations affected the duration and number of phenophases. The cutting time increases as the planting density increases (50,000 and 100,000 plants ha−1) and when the OEM clone is used.
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