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传统“ ”系统中的玉米间作。增温条件下的生理、形态和农艺参数:墨西哥圣路易斯波托西气候变化相关影响的证据 。 (注:原文中“Traditional "" System”这里双引号内内容缺失)

Maize Intercropping in the Traditional "" System. Physiological, Morphological, and Agronomical Parameters under Induced Warming: Evidence of related Effect of Climate Change in San Luis Potosí (Mexico).

作者信息

Diédhiou Idrissa, Ramírez-Tobias Hugo M, Fortanelli-Martinez Javier, Flores-Ramírez Rogelio

机构信息

Facultad de Agronomía y Veterinaria, Universidad Autónoma de San Luis Potosí, Carretera San Luis Potosí-Matehuala Km. 14.5, Soledad de Graciano Sánchez, San Luis Potosí 78321, Mexico.

Programa Multidisciplinario de Posgrado en Ciencias Ambientales, Universidad Autónoma de San Luis Potosí. Av. Manuel Nava 201, 2o. piso, Zona Universitaria, San Luis Potosí 78000, Mexico.

出版信息

Life (Basel). 2022 Oct 12;12(10):1589. doi: 10.3390/life12101589.

Abstract

Warmer temperatures predicted as a result of climate change will have an impact on . An experiment was carried out with induced passive heat with the objective of simulating the increase in temperature on the physiological, morphological, and yield parameters of from different climates of San Luis Potosí, Mexico. Two different environments, Open-top chambers (OTC) and control, and three , from warm-dry, temperate, and hot and humid climates, were studied. A total of 12 experimental units of 13.13 m were used in the random design, with a factorial arrangement of 2 × 3 and two replications. Abiotic variables (minimum, maximum, and mean daily temperatures and accumulated heat units) were determined and compared between the two environments and confirmed that the OTC increased the abiotic variables. The growth and development parameters increased under the warming effect. Furthermore, the from hot and humid climate was the least affected. In contrast, the warming considerably delayed yield parameters. The squash suffered the most, while the bean benefited the most. The warming affected the chlorophyll fluorescence and gas exchange differently for each crop. However, at an early stage, the maximum photochemical efficiency (Fv/Fm) and non-photochemical quenching (qN) for bean and maize were reduced, while at a late stage, they were Fv/Fm, photochemical quenching (qP), and qN for maize; stomatal conductance and transpiration rate of the squash were improved under the warming treatments. In conclusion, the warming delayed the yield and photosynthetic parameters, while growth and development benefited. The systems were differently affected by warming.

摘要

气候变化导致的气温升高将产生影响。进行了一项诱导被动加热实验,目的是模拟温度升高对来自墨西哥圣路易斯波托西不同气候区的[作物名称未提及]的生理、形态和产量参数的影响。研究了两种不同环境,开放式顶棚箱(OTC)和对照,以及来自暖干、温带和炎热潮湿气候的三种[作物名称未提及]。在随机设计中总共使用了12个面积为13.13平方米的实验单元,采用2×3析因排列和两次重复。测定并比较了两种环境之间的非生物变量(最低、最高和日平均温度以及累积热量单位),证实OTC增加了非生物变量。在变暖效应下,生长和发育参数增加。此外,来自炎热潮湿气候的[作物名称未提及]受影响最小。相比之下,变暖大大延迟了产量参数。南瓜受影响最大,而豆类受益最大。变暖对每种作物的叶绿素荧光和气体交换的影响不同。然而,在早期阶段,豆类和玉米的最大光化学效率(Fv/Fm)和非光化学猝灭(qN)降低,而在后期阶段,玉米的是Fv/Fm、光化学猝灭(qP)和qN;在变暖处理下,南瓜的气孔导度和蒸腾速率得到改善。总之,变暖延迟了产量和光合参数,而生长和发育受益。[作物名称未提及]系统受变暖的影响不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c03/9605515/2fe1f304ea64/life-12-01589-g006.jpg

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