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地中海不同条件下欧洲高产小麦品种的比较性能

Comparative Performance of High-Yielding European Wheat Cultivars Under Contrasting Mediterranean Conditions.

作者信息

de Lima Valter Jário, Gracia-Romero Adrian, Rezzouk Fatima Zahra, Diez-Fraile Maria Carmen, Araus-Gonzalez Ismael, Kamphorst Samuel Henrique, do Amaral Júnior Antonio Teixeira, Kefauver Shawn C, Aparicio Nieves, Araus Jose Luis

机构信息

Laboratório de Melhoramento Genético Vegetal, Centro de Ciências e Tecnologias Agropecuárias (CCTA), Universidade Estadual do Norte Fluminense Darcy Ribeiro - UENF, Campos dos Goytacazes, Brazil.

Integrative Crop Ecophysiology Group, Plant Physiology Section, Faculty of Biology, University of Barcelona, Barcelona, Spain.

出版信息

Front Plant Sci. 2021 Jun 29;12:687622. doi: 10.3389/fpls.2021.687622. eCollection 2021.

Abstract

Understanding the interaction between genotype performance and the target environment is the key to improving genetic gain, particularly in the context of climate change. Wheat production is seriously compromised in agricultural regions affected by water and heat stress, such as the Mediterranean basin. Moreover, wheat production may be also limited by the nitrogen availability in the soil. We have sought to dissect the agronomic and physiological traits related to the performance of 12 high-yield European bread wheat varieties under Mediterranean rainfed conditions and different levels of N fertilization during two contrasting crop seasons. Grain yield was more than two times higher in the first season than the second season and was associated with much greater rainfall and lower temperatures. However, the nitrogen effect was rather minor. Genotypic effects existed for the two seasons. While several of the varieties from central/northern Europe yielded more than those from southern Europe during the optimal season, the opposite trend occurred in the dry season. The varieties from central/northern Europe were associated with delayed phenology and a longer crop cycle, while the varieties from southern Europe were characterized by a shorter crop cycle but comparatively higher duration of the reproductive period, associated with an earlier beginning of stem elongation and a greater number of ears per area. However, some of the cultivars from northern Europe maintained a relatively high yield capacity in both seasons. Thus, KWS Siskin from the UK exhibited intermediate phenology, resulting in a relatively long reproductive period, together with a high green area throughout the crop cycle.

摘要

了解基因型表现与目标环境之间的相互作用是提高遗传增益的关键,特别是在气候变化的背景下。在受水热胁迫影响的农业地区,如地中海盆地,小麦生产受到严重影响。此外,小麦生产还可能受到土壤中氮素有效性的限制。我们试图剖析12个欧洲高产面包小麦品种在地中海雨养条件下以及两个对比作物季节不同氮肥水平下与表现相关的农艺和生理性状。第一季的籽粒产量比第二季高出两倍多,且与更多降雨和更低温度有关。然而,氮素效应相当小。两个季节都存在基因型效应。虽然在最佳季节,一些来自中欧/北欧的品种产量高于来自南欧的品种,但在干旱季节情况相反。来自中欧/北欧的品种物候期延迟、作物周期较长,而来自南欧的品种作物周期较短,但生殖期持续时间相对较长,与茎伸长开始较早和单位面积穗数较多有关。然而,一些来自北欧的品种在两个季节都保持了相对较高的产量能力。因此,来自英国的KWS Siskin表现出中间物候期,导致生殖期相对较长,且在整个作物周期中绿叶面积较大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7749/8276830/e25cfdf027bc/fpls-12-687622-g001.jpg

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