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缺水影响普通菜豆(智利地方品种)的营养生长和生殖阶段,对籽粒产量构成因素产生不同影响。

Water Shortage Affects Vegetative and Reproductive Stages of Common Bean () Chilean Landraces, Differentially Impacting Grain Yield Components.

作者信息

Tapia Gerardo, Méndez José, Inostroza Luis, Lozano Camila

机构信息

Unidad de Recursos Genéticos Vegetales, Instituto de Investigaciones Agropecuarias, INIA-Quilamapu, Chillán 3800062, Chile.

出版信息

Plants (Basel). 2022 Mar 11;11(6):749. doi: 10.3390/plants11060749.

Abstract

Water availability for agricultural use is currently a global problem that worsens with climate change in several regions of the world. Among grain legumes, common bean (Phaseolus vulgaris) is the most cultivated in the worldwide. The Chilean germplasm of common bean is characterized by tolerance to water stress. Here, we analyzed a selection of nine ancient Chilean landraces in regard to their drought tolerance, simulating optimal (OW) and restricted watering (RW) in a Mediterranean environment. Phenological, growth, and yield traits were recorded, and correlation analysis was performed. Accordingly, leaf temperature and osmotic potential were higher under RW, while the leaf chlorophyll content decreased in all landraces. Physiological maturity days and seed-filling days were lower in RW than in OW. This similarly occurred with the grain yield. The % yield reduction was negatively correlated with the % pod reduction and the relative rate of leaf expansion (RLAE) reduction. However, the 100-seed weight value was not significantly modified by water treatment (p > 0.05). For instance, landraces that preferred to fill the grain with a lower rate of leaf expansion showed a lower loss in grain yield under drought conditions. These results suggest that the resource partitioning between growing leaves, flowers, and developing pods in Chilean landraces is variable, affecting the common bean drought tolerance.

摘要

农业用水的可获得性目前是一个全球性问题,在世界几个地区,随着气候变化,这一问题日益恶化。在谷物豆类中,普通菜豆(Phaseolus vulgaris)是全球种植最广泛的。智利普通菜豆种质的特点是耐水分胁迫。在此,我们分析了9个智利古代地方品种在模拟地中海环境下的最佳浇水(OW)和限制浇水(RW)条件下的耐旱性。记录了物候、生长和产量性状,并进行了相关性分析。结果显示,在RW条件下,叶片温度和渗透势较高,而所有地方品种的叶片叶绿素含量均下降。RW条件下的生理成熟天数和籽粒灌浆天数低于OW条件。籽粒产量也出现了类似情况。产量降低百分比与豆荚减少百分比和叶片相对扩展率(RLAE)降低呈负相关。然而,水处理对百粒重值没有显著影响(p>0.05)。例如,在干旱条件下,那些倾向于以较低叶片扩展率充实籽粒的地方品种,籽粒产量损失较低。这些结果表明,智利地方品种在生长叶片、花朵和发育豆荚之间的资源分配是可变的,这影响了普通菜豆的耐旱性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bfb/8948600/d4f18715222e/plants-11-00749-g001.jpg

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