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高纬度光照条件下春小麦早期活力和养分积累基因型变异的地上部与根系性状

Shoot and Root Traits Underlying Genotypic Variation in Early Vigor and Nutrient Accumulation in Spring Wheat Grown in High-Latitude Light Conditions.

作者信息

Liu Hui, Fiorani Fabio, Jäck Ortrud, Colombi Tino, Nagel Kerstin A, Weih Martin

机构信息

Department of Crop Production Ecology, Swedish University of Agricultural Sciences, 75007 Uppsala, Sweden.

Institute for Bio and Geosciences-2, Plant Sciences, Forschungszentrum Jülich GmbH, 52425 Jülich, Germany.

出版信息

Plants (Basel). 2021 Jan 18;10(1):174. doi: 10.3390/plants10010174.

Abstract

Plants with improved nutrient use efficiency are needed to maintain and enhance future crop plant production. The aim of this study was to explore candidate traits for pre-breeding to improve nutrient accumulation and early vigor of spring wheat grown at high latitudes. We quantified shoot and root traits together with nutrient accumulation in nine contrasting spring wheat genotypes grown in rhizoboxes for 20 days in a greenhouse. Whole-plant relative growth rate was here correlated with leaf area productivity and plant nitrogen productivity, but not leaf area ratio. Furthermore, the total leaf area was correlated with the accumulation of six macronutrients, and could be suggested as a candidate trait for the pre-breeding towards improved nutrient accumulation and early vigor in wheat to be grown in high-latitude environments. Depending on the nutrient of interest, different root system traits were identified as relevant for their accumulation. Accumulation of nitrogen, potassium, sulfur and calcium was correlated with lateral root length, whilst accumulation of phosphorus and magnesium was correlated with main root length. Therefore, special attention needs to be paid to specific root system traits in the breeding of wheat towards improved nutrient accumulation to counteract the suboptimal uptake of some nutrient elements.

摘要

需要具有提高养分利用效率的植物来维持和提高未来的作物产量。本研究的目的是探索预育种的候选性状,以提高高纬度地区种植的春小麦的养分积累和早期活力。我们对9种不同的春小麦基因型在温室中的根箱中生长20天的地上部和根系性状以及养分积累进行了量化。整株相对生长速率与叶面积生产率和植物氮生产率相关,但与叶面积比无关。此外,总叶面积与六种大量营养素的积累相关,可作为在高纬度环境中种植的小麦提高养分积累和早期活力的预育种候选性状。根据所关注的养分,确定了不同的根系性状与其积累相关。氮、钾、硫和钙的积累与侧根长度相关,而磷和镁的积累与主根长度相关。因此,在小麦育种中,为了提高养分积累以抵消某些养分元素的吸收不足,需要特别关注特定的根系性状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f86/7831908/17efdb8cbd0f/plants-10-00174-g001.jpg

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