根系结构的组成基础:发现培育营养和抗旱作物的前景光明的性状

IF 4.6 4区 农林科学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Zhigang Liu, Tongfei Qin, Michaella Atienza, Yang Zhao, Hanh Nguyen, Huajin Sheng, Toluwase Olukayode, Hao Song, Karim Panjvani, Jurandir Magalhaes, William J. Lucas, Leon V. Kochian
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引用次数: 0

摘要

根系结构(RSA)在有效吸收磷(P)、氮(N)和水等必需养分方面起着关键作用。在养分分布不均的土壤中,根系的可塑性可以优化养分吸收和植物生长。在此,我们提出证据表明,在充足和限制性生长条件下生长的高粱都能获得组成型 RSA 的益处。我们利用钾效率高的 SC103 和钾效率低的 BTx635 两种高粱栽培品种进行了研究,发现它们的根系性状存在显著差异,其中 SC103 在养分充足和养分不足的条件下都能形成较大的根系,具有更多更长的侧根,并能提高枝条生物量。除这一构成特性外,在缺钾时,两个栽培品种的侧根发育最初都有所增加;但 SC103 仍保持了较大的根生物量。虽然缺氮和干旱胁迫抑制了高粱根和芽的生长,但 SC103 仍保持了较好的表现。这些研究结果表明,SC103 作为一种高效钾高粱栽培品种,在缺氮和干旱胁迫下也表现出更强的生长性能。我们的研究结果证明,RSA 的这种组成型特性可为培育营养和抗旱作物提供一条途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Constitutive basis of root system architecture: uncovering a promising trait for breeding nutrient- and drought-resilient crops

Root system architecture (RSA) plays a pivotal role in efficient uptake of essential nutrients, such as phosphorous (P), nitrogen (N), and water. In soils with heterogeneous nutrient distribution, root plasticity can optimize acquisition and plant growth. Here, we present evidence that a constitutive RSA can confer benefits for sorghum grown under both sufficient and limiting growth conditions. Our studies, using P efficient SC103 and inefficient BTx635 sorghum cultivars, identified significant differences in root traits, with SC103 developing a larger root system with more and longer lateral roots, and enhanced shoot biomass, under both nutrient sufficient and deficient conditions. In addition to this constitutive attribute, under P deficiency, both cultivars exhibited an initial increase in lateral root development; however, SC103 still maintained the larger root biomass. Although N deficiency and drought stress inhibited both root and shoot growth, for both sorghum cultivars, SC103 again maintained the better performance. These findings reveal that SC103, a P efficient sorghum cultivar, also exhibited enhanced growth performance under N deficiency and drought. Our results provide evidence that this constitutive nature of RSA can provide an avenue for breeding nutrient- and drought-resilient crops.

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CiteScore
7.70
自引率
2.80%
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