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基于高通量无人机的表型分析为揭示油菜田间耐涝响应的动态过程和遗传基础提供了新视角。

High-throughput unmanned aerial vehicle-based phenotyping provides insights into the dynamic process and genetic basis of rapeseed waterlogging response in the field.

机构信息

National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, China.

Hubei Hongshan Laboratory, Wuhan, China.

出版信息

J Exp Bot. 2022 Sep 3;73(15):5264-5278. doi: 10.1093/jxb/erac242.

DOI:10.1093/jxb/erac242
PMID:35641129
Abstract

Waterlogging severely affects the growth, development, and yield of crops. Accurate high-throughput phenotyping is important for exploring the dynamic crop waterlogging response in the field, and the genetic basis of waterlogging tolerance. In this study, a multi-model remote sensing phenotyping platform based on an unmanned aerial vehicle (UAV) was used to assess the genetic response of rapeseed (Brassica napus) to waterlogging, by measuring morphological traits and spectral indices over 2 years. The dynamic responses of the morphological and spectral traits indicated that the rapeseed waterlogging response was severe before the middle stage within 18 d after recovery, but it subsequently decreased partly. Genome-wide association studies identified 289 and 333 loci associated with waterlogging tolerance in 2 years. Next, 25 loci with at least nine associations with waterlogging-related traits were defined as highly reliable loci, and 13 loci were simultaneously identified by waterlogging tolerance coefficients of morphological traits, spectral indices, and common factors. Forty candidate genes were predicted in the regions of 13 overlapping loci. Our study provides insights into the understanding of the dynamic process and genetic basis of rapeseed waterlogging response in the field by a high-throughput UAV phenotyping platform. The highly reliable loci identified in this study are valuable for breeding waterlogging-tolerant rapeseed cultivars.

摘要

水涝严重影响作物的生长、发育和产量。准确的高通量表型分析对于研究田间作物水涝响应的动态和水涝耐性的遗传基础非常重要。本研究利用基于无人机的多模型遥感表型平台,通过 2 年时间测量形态特征和光谱指数,评估油菜(Brassica napus)对水涝的遗传响应。形态和光谱特征的动态响应表明,油菜水涝反应在恢复后 18 天内的中期之前较为严重,但随后部分减轻。全基因组关联研究在 2 年内分别鉴定出 289 个和 333 个与耐水涝相关的位点。接下来,将至少与 9 个性状与水涝相关的 25 个位点定义为高度可靠的位点,并通过形态特征、光谱指数和公共因子的耐水涝系数同时鉴定出 13 个位点。在 13 个重叠位点的区域中预测到 40 个候选基因。本研究通过高通量无人机表型平台,为理解田间油菜水涝响应的动态过程和遗传基础提供了新的思路。本研究中鉴定的高度可靠的位点对于培育耐水涝油菜品种具有重要价值。

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