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小麦中的杂草竞争能力:对其功能意义、现状及未来前景的深入探究

Weed competitive ability in wheat: a peek through in its functional significance, present status and future prospects.

作者信息

Kaur Parampreet, Sachan Shephali, Sharma Achla

机构信息

School of Organic Farming, Punjab Agricultural University, Ludhiana, Punjab India.

Department of Plant Breeding and Genetics, Punjab Agricultural University, Ludhiana, Punjab India.

出版信息

Physiol Mol Biol Plants. 2021 Oct;27(10):2165-2179. doi: 10.1007/s12298-021-01079-y. Epub 2021 Oct 4.

Abstract

Weed competitive ability of a crop is one of the most widely explored aspects in the current scenario of aftermaths of synthetic herbicides such as herbicide resistant weeds emergence, residue accumulation in trophic levels; increased demands of organic produce, global climatic shifts, and other environmental issues. Further weed infestations are known to cause much more economic losses relative to crop attacks by pests. To understand the basic characteristics and underlying processes governing the competitive ability of a crop is therefore prudent, particularly in staples such as wheat. We discuss here an overview of the existing attributes of wheat-weed environment, the significance of crop competitiveness and various associated above-ground and below-ground traits (pertaining to early seed vigor and early seedling germination) discerned through biological, classical genetics and high throughput omics toolbox to provide numerous resources in terms of genome and transcriptome sequences, potential QTLs, genetic variation, molecular markers, association mapping studies, and others. Competitiveness is a cumulative response manifested as morphological, physiological, biochemical or allelochemical response ultimately driven through genetic architecture of a crop and its interaction with environment. Development of wheat competitive cultivar thus requires interdisciplinary approaches and germplasm screening to identify potential donors for competitiveness is an attractive and feasible alternative. For which utilization of landraces and other wild species, already proven to house sufficient genetic heterogeneity, thus poses a competitive advantage. Further, the availability of novel breeding techniques such as rapid generation advance could speed up the development of competitive wheat ideotype.

摘要

在当前诸如抗除草剂杂草出现、营养级中残留积累、有机农产品需求增加、全球气候变化及其他环境问题等合成除草剂后遗症的背景下,作物的杂草竞争能力是研究最为广泛的方面之一。此外,相对于害虫对作物的侵害,杂草侵扰已知会造成更多的经济损失。因此,了解控制作物竞争能力的基本特征和潜在过程是明智的,尤其是对于小麦等主粮作物。在此,我们讨论小麦 - 杂草环境的现有属性概述、作物竞争力的重要性以及通过生物学、经典遗传学和高通量组学工具箱识别出的各种相关地上和地下性状(与早期种子活力和早期幼苗萌发有关),以提供基因组和转录组序列、潜在数量性状位点(QTL)、遗传变异、分子标记、关联图谱研究等方面的大量资源。竞争力是一种累积反应,表现为形态、生理、生化或化感反应,最终由作物的遗传结构及其与环境的相互作用驱动。因此,培育具有竞争力的小麦品种需要跨学科方法,筛选种质以识别竞争力的潜在供体是一种有吸引力且可行的选择。为此,利用已被证明具有足够遗传异质性的地方品种和其他野生种具有竞争优势。此外,诸如快速世代推进等新型育种技术的可用性可以加速具有竞争力的小麦理想型的培育。

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Bread wheat: a role model for plant domestication and breeding.面包小麦:植物驯化和育种的典范。
Hereditas. 2019 May 29;156:16. doi: 10.1186/s41065-019-0093-9. eCollection 2019.

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