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首页> 外文期刊>Critical Reviews in Plant Sciences >Research advances in mechanisms of turfgrass tolerance to abiotic stresses: from physiology to molecular biology. (Special Issue: Stress biology of specialty crops.)
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Research advances in mechanisms of turfgrass tolerance to abiotic stresses: from physiology to molecular biology. (Special Issue: Stress biology of specialty crops.)

机译:草坪草对非生物胁迫耐受性机制的研究进展:从生理学到分子生物学。 (特刊:特种作物的胁迫生物学。)

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摘要

Turgrfass used on landscapes, parks, sports fields, and golf courses has significant ecological, environmental, and economic impacts. The economic value of seed production of turfgrasses is second to hybrid corn. The land area cultivated with turfgrass is increasing due to rapid urban development. Turfgrass is often subjected to various abiotic stresses, which cause declines in aesthetic quality, functionality and seed yield. Among abiotic stresses, drought, salinity, heat, and low temperature are the most common detrimental factors for turfgrass growth in various regions. Thorough understanding of mechanisms of turfgrass stress responses is vital for the development of superior stress-tolerant germplasm through breeding and biotechnology. Significant progress has been made in turfgrass stress physiology and molecular biology in recent decades, but research for turfgrasses generally lags behind that of the major Poaceae crops, particularly at the molecular and genomic levels. This review focuses on research advances in turfgrass stress physiology and provides an overview of limited information on gene discovery, genetic transformation, and molecular marker development for improving stress tolerance, with emphasis on drought, salinity, heat, and low temperature stress. Major growth and physiological traits associated with these stresses, as well as metabolic and molecular factors regulating various traits for turfgrass tolerance to each stress are discussed. Future research at the systems biology level and through genomic sequencing is paramount for further insights on fundamental mechanisms of turfgrass stress tolerance and for improving turfgrass tolerance to various environmental stresses.
机译:在景观,公园,运动场和高尔夫球场上使用的草ass粉对生态,环境和经济产生重大影响。草坪草种子生产的经济价值仅次于杂交玉米。由于城市的快速发展,使用草皮草种植的土地面积正在增加。草坪草经常遭受各种非生物胁迫,这会导致美学品质,功能和种子产量下降。在非生物胁迫中,干旱,盐分,高温和低温是草皮草在各个地区生长的最常见有害因素。透彻了解草皮胁迫反应的机制对于通过育种和生物技术发展优异的耐胁迫种质至关重要。近几十年来,草皮草的胁迫生理学和分子生物学取得了重大进展,但是草皮草的研究通常落后于禾本科主要农作物的研究,尤其是在分子和基因组水平上。这篇综述着重于草皮草胁迫生理学的研究进展,并概述了有关基因发现,遗传转化和分子标记开发以改善胁迫耐受性的有限信息,重点是干旱,盐分,高温和低温胁迫。讨论了与这些胁迫相关的主要生长和生理特征,以及调节草皮草对每种胁迫耐受性的各种特征的代谢和分子因子。进一步研究系统草坪水平和通过基因组测序对于进一步了解草皮草胁迫耐受性的基本机制以及提高草皮草对各种环境胁迫的耐受性至关重要。

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