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庞大的根系:它们对小麦适应干旱环境有用吗?

Large root systems: are they useful in adapting wheat to dry environments?

作者信息

Palta Jairo A, Chen Xing, Milroy Stephen P, Rebetzke Greg J, Dreccer M Fernanda, Watt Michelle

机构信息

CSIRO Plant Industry, Private Bag No. 5, Wembley, WA 6913, Australia.

CSIRO Plant Industry, PO Box 1600, Canberra, ACT 2601, Australia.

出版信息

Funct Plant Biol. 2011 Jun;38(5):347-354. doi: 10.1071/FP11031.

Abstract

There is little consensus on whether having a large root system is the best strategy in adapting wheat (Triticum aestivum L.) to water-limited environments. We explore the reasons for the lack of consensus and aim to answer the question of whether a large root system is useful in adapting wheat to dry environments. We used unpublished data from glasshouse and field experiments examining the relationship between root system size and their functional implication for water capture. Individual root traits for water uptake do not describe a root system as being large or small. However, the recent invigoration of the root system in wheat by indirect selection for increased leaf vigour has enlarged the root system through increases in root biomass and length and root length density. This large root system contributes to increasing the capture of water and nitrogen early in the season, and facilitates the capture of additional water for grain filling. The usefulness of a vigorous root system in increasing wheat yields under water-limited conditions maybe greater in environments where crops rely largely on seasonal rainfall, such as the Mediterranean-type environments. In environments where crops are reliant on stored soil water, a vigorous root system increases the risk of depleting soil water before completion of grain filling.

摘要

对于拥有庞大根系是否是小麦(Triticum aestivum L.)适应水分受限环境的最佳策略,目前几乎没有共识。我们探究了缺乏共识的原因,并旨在回答庞大根系是否有助于小麦适应干旱环境这一问题。我们使用了来自温室和田间试验的未发表数据,这些试验研究了根系大小与其对水分获取的功能影响之间的关系。用于水分吸收的单个根系性状并不能描述一个根系是大还是小。然而,最近通过间接选择提高叶片活力来增强小麦根系活力,已通过增加根生物量、根长度和根长密度使根系扩大。这个庞大的根系有助于在季节早期增加水分和氮的获取,并促进灌浆期额外水分的获取。在作物主要依赖季节性降雨的环境中,如地中海型环境,活力旺盛的根系在水分受限条件下提高小麦产量方面的作用可能更大。在作物依赖土壤储存水分的环境中,活力旺盛的根系会增加在灌浆完成前耗尽土壤水分的风险。

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