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植物功能多样性通过性状趋同和趋异过程受到杂草管理的影响。

Plant functional diversity is affected by weed management through processes of trait convergence and divergence.

作者信息

Guerra Jose G, Cabello Félix, Fernández-Quintanilla César, Peña José M, Dorado José

机构信息

Instituto de Ciencias Agrarias (CSIC), Madrid, Spain.

Escuela Técnica Superior de Ingeniería Agronómica, Alimentaria y de Biosistemas (ETSIAAB), Universidad Politécnica de Madrid, Madrid, Spain.

出版信息

Front Plant Sci. 2022 Oct 7;13:993051. doi: 10.3389/fpls.2022.993051. eCollection 2022.

Abstract

Weed management involving tillage and/or herbicides has generally led to a decline of plant diversity in agroecosystems, with negative impacts on ecosystem services provision. The use of plant covers has become the predominant alternative in vineyard management, with numerous studies focusing on analyzing the advantages and disadvantages of plant covers compared to the aforementioned management. Although the impacts of weed management on taxonomic diversity have been widely studied, many gaps remain on their effects on plant functional diversity. As plant functional diversity is linked to the delivery of key ecosystem services in agroecosystems, understanding these effects could enable the development of more sustainable practices. From 2008 to 2018, a long-term trial was carried out in a Mediterranean vineyard to assess different agricultural practices. In this article, we examined how weed management, as well as irrigation use, could affect plant functional diversity. Based on 10 functional traits, such as plant height, specific leaf area or seed mass, we measured different indices of functional diversity and used null models to detect processes of trait convergence and divergence. Our results revealed that weed management and irrigation use had a significant effect on plant functional diversity. Mown plots showed the highest functional richness but were functionally convergent, since mowing was a strong functional filter on most of the traits. Tillage also behaved as a functional filter on some vegetative traits, but favored the divergence of certain reproductive traits. Herbicide-treated and irrigated plots showed the highest values of functional divergence by promoting more competitive species with more divergent trait values. The effect of weed management on these community assembly processes was shaped by the use of irrigation in vineyard rows, leading to functional divergence in those vegetative traits related to resource acquisition and seed mass. These results suggest that greater functional diversity may be associated with the bias caused by higher occurrence of competitive species (e.g. , ) with contrasting values for certain traits. Therefore, since these species are considered harmful to crops, higher plant functional diversity might not be a desirable indicator in agroecosystems.

摘要

涉及耕作和/或除草剂的杂草管理通常导致农业生态系统中植物多样性下降,对生态系统服务的提供产生负面影响。使用植物覆盖物已成为葡萄园管理中的主要替代方法,许多研究专注于分析与上述管理相比植物覆盖物的优缺点。尽管杂草管理对分类多样性的影响已得到广泛研究,但在其对植物功能多样性的影响方面仍存在许多空白。由于植物功能多样性与农业生态系统中关键生态系统服务的提供相关联,了解这些影响有助于制定更可持续的做法。2008年至2018年,在地中海葡萄园进行了一项长期试验,以评估不同的农业实践。在本文中,我们研究了杂草管理以及灌溉使用如何影响植物功能多样性。基于植物高度、比叶面积或种子质量等10个功能性状,我们测量了不同的功能多样性指数,并使用空模型来检测性状趋同和趋异过程。我们的结果表明,杂草管理和灌溉使用对植物功能多样性有显著影响。割草地块显示出最高的功能丰富度,但功能趋同,因为割草对大多数性状是一个强大的功能过滤器。耕作在一些营养性状上也起到了功能过滤器的作用,但有利于某些繁殖性状的趋异。除草剂处理和灌溉地块通过促进具有更多不同性状值的更具竞争力的物种,显示出最高的功能趋异值。杂草管理对这些群落组装过程的影响受到葡萄园行中灌溉使用的影响,导致与资源获取和种子质量相关的那些营养性状出现功能趋异。这些结果表明,更高的功能多样性可能与某些性状具有对比值的竞争物种(例如, )更高发生率所导致的偏差有关。因此,由于这些物种被认为对作物有害,更高的植物功能多样性可能不是农业生态系统中一个理想的指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3c2/9585284/54f697064db0/fpls-13-993051-g001.jpg

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