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品种差异及植株间竞争对氮素和生物量积累时间模式的影响

Cultivar Differences and Impact of Plant-Plant Competition on Temporal Patterns of Nitrogen and Biomass Accumulation.

作者信息

Schofield Emily Jane, Rowntree Jennifer K, Paterson Eric, Brewer Mark J, Price Elizabeth A C, Brearley Francis Q, Brooker Rob W

机构信息

The James Hutton Institute, Aberdeen, United Kingdom.

School of Science and the Environment, Manchester Metropolitan University, Manchester, United Kingdom.

出版信息

Front Plant Sci. 2019 Feb 25;10:215. doi: 10.3389/fpls.2019.00215. eCollection 2019.

Abstract

Current niche models cannot explain multi-species plant coexistence in complex ecosystems. One overlooked explanatory factor is within-growing season temporal dynamism of resource capture by plants. However, the timing and rate of resource capture are themselves likely to be mediated by plant-plant competition. This study used Barley ( sp.) as a model species to examine the impacts of intra-specific competition, specifically inter- and intra-cultivar competition on the temporal dynamics of resource capture. Nitrogen and biomass accumulation of an early and late cultivar grown in isolation, inter- or intra- cultivar competition were investigated using sequential harvests. We did not find changes in the temporal dynamics of biomass accumulation in response to competition. However, peak nitrogen accumulation rate was significantly delayed for the late cultivar by 14.5 days and advanced in the early cultivar by 0.5 days when in intra-cultivar competition; there were no significant changes when in inter-cultivar competition. This may suggest a form of kin recognition as the target plants appeared to identify their neighbors and only responded temporally to intra-cultivar competition. The Relative Intensity Index found competition occurred in both the intra- and inter- cultivar mixtures, but a positive Land Equivalence Ratio value indicated complementarity in the inter-cultivar mixtures compared to intra-cultivar mixtures. The reason for this is unclear but may be due to the timing of the final harvest and may not be representative of the relationship between the competing plants. This study demonstrates neighbor-identity-specific changes in temporal dynamism in nutrient uptake. This contributes to our fundamental understanding of plant nutrient dynamics and plant-plant competition whilst having relevance to sustainable agriculture. Improved understanding of within-growing season temporal dynamism would also improve our understanding of coexistence in complex plant communities.

摘要

当前的生态位模型无法解释复杂生态系统中多物种植物的共存现象。一个被忽视的解释因素是植物在生长季节内资源获取的时间动态变化。然而,资源获取的时间和速率本身可能受到植物间竞争的调节。本研究以大麦(品种)为模式物种,研究种内竞争,特别是品种间和品种内竞争对资源获取时间动态的影响。通过连续收获,研究了单独种植、品种间或品种内竞争条件下早、晚熟品种的氮素和生物量积累情况。我们没有发现生物量积累的时间动态因竞争而发生变化。然而,在品种内竞争时,晚熟品种的氮素积累峰值显著延迟了14.5天,早熟品种提前了0.5天;在品种间竞争时则没有显著变化。这可能表明存在一种亲缘识别形式,因为目标植物似乎能够识别其邻居,并且仅对品种内竞争做出时间上的响应。相对强度指数表明品种内和品种间混合种植中均发生了竞争,但正的土地当量比值表明品种间混合种植与品种内混合种植相比具有互补性。其原因尚不清楚,但可能与最终收获的时间有关,可能并不代表竞争植物之间的关系。本研究证明了养分吸收时间动态中因邻居身份而异的变化。这有助于我们从根本上理解植物养分动态和植物间竞争,同时与可持续农业相关。更好地理解生长季节内的时间动态也将增进我们对复杂植物群落中共存现象的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/810c/6397874/62467ff85c23/fpls-10-00215-g001.jpg

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本文引用的文献

1
Evolution of facilitation requires diverse communities.
Nat Ecol Evol. 2018 Sep;2(9):1381-1385. doi: 10.1038/s41559-018-0623-2. Epub 2018 Jul 30.
2
Temporal Dynamism of Resource Capture: A Missing Factor in Ecology?
Trends Ecol Evol. 2018 Apr;33(4):277-286. doi: 10.1016/j.tree.2018.01.009. Epub 2018 Feb 9.
3
Intraspecific genetic diversity modulates plant-soil feedback and nutrient cycling.
New Phytol. 2017 Oct;216(1):90-98. doi: 10.1111/nph.14653. Epub 2017 Jun 13.
4
The interconnected rhizosphere: High network complexity dominates rhizosphere assemblages.
Ecol Lett. 2016 Aug;19(8):926-36. doi: 10.1111/ele.12630. Epub 2016 Jun 6.
5
The link between flowering time and stress tolerance.
J Exp Bot. 2016 Jan;67(1):47-60. doi: 10.1093/jxb/erv441. Epub 2015 Oct 1.
6
Shedding light on kin recognition response in plants.
New Phytol. 2015 Jan;205(1):4-6. doi: 10.1111/nph.13155.
7
Physiological mechanisms in plant growth models: do we need a supra-cellular systems biology approach?
Plant Cell Environ. 2013 Sep;36(9):1673-90. doi: 10.1111/pce.12123. Epub 2013 Jun 10.
8
Increased copy number at the HvFT1 locus is associated with accelerated flowering time in barley.
Mol Genet Genomics. 2013 Jun;288(5-6):261-75. doi: 10.1007/s00438-013-0746-8. Epub 2013 Apr 17.
9
Grain protein content variation and its association analysis in barley.
BMC Plant Biol. 2013 Mar 3;13:35. doi: 10.1186/1471-2229-13-35.
10
Dynamic trajectories of growth and nitrogen capture by competing plants.
New Phytol. 2012 Mar;193(4):948-958. doi: 10.1111/j.1469-8137.2011.04020.x. Epub 2012 Jan 11.

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