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一年生草本植物在生物环境中的表型适应分歧。

Adaptive phenotypic divergence in an annual grass differs across biotic contexts.

机构信息

Center for Population Biology, University of California, Davis, California, 95616.

Department of Plant Sciences, University of California, Davis, California, 95616.

出版信息

Evolution. 2019 Nov;73(11):2230-2246. doi: 10.1111/evo.13818. Epub 2019 Aug 26.

DOI:10.1111/evo.13818
PMID:31389004
Abstract

Climate is a powerful force shaping adaptation within species, yet adaptation to climate occurs against a biotic background: species interactions can filter fitness consequences of genetic variation by altering phenotypic expression of genotypes. We investigated this process using populations of teosinte, a wild annual grass related to maize (Zea mays ssp. mexicana), sampling plants from 10 sites along an elevational gradient as well as rhizosphere biota from three of those sites. We grew half-sibling teosinte families in each biota to test whether trait divergence among teosinte populations reflects adaptation or drift, and whether rhizosphere biota affect expression of diverged traits. We further assayed the influence of rhizosphere biota on contemporary additive genetic variation. We found that adaptation across environment shaped divergence of some traits, particularly flowering time and root biomass. We also observed that different rhizosphere biota shifted expressed values of these traits within teosinte populations and families and altered within-population genetic variance and covariance. In sum, our results imply that changes in trait expression and covariance elicited by rhizosphere communities could have played a historical role in teosinte adaptation to environments and that they are likely to play a role in the response to future selection.

摘要

气候是塑造物种内部适应的强大力量,但适应气候是在生物背景下发生的:物种相互作用可以通过改变基因型的表型表达来过滤遗传变异的适应后果。我们使用玉米(Zea mays ssp. mexicana)相关的野生一年生草蜀黍属的种群进行了这项研究,从海拔梯度的 10 个地点采集植物样本,并从其中 3 个地点采集根际生物区系样本。我们在每个生物区系中种植半同胞蜀黍属家系,以测试蜀黍属种群之间的性状分歧是否反映了适应或漂变,以及根际生物区系是否影响分化性状的表达。我们进一步检测了根际生物区系对当代加性遗传变异的影响。我们发现,跨环境的适应塑造了一些性状的分歧,特别是开花时间和根生物量。我们还观察到,不同的根际生物区系在蜀黍属种群和家系内改变了这些性状的表达值,并改变了种群内的遗传方差和协方差。总之,我们的结果表明,根际群落引起的性状表达和协方差的变化可能在蜀黍属对环境的适应中发挥了历史作用,并且它们很可能在对未来选择的反应中发挥作用。

相似文献

1
Adaptive phenotypic divergence in an annual grass differs across biotic contexts.一年生草本植物在生物环境中的表型适应分歧。
Evolution. 2019 Nov;73(11):2230-2246. doi: 10.1111/evo.13818. Epub 2019 Aug 26.
2
Teosinte populations exhibit weak local adaptation to their rhizosphere biota despite strong effects of biota source on teosinte fitness and traits.尽管生物群来源对大刍草的适应性和性状有强烈影响,但大刍草种群对其根际生物群的局部适应性较弱。
Evolution. 2024 Dec 2;78(12):1991-2005. doi: 10.1093/evolut/qpae130.
3
Digest: Biotic interactions shape local adaptation in teosinte populations.文摘:生物相互作用塑造了类蜀黍种群的局部适应。
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The genetic architecture of teosinte catalyzed and constrained maize domestication.玉米驯化过程中受玉米自身基因结构影响和约束。
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Stepwise cis-Regulatory Changes in ZCN8 Contribute to Maize Flowering-Time Adaptation.逐步的顺式调控变化导致 ZCN8 促进玉米开花时间的适应。
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Selective sorting of ancestral introgression in maize and teosinte along an elevational cline.沿海拔梯度对玉米和大刍草的祖先渐渗进行选择性分选。
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A conserved genetic architecture among populations of the maize progenitor, teosinte, was radically altered by domestication.玉米的祖先生长于特萨尔特克玉米草丛,在不同种群中存在着保守的遗传结构,但经过驯化后发生了根本性的改变。
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Ecogeography of teosinte.类蜀黍的生态地理学
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The genetic architecture of maize flowering time.玉米开花时间的遗传结构。
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An adaptive teosinte introgression modulates phosphatidylcholine levels and is associated with maize flowering time.一种适应性的墨西哥类蜀黍渐渗调节了磷脂酰胆碱水平,并与玉米开花时间有关。
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引用本文的文献

1
The population genetics of convergent adaptation in maize and teosinte is not locally restricted.玉米和大刍草趋同适应的群体遗传学并非局限于局部。
Elife. 2025 Feb 13;12:RP92405. doi: 10.7554/eLife.92405.
2
Herbivory and water availability interact to shape the adaptive landscape in the perennial forb, Boechera stricta.食草作用和水分可利用性相互作用,塑造了多年生草本植物窄叶博伊氏草的适应景观。
Evolution. 2025 Apr 2;79(4):557-573. doi: 10.1093/evolut/qpae186.
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Presence of microbiome decreases fitness and modifies phenotype in the aquatic plant .
微生物群落的存在会降低水生植物的适应性并改变其表型。
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Quantitative genetic-by-soil microbiome interactions in a perennial grass affect functional traits.定量遗传-土壤微生物组互作对多年生草本植物功能性状的影响。
Proc Biol Sci. 2023 Jan 25;290(1991):20221350. doi: 10.1098/rspb.2022.1350. Epub 2023 Jan 18.
5
A conserved genetic architecture among populations of the maize progenitor, teosinte, was radically altered by domestication.玉米的祖先生长于特萨尔特克玉米草丛,在不同种群中存在着保守的遗传结构,但经过驯化后发生了根本性的改变。
Proc Natl Acad Sci U S A. 2021 Oct 26;118(43). doi: 10.1073/pnas.2112970118.
6
Selective sorting of ancestral introgression in maize and teosinte along an elevational cline.沿海拔梯度对玉米和大刍草的祖先渐渗进行选择性分选。
PLoS Genet. 2021 Oct 11;17(10):e1009810. doi: 10.1371/journal.pgen.1009810. eCollection 2021 Oct.
7
Whose trait is it anyways? Coevolution of joint phenotypes and genetic architecture in mutualisms.无论如何,这是谁的特征?互惠共生中联合表型和遗传结构的共同进化。
Proc Biol Sci. 2021 Jan 13;288(1942):20202483. doi: 10.1098/rspb.2020.2483.
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The genetic architecture of host response reveals the importance of arbuscular mycorrhizae to maize cultivation.宿主反应的遗传结构揭示了丛枝菌根对玉米种植的重要性。
Elife. 2020 Nov 19;9:e61701. doi: 10.7554/eLife.61701.