Literature DB >> 26373977

Bud-bank and tiller dynamics of co-occurring C3 caespitose grasses in mixed-grass prairie.

Jacqueline P Ott1, David C Hartnett2.   

Abstract

PREMISE OF THE STUDY: Tiller recruitment from the belowground bud bank of caespitose grasses influences their ability to monopolize local resources and, hence, their genet fitness. Differences in bud production and outgrowth among tiller types within a genet and among species may explain co-occurrence of caespitose grasses. This study aimed to characterize genet bud-bank and tiller production and dynamics in two co-occurring species and compare their vegetative reproductive strategies.
METHODS: Bud-bank and tiller dynamics of Hesperostipa comata and Nassella viridula, dominant C3 caespitose grasses in the northern mixed-grass prairie of North America, were assessed throughout an annual cycle. KEY
RESULTS: The two species showed similar strategies, maintaining polycyclic tillers and thus creating mixed-age genet bud banks comprising multiple bud cohorts produced in different years. Vegetative tillers produced the majority of buds, whereas flowering tillers contributed little to the bud bank. Buds lived for at least 2 yr and were maintained in multiple developmental stages throughout the year. Because bud longevity rarely exceeded tiller longevity, tiller longevity drove turnover within the bud bank. Tiller population dynamics, more than bud production per tiller, determined the differential contribution of tiller types to the bud bank. Nassella viridula had higher bud production per tiller, a consistent annual tiller recruitment density, and greater longevity of buds on senesced and flowering tillers than H. comata.
CONCLUSIONS: Co-occurring C3 caespitose grasses had similar bud-bank and tiller dynamics contributing to genet persistence but differed in bud characteristics that could affect genet longevity and species coexistence.
© 2015 Botanical Society of America.

Entities:  

Keywords:  Hesperostipa comata; Nassella viridula; bud bank; caespitose; genet longevity; grasses; mixed-grass prairie; polycyclicity; tiller dynamics; vegetative reproduction

Mesh:

Year:  2015        PMID: 26373977     DOI: 10.3732/ajb.1500039

Source DB:  PubMed          Journal:  Am J Bot        ISSN: 0002-9122            Impact factor:   3.844


  5 in total

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4.  Experimental evidence that the perennial grass persistence pathway is linked to plant growth strategy.

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Journal:  PLoS One       Date:  2018-11-26       Impact factor: 3.240

5.  Climate variability supersedes grazing to determine the anatomy and physiology of a dominant grassland species.

Authors:  Seton Bachle; Jesse B Nippert
Journal:  Oecologia       Date:  2022-01-12       Impact factor: 3.225

  5 in total

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