Cargando…

Genotype‐aggregated planting improves yield in Jerusalem artichoke (Helianthus tuberosus) due to self/non‐self‐discrimination

Accumulating evidence indicates that plants are capable of self/non‐self and kin/stranger discrimination. Plants increase biomass of and resource allocation to roots when they encounter roots of conspecific non‐self‐neighbors, but not when they encounter self roots. Root proliferation usually occurs...

Descripción completa

Detalles Bibliográficos
Autores principales: Fukano, Yuya, Guo, Wei, Noshita, Koji, Hashida, Shoko, Kamikawa, Shotaka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6383731/
https://www.ncbi.nlm.nih.gov/pubmed/30828371
http://dx.doi.org/10.1111/eva.12735
_version_ 1783396886302949376
author Fukano, Yuya
Guo, Wei
Noshita, Koji
Hashida, Shoko
Kamikawa, Shotaka
author_facet Fukano, Yuya
Guo, Wei
Noshita, Koji
Hashida, Shoko
Kamikawa, Shotaka
author_sort Fukano, Yuya
collection PubMed
description Accumulating evidence indicates that plants are capable of self/non‐self and kin/stranger discrimination. Plants increase biomass of and resource allocation to roots when they encounter roots of conspecific non‐self‐neighbors, but not when they encounter self roots. Root proliferation usually occurs at the expense of reproductive investment. Therefore, if clonal crops are capable of self/non‐self‐discrimination, spatially aggregated planting with seedlings of the same genotype may decrease root proliferation and produce a higher yield than planting without considering seedling genotype. To test this idea, we grew Helianthus tuberosus (Jerusalem artichoke) in pot and field conditions and examined self/non‐self‐discrimination and the effectiveness of genotype‐aggregated planting. Plants grown in self pairs allocated less to root biomass than plants grown in non‐self pairs in both pot and field conditions; in field conditions, the self pairs produced 40% more tubers by weight than the non‐self pairs. When six sprouts from seed tuber of two different genotypes were grown together, with the two genotypes planted aggregately (AGG) or alternately (ALT), plants in the AGG group produced 14% more tubers than plants in the ALT group. These results suggest that spatial aggregation of genotypes increases tuber production in H. tuberosus. Because we found no evidence for trade‐offs between root biomass and tuber production, suppression of root proliferation may not be the only mechanism behind the benefits of genotype aggregation. By applying the concept of self/non‐self‐discrimination, farmers can increase crop production without additional external inputs or expansion of agricultural land use.
format Online
Article
Text
id pubmed-6383731
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-63837312019-03-01 Genotype‐aggregated planting improves yield in Jerusalem artichoke (Helianthus tuberosus) due to self/non‐self‐discrimination Fukano, Yuya Guo, Wei Noshita, Koji Hashida, Shoko Kamikawa, Shotaka Evol Appl Original Articles Accumulating evidence indicates that plants are capable of self/non‐self and kin/stranger discrimination. Plants increase biomass of and resource allocation to roots when they encounter roots of conspecific non‐self‐neighbors, but not when they encounter self roots. Root proliferation usually occurs at the expense of reproductive investment. Therefore, if clonal crops are capable of self/non‐self‐discrimination, spatially aggregated planting with seedlings of the same genotype may decrease root proliferation and produce a higher yield than planting without considering seedling genotype. To test this idea, we grew Helianthus tuberosus (Jerusalem artichoke) in pot and field conditions and examined self/non‐self‐discrimination and the effectiveness of genotype‐aggregated planting. Plants grown in self pairs allocated less to root biomass than plants grown in non‐self pairs in both pot and field conditions; in field conditions, the self pairs produced 40% more tubers by weight than the non‐self pairs. When six sprouts from seed tuber of two different genotypes were grown together, with the two genotypes planted aggregately (AGG) or alternately (ALT), plants in the AGG group produced 14% more tubers than plants in the ALT group. These results suggest that spatial aggregation of genotypes increases tuber production in H. tuberosus. Because we found no evidence for trade‐offs between root biomass and tuber production, suppression of root proliferation may not be the only mechanism behind the benefits of genotype aggregation. By applying the concept of self/non‐self‐discrimination, farmers can increase crop production without additional external inputs or expansion of agricultural land use. John Wiley and Sons Inc. 2018-11-29 /pmc/articles/PMC6383731/ /pubmed/30828371 http://dx.doi.org/10.1111/eva.12735 Text en © 2018 The Authors. Evolutionary Applications published by John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Fukano, Yuya
Guo, Wei
Noshita, Koji
Hashida, Shoko
Kamikawa, Shotaka
Genotype‐aggregated planting improves yield in Jerusalem artichoke (Helianthus tuberosus) due to self/non‐self‐discrimination
title Genotype‐aggregated planting improves yield in Jerusalem artichoke (Helianthus tuberosus) due to self/non‐self‐discrimination
title_full Genotype‐aggregated planting improves yield in Jerusalem artichoke (Helianthus tuberosus) due to self/non‐self‐discrimination
title_fullStr Genotype‐aggregated planting improves yield in Jerusalem artichoke (Helianthus tuberosus) due to self/non‐self‐discrimination
title_full_unstemmed Genotype‐aggregated planting improves yield in Jerusalem artichoke (Helianthus tuberosus) due to self/non‐self‐discrimination
title_short Genotype‐aggregated planting improves yield in Jerusalem artichoke (Helianthus tuberosus) due to self/non‐self‐discrimination
title_sort genotype‐aggregated planting improves yield in jerusalem artichoke (helianthus tuberosus) due to self/non‐self‐discrimination
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6383731/
https://www.ncbi.nlm.nih.gov/pubmed/30828371
http://dx.doi.org/10.1111/eva.12735
work_keys_str_mv AT fukanoyuya genotypeaggregatedplantingimprovesyieldinjerusalemartichokehelianthustuberosusduetoselfnonselfdiscrimination
AT guowei genotypeaggregatedplantingimprovesyieldinjerusalemartichokehelianthustuberosusduetoselfnonselfdiscrimination
AT noshitakoji genotypeaggregatedplantingimprovesyieldinjerusalemartichokehelianthustuberosusduetoselfnonselfdiscrimination
AT hashidashoko genotypeaggregatedplantingimprovesyieldinjerusalemartichokehelianthustuberosusduetoselfnonselfdiscrimination
AT kamikawashotaka genotypeaggregatedplantingimprovesyieldinjerusalemartichokehelianthustuberosusduetoselfnonselfdiscrimination