Balancing the double‐edged sword effect of increased resistant starch content and its impact on rice texture: its genetics and molecular physiological mechanisms

Resistant starch (RS) is the portion of starch that escapes gastrointestinal digestion and acts as a substrate for fermentation of probiotic bacteria in the gut. Aside from enhancing gut health, RS contributes to a lower glycemic index. A genome‐wide association study coupled with targeted gene asso...

Descripción completa

Detalles Bibliográficos
Autores principales: Parween, Sabiha, Anonuevo, Joanne J., Butardo, Vito M., Misra, Gopal, Anacleto, Roslen, Llorente, Cindy, Kosik, Ondrej, Romero, Marissa V., Bandonill, Evelyn H., Mendioro, Merlyn S., Lovegrove, Alison, Fernie, Alisdair R., Brotman, Yariv, Sreenivasulu, Nese
Formato: Journal Article
Lenguaje:Inglés
Publicado: Wiley 2020
Materias:
Acceso en línea:https://hdl.handle.net/10568/164548
_version_ 1855533194992943104
author Parween, Sabiha
Anonuevo, Joanne J.
Butardo, Vito M.
Misra, Gopal
Anacleto, Roslen
Llorente, Cindy
Kosik, Ondrej
Romero, Marissa V.
Bandonill, Evelyn H.
Mendioro, Merlyn S.
Lovegrove, Alison
Fernie, Alisdair R.
Brotman, Yariv
Sreenivasulu, Nese
author_browse Anacleto, Roslen
Anonuevo, Joanne J.
Bandonill, Evelyn H.
Brotman, Yariv
Butardo, Vito M.
Fernie, Alisdair R.
Kosik, Ondrej
Llorente, Cindy
Lovegrove, Alison
Mendioro, Merlyn S.
Misra, Gopal
Parween, Sabiha
Romero, Marissa V.
Sreenivasulu, Nese
author_facet Parween, Sabiha
Anonuevo, Joanne J.
Butardo, Vito M.
Misra, Gopal
Anacleto, Roslen
Llorente, Cindy
Kosik, Ondrej
Romero, Marissa V.
Bandonill, Evelyn H.
Mendioro, Merlyn S.
Lovegrove, Alison
Fernie, Alisdair R.
Brotman, Yariv
Sreenivasulu, Nese
author_sort Parween, Sabiha
collection Repository of Agricultural Research Outputs (CGSpace)
description Resistant starch (RS) is the portion of starch that escapes gastrointestinal digestion and acts as a substrate for fermentation of probiotic bacteria in the gut. Aside from enhancing gut health, RS contributes to a lower glycemic index. A genome‐wide association study coupled with targeted gene association studies was conducted utilizing a diverse panel of 281 resequenced Indica rice lines comprising of ~2.2 million single nucleotide polymorphisms. Low‐to‐intermediate RS phenotypic variations were identified in the rice diversity panel, resulting in novel associations of RS to several genes associated with amylopectin biosynthesis and degradation. Selected rice lines encoding superior alleles of SSIIa with medium RS and inferior alleles with low RS groups were subjected to detailed transcriptomic, metabolomic, non‐starch dietary fibre (DF), starch structural and textural attributes. The gene regulatory networks highlighted the importance of a protein phosphatase alongside multiple genes of starch metabolism. Metabolomics analyses resulted in the identification of several metabolite hubs (carboxylic acid, sugars and polyamines) in the medium RS group. Among DF, mannose and galactose from the water‐insoluble fraction were found to be highly associated with low and medium RS lines, respectively. Starch structural analyses revealed that a moderate increase in RS is also linked to an elevation of amylose 1 and amylose 2 fractions. Although rice lines with medium RS content negatively affected textural and viscosity properties in comparison to low RS, the textural property of medium RS lines was in the same acceptable range as IR64, a rice mega variety popular in Asia.
format Journal Article
id CGSpace164548
institution CGIAR Consortium
language Inglés
publishDate 2020
publishDateRange 2020
publishDateSort 2020
publisher Wiley
publisherStr Wiley
record_format dspace
spelling CGSpace1645482025-12-08T09:54:28Z Balancing the double‐edged sword effect of increased resistant starch content and its impact on rice texture: its genetics and molecular physiological mechanisms Parween, Sabiha Anonuevo, Joanne J. Butardo, Vito M. Misra, Gopal Anacleto, Roslen Llorente, Cindy Kosik, Ondrej Romero, Marissa V. Bandonill, Evelyn H. Mendioro, Merlyn S. Lovegrove, Alison Fernie, Alisdair R. Brotman, Yariv Sreenivasulu, Nese agronomy crop science biotechnology plant science Resistant starch (RS) is the portion of starch that escapes gastrointestinal digestion and acts as a substrate for fermentation of probiotic bacteria in the gut. Aside from enhancing gut health, RS contributes to a lower glycemic index. A genome‐wide association study coupled with targeted gene association studies was conducted utilizing a diverse panel of 281 resequenced Indica rice lines comprising of ~2.2 million single nucleotide polymorphisms. Low‐to‐intermediate RS phenotypic variations were identified in the rice diversity panel, resulting in novel associations of RS to several genes associated with amylopectin biosynthesis and degradation. Selected rice lines encoding superior alleles of SSIIa with medium RS and inferior alleles with low RS groups were subjected to detailed transcriptomic, metabolomic, non‐starch dietary fibre (DF), starch structural and textural attributes. The gene regulatory networks highlighted the importance of a protein phosphatase alongside multiple genes of starch metabolism. Metabolomics analyses resulted in the identification of several metabolite hubs (carboxylic acid, sugars and polyamines) in the medium RS group. Among DF, mannose and galactose from the water‐insoluble fraction were found to be highly associated with low and medium RS lines, respectively. Starch structural analyses revealed that a moderate increase in RS is also linked to an elevation of amylose 1 and amylose 2 fractions. Although rice lines with medium RS content negatively affected textural and viscosity properties in comparison to low RS, the textural property of medium RS lines was in the same acceptable range as IR64, a rice mega variety popular in Asia. 2020-08 2024-12-19T12:54:01Z 2024-12-19T12:54:01Z Journal Article https://hdl.handle.net/10568/164548 en Open Access Wiley Parween, Sabiha; Anonuevo, Joanne J.; Butardo, Vito M.; Misra, Gopal; Anacleto, Roslen; Llorente, Cindy; Kosik, Ondrej; Romero, Marissa V.; Bandonill, Evelyn H.; Mendioro, Merlyn S.; Lovegrove, Alison; Fernie, Alisdair R.; Brotman, Yariv and Sreenivasulu, Nese. 2020. Balancing the double‐edged sword effect of increased resistant starch content and its impact on rice texture: its genetics and molecular physiological mechanisms. Plant Biotechnology Journal, Volume 18 no. 8 p. 1763-1777
spellingShingle agronomy
crop science
biotechnology
plant science
Parween, Sabiha
Anonuevo, Joanne J.
Butardo, Vito M.
Misra, Gopal
Anacleto, Roslen
Llorente, Cindy
Kosik, Ondrej
Romero, Marissa V.
Bandonill, Evelyn H.
Mendioro, Merlyn S.
Lovegrove, Alison
Fernie, Alisdair R.
Brotman, Yariv
Sreenivasulu, Nese
Balancing the double‐edged sword effect of increased resistant starch content and its impact on rice texture: its genetics and molecular physiological mechanisms
title Balancing the double‐edged sword effect of increased resistant starch content and its impact on rice texture: its genetics and molecular physiological mechanisms
title_full Balancing the double‐edged sword effect of increased resistant starch content and its impact on rice texture: its genetics and molecular physiological mechanisms
title_fullStr Balancing the double‐edged sword effect of increased resistant starch content and its impact on rice texture: its genetics and molecular physiological mechanisms
title_full_unstemmed Balancing the double‐edged sword effect of increased resistant starch content and its impact on rice texture: its genetics and molecular physiological mechanisms
title_short Balancing the double‐edged sword effect of increased resistant starch content and its impact on rice texture: its genetics and molecular physiological mechanisms
title_sort balancing the double edged sword effect of increased resistant starch content and its impact on rice texture its genetics and molecular physiological mechanisms
topic agronomy
crop science
biotechnology
plant science
url https://hdl.handle.net/10568/164548
work_keys_str_mv AT parweensabiha balancingthedoubleedgedswordeffectofincreasedresistantstarchcontentanditsimpactonricetextureitsgeneticsandmolecularphysiologicalmechanisms
AT anonuevojoannej balancingthedoubleedgedswordeffectofincreasedresistantstarchcontentanditsimpactonricetextureitsgeneticsandmolecularphysiologicalmechanisms
AT butardovitom balancingthedoubleedgedswordeffectofincreasedresistantstarchcontentanditsimpactonricetextureitsgeneticsandmolecularphysiologicalmechanisms
AT misragopal balancingthedoubleedgedswordeffectofincreasedresistantstarchcontentanditsimpactonricetextureitsgeneticsandmolecularphysiologicalmechanisms
AT anacletoroslen balancingthedoubleedgedswordeffectofincreasedresistantstarchcontentanditsimpactonricetextureitsgeneticsandmolecularphysiologicalmechanisms
AT llorentecindy balancingthedoubleedgedswordeffectofincreasedresistantstarchcontentanditsimpactonricetextureitsgeneticsandmolecularphysiologicalmechanisms
AT kosikondrej balancingthedoubleedgedswordeffectofincreasedresistantstarchcontentanditsimpactonricetextureitsgeneticsandmolecularphysiologicalmechanisms
AT romeromarissav balancingthedoubleedgedswordeffectofincreasedresistantstarchcontentanditsimpactonricetextureitsgeneticsandmolecularphysiologicalmechanisms
AT bandonillevelynh balancingthedoubleedgedswordeffectofincreasedresistantstarchcontentanditsimpactonricetextureitsgeneticsandmolecularphysiologicalmechanisms
AT mendioromerlyns balancingthedoubleedgedswordeffectofincreasedresistantstarchcontentanditsimpactonricetextureitsgeneticsandmolecularphysiologicalmechanisms
AT lovegrovealison balancingthedoubleedgedswordeffectofincreasedresistantstarchcontentanditsimpactonricetextureitsgeneticsandmolecularphysiologicalmechanisms
AT ferniealisdairr balancingthedoubleedgedswordeffectofincreasedresistantstarchcontentanditsimpactonricetextureitsgeneticsandmolecularphysiologicalmechanisms
AT brotmanyariv balancingthedoubleedgedswordeffectofincreasedresistantstarchcontentanditsimpactonricetextureitsgeneticsandmolecularphysiologicalmechanisms
AT sreenivasulunese balancingthedoubleedgedswordeffectofincreasedresistantstarchcontentanditsimpactonricetextureitsgeneticsandmolecularphysiologicalmechanisms