Photosynthetic and Physiological Responses to Combined Drought and Low–Temperature Stress in <i>Poa annua</i> Seedlings from Different Provenances

Combined drought and low–temperature stress is a crucial factor affecting turfgrass establishment and limiting the sustainability of the turfgrass industry in drought– and cold–prone regions. In this context, we evaluated the effects of regular watering (the soil water content was 80% of the maximum...

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Main Authors: Juanxia Li, Xiaoming Bai, Fu Ran, Ping Li, Mahran Sadiq, Hui Chen
Format: Article
Language:English
Published: MDPI AG 2023-09-01
Series:Agriculture
Subjects:
Online Access:https://www.mdpi.com/2077-0472/13/9/1781
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author Juanxia Li
Xiaoming Bai
Fu Ran
Ping Li
Mahran Sadiq
Hui Chen
author_facet Juanxia Li
Xiaoming Bai
Fu Ran
Ping Li
Mahran Sadiq
Hui Chen
author_sort Juanxia Li
collection DOAJ
description Combined drought and low–temperature stress is a crucial factor affecting turfgrass establishment and limiting the sustainability of the turfgrass industry in drought– and cold–prone regions. In this context, we evaluated the effects of regular watering (the soil water content was 80% of the maximum water–holding capacity of the field) at room temperature (25 °C) and combined drought (the soil water content was 30% of the maximum water–holding capacity of the field) and low–temperature (0 °C) stress on the morphology, photosynthesis, and physiology of wild <i>Poa annua</i> seedlings from different provenances (‘PA’, ‘WY’, ‘NX’ and ‘YC’). Results indicated that the combined drought and low–temperature stress changed the morphological and growth indicators of seedlings in four provenances to different extents. Moreover, combined drought and low–temperature stress reduced the net photosynthetic rate (Pn), stomatal conductance (Gs), transpiration rate (Tr), water use efficiency (WUE), and chlorophyll content in seedlings from four provenances. However, intertemporal CO<sub>2</sub> concentration (Ci), relative electrical conductivity (REC), the contents of malondialdehyde (MDA), proline (Pro), soluble sugars (SS), the superoxide anion (O<sub>2</sub><sup>•−</sup>) production rate, the contents of hydrogen peroxide (H<sub>2</sub>O<sub>2</sub>) and hydroxyl radical (·OH), the activities of superoxide dismutase (SOD), peroxidase (POD), catalase (CAT), and ascorbate peroxidase (APX) were all increased. The increase in ‘PA’ was much greater than that in ‘NX.’ The comprehensive evaluation results showed that the order of combined drought and low–temperature resistance of seedlings from the four provenances was ‘PA’ > ‘YC’ > ‘WY’ > ‘NX’, which corresponded to the order of the morphological damage symptoms. In conclusion, ‘PA’ may maintain stronger combined drought and low–temperature resistance by improving the cellular water absorption and retention capacity, enhancing the function of the antioxidant defense system, and maintaining the integrity of the cell membrane, which is a crucial germplasm resource for breeding combined drought and low–temperature resistance in <i>Poa annua</i>.
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spelling doaj.art-a3febff81b864623b4016337f3cc809f2023-11-19T09:07:13ZengMDPI AGAgriculture2077-04722023-09-01139178110.3390/agriculture13091781Photosynthetic and Physiological Responses to Combined Drought and Low–Temperature Stress in <i>Poa annua</i> Seedlings from Different ProvenancesJuanxia Li0Xiaoming Bai1Fu Ran2Ping Li3Mahran Sadiq4Hui Chen5College of Grassland Science, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Grassland Science, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Grassland Science, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Grassland Science, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Grassland Science, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Grassland Science, Gansu Agricultural University, Lanzhou 730070, ChinaCombined drought and low–temperature stress is a crucial factor affecting turfgrass establishment and limiting the sustainability of the turfgrass industry in drought– and cold–prone regions. In this context, we evaluated the effects of regular watering (the soil water content was 80% of the maximum water–holding capacity of the field) at room temperature (25 °C) and combined drought (the soil water content was 30% of the maximum water–holding capacity of the field) and low–temperature (0 °C) stress on the morphology, photosynthesis, and physiology of wild <i>Poa annua</i> seedlings from different provenances (‘PA’, ‘WY’, ‘NX’ and ‘YC’). Results indicated that the combined drought and low–temperature stress changed the morphological and growth indicators of seedlings in four provenances to different extents. Moreover, combined drought and low–temperature stress reduced the net photosynthetic rate (Pn), stomatal conductance (Gs), transpiration rate (Tr), water use efficiency (WUE), and chlorophyll content in seedlings from four provenances. However, intertemporal CO<sub>2</sub> concentration (Ci), relative electrical conductivity (REC), the contents of malondialdehyde (MDA), proline (Pro), soluble sugars (SS), the superoxide anion (O<sub>2</sub><sup>•−</sup>) production rate, the contents of hydrogen peroxide (H<sub>2</sub>O<sub>2</sub>) and hydroxyl radical (·OH), the activities of superoxide dismutase (SOD), peroxidase (POD), catalase (CAT), and ascorbate peroxidase (APX) were all increased. The increase in ‘PA’ was much greater than that in ‘NX.’ The comprehensive evaluation results showed that the order of combined drought and low–temperature resistance of seedlings from the four provenances was ‘PA’ > ‘YC’ > ‘WY’ > ‘NX’, which corresponded to the order of the morphological damage symptoms. In conclusion, ‘PA’ may maintain stronger combined drought and low–temperature resistance by improving the cellular water absorption and retention capacity, enhancing the function of the antioxidant defense system, and maintaining the integrity of the cell membrane, which is a crucial germplasm resource for breeding combined drought and low–temperature resistance in <i>Poa annua</i>.https://www.mdpi.com/2077-0472/13/9/1781<i>Poa annua</i>provenancecombined drought and low–temperature stressgrowth characteristicsphysiology and biochemistryprincipal component
spellingShingle Juanxia Li
Xiaoming Bai
Fu Ran
Ping Li
Mahran Sadiq
Hui Chen
Photosynthetic and Physiological Responses to Combined Drought and Low–Temperature Stress in <i>Poa annua</i> Seedlings from Different Provenances
Agriculture
<i>Poa annua</i>
provenance
combined drought and low–temperature stress
growth characteristics
physiology and biochemistry
principal component
title Photosynthetic and Physiological Responses to Combined Drought and Low–Temperature Stress in <i>Poa annua</i> Seedlings from Different Provenances
title_full Photosynthetic and Physiological Responses to Combined Drought and Low–Temperature Stress in <i>Poa annua</i> Seedlings from Different Provenances
title_fullStr Photosynthetic and Physiological Responses to Combined Drought and Low–Temperature Stress in <i>Poa annua</i> Seedlings from Different Provenances
title_full_unstemmed Photosynthetic and Physiological Responses to Combined Drought and Low–Temperature Stress in <i>Poa annua</i> Seedlings from Different Provenances
title_short Photosynthetic and Physiological Responses to Combined Drought and Low–Temperature Stress in <i>Poa annua</i> Seedlings from Different Provenances
title_sort photosynthetic and physiological responses to combined drought and low temperature stress in i poa annua i seedlings from different provenances
topic <i>Poa annua</i>
provenance
combined drought and low–temperature stress
growth characteristics
physiology and biochemistry
principal component
url https://www.mdpi.com/2077-0472/13/9/1781
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