The Growth and Physiological Characteristics of the Endangered CAM Plant, Nadopungnan (Sedirea japonica), under Drought and Climate Change Scenarios

Author:

Song Yeong GeunORCID,Hwang Jung Eun,An Jiae,Kim Pyoung Beom,Park Hyeong Bin,Park Hwan Joon,Kim SeongjunORCID,Lee Chang Woo,Lee Byoung DooORCID,Kim Nam YoungORCID,Lee Kyeong CheolORCID

Abstract

No natural habitat of Sedirea japonica has been found in Korea for the past 20 years. This study was conducted to provide basic physiological data for the conservation strategy of this endangered plant in response to climate change. Soil fruit daylight system (SFDS) chambers were used and four treatment groups (2.6LVPD, 2.6HVPD, 8.5LVPD, and 8.5HVPD) were designed based on the RCP scenario (RCP 2.6, and 8.5) and VPD conditions (low VPD; LVPD, and high VPD; HVPD). Air dryness was induced in the HVPD groups during the daytime by increasing the atmospheric vapor pressure deficit (VPD). There was no significant difference based on the RCP scenario. However, the difference between LVPD and HVPD was considerable. Total CO2 uptake and transpiration were lower than those of LVPD due to the duration decrease of Phase I in 2.6HVPD and 8.5HVPD. There was a reduction in total biomass, leaf thickness, length, and the number of leaves. ABS/RC, DI0/RC, φD0, VK, VJ, and other chlorophyll fluorescence markers increased. φP0, RE0/RC, φE0, ψE0, φR0, RC/CS0, Sm, N, PIabs, DFabs, SFIabs, and PIabs,Total declined. Daily drought stresses impact the physiological mechanisms occurring at nighttime. The defense mechanisms against drought stress occur by conserving water by controlling the stomata, inactivating the reaction center, and increasing the dissipated energy through heat. In summary, S. japonica is flexible against drought stress.

Funder

National Institute of Ecology

Publisher

MDPI AG

Subject

Forestry

Reference55 articles.

1. Climate Change 2014: Synthesis Report. Contribution of Working Group I, II, and III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, 2014.

2. Analysis of Climate Change Forecasts on the Korean Peninsula, 2018.

3. Malhi, G.S., Kaur, M., and Kaushik, P. Impact of climate change on agriculture and its mitigation strategies: A review. Sustainability, 2021. 13.

4. Taiz, L., and Zeiger, E. Plant Physiology, 2006.

5. Growth and chlorophyll levels of selected plants with varying photosynthetic pathways (C3, C4, and CAM);Rathore;Int. J. Sci. Eng. Res.,2013

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