Stability analysis and comprehensive selection of elite clones of Catalpa bungei based on wood growth and hydraulic architecture in two sites with different rainfall

Lang Zhao , Mengmeng Chen , Tao Gao , Zheng Chen , Haoao Gao , Kewei Yao , Mingkai Ou-yang , Zheyuan Zhang , Yanting Zhang , Qimeng Heng , Xinyang Yan , Yuejia Sun , Kaixue Xu , Junhui Wang , Wenjun Ma , Jean W. H. Yong , Yi Zhang

Journal of Forestry Research ›› 2026, Vol. 37 ›› Issue (1) : 190

PDF
Journal of Forestry Research ›› 2026, Vol. 37 ›› Issue (1) :190 DOI: 10.1007/s11676-026-02126-8
Original Paper
research-article
Stability analysis and comprehensive selection of elite clones of Catalpa bungei based on wood growth and hydraulic architecture in two sites with different rainfall
Author information +
History +
PDF

Abstract

Drought is a negative factor limiting tree growth and wood productivity of Catalpa bungei, a native species of the Catalpa genus in China that is characterized by high-quality timber and significant economic value. In the present study, stability analysis and comprehensive selection of elite clones of C. bungei were conducted based on gas exchange, wood growth, and hydraulic architecture at two sites with different rainfall levels. Tree growth and wood productivity of C. bungei were largely inhibited by rainfall shortage and the incongruity between rainfall and temperature. Some clones showed prominent wood productivity and fine wood properties at the Heze site, which experienced water deficit and seasonal drought. The high clone repeatability (R > 0.65) of these traits implies great potential for selecting drought-adaptive varieties. Specific clones with high stability in wood productivity and basic wood properties were selected based on BLUP-GGE biplot analysis. Elite clones (2–8, 2–6, 19–01, 1–3, 6–7, 008–1, and 22–03) with favorite wood growth and hydraulic safety were selected based on comprehensive assessment, and these clones are proposed for extension and cultivation in climate regions with limited rainfall. The outstanding growth performance of elite clones was attributed to their larger leaf area and great photosynthesis capacity per plant, rather than to a high photosynthetic rate per unit leaf area. Most of the elite clones exhibited timely adjustments in hydraulic architecture (vessel diameter and vessel density) between the drought season and the rainy season, which contributed to an effective trade-off between wood growth and hydraulic safety.

Keywords

Catalpa bungei / Seasonal drought / Wood property / GGE biplots / Hydraulic safety

Cite this article

Download citation ▾
Lang Zhao, Mengmeng Chen, Tao Gao, Zheng Chen, Haoao Gao, Kewei Yao, Mingkai Ou-yang, Zheyuan Zhang, Yanting Zhang, Qimeng Heng, Xinyang Yan, Yuejia Sun, Kaixue Xu, Junhui Wang, Wenjun Ma, Jean W. H. Yong, Yi Zhang. Stability analysis and comprehensive selection of elite clones of Catalpa bungei based on wood growth and hydraulic architecture in two sites with different rainfall. Journal of Forestry Research, 2026, 37 (1) : 190 DOI:10.1007/s11676-026-02126-8

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Allen CD, Macalady AK, Chenchouni H, Bachelet D, McDowell N, Vennetier M, Kitzberger T, Rigling A, Breshears DD, Hogg EH, Gonzalez P, Fensham R, Zhang Z, Castro J, Demidova N, Lim JH, Allard G, Running SW, Semerci A, Cobb N. A global overview of drought and heat-induced tree mortality reveals emerging climate change risks for forests. For Ecol Manag, 2010, 259(4660-684

[2]

Anderegg WRL, Klein T, Bartlett M, Sack L, Pellegrini AFA, Choat B, Jansen S. Meta-analysis reveals that hydraulic traits explain cross-species patterns of drought-induced tree mortality across the globe. Proc Natl Acad Sci U S A, 2016, 113(18): 5024-5029

[3]

Aritsara ANA, Razakandraibe VM, Ramananantoandro T, Gleason SM, Cao KF. Increasing axial parenchyma fraction in the Malagasy Magnoliids facilitated the co-optimisation of hydraulic efficiency and safety. New Phytol, 2021, 229(3): 1467-1480

[4]

Bao WW, Chen X, Li RN, Li M, Xie CJ, Dou MR, Zhang KZ, Wang J, Gao ZX, Liu ZD, Xu Y. Comprehensive assessment of drought resistance and recovery in kiwifruit genotypes using multivariate analysis. Plant J, 2024, 119(1): 100-114

[5]

Chen C, Xu F, Zhu JR, Wang RF, Xu ZH, Shu LZ, Xu WW. Nitrogen forms affect root growth, photosynthesis, and yield of tomato under alternate partial root-zone irrigation. J Plant Nutr Soil Sci, 2016, 179(1): 104-112

[6]

Chen CJ, Wu Y, Li JW, Wang X, Zeng ZH, Xu J, Liu YL, Feng JT, Chen H, He YH, Xia R. TBtools-II: a “one for all, all for one” bioinformatics platform for biological big-data mining. Mol Plant, 2023, 16(11): 1733-1742

[7]

de Melo AB, da Silva PHM, de Lima AS, da Silva JGM, de Vicente FA, Rocha SMG, Almeida MNF, Araújo M, Godinho T, Neto TCC, Moulin JC, Vidaurre GB. Productivity and wood quality traits of Corymbia and Eucalyptus species in two soil water deficit sites. Ind Crops Prod, 2024, 219: 119141

[8]

Dias MC, Ferreira de Oliveira JMP, Marum L, Pereira V, Almeida T, Nunes S, Araújo M, Moutinho-Pereira J, Correia CM, Santos C. Pinus elliottii and P. elliottii × P. caribaea hybrid differently cope with combined drought and heat episodes. Ind Crops Prod, 2022, 176: 114428

[9]

Durand M, Brendel O, Buré C, Courtois P, Lily J-B, Granier A, Thiec DL. Impacts of a partial rainfall exclusion in the field on growth and transpiration: consequences for leaf-level and whole-plant water-use efficiency compared to controlled conditions. Agric for Meteorol, 2020, 282–283: 107873

[10]

Fonti P, von Arx G, García-González I, Eilmann B, Sass-Klaassen U, Gärtner H, Eckstein D. Studying global change through investigation of the plastic responses of xylem anatomy in tree rings. New Phytol, 2010, 185(1): 42-53

[11]

Gallo R, Pantuza IB, dos Santos GA, de Resende MDV, Xavier A, Simiqueli GF, Baldin T, dos Santos OP, dos Valente RTBM. Growth and wood quality traits in the genetic selection of potential Eucalyptus dunnii Maiden clones for pulp production. Ind Crops Prod, 2018, 123: 434-441

[12]

Hacke UG, Spicer R, Schreiber SG, Plavcová L. An ecophysiological and developmental perspective on variation in vessel diameter. Plant Cell Environ, 2017, 40(6): 831-845

[13]

John BA, Ramaswamy S, Swaminathan M, Dharmalingam K, Mahalingam G, Raman P, Jegadeesan R. Comparative analysis of stability models for identifying rice inter-subspecific breeding lines adapted to different temperature regimes for exploitation in hybrid breeding. BMC Plant Biol, 2025, 25(1): 563

[14]

Lens F, Gleason SM, Bortolami G, Brodersen C, Delzon S, Jansen S. Functional xylem characteristics associated with drought-induced embolism in angiosperms. New Phytol, 2022, 236(6): 2019-2036

[15]

Li YJ, Suontama M, Burdon RD, Dungey HS. Genotype by environment interactions in forest tree breeding: review of methodology and perspectives on research and application. Tree Genet Genomes, 2017, 13(3): 60

[16]

Ma WJ, Yi F, Xiao Y, Yang GJ, Chen FJ, Wang JH. Isolation of leaf mesophyll protoplasts optimized by orthogonal design for transient gene expression in Catalpa bungei. Sci Hortic, 2020, 274: 109684

[17]

MacFarlane DW. Functional relationships between branch and stem wood density for temperate tree species in North America. Front Glob Change, 2020, 3: 63

[18]

Makaju SO, Chhetri HB, Abeyratne CR, Pavicic M, Poudel H, Ali Irfan J, Giabardo A, Devos KM, Jacobson D, Missaoui AM. Drought adaptation index (DAI) based on BLUP as a selection approach for drought-resilient switchgrass germplasm. Front Genet, 2025, 16: 1626083

[19]

Offermann S, Peterhansel C. Can we learn from heterosis and epigenetics to improve photosynthesis?. Curr Opin Plant Biol, 2014, 19: 105-110

[20]

Pimenta EM, Ramalho FMG, Dambroz GBV, Couto AM, Campoe OC, Hein PRG. Planting spacing and genotype affected the tree growth and variation of wood density and lignin content along Eucalyptus trunks. Ind Crops Prod, 2024, 222: 119595

[21]

Pirnajmedin F, Majidi MM, Taleb MH, Rostami D. Genetic parameters and selection in full-sib families of tall fescue using best linear unbiased prediction (BLUP) analysis. BMC Plant Biol, 2022, 22(1): 293

[22]

R Core Team (2024) R: A Language and Environment for Statistical Computing. R Foundation for Statistical Computing, Vienna, Austria.

[23]

Rajesh-Kumar S, Anand G, Narayanan SL, Subramanian E, Mini ML. Delineation of genotype × environment interaction and identifying superior red sorghum [Sorghum bicolor L. Moench] genotypes via multi-trait-based stability selection methods. BMC Plant Biol, 2025, 25(1): 283

[24]

Sarmiento C, Patiño S, Timothy Paine CE, Beauchêne J, Thibaut A, Baraloto C. Within-individual variation of trunk and branch xylem density in tropical trees. Am J Bot, 2011, 98(1): 140-149

[25]

Schuldt B, Leuschner C, Brock N, Horna V. Changes in wood density, wood anatomy and hydraulic properties of the xylem along the root-to-shoot flow path in tropical rainforest trees. Tree Physiol, 2013, 33(2): 161-174

[26]

Schumann K, Leuschner C, Schuldt B. Xylem hydraulic safety and efficiency in relation to leaf and wood traits in three temperate Acer species differing in habitat preferences. Trees, 2019, 33(5): 1475-1490

[27]

Shi HL, Ma WJ, Song JY, Lu M, Rahman SU, Bui TTX, Vu DD, Zheng HF, Wang JH, Zhang Y. Physiological and transcriptional responses of Catalpa bungei to drought stress under sufficient- and deficient-nitrogen conditions. Tree Physiol, 2017, 37(11): 1457-1468

[28]

Steppe K, Lemeur R. Effects of ring-porous and diffuse-porous stem wood anatomy on the hydraulic parameters used in a water flow and storage model. Tree Physiol, 2007, 27(1): 43-52

[29]

Ukalski K, Klisz M. Application of GGE biplot graphs in multi-environment trials on selection of forest trees. Folia for Pol, 2016, 58(4): 228-239

[30]

Vieilledent G, Fischer FJ, Chave J, Guibal D, Langbour P, Gérard J. New formula and conversion factor to compute basic wood density of tree species using a global wood technology database. Am J Bot, 2018, 105(10): 1653-1661

[31]

Wang JC, Qin XM, Xu SQ, Zhao MY, Shu PQ, Xu FJ, Ma JY, Sun Y, Dong H, Guo ZY, Long DP, Ma WJ, Lu YZ, Xie XM, Chen YL, Chu J, Wang JH, Zhang Y. Nitrogen availability affects stem development and response to differential root-zone drought stress in Catalpa bungei. Environ Exp Bot, 2021, 186: 104429

[32]

Wang WF, Shang JZ, Gao TH, Chen C, Zhu SL, Zong YZ. Nitrogen addition enhanced carbon assimilation and biomass accumulation in poplar seedlings under moderate drought but not severe drought. Ind Crops Prod, 2025, 229: 121040

[33]

Xu T, Wang ZY, Wang ZY, Guo MF, Wang XT, He XL, Wang JH, Rahman SU, Bourhia M, Alsahli AA, Zhang Y. Effects of nitrate- and ammonium- nitrogen on anatomical and physiological responses of Catalpa bungei under full and partial root-zone drought. BMC Plant Biol, 2024, 24(1): 217

[34]

Yan WM, Zhong Y, Shangguan ZP. A meta-analysis of leaf gas exchange and water status responses to drought. Sci Rep, 2016, 6: 20917

[35]

Yao GQ, Nie ZF, Turner NC, Li FM, Gao TP, Fang XW, Scoffoni C. Combined high leaf hydraulic safety and efficiency provides drought tolerance in Caragana species adapted to low mean annual precipitation. New Phytol, 2021, 229(1): 230-244

[36]

Yao GQ, Nie ZF, Zeng YY, Waseem M, Hasan MM, Tian XQ, Liao ZQ, Siddique KHM, Fang XW. A clear trade-off between leaf hydraulic efficiency and safety in an aridland shrub during regrowth. Plant Cell Environ, 2021, 44(10): 3347-3357

[37]

Yao CC, Fei Y, Yan ZF, Wu CY, Xiao Y, Hu JW, Liu BY, Wang R, Li SF, Zhang MM, Wang N, Ma WJ, Lu N, Wang JH. Cbuhdz34, a homeodomain leucine zipper transcription factor, positively regulates tension wood formation and xylem fibre cell elongation in Catalpa bungei. Plant Cell Environ, 2025, 48(6): 4266-4285

[38]

You R, Zhu NH, Deng XW, Wang J, Liu F. Variation in wood physical properties and effects of climate for different geographic sources of Chinese fir in subtropical area of China. Sci Rep, 2021, 11: 4664

[39]

Zheng HF, Zhang X, Ma WJ, Song JY, Rahman SU, Wang JH, Zhang Y. Morphological and physiological responses to cyclic drought in two contrasting genotypes of Catalpa bungei. Environ Exp Bot, 2017, 138: 77-87

[40]

Zhu JL, Shi Y, Fang LQ, Liu XG, Ji CJ. Patterns and determinants of wood physical and mechanical properties across major tree species in China. Sci China Life Sci, 2015, 58(6): 602-612

[41]

Zou J, Hu W, Li YX, He JQ, Zhu HH, Zhou ZG. Screening of drought resistance indices and evaluation of drought resistance in cotton (Gossypium hirsutum L.). J Integr Agric, 2020, 19(2): 495-508

Rights & permissions

Northeast Forestry University

PDF

3

Accesses

0

Citation

Detail

Sections
Recommended

/