LGG_2025v16n6

Legume Genomics and Genetics 2025, Vol.16, No.6, 297-312 http://cropscipublisher.com/index.php/lgg 311 References Bai L., Liu T., Sha A., and Li D., 2025, The spatiotemporal fluctuations of extreme rainfall and their potential influencing factors in Sichuan Province, China, from 1970 to 2022, Remote Sensing, 17(5): 883. https://doi.org/10.3390/rs17050883 Bal M., and Østergaard L., 2022, Hormonal influences on pod-seed intercommunication during pea fruit development, Genes, 13(1): 49. https://doi.org/10.3390/genes13010049 Chen H.L., Tian J., Zhu Z.D., Zhang Y.W., Chen Q.M., Zhou S.M., Wang L.X., Liu Y.J., He Y.H., Yin F.X., Wei S.H., and Cheng X.Z., 2021, Current status and future prospective of food legumes production and seed industry in China, Scientia Agricultura Sinica, 54(3): 493-503. https://doi.org/10.3864/j.issn.0578-1752.2021.03.004 Chen X., Hu X., Jiang J., and Wang X., 2024, Functions and mechanisms of brassinosteroids in regulating crop agronomic traits, Plant & Cell Physiology, 65(10): 1568-1580,. https://doi.org/10.1093/pcp/pcae044 Kumar S., Ali B., Ahmed W., Islam R., Rahman M.M., Chakma M., and Miah M.S., 2022, Assessment of the genetic variability for various agronomic traits of pea (Pisum sativumL.) genotypes, Plant Archives, 22(1): 87-94. https://doi.org/10.51470/plantarchives.2022.v22.no1.013 Lee Y.C., Wenig M., and Chan K., 2023, Oceanic and atmospheric anomalies associated with extreme precipitation events in China 1983-2020, Air Quality, Atmosphere, & Health, 16: 881-895. https://doi.org/10.1007/s11869-022-01295-9 Li X.Y., Wang J.H., Lin X., and Chen Z.Q., 2024, Effect of irrigation and fertilization on soybean growth and yield in different soil types, Molecular Soil Biology, 15(5): 216-226. https://doi.org/10.5376/msb.2024.15.0022 Long J., Sun S., Liu C., Wu W., Duan C., and Zhu Z., 2022, First report of Botrytis cinerea causing stem rot on pea (Pisum sativumL.) in China, Plant Disease, 106(8): 2357. https://doi.org/10.1094/PDIS-06-22-1409-PDN McGuiness P., Reid J.B., and Foo E.,2020, Brassinosteroids play multiple roles in nodulation of pea via interactions with ethylene and auxin, Planta, 252: 1-8. https://doi.org/10.1007/s00425-020-03478-z Miryeganeh M., 2022, Auxins in the right space and time regulate pea fruit development, Plants, 11(8): 1023. https://doi.org/10.1093/jxb/erac237 Naveed M., Bansal U., and Kaiser B.N., 2024, Impact of low light intensity on biomass partitioning and genetic diversity in chickpea, Frontiers in Plant Science, 15: 1292753. https://doi.org/10.3389/FPLS.2024.1292753 Rajpoot S., 2021, Frontline demonstrations: Integrated crop management (ICM) in field pea (Pisum sativumL.) with an innovative approach of line sowing technology for higher yield at Sonbhadra district of Uttar Pradesh, International Journal of Chemical Studies, 9(1): 142-146. https://doi.org/10.22271/CHEMI.2021.V9.I1C.11515 Santos O., Leal A., Cunha F., Souza E., and Taira T., 2018, Increase in pea productivity associated with irrigation management, Horticultura Brasileira, 36(2): 178-183. https://doi.org/10.1590/S0102-053620180205 Schillaci M., Zampieri E., Brunetti C., Gori A., and Sillo F., 2023, Root transcriptomic provides insights on molecular mechanisms involved in the tolerance to water deficit in Pisum sativuminoculated with Pseudomonas sp., Planta, 259(2): 33. https://doi.org/10.1007/s00425-023-04310-0 Semenova E., Novikova L., Boyko A., and Vishnyakova M., 2025, The effect of weather factors on seed productivity components in pea accessions from VIR during their reproduction at Adler Experiment Station, Proceedings on applied botany, genetics and breeding, 186(1): 106-120. https://doi.org/10.30901/2227-8834-2025-1-106-120 Singh L.K., Bhupenchandra I., and Devi S., 2021, Assessment of crop water requirement of field pea (Pisum sativumL.) in foothills valley areas of Manipur, North East India, Journal of Agrometeorology, 23(3): 306-309. https://doi.org/10.54386/JAM.V23I3.34 Su H., Zhang J., and Zhang R., 2023, Evaluation of gray mold resistance and flower morphology in Pisum sativum under high humidity conditions, Plant Pathology Journal, 39(1): 28-36. https://doi.org/10.5423/PPJ.OA.08.2022.0123 Wang L., Guo Y., Yao X.D., Yang M.D., Song R.Q., Wang H.Y., 2024, Physiological responses and variety screening for drought tolerance in soybeans during flowering and podding, Genomics and Applied Biology, 15(6): 308-318. https://doi.org/10.5376/gab.2024.15.0032 Wang D., Yang T., Liu R., Li N., Ahmad N., Li G., Ji Y., Wang C., Li M., Yan X., Ding H., and Zong X., 2022, Large-scale heat-tolerance screening and genetic diversity of pea (Pisum sativumL.) germplasms, Plants, 11(19): 2473. https://doi.org/10.3390/plants11192473 Wu J., Liang P., Lin H.J., Wu Z.Y., and Qian Q.W., 2021, Meiyu determination and causes of typical abnormal Meiyu years in Taihu Basin? Journal of Lake Sciences, 33(1): 255-265.

RkJQdWJsaXNoZXIy MjQ4ODYzNA==