Pan Yin
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A domestication-selected CIPK–MYB–HAK module improves salt tolerance in modern maize
Abstract Domestication has profoundly reshaped the maize genome, yet its impact on abiotic stress resilience remains largely unresolved. Here we show that modern maize exhibits markedly greater salt tolerance than its wild progenitor, teosinte. Using a maize–teosinte (W22-T8759) recombinant inbred line population, we identify the transcriptional repressor MYB28 as a major genetic determinant underlying this divergence. MYB28 negatively regulates salt tolerance by impairing shoot Na+ exclusion.
Mitogen-activated kinase 6 facilitates autophagy initiation to confer salt tolerance in maize
Keywords salt stress autophagy maize mitogen-activated protein kinase MAPK Get full text access Log in, subscribe or purchase for full access. References 1. Munns, R. ∙ Tester, M. Mechanisms of salinity tolerance Annu. Rev. Plant Biol. 2008; 59:651-681 2. Rengasamy, P. World salinization with emphasis on Australia J. Exp. Bot. 2006; 57:1017-1023 3. Li, B. ∙ Tester, M. ∙ Gilliham, M. Chloride on the Move Trends Plant Sci. 2017; 22:236-248 4. Yang, Y. ∙ Guo, Y.
Subordinate tree species diversity explains carbon stock better than dominant tree diversity after decades of forest rewilding
CONFLICT OF INTEREST STATEMENT All authors declare that they have no conflict of interest. Supporting Information Filename Description jpe14868-sup-0001-supinfo.docxWord 2007 document , 14.4 MB Table S1. List of plant species inventoried across the 113 subplots in the 9-ha Chinese fir plantation. Figure S1. A local survey of soil carbon stock to the tree species diversity in a subtropical plantation. Figure S2.
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