Institute of Plant Sciences and Genetics in Agriculture, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot, Israel.
J Exp Bot. 2020 Jun 22;71(12):3603-3612. doi: 10.1093/jxb/eraa137.
Low gibberellin (GA) activity in tomato (Solanum lycopersicum) inhibits leaf expansion and reduces stomatal conductance. This leads to lower transpiration and improved water status under transient drought conditions. Tomato has three GIBBERELLIN-INSENSITIVE DWARF1 (GID1) GA receptors with overlapping activities and high redundancy. We tested whether mutation in a single GID1 reduces transpiration without affecting growth and productivity. CRISPR-Cas9 gid1 mutants were able to maintain higher leaf water content under water-deficit conditions. Moreover, while gid1a exhibited normal growth, it showed reduced whole-plant transpiration and better recovery from dehydration. Mutation in GID1a inhibited xylem vessel proliferation, which led to lower hydraulic conductance. In stronger GA mutants, we also found reduced xylem vessel expansion. These results suggest that low GA activity affects transpiration by multiple mechanisms: it reduces leaf area, promotes stomatal closure, and reduces xylem proliferation and expansion, and as a result, xylem hydraulic conductance. We further examined if gid1a performs better than the control M82 in the field. Under these conditions, the high redundancy of GID1s was lost and gid1a plants were semi-dwarf, but their productivity was not affected. Although gid1a did not perform better under drought conditions in the field, it exhibited a higher harvest index.
番茄(Solanum lycopersicum)中赤霉素(GA)活性较低会抑制叶片扩张并降低气孔导度。这会导致在短暂干旱条件下蒸腾作用降低和水分状况改善。番茄有三个重叠活性和高度冗余的 GIBBERELLIN-INSENSITIVE DWARF1(GID1)GA 受体。我们测试了单一 GID1 突变是否会在不影响生长和生产力的情况下减少蒸腾作用。CRISPR-Cas9 gid1 突变体在缺水条件下能够维持更高的叶片含水量。此外,虽然 gid1a 表现出正常的生长,但它表现出较低的整株蒸腾作用和更好的脱水恢复能力。GID1a 的突变抑制了木质部导管的增殖,从而导致较低的水力传导率。在更强的 GA 突变体中,我们还发现木质部导管扩张减少。这些结果表明,低 GA 活性通过多种机制影响蒸腾作用:它减少叶片面积,促进气孔关闭,并减少木质部增殖和扩张,从而降低木质部水力传导率。我们进一步研究了 gid1a 在田间是否比对照 M82 表现更好。在这些条件下,GID1 的高度冗余丧失,gid1a 植株为半矮化,但它们的生产力不受影响。尽管 gid1a 在田间干旱条件下表现不佳,但它表现出更高的收获指数。